Modomics - A Database of RNA Modifications
ID RNA_source_id SO term RNA Type RNA Subtype RNA Feature Organism Cellular localization Sequence (UNICODE)
1211 LC530716.1  tRNA  Gly  UCC  Homo sapiens  mitochondrion  ACUCUUUUѢLUAUAAAUAGUACCGPUAACUUCCAAPPAACUAGUUUUGACAACAUUCAAAAAAGAGUACCA
1212 LC530717.1  tRNA  His  QPG  Homo sapiens  Mitochondrion  GGUAAAUAUѢLUUUAACCAAAACAPCAGAUUQPGAAPCUGACAA?AGAGGCUUACGACCCCUUAUUUACCCCA
1213 LC530718.1  tRNA  Met  >AU  Homo sapiens  Mitochondrion  AGUAAGGUCAGCUAAAUAAGCUAPCGGGCC>AUACCCCGAAAAUGPUGGUUAUACCCUUCCCGUACUACCA
1214 LC530719.1  tRNA  Asn  QUU  Homo sapiens  Mitochondrion  UAGAUUGAѢLCCAGUUGADUAGGGUGCPUAGCUQUU6ACPAAGUGUUUGUGGGTPUAAGUCCCAUUGGUCUAGCCA
1215 LC530720.1  tRNA  Pro  UGG  Homo sapiens  mitochondrion  CAGAGAAUѢGUUUAAAUUAGAAUCPUAGCPUUGGKPGCUAAUGGUGGAGTPAAAGACUUUPPCUCUGACCA
1216 LC530721.1  tRNA  Gln  ƕUG  Homo sapiens  Mitochondrion  UAGGAUGGKGUGUGAUAGGDGGCACGGAGAAUPƕUGKAPPCUCAGGGAUGGGTPCGAUUCUCAUAGUCCUAGCCA
1217 LC530722.1  tRNA  Arg  UCG  Homo sapiens  mitochondrion  UGGUAUAUѢLUUUAAѢCAAAACLAAUGAPUUCGACPCAUUAAAUUAUGAUAAUCAUAUUUACCAACCA
1218 LC530723.1  tRNA  Thr  UGU  Homo sapiens  Mitochondrion  GUCCUUGUѢLUAUAAACUAAUACACCAGUЩUUGU6AACCGGAGAUGAAAACCUUUUUCCAAGGACACCA
1219 LC530724.1  tRNA  Val  UAC  Homo sapiens  Mitochondrion  CAGAGUGUѢLCUUAACACAAAGCACCCAACUUACACPUAGGAGAUUUCAACUUAACUUGACCGCUCUGACCA
1220 LC530725.1  tRNA  Trp  ʭC*  Homo sapiens  Mitochondrion  AGAAAUUUѢLGUUAAAUACAGACCAAGAGCCUʭC*AAGCCCUCAGUAAGUUGCAAUACUUAAUUUCUGCCA
1221 LC530726.1  tRNA  Tyr  QUA  Homo sapiens  Mitochondrion  GGUAAAAUKLCUGAGUGAAGCAPPGGACUQUA*APCUAAAGA?AGGGGUUAGGCCUCUUUUUACCACCA
1222 KY962518.1  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUʍUGCUUGPCPCAAAGAUUAAGCCAUGCAUGUCUAAGPACGCACGGCCGGUACAGUGAAACUGCGAAPGGCUCʍPUAAAPCAGPUAUGGUJCCPUJGGUCGCUCGCUCCUCUCCUACUUGGAUAACUGUGGUAʍUUCUAGʍGCJAAJABAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAPGCGUGCAPUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCPAGAPAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCUAACGUCJGCCCUAUCAACPUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGPGACGGGGAAUCAGGGUUCGAUJCCGGAGA#GGAGCCUGAGAAACGGCUACCACAUBCAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCACUCCCGACCCGGGGA#GUʍGPGABGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAPUGGAAUGAGUCCACUPUAAʍUCCUUUAACGAGGʍUCCAUUGGAG#GCAAGUCPGGUGCCAGCAGBCGCGGJAAUUCCAGCUCCAAUA#CGUAPAPUAAAGUUGCUGCAGUPʍAAAAGCUCGUAGPU#GAPCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCPPAGCUGAGUGUCCCGCGGGGCCCGAAGBGJUPACPUUGAAAAAAPPAGAGUGPUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAPAAP#GAAUAGGACCGCGGUUCUAUUUUGUUGGUPUUCGGAACUGAGGCCAUGAUPAAGAGGGACGGCCGGGGGCAUUCCGUAUUGCGCGCUAGAGGUGAAAUPCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUPUGCCAAGAAUGUUUUCAUUAAUCAAGAʍCGAAAGUCGGAGGPPCGAAGACGAPCAGAPACCGUCGUAGUUCCGACCAPAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCPUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAPGGPUGCAAAGCPGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCPGCGGCPUAAUUPGACαCAACACGGGAAACCUCACCCGGCBCGGACACGGACAGGAJUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGJG#UGCAUGGCMGUUCUUAGUPGGUGGAGCGAUUPGUCUGGPUAAUUCCGAUAACGAʍCGAGACUBUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAABUJCUPA#AGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA#GUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUPCGUGAUGGGGAUCGGGGAUUGCAAUUAUPCCCCAUGAACGAG7AAUPCCCAGUAAGUGCGGGUCAUAAGCUJGCGUUGAUUʍAGUCCCUGCCCUUPGUACACACCGBCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUJGACUAUCUAGAGGAAGUAAAAGUCGUAЖCAAGGUPUCMGUAGGUGζζCCUGCGGAAGGAUCAUUA
1223 7BHP_L5  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAGAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGʍGʍGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGCGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCC#UCUUGѢʍACʍCGGACCAAGGAGUBUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC#AʍAGAUGGUGAʍCPAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGPAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCPCAGGAPAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAPGAUUAGAGGUCUUGG#GCCGAAACGAUCJCAACCPAPPCUCAAACUUPAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACPUPUGGUAAGCʍGAACUGGCGBUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGCGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUBUUGGUGGUAGUʍ#BAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGʍGAAGGGUUCCAUGJGAACAGBA#UUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAPCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUPUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCʍUAUCCGCAGCAGGUCUBCAAGGUGAACʍGCCUCUGGBAUGUUGGAACAAJGPAGGPAAGGGAAGUCGGCAAGCBGGAUCCGUAACUUC#GGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCCGCGCGCGCCGCUCGCUCCCUCCCCGCCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGGCGGCGGCCCGCCGCGGGGCCCCGGCGGCGGGGGCACGGUCCCCCGCGAGGGGGGCCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGGCGCCGGCGCGCCCCCCCCCCCACCCCACGUCUCGUCGCGCGCGCGUCCGCUGGGGGCGGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG#GAAUCCGACPGPUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUPCUGCCBAGUGCUCUGAAUGPCAʍAGUGAʍGAAAUPCAAPGAAGCGCGG#UAAACGGCGGGAGPAʍCPAPGACPCPCUUAAGGUAGC?AAʍUGCCUC#UCAUCUAAUUAGUGABGCGCAUGAAZGGAPGAʍCGAGʍUUCCCACUGUBCCPACCUACPAPCCAGCGAAACCACʍGBCAAGGGAACGGGCUPGGBGGAAUCAGCGG#GAAAGAAGACCCUGUUGAGCPUGACJCUAGUCUGGCACGGUGAA#AGACAUGAGAGGUGPAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCCGGCCCUGCGGGCCGCC#GUGAAAUACCABUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGGCCGCGCGCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG#GGCGGUACACCUGUCAAACGGUAЖCGCAGGJ#UCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAPCUPGAPUUUCAGJACGAAPACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUPUGGGUUUPAAGCAGGA#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCPUGUGGCGGCCAAGCGUPCAPAGCGACGPCGCUUUUUGAPCCUU?GAUGUCGGBPCUUCCUAUCAUUGPGAAGCAGAAUUCACCAAGCGUP#GAUJ#PUCACCCACUAAUAGGGAACGPGʍGCUGGGδUPAGABCGUCGUGAGACAGGUPAGUUUUACCCUACUGAUGʍUGUGPUGPUGCCAUGGUAʍUCCUGCUCAGUACGAGAGGAACCGCAG#UJCA#ACAUPUGGUGUAP#UGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAPCUGUGGGAUUAUGACPGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCCUCCACGCGCCCCGCGCGCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAPPCGUAGACGACCUGCUUCUGGGUCGGGGPUUCGUACGPAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1224 KY962518.1  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGJGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCPGCGAGAAUUAAUGPGAAUU#CAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1225 7O7Y_39  rRNA  LSU-L  28S  Oryctolagus cuniculus  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGUGGGGCGCGGGAAAUGUGGCGUACGGAAGACCCACUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGʍGʍGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGUGGUCCGGCCGUGCCGGCGGUCUCGGCGGAUCUUUCCCGCUCCCCGUUCCUCCCGACCCCUCCACCCGCUCCCCCUCCCCCGCCGGUCUUCUCCCUUCACGGGGGGUGGGUCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGCCCCCCGGCCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCCGGCGGGGAAGGUGGCCCGGGGGGACGCCUCGCCGCCGUCGUCCGCGGCGGCGGCGGGCGCGACCCCUCCCCGGGUGUUACAGCCCCGCCCCGGCAGCAGCAGCUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCUGUGUCGCCGCGCUCUCCCCCCUCCCGGCGCUCCCCCCCGCGGGGGUCCCCCGCGAGGGGGCUCCCCCCGCGGGGGCGCGCCGGUGUCGCCGCCCUCGCGGGCGCGGCACGGGGGGGCCGGGCCGCCCCUCCCACGGCGCGACCGCUCUCCCGGCCCCCGCCGCCGCCUCUUCGGGCGUGCGGCGGGGGUGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGUGUCACGCCGUCGGGCUCGGGGGAGAAGUCGGCCACGGCGCGUCGCGCGCCUCCGCGUCCCCCCCUCGCCGUCUCCGGGCGGCGGGGGGGGGUUUCGGCGCGGUGUUCUCGGCGCGCGCGCGCGAGCGAGCGCACGGGGUCGGCGGCGAUGUCGGCUACCCACCCGACCC#UCUUGѢAACʍCGGACCAAGGAGUBUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGGCGGCUUCCCGCCGUCGUCGGCCGAGGUGGGAUCCCGAGGCCCUUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC#AʍAGAUGGUGAʍCPAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGPAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCPCAGGAPAGCUGGCGCUCUCGCAACCCCGCAGUUUUAUCCGGUAAAGCGAAPGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCPAPPCUCAAACUUPAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACPUPUGGUAAGCʍGAACUGGCGBUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCUGGCAGUCGGCAGAGCGAGAAAGAGAGUGGAGCGCGCCGCGGGACUCCCCCCGCGGGGGUCCCCGGCCACCCCCCCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUBUUGGUGGUAGUʍ#BAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGʍGAAGGGUUCCAUGJGAACAGBA#UUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCAGCCGAPCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUPUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCʍUAUCCGCAGCAGGUCUBCAAGGUGAACʍGCCUCUGGBAUGUUGGAACAAJGUAGGUAAGGGAAGUCGGCAAGCBGGAUCCGUAACUUC#GGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCGCCCUCCCCCGGCCGGGUCCGCUCCCUCGCGCGCGCGUGCGCCGUGGCGCGCGCCGCGCGCGCGGCCGAGCCCCGUCUCCCUCCCCCCCUCUCCCCUCCCGGGGCGGGGUGCGGGGAGGGGCGGGCGGGGCCGUCGCUCGCCGCGCGUGCGCGUCGCUGCGCGUGCGCCGCGCGGGGGGUCCGGCGGGCCUCCGGACGGGGGCUCCGGGCACCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCUCGGGGAGCCCGGCGGGCGCCGCGUGCGCGCGCGUGCGCGCCCGGGGUCGGGGGGGUGCGAGGCAGGGGAGGCCCUCUCUCCUCCUCCCCCACCCCGGCGCCGCGGCGCCGCGCGUGCGCGCGCGGUCUCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG#GAAUCCGACPGPUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUPCUGCCBAGUGCUCUGAAUGPCAʍAGUGAʍGAAAUPCAAPGAAGCGCGG#UAAACGGCGGGAGPAʍCPAPGACPCPCUUAAGGUAGC?AAʍUGCCUC#UCAUCUAAUUAGUGABGCGCAUGAAZGGAPGAʍCGAGʍUUCCCACUGUBCCPACCUACPAPCCAGCGAAACCACʍGBCAAGGGAACGGGCUPGGBGGAAUCAGCGG#GAAAGAAGACCCUGUUGAGCPUGACJCUAGUCUGGCACGGUGAA#AGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCUCCCGCCCCCGCGAGGGGGCGGGGCGGGGUCCGCCGGCCUUGCGGGCCGCCGGUGAAAUACCACUACUCUUAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCGGGCCCCGUCGGUCCGCGCGGGCCGGCGGCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG#GGCGGUACACCUGUCAAACGGUAЖCGCAGGJ#UCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAPCUPGAPUUUCAGJACGAAPACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGAGCUUPUGGGUUUPAAGCAGGA#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCPUGUGGCGGCCAAGCGUPCAPAGCGACGPCGCUUUUUGAPCCUU?GAUGUCGGBPCUUCCUAUCAUUGPGAAGCAGAAUUCACCAAGCGUU#GAUJ#PUCACCCACUAAUAGGGAACGPGʍGCUGGGδUPAGABCGUCGUGAGACAGGUPAGUUUUACCCUACUGAUGʍUGUGPUGPUGCCAUGGUAʍUCCUGCUCAGUACGAGAGGAACCGCAG#UJCA#ACAUPUGGUGUAP#UGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAPCUGUGGGAUUAUGACPGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCGAAGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCGUCCCCGCCGGCGGCCCGCGUCGUGCGUCCGCCUCGGCGGCGUGCGGCGCGCCCCCCGCCGCGCGUCGGGACCGGGGUCCGGUGCGGAGAGCCCUUCGUCCCGGGAAAUGGGGCGCGGCCGGAAAGGGGGCCGCCCUCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAPUCGUAGACGACCUGCUUCUGGGUCGGGGPUUCGUACGPAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGU
1226 7O7Y_1  rRNA  SSU  18S  Oryctolagus cuniculus  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUʍUGCUUGPCPCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAPGGCUCʍUUAAAPCAGPUAUGGUJCCPUJGGUCGCUCGCUCCUCUCCUACUUGGAUAACUGUGGUAʍUUCUAGʍGCUAAJABAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAPGCGUGCAPUUAUCAGAUCAAAACCAACCCGGUCAGCCUCCCCCCGGCCCCGGCCGGGGGGGUGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCUCCGUGGCGGCGACGACCCAUUCGAACGUCJGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGPGACGGGGAAUCAGGGUUCGAUJCCGGAGA#GGAGCCUGAGAAACGGCUACCACAUBCAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCACUCCCGACCCGGGGA#GUʍGUGABGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUPUAAʍUCCUUUAACGAGGʍUCCAUUGGAG#GCAAGUCPGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUA#CGUAPAPUAAAGUUGCUGCAGUUʍAAAAGCUCGUAGPU#GAPCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUPACUUUGAAAAAAPPAGAGUGPUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAPAAP#GAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUPCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUPGCCAAGAAUGUUUUCAUUAAUCAAGAʍCGAAAGUCGGAGGPPCGAAGACGAPCAGAUACCGUCGUAGUUCCGACCAPAAACGAUGCCGACUGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAPGGPUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCPGCGGCPUAAUUPGACCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAJUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGJG#UGCAUGGCMGUUCUUAGUPGGUGGAGCGAUUUGUCUGGPUAAUUCCGAUAACGAʍCGAGACUBUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUJCUPA#AGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA#GUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUPCCCCAUGAACGAG7AAUPCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUʍAGUCCCUGCCCUUPGUACACACCGBCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUJGACUAUCUAGAGGAAGUAAAAGUCGUAЖCAAGGUUUCMGUAGGUGζζCCUGCGGAAGGAUCAUUA
1227 7O7Y_41  rRNA  LSU-S  5.8S  Oryctolagus cuniculus  Cytoplasm  CGACUCUUAGCGGUGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCPGCGAGAAUUAAUGPGAAUU#CAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUUG
1228 7QIZ_43  rRNA  LSU-L  25S  Solanum lycopersicum  Cytoplasm  GCGACCCCAGGUCAGGCGGGAUUACCCGCUGAGUPUAAGCAUAJCAAJAAGCGGAGGAAAAGAAACUPACAAGGAUUCCCCUAGUAACGGCGAGCGAACCGGGAACAGCCCAGCCUUAGAAUCGGGCGGCUCCGUCGUCCGAAJUGUAGUCUGGAGAAGCGUCCUCAGCGGCGGACCGGGCCCAAGUCCCCUGGAAGGGGGCGCCGGAGAGGGUGAGAGCCCCGUCGUGCCCGGACCCUGUCGCACCACGAGGCGCUGUCUACGAGUCGGGUUGUUUGGGAAUGCAGCCCAAAUCGGGCGGUGAAUUCCGUCCAAGGCUAAAUACUGGCGAGAGACCGAUAGCGAACAAGUACCGCGAGGGAAAGAUGʍAAAGGACUPUGAAAAGAGAGUCAAAGAGU#CUUGAAAUUGUCGGGAGGGAAGCGGAUGGGGGCCGGCGAUGCGCCCCGGUCGGAUGUGGAACGGCGACGAGCCGGUCCGCCGAUCGACUCGGGGCGUGGACCAGCGUGGAUUGGGGGGGCGGCCAAAGCCCGGGCUCUCGAUACGCCCGUGGAACGCCGUCUCCCCGAUUGUGGAAGGCAGCGCGCGCCUCCGGCGUGCUUCGGCAUCUGCGCGCUCCGGACGCUGGCCUGUGGGCUCCCCAUUCGACCCGUCUUGѢAACʍCGGACCAAGGAGUBJGACAUGUGUGCGAGUCAACGGGCGAGUAAACCCGUAAGGCGUAAGGAAGCUGAUUGGUGGGAUCCCCCUGAGGGGUGCACCGCCGACCGACCUUGAUCUUCUGAGAAGGGUUCGAGUGUGAGCAUACCJGUCGGGACCC#AʍAGAUGGUGAʍCPAUGCCUGAGCGGGGCGAAGCCAGAGGAAACUCUGGUGGAGGCCCGCAGCGAUACUGʍCGUGCAAAPCGUUCGUCUGACUUGGGUAUAG#GGCGAAAGACUAAUCGAACCGUCUAGUʍGCUGGUUCCCUCCGAAGUUUCCCPCAGGAUAGCUGGAGCUCGCGUGCGAGUUCUAPCGGGUAAAGCCAAPGAUUAGAGGCCUCGGGGGCGCAACGCCCUCGACCUAUPCUCAAACUUPAAAJAGGUAGGACGGCGCGGCUGCUUUGUUGAGCCGCGCCACGGAAUCAAGAGCUCCAAGUGGGCCAUPPPUGGUAAGCʍGAACUGGCGAUGCGGGAUGAACCGGAAGCCGGGUUACGGUGCCAAACUGCGCGCUAACCUAGAUCCCACAAAGGGUGUUGGUCGAPUAAGACAGCAGGACGGUGGUCAUGGAAGUCGAAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCCGAAAAUGGAUGGCGCUUAAGCGCGCGACCUACACCCGGCCGUCGGGGCAAGUGCCAGGCCCCGAUGʍGUAGGAGGGCGCGGCGGUCGCUGCAAAACCUUGGGCGCGAGCCUGGGCGGAGCGGCCGUCGGUGCAGAUBUUGGUGGUAGUʍ#CAAAUAUUCAAAPGAGAABUPUGAAGGCCGAAGAGGGGAAAGGUUCCAUGUGAACGGCACUUGCACAUGGGUUAGJCGAUCCUAAGGGUCGGGGGAACCCCGACAGAUAGCGCGUUUCGCGCGUACUCCGAAAGGGAAUCGGGUUAAAAUUCCUGAACCGGGACGUGGCGGUUGACGGCAACGUUAGGAAGUCCGGAGACGUCGGCGGGAGCCUCGGGAAGAGUUAUCUUUUCUGUUUAACAGCCUGCCCACCCUGGAAUCGGCUCAGCCGGAGGUAGGGUCCAGCGGCUGGAAGAGCACCGCACGUCGCGUGGUGUCCGGUGCGCUCCCGGCGGCCCUUGAAAAUCCGGAGGACCGAAUGCCGUCCACGCCCGGUCGUACUCAUAABCGBAUCA#GUCUBCAAGGUGAACAGCCUCUGGUCGAUGGAACAAJGUAGGCAAGGGAAGPCGGCAAAAUGGAUCCGUAACUUCGGGAAAAGGAUUGGCUCUGAGGGCUGGGCACGGGGGUCCCAGUCCCGAACCCGUCGGCUGUCGGUGGACUGCUCGAGCUGCUCCCGCGGCGAGAGCGGGUCGCCGCGUGCCGGCCGGGGGACGGACUGGGAACGGUUCCUUCGGGGGCCUUCCCCGGGCGUCGAACAGCCAACUCAGAACUGGJACGGACAAG##GʍAUCCGACPGPUUAAUUAAAACAAAGCAUUGCGAUGGUCCCAACGGAUGUUUACGCAAUGUGAUUPCUGCCBAGUGCUCUGAAUGPCAAAGUGAʍGAAAPUCAACCAAGC#CGGGUAAACGGCGGGAGPAʍCPAPGACPCPCUUAAGGUAGC?AAʍUGCCUC#UCAUBUAAUUAGUGACGCGCAUGAAPGGAPUAʍCGAGʍUUCCCACUGUBCCUGUCUACJAPCCAGCGAAACCACAGBCAAGGGAACGGGCUUGGCAGAAUCA#CGG#GAAAGAAGACCCU#JUGAGCPUGACJCUAGUCCGACPUUGUGAAAUGACUUGAGAGGUGUAGUAUAAGUGGGAGCCGAAAGGCGAAAGUGAAAUACCACUACUUUUAACGUUAUUUUACUUAPUCCGUGAAUCGGAAGCGGGGCACUGCCCCUCUUUUUGGACCCAAGGCUCGCUUCGCGGGCCGAUCCGGGCGGAAGACAUUGUCAGGUGGGGAGUUPGGCUG#GGCGGCACAUCUGUUAAAAGʍUAACGCAGGJ#UCCUAAGAUGAGCUCAACGAGAACAGAAAUBUCGUGUGGAACAGAAGGGUAAAAGCUCGUPUGAUJCUGAUUUCCAGJACGAAJACGAACCGPGAAAGCGUGGCCUAACGAUCCUUUAGACCUUCGGAAUUCGAAGCUA#A#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCPUGUGGCAGCBAAGCGUPCAUAGCGACGPUGCUUUUUGAPCCUU?GAUGUCGGBPCUJCCUAUCAUUGPGAAGCAGAAUUCACCAʍGUGUU#GAUJ#PUCACCCACCAAUAGGGAACGPGʍGBUGGGδUPAGABCGUCGUGAGACAGGUPAGUUUUACCCUACUGAPGACAGUGUCGCAAUAGUAAUUCAACCUAGUACGAGAGGAACCGUUGAUUCACACAAUUGGCCAUCGCGCUUGGUUGAAAAGCCAGUGGCGCGAAGCUACCGUGUGCUGGAUUAUGACPGAACGCCUCUAAGUCAGAAUCCGGGCUAGAAGCGACGCAUGCGCCCGCCGUCCGCUUGCCGACCCGCAGUAGGGGCCUUUGGCCCCCAAGGGCACGUGUCGUUGGCUAAGUCGCCGCGACGGAAGCGUCGCGGUGACCGCCUUGAAGUACAAUUUCCAUCGAGCGGCGGGUAGAAUCCUUUGCAGACGACJUAAAUACGCGACGGGGUAUUGUAAGUGGCAGAGUGGCCUUGCUGCCACGAUCCACUGAGAUUCAGCCCUUUGUCGCUCCGAUUCGU
1229 7QIZ_46  rRNA  SSU  18S  Solanum lycopersicum  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGUCAUʍUGCUUGUCUBAAAGAUUAAGCCAUGCAUGUGUAAGUAUGAACAAAUUCAGACUGUGAAACUGCGAAUGGCUCAUPAAAUCAGPUAUAGUUUGPUJGAUGGUAUCUACUACUBGGAUAACCGUAGUAAUUCUAGʍGCUAAUACGUGCAACAAACCCCGACUUCUGGAAGGGAUGCAUUUAPUAGAUAAAAGGUCGACGCGGGCUCUGCCCGUUGCUGC#AUGAUUCAPGAPAACUCGACGGAUCGCACGGCCAUCGUGCCGGCGACGCAUCAPUCAAAPUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUGGUGACGGGPGACGGAGAAUUAGGGUUCGAPUCCGGAGA#GGAGCCUGAGAAACGGCUACCACAUBCAAGGAAGGCAGCAGGCGCGCʍAAUUACCCAAPCCUGACACGGGGAGGUʍGUGABAAUAAAUAACAAUACCGGGCUCUAUGAGUCUGGUAAUUGGAAUGAGUACAAUCUAAAUCCCUUAACGAGGʍUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGJAAPUCCAGCUCCAAUA#CGUAZAPUUAAGUUGJUGCAGUUʍAAAAGCUCGUAGPUGGACUUUGGGAUGGGCCGGCCGGUCCGCCCUAGGUGUGCACCGGUCGUCUCGUCCCUUCUGUCGGCGAUGCGCUCCUGGCCUUAAUUGGCCGGGUCGUGCCUCCGGCGCUGUUACUPUGAAGAAAPUAGAGUGCUCAAAGCAAGCCUACGCUCUGUAUACAUUʍGCAUGGGAPAACAUUAUAGGAUUUCGGUCCUAUUACGUUGGCCUUCGGGAUCGGAGUAAUGAUUAACAGGGACAGUCGGGGGCAUUCGUAUUUCAUAGUCAGAGGUGAAAUPCUUGGAUUUAUGAAAGACGAACAACUGCGAAAGCAUPPGCCAAGGAUGUUUUCAUUAAUCAAGAʍCGAAAGUUGGGGGCUCGAAGACGAPCAGAUACCGJCCUAGUCUCAACCAPAAACGAUGCCGACCAGGGAUCGGCGGAUGUUGCUUUUAGGACUCCGCCGGCACCUUAUGAGAAAUCAAAGUUUUUGGGPUCCGGGGGGAGUAPGGUCGCAAGGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCPGCGGCPUAAUUPGACNCAACACGGGGAAACUPACCAGGPBCAGACAUAGUAAGGAUUGACAGACUGAGAGCUCUUUCUUGAUUCJAJGGGUGGJG#UGCAUGGCMGUUCUUAGUPGGUGGAGCGAPUUGPCUGGPUAAUUCCGUUAACGAʍCGAGACCUCAGCCUGCUAACUAGCUAUGCGGAGGUAUCCCUUCGCGGCCAGCUJCUUAGAGGGACUACGGCCUUUUAGGCCGCGGAAGUUUGAGGCAAUAACA#GUCUGUGAUGCCCJUAGAUGUUCUGGGCCGCACGCGCGCUACACUGAUGUAPUCAACGAGCUUAUAGCCUUGGCCGACAGGCCCGGGUAAUCUUUGAAAUUPCAPCGUGAUGGGGAUAGAUCAUUGCAAUUGUPGGUCUUCAACGʍG7AAUUCCUAGUAAGCGCGAGUCAUCAGCUCGCGUUGACUACGUCCCUGCCCUUPGUACACACCGBCCGUCGCUCCUACCGAUUGAAUGAUCCGGUGAAAUGUUCGGAUCGCGGCGACGUGGGCGGUUCGCUGCCCGCGACGUCGCGAGAAGUCCAUUGAACCUUAUCAUUUAGAGGAʍGGAGAAGUCGUAЖCAAGGUUUCMGUAGGUGζζCCUGCGGAAGGAUCAUUG
1230 7QIZ_45  rRNA  LSU-S  5.8S  Solanum lycopersicum  Cytoplasm  ACAAACGACUCUCGGCAACGGAPAUCUCGGCUCUCGCAUCGAUGAAGʍACGUAGCGAAAUGCGAUACUUGGUGUGAAUP#CAGAAUCCCGUGAACCAUCGAGUCUUUGAACGCAAGUUGCGCCCGAAGCCAUUUGGCCGAGGGCACGUCUGCCUGGGCGUCACGC
1231 7PZY_1  rRNA  LSU-L  25S  Candida albicans  Cytoplasm  UGACCUCAAAUCAGGUAGGACUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACCAACAGGGAUUGCCUCAGUAGCGGCGAGUGAAGCGGCAAAAGCUCAAAUUUGAAAUCUGGCGUCUUUGGCGUCCGAGUUGUAAUUUGAAGAAGGUAUCUUUGGGCCCGGCUCUUGUCUAUGUUCCUUGGAACAGGACGUCACAGAGGGUGAGAAUCCCGUGCGAUGAGAUGACCCGGGUCUGUGUAAAGUUCCUUCGACGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGGGUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUGAUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGGGAAGGGCUUGAGAUCAGACUUGGUAUUUUGCAUGCUGCUCUCUCGGGGGCGGCCGCUGCGGUUUACCGGGCCAGCAUCGGUUUGGAGCGGCAGGAUAAUGGCGGAGGAAUGUGGCACGGCUUCUGCUGUGUGUUAUAGCCUCUGACGAUACUGCCAGCCUAGACCGAGGACUGCGGUUUUUACCUAGGAUGUUGGCAUAAUGAUCUUAAGUCGCCCGUCUUGAAACACGGACCAAGGAGUCUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCGUACGCGUAAUGAAAGUGAACGAAGGUGGGGGCCCAUUAGGGUGCACCAUCGACCGAUCCUGAUGUGUUCGGAUGGAUUUGAGUAAGAGCAUAGCUGUUGGGACCCGAAAGAUGGUGAACUAUGCCUGAAUAGGGUGAAGCCAGAGGAAACUCUGGUGGAGGCUCGUAGCGGUUCUGACGUGCAAAUCGAUCGUCGAAUUUGGGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUUUCCCUCAGGAUAGCAGAAGCUCGUAUCAGUUUUAUGAGGUAAAGCGAAUGAUUAGAAGUCUUGGGGUUGAAAUGACCUUAACUUAUUCUCAAACUUUAAAUAUGUAAGAAGUCCUUGUUGCUUAAUUGAACGUGGACAAUUGAAUGAAGAGCUUUUAGUGGGCCAUUUUUGGUAAGCAGAACUGGCGAUGCGGGAUGAACCGAACGUGAAGUUAAAGUGCCGGAAUGCACGCUCAUCAGACACCACAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGCGUGCUACUUAUACUUCACCGUGAUUGCUGUUUUGACGCUUUCACGAGUAGGCAGGCGUGGAGGUCAGUGACGAAGCCUUUGCUGUAAAGCUGGGUCGAACGGCCUCUAGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCAUGUCAACAGCAGUUGGACAUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAACGUGCUUGAUUUUUCAGGCCAACCAUCGAAAGGGAAUCCGGUUAAAAUUCCGGAACUUGGAUAUGGAUUCUUCACGGCAACGUAACUGAAUGUGGAGACGUCGGCGUGAGCCCUGGGAGGAGUUAUCUUUUCUUCUUAACAGCUUAUCACCCUGGAAUUGGUUUAUCCGGAGAUGGGGUCUUAUGGCUGGAAGAGCGCGGUAAUUUUGCCGCGUCCGGUGCGCUUACGACGGUCCUUGAAAAUCCACAGGAAGGAAUAGUUUUCAUGCCAAGUCGUACUCAUAACCGCAGCAGGUCUCCAAGGUUAACAGCCUCUAGUUGAUAGAAUAAUGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGAUCGGGUGUCUUGGGCCUUGUGUAGACGCGGCGGUGACUGUUGGCGGGCUGUUUUACGACGGACUGCUGGUGGAUGCUGCUGUAGACACGCUUGGUAGGUCUUUAUGGCCGUCCGGGGCACGUUUAACGAUCAACUUAGAACUGGUACGGACAAGGGGAAUCUGACUGUCUAAUUAAAACAUAGCAUUGUGAUGGUCAGAAAGUGAUGUUGACACAAUGUGAUUUCUGCCCAGUGCUCUGAAUGUCAAAGUGAAGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUAACUAUGACUCUCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGAUUAACGAGAUUCCCACUGUCCCUAUCUACUAUCUAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCUUGACUCUAGUUUGACAUUGUGAAAAGACAUGGAGGGUGUAGAAUAAGUGGGAGCUUCGGCGCCGGUGAAAUACCACUACCUCUAUAGUUUUUUUACUUAUUCAAUGAAGCGGAGCUGGAGGUCAAACUCCACGUUCUAGCAUUAAGCCCUCUGGGCGAUCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUGGGGCGGCACAUCUGUUAAACGAUAACGCAGGUGUCCUAAGGGGGACUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGGUAAAAGUCCCCUUGAUUUUGAUUUUCAGUGUGAAUACAAACCAUGAAAGUGUGGCCUAUCGAUCCUUUAGUCCCUCGGAAUUUGAGGCUAGA#GUGCCAGAAAAGUUACCACAGGGAUAACUGGCUUGUGGCAGUBAAGCGUUCAUAGCGACAUUGCUUUUUGAUUCUUCGAUGUCGGCUCUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAUUGUUCACCCACUAAUAGGGAACGUGAGCUGGGUUUAGACCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGAAUGUUAUCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACCGUUCAUUCAGAUAAUUGGUUUUUGCGGCUGUCUGAUCAGGCAACGCCGCGAAGCUACCAUCUGCUGGAUUAUGGCUGAACGCCUCUAAGUCAGAAUCCAUGCUAGAACGCGAUGAUUUUUGCCCUGCACAUUUUAGAUGGAUACGAAUAAGACUUUUUAGUCGCUGGACCAUAGCAGGCUGGCAACGGUGCGCUUAGCGGAAAGGCUUUGUGCGCUUGCCGGCGGAUAGCAAUGUCAACAUGCGCGGGGAUAAAUCCUUUGCAUACGACUUAGAUGUACAACGGAGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUACGAUCUGCUGAGAUUAAGCUCUUGUUGUCUGAUUUGU
1232 7K00_22  rRNA  LSU  23S  Escherichia coli  Prokaryotic Cytosol  GGUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCAUCCCGACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCULCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGLGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCUU
1233 7K00_1  rRNA  SSU  16S  Escherichia coli  Prokaryotic Cytosol  AAAUUGAAGAGUUUGAUCAUGGCUCAGAUUGAACGCUGGCGGCAGGCCUAACACAUGCAAGUCGAACGGUAACAGGAAGAAGCUUGCUUCUUUGCUGACGAGUGGCGGACGGGUGAGUAAUGUCUGGGAAACUGCCUGAUGGAGGGGGAUAACUACUGGAAACGGUAGCUAAUACCGCAUAACGUCGCAAGACCAAAGAGGGGGACCUUCGGGCCUCUUGCCAUCGGAUGUGCCCAGAUGGGAUUAGCUAGUAGGUGGGGUAACGGCUCACCUAGGCGACGAUCCCUAGCUGGUCUGAGAGGAUGACCAGCCACACUGGAACUGAGACACGGUCCAGACUCCUACGGGAGGCAGCAGUGGGGAAUAUUGCACAAUGGGCGCAAGCCUGAUGCAGCCAUGCCGCGUGUAUGAAGAAGGCCUUCGGGUUGUAAAGUACUUUCAGCGGGGAGGAAGGGAGUAAAGUUAAUACCUUUGCUCAUUGACGUUACCCGCAGAAGAAGCACCGGCUAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGUGCAAGCGUUAAUCGGAAUUACUGGGCGUAAAGCGCACGCAGGCGGUUUGUUAAGUCAGAUGUGAAAUCCCCGGGCUCAACCUGGGAACUGCAUCUGAUACUGGCAAGCUUGAGUCUCGUAGAGGGGGGUAGAAUUCCAGGUGUAGCGGUGAAAUGCGUAGAGAUCUGGAGGAAUACCGGUGGCGAAGGCGGCCCCCUGGACGAAGACUGACGCUCAGGUGCGAAAGCGUGGGGAGCAAACAGGAUUAGAUACCCUGGUAGUCCACGCCGUAAACGAUGUCGACUUGGAGGUUGUGCCCUUGAGGCGUGGCUUCCGGAGCUAACGCGUUAAGUCGACCGCCUGGGGAGUACGGCCGCAAGGUUAAAACUCAAAUGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAUL?AACGCGAAGAACCUUACCUGGUCUUGACAUCCACGGAAGUUUUCAGAGAUGAGAAUGUGCCUUCGGGAACCGUGAGACAGGUGCUGCAUGGCUGUCGUCAGCUCGUGUUGUGAAAUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCUUAUCCUUUGUUGCCAGCGGUCCGGCCGGGAACUCAAAGGAGACUGCCAGUGAUAAACUGGAGGAAGGUGGGGAUGACGUCAAGUCAUCAUGLCCCUUACGACCAGGGCUACACACGUGCUACAAUGGCGCAUACAAAGAGAAGCGACCUCGCGAGAGCAAGCGGACCUCAUAAAGUGCGUCGUAGUCCGGAUUGGAGUCUGCAACUCGACUCCAUGAAGUCGGAAUCGCUAGUAAUCGUGGAUCAGAAUGCCACGGUGAAUACGUUCCCGGGCCUUGUACACACCGλCCGU?ACACCAUGGGAGUGGGUUGCAAAAGAAGUAGGUAGCUUAACCUUCGGGAGGGCGCUUACCACUUUGUGAUUCAUGACUGGGGUGAAGUCGδAACAAGGUAACCGUAGGLGζζCCUGCGGUUGGAUCACCUCCUUA
1234 RIBOMAP_EC23S  rRNA  LSU  23S  Escherichia coli  Prokaryotic Cytosol  GGUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU7PTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCAUCCCGACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCULCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACƑAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGLGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCACBUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCUU
1235 RIBOMAP_EC16S  rRNA  SSU  16S  Escherichia coli  Prokaryotic Cytosol  AAAUUGAAGAGUUUGAUCAUGGCUCAGAUUGAACGCUGGCGGCAGGCCUAACACAUGCAAGUCGAACGGUAACAGGAAGAAGCUUGCUUCUUUGCUGACGAGUGGCGGACGGGUGAGUAAUGUCUGGGAAACUGCCUGAUGGAGGGGGAUAACUACUGGAAACGGUAGCUAAUACCGCAUAACGUCGCAAGACCAAAGAGGGGGACCUUCGGGCCUCUUGCCAUCGGAUGUGCCCAGAUGGGAUUAGCUAGUAGGUGGGGUAACGGCUCACCUAGGCGACGAUCCCUAGCUGGUCUGAGAGGAUGACCAGCCACACUGGAACUGAGACACGGUCCAGACUCCUACGGGAGGCAGCAGUGGGGAAUAUUGCACAAUGGGCGCAAGCCUGAUGCAGCCAUGCCGCGUGUAUGAAGAAGGCCUUCGGGUUGUAAAGUACUUUCAGCGGGGAGGAAGGGAGUAAAGUUAAUACCUUUGCUCAUUGACGUUACCCGCAGAAGAAGCACCGGCUAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGUGCAAGCGUUAAUCGGAAUUACUGGGCGUAAAGCGCACGCAGGCGGUUUGUUAAGUCAGAUGUGAAAUCCCCGGGCUCAACCUGGGAACUGCAUCUGAUACUGGCAAGCUUGAGUCUCGUAGAGGGGGGUAGAAUUCCAGGUGUAGCGGUGAAAUGCGUAGAGAUCUGGAGGAAUACCGGUGGCGAAGGCGGCCCCCUGGACGAAGACUGACGCUCAGGUGCGAAAGCGUGGGGAGCAAACAGGAUUAGAUACCCUGGUAGUCCACGCCGUAAACGAUGUCGACUUGGAGGUUGUGCCCUUGAGGCGUGGCUUCCGGAGCUAACGCGUUAAGUCGACCGCCUGGGGAGUACGGCCGCAAGGUUAAAACUCAAAUGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAUL?AACGCGAAGAACCUUACCUGGUCUUGACAUCCACGGAAGUUUUCAGAGAUGAGAAUGUGCCUUCGGGAACCGUGAGACAGGUGCUGCAUGGCUGUCGUCAGCUCGUGUUGUGAAAUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCUUAUCCUUUGUUGCCAGCGGUCCGGCCGGGAACUCAAAGGAGACUGCCAGUGAUAAACUGGAGGAAGGUGGGGAUGACGUCAAGUCAUCAUGLCCCUUACGACCAGGGCUACACACGUGCUACAAUGGCGCAUACAAAGAGAAGCGACCUCGCGAGAGCAAGCGGACCUCAUAAAGUGCGUCGUAGUCCGGAUUGGAGUCUGCAACUCGACUCCAUGAAGUCGGAAUCGCUAGUAAUCGUGGAUCAGAAUGCCACGGUGAAUACGUUCCCGGGCCUUGUACACACCGλCCGU?ACACCAUGGGAGUGGGUUGCAAAAGAAGUAGGUAGCUUAACCUUCGGGAGGGCGCUUACCACUUUGUGAUUCAUGACUGGGGUGAAGUCGδAACAAGGUAACCGUAGGLGζζCCUGCGGUUGGAUCACCUCCUUA
1236 RIBOMAP_TT16S  rRNA  SSU  16S  Thermus thermophilus  prokaryotic cytosol  UUUGUUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCGCGAGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGLCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCACCUCCPPUCU
1237 RIBOMAP_TT23S  rRNA  LSU  23S  Thermus thermophilus  Prokaryotic Cytosol  GGUCAAGAUGGUAAGGGCCCACGGUGGAUGCCUCGGCACCCGAGCCGAUGAAGGACGUGGCUACCUGCGAUAAGCCAGGGGGAGCCGGUAGCGGGCGUGGAUCCCUGGAUGUCCGAAUGGGGGAACCCGGCCGGCGGGAACGCCGGUCACCGCGCUUUUGCGCGGGGGGAACCUGGGGAACUGAAACAUCUCAGUACCCAGAGGAGAGGAAAGAGAAAUCGACUCCCUGAGUAGCGGCGAGCGAAAGGGGACCAGCCUAAACCGUCCGGCUUGUCCGGGCGGGGUCGUGGGGCCCUCGGACACCGAAUCCCCAGCCUAGCCGAAGCUGUUGGGAAGCAGCGCCAGAGAGGGUGAAAGCCCCGUAGGCGAAAGGUGGGGGGAUAGGUGAGGGUACCCGAGUACCCCGUGGUUCGUGGAGCCAUGGGGGAAUCUGGGCGGACCACCGCCUAAGGCUAAGUACUCCGGGUGACCGAUAGCGCACCAGUACCGUGAGGGAAAGGUGAAAAGAACCCCGGGAGGGGAGUGAAAUAGAGCCUGAAACCGUGGGCUUACAAGCAGUCACGGCCCCGCAAGGGGUUGUGGCGUGCCUAUUGAAGCAUGAGCCGGCGACUCACGGUCGUGGGCGAGCUUAAGCCGUUGAGGCGGAGGCGUAGGGAAACCGAGUCCGAACAGGGCGCAAGCGGGCCGCACGCGGCCCGCAAAGUCCGCGGCCGUGGACCCGAAACCGGGCGAGCUAGCCCUGGCCAGGGUGAAGCUGGGGUGAGACCCAGUGGAGGCCCGAACCGGUGGGGGAUGCAAACCCCUCGGAUGAGCUGGGGCUAGGAGUGAAAAGCUAACCGAGCCCGGAGAUAGCUGGUUCUCCCCGAAAUGACUUUAGGGUCAGCCUCAGGCGCUGACUGGGGCCUGUAGAGCACUGAUAGGGCUAGGGGGCCCACCAGCCUACCAAACCCUGUCAAACUCCGAAGGGUCCCAGGUGGAGCCUGGGAGUGAGGGCGCGAGCGAUAACGUCCGCGUCCGAGCGCGGGAACAACCGAGACCGCCAGCUAAGGCCCCCAAGUCUGGGCUAAGUGGUAAAGGAUGUGGCGCCGCGAAGACAGCCAGGAGGUUGGCUUAGAAGCAGCCAUCCUUUAAAGAGUGCGUAAUAGCUCACUGGUCGAGUGGCGCCGCGCCGAAAAUGAUCGGGGCUUAAGCCCAGCGCCGAAGCUGCGGGUCUGGGGGAUGACCCCAGGCGGUAGGGGAGCGUUCCCGAUGCCGAUGAAGGCCGACCCGCGAGGCGGCUGGAGGUAAGGGAAGUGCGAAUGCCGGCAUGAGUAACGAUAAAGAGGGUGAGAAUCCCUCUCGCCGUAAGCCCAAGGGUUCCUACGCAAUGGUCGUCAGCGUAGGGUUAGGCGGGACCUAAGGUGAAGCCGAAAGGCGUAGCCGAAGGGCAGCCGGUUAAUAUUCCGGCCCUUCCCGCAGGUGCGAUGGGGGGACGCUCUAGGCUAGGGGGACCGGAGCCAUGGACGAGCCCGGCCAGAAGCGCAGGGUGGGAGGUAGGCAAAUCCGCCUCCCAACAAGCUCUGCGUGGUGGGGAAGCCCGUACGGGUGACAACCCCCCGAAGCCAGGGAGCCAAGAAAAGCCUCUAAGCACAACCUGCGGGAACCCGUACCGCAAACCGACACAGGUGGGCGGGUGCAAGAGCACUCAGGCGCGCGGGAGAACCCUCGCCAAGGAACUCUGCAAGUUGGCCCCGUAACUUCGGGAGAAGGGGUGCUCCCUGGGGUGAUGAGCCCCGGGGAGCCGCAGUGAACAGGCUCUGGCGACUGUUUACCAAAAACACAGCUCUCUGCGAACUCGUAAGAGGAGGUAUAGGGAGCGACGCUUGCCCGGUGCCGGAAGGUCAAGGGGAGGGGUGCAAGCCCCGAACCGAAGCCCCGGUGAACGGCGGCCGPAACNAPAABGGUCCUAAGGUAGCGAAANUCѴUUGUCGGGUAAGUUCCGACѴUGCACGAAAAGCGUAACGACCGGAGCGCUGUCUCGGCGAGGGACCCGGUGAAAUUGAACUGGCCGUGAAGAUGCGGCCUACCCGUGGCAGGACGAAAAGACCCCGUGGAGCUUUACUGCAGCCUGGUGUUGGCUCUUGGUCGCGCCUGCGUAGGAUAGGUGGGAGCCUGUGAACCCCCGCCUCCGGGUGGGGGGGAGGCGCCGGUGAAAUACCACCCUGGCGCGGCUGGGGGCCUAACCCUCGGAUGGGGGGACAGCGCUUGGCGGGCAGUUUGACUG#GGCGGUCGCCUCCUAAAAGGUAACGGAGGCGCCCAAAGGUCCCCUCAGGCGGGACGGAAAUCCGCCGGAGAGCGCAAGGGUAGAAGGGGGCCUGACUGCGAGGCCUGCAAGCCGAGCAGGGGCGAAAGCCGGGCCUAGUGAACCGGUGGUCCCGUGUGGAAGGGCCAUCGAUCAACGGAUAAAAGUUACCCCGGGGAUAACAGGCUGAUCUCCCCCGAGCGUCCACAGCGGCGGGGAGGUUUGGCACCUCGHUGUCGGCUCGUCGCAUCCUGGGGCUGAAGAAGGUCCCAAGGGUUGGGCJGUUCGCCCAUUAAAGCGGCACGCGAGCUGGGUUCAGAACGUCGUGAGACAGUUCGGUCUCUAPCCGCCACGGGCGCAGGAGGCUUGAGGGGGGCUCUUCCUAGUACGAGAGGACCGGAAGGGACGCACCUCUGGUUUCCCAGCUGUCCCUCCAGGGGCAUAAGCUGGGUAGCCAUGUGCGGAAGGGAUAACCGCUGAAAGCAUCUAAGCGGGAAGCCCGCCCCAAGAUGAGGCCUCCCACGGCGUCAAGCCGGUAAGGACCCGGGAAGACCACCCGGUGGAUGGGCCGGGGGUGUAAGCGCCGCGAGGCGUUGAGCCGACCGGUCCCAAUCGUCCGAGGUCUUGACCCC
1238 RIBOMAP_HC23S  rRNA  LSU  23S  Haloarcula marismortui  Prokaryotic Cytosol  AACCCCGAGAACUGAAACAUCUCAGUAUCGGGAGGAACAGAAAACGCAAUGUGAUGUCGUUAGUAACCGCGAGUGAACGCGAUACAGCCCAAACCGAAGCCCUCACGGGCAAUGUGGUGUCAGGGCUACCUCUCAUCAGCCGACCGUCUCGACGAAGUCUCUUGGAACAGAGCGUGAUACAGGGUGACAACCCCGUACUCGAGACCAGUACGACGUGCGGUAGUGCCAGAGUAGCGGGGGUUGGAUAUCCCUCGCGAAUAACGCAGGCAUCGACUGCGAAGGCUAAACACAACCUGAGACCGAUAGUGAACAAGUAGUGUGAACGAACGCUGCAAAGUACCCUCAGAAGGGAGGCGAAAUAGAGCAUGAAAUCAGUUGGCGAUCGAGCGACAGGGCAUACAAGGUCCCUCGACGAAUGACCGACGCGCGAGCGUCCAGUAAGACUCACGGGAAGCCGAUGUUCUGUCGUACGUUUUGѢAAAACGAGCCAGGGAGUGUGUCUGCAUGGCAAGUCUAACCGGAGUAUCCGGGGAGGCACAGGGAAACCGACAUGGCCGCAGGGCUUUGCCCGAGGGCCGCCGUCUUCAAGGGCGGGGAGCCAUGUGGACACGACCCGAAUCCGGACGAUCUACGCAUGGACAAGAUGAAGCGUGCCGAAAGGCACGUGGAAGUCUGUUAGAGUUGGUGUCCUACAAUACCCUCUCGUGAUCUAUGUGUAGGGGUGAAAGGCCCAUCGAGUCCGGCAACAGCUGGUUCCAAUCGAAACAUGUCGAAGCAUGACCUCCGCCGAGGUAGUCUGUGAGGUAGAGCGACCGAUUGGUGUGUCCGCCUCCGAGAGGAGUCGGCACACCUGUCAAACUCCAAACUUACAGACGCCGUUUGACGCGGGGAUUCCGGUGCGCGGGGUAAGCCUGUGUACCAGGAGGGGAACAACCCAGAGAUAGGUUAAGGUCCCCAAGUGUGGAUUAAGUGUAAUCCUCUGAAGGUGGUCUCGAGCCCUAGACAGCCGGGAGGUGAGCUUAGAAGCAGCUACCCUCUAAGAAAAGCGUAACAGCUUACCGGCCGAGGUUUGAGGCGCCCAAAAUGAUCGGGACUCAAAUCCACCACCGAGACCUGUCCGUACCACUCAUACUGGUAAUCGAGUAGAUUGGCGCUCUAAUUGGAUGGAAGUAGGGGUGAAAACUCCUAUGGACCGAUUAGUGACGAAAAUCCUGGCCAUAGUAGCAGCGAUAGUCGGGUGAGAACCCCGACGGCCUAAUGGAUAAGGGUUCCUCAGCACUGCUGAUCAGCUGAGGGUUAGCCGGUCCUAAGUCAUACCGCAACUCGACUAUGACGAAAUGGGAAACGGGUUAAUAUUCCCGUGCCACUAUGCAGUGAAAGUUGACGCCCUGGGGUCGAUCACGCUGGGCAUUCGCCCAGUCGAACCGUCCAACUCCGUGGAAGCCGUAAUGGCAGGAAGCGGACGAACGGCGGCAUAGGGAAACGUGAUUCAACCUGGGGCCCAUGAAAAGACGAGCAUAGUGUCCGUACCGAGAACCGACACAGGUGUCCAUGGCGGCGAAAGCCAAGGCCUGUCGGGAGCAACCAACGUUAGGGAAUUCGGCAAGUUAGUCCCGUACCUUCGGAAGAAGGGAUGCCUGCUCCGGAACGGAGCAGGUCGCAGUGACUCGGAAGCUCGGACUGUCUAGUAACAACAUAGGUGACCGCAAAUCCGCAAGGACUCGUACGGUCACUGAAUCCUGCCCAGUGCAGGUAUCUGAACACCUCGUACAAGAGGACGAAGGACCUGUCAACGGCGGG#GUAACPAPGACCCUCUUAAGGUAGCGUAGUACCUUGCCGCAUCAGUAGCGGCUUGCAUGAAUGGAUUAACCAGAGCUUCACUGUCCCAACGUUGGGCCCGGUGAACUGUACAUUCCAGUGCGGAGUCUGGAGACACCCAGGGGGAAGCGAAGACCCUAUGGAGCUUUACUGCAGGCUGUCGCUGAGACGUGGUCGCCGAUGUGCAGCAUAGGUAGGAGACACUACACAGGUACCCGCGCUAGCGGGCCACCGAGUCAACAGUGAAAUACUACCCGUCGGUGACUGCGACUCUCACUCCGGGAGGAGGACACCGAUAGCCGGGCAGUUUGACUGGGGCGGUACGCGCUCGAAAAGAUAUCGAGCGCGCCCUAUGGCUAUCUCAGCCGGGACAGAGACCCGGCGAAGAGUGCAAGAGCAAAAGAUAGCUUGACAGUGUUCUUCCCAACGAGGAACGCUGACGCGAAAGCGUGGUCUAGCGAACCAAUUAGCCUGCUUGAUGCGGGCAAUUGAUGACAGAAAAGCUACCCUAGGGAUAACAGAGUCGUCACUCGCAAGAGCACAUAUCGACCGAGUGGCUUGCUACCUCGAUGUCGGUUCCCUCCAUCCUGCCCGUGCAGAAGCGGGCAAGGGUGAGGUJ#UUCGCCUAUUAAAGGAGGUCGUGAGCUGGGδUPAGACCGUCGUGAGACAGGUCGGCUGCUAUCUACUGGGUGUGUAAUGGUGUCUGACAAGAACGACCGUAUAGUACGAGAGGAACUACGGUUGGUGGCCACUGGUGUACCGGUUGUUCGAGAGAGCACGUGCCGGGUAGCCACGCCACACGGGGUAAGAGCUGAACGCAUCUAAGCUCGAAACCCACUUGGAAAAGAGACACCGCCGAGGUCCCGCGUACAAGACGCGGUCGAUAGACUCGGGGUGUGCGCGUCGAGGUAACGAGACGUUAAGCCCACGAGCACUAACAGACCAAAGCCAUCA
1239 RIBOMAP_SC25S  rRNA  LSU-L  25S  Saccharomyces cerevisiae  Cytoplasm  GUUUGACCUCAAAUCAGGUAGGAGUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACCAACCGGGAUUGCCUUAGUAACGGCGAGUGAAGCGGCAAAAGCUCAAAUUUGAAAUCUGGUACCUUCGGUGCCCGAGUUGUAAUUUGGAGAGGGCAACUUUGGGGCCGUUCCUUGUCUAUGUUCCUUGGAACAGGACGUCAUAGAGGGUGAGAAUCCCGUGUGGCGAGGAGUGCGGUUCUUUGUAAAGUGCCUUCGAAGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGGGUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUGAUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGGGAAGGGCAUUUGAUCAGACAUGGUGUUUUGUGCCCUCUGCUCCUUGUGGGUAGGGGAAUCUCGCAUUUCACUGGGCCAGCAUCAGUUUUGGUGGCAGGAUAAAUCCAUAGGAAUGUAGCUUGCCUCGGUAAGUAUUAUAGCCUGUGGGAAUACUGCCAGCUGGGACUGAGGACUGCGACGUAAGUCAAGGAUGCUGGCAUAAUGGUUAUAUGCCGCCCGUCUUGѢAACʍBGGACCAAGGAGUBUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCAUACGCGUAAUGAAAGUGAACGUAGGUUGGGGCCUCGCAAGAGGUGCACAAUCGACCGAUCCUGAUGUCUUCGGAUGGAPUUGAGUAAGAGCAUAGCUGUUGGGACCC#AʍAGAUGGUGAʍCUAUGCCUGAAUAGGGUGAAGCCAGAGGAAACUCUGGUGGAGGCUCGUA#CGGUUCUGʍCGUGCAAAUCGAUCGUCGAAUJUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUUTCCCPCAGGAPAGCAGAAGCUCGUAUCAGUPUUAPGAGGUAAAGCGAAPGAUUAGAGGUUCCGGGGUCGAAAUGACCUUGACCUAUPCUCAAACUUPAAAPAUGUAAGAAGUCCUUGUUACUUAAUUGAACGUGGACAUUUGAAUGAAGAGCUUPUAGUGGGCCAUUUPUGGUAAGCʍGAACUGGCGAUGCGGGAUGAACCGAACGUAGAGUUAAGGUGCCGGAAUACACGCUCAUCAGACACCACAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGCGUGUUACCUAUACUCUACCGUCAGGGUUGAUAUGAUGCCCUGACGAGUAGGCAGGCGUGGAGGUCAGUGACGAAGCCUAGACCGUAAGGUCGGGUCGAACGGCCUCUAGUGCAGAUBUUGGUGGUAGUʍ#CAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCACGUCAACAGCAGUUGGACGUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAAAGGCCUGAUUUUAUGCAGGCCACCAUCGAAAGGGAAUCCGGUUAAGAUUCCGGAACCUGGAUAUGGAUUCUUCACGGUAACGUAACUGAAUGUGGAGACGUCGGCGCGAGCCCUGGGAGGAGUUAUCUUUUCUUCUUAACAGCUUAUCACCCCGGAAUUGGUUUAUCCGGAGAUGGGGUCUUAUGGCUGGAAGAGGCCAGCACCUUUGCUGGCUCCGGUGCGCUUGUGACGGCCCGUGAAAAUCCACAGGAAGGAAUAGUUUUCAUGCCAGGUCGUACUGAUAACCGCAGCAGGUCUCCAAGGUGAACAGCCUCUAGUUGAUAGAAUAAJGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGUCGGGUAGUGAGGGCCUUGGUCAGACGCAGCGGGCGUGCUUGUGGACUGCUUGGUGGGGCUUGCUCUGCUAGGCGGACUACUUGCGUGCCUUGUUGUAGACGGCCUUGGUAGGUCUCUUGUAGACCGUCGCUUGCUACAAUUAACGAUCAACUUAGAACUGGUACGGACAAGGGGAAUCPGACPGUCUAAUUѢAAACAUAGCAUUGCGAUGGUCAGAAAGUGAUGUUGACGCAAUGUGAUUPCUGCCBAGUGCUCUGAAUGUCAAAGUGAʍGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUAʍCPAPGACPCPCUUAAGGUAGC?AʍʍUGCCUC#UCAUCUAAUUAGUGACGCGCAUGAAPGGAUUAACGAGAUUCCCACUGUBCCPAUCUACJAPCPAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCPJGACJCUAGUUUGACAUUGUGAAGAGACAUAGAGGGUGUAGAAUAAGUGGGAGCUUCGGCGCCAGUGAAAUACCACUACCUUUAUAGUUUCUUUACUUAUUCAAUGAAGCGGAGCUGGAAUUCAUUUUCCACGUUCUAGCAUUCAAGGUCCCAUUCGGGGCUGAUCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUG#GGCGGCACAUCUGUδAAACGʍUAACGCAGAUGUCCUAAGGGGGGCUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGGUAAAAGCCCCCUUGAUUUUGAUUJUCAGJGUGAAPACAAACCAUGAAAGUGUGGCCUAUCGAUCCUUUAGUCCCUCGGAAUUUGAGGCUA#A#GUGCCAGAAAAGUUACCACAG#GAUAACUGGCPUGUGGCAGUCAAGCGUδCAUAGCGACAUUGCUUUUUGAPUCUUCGAUGUCGGCPCUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAUJ#PTCACCCACUAAUAGGGAACGPGʍGBUGGGUUUAGABCGUCGUGAGACAGGUPAGUUUUACCCUACUGAUGAAUGUUACCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACAGUUCAUUCGGAUAAUUGGUUUUUGCGGCUGUCUGAUCAGGCAUUGCCGCGAAGCUACCAUCCGCUGGAUUAUGGCUGAACGCCUCUAAGUCAGAAUCCAUGCUAGAACGCGGUGAUUUCUUUGCUCCACACAAUAUAGAUGGAUACGAAUAAGGCGUCCUUGUGGCGUCGCUGAACCAUAGCAGGCUAGCAACGGUGCACUUGGCGGAAAGGCCUUGGGUGCUUGCUGGCGAAUUGCAAUGUCAUUUUGCGUGGGGAUAAAUCAUUUGUAUACGACUUAGAUGUACAACGGGGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUACGAUCUGCUGAGAUUAAGCCUUUGUUGUCUGAUUUGU
1240 RIBOMAP_SC18S  rRNA  SSU  18S  Saccharomyces cerevisiae  Cytoplasm  UAUCUGGUUGAUCCUGCCAGUAGUCAUʍUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUAUAAGCAAUUUAUACAGUGAAACUGCGAAUGGCUCʍUUAAAPCAGUUAUCGUUUAPUUGAUAGUUCCUUUACUACAUGGUAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCUUAAAAUCUCGACCCUUUGGAAGAGAUGUAUUUAPUAGAUAAAAAAUCAAUGUCUUCGGACUCUUUGAUGAUUCAUAAUAACUUUUCGAAUCGCAUGGCCUUGUGCUGGCGAUGGUUCAUUCAAAPUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUUUCAACGGGUAACGGGGAAUAAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUBCAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCAAUCCUAAUUCAGGGAGGUAGPGACAAUAAAUAACGAUACAGGGCCCAUUCGGGUCUUGUAAUUGGAAUGAGUACAAUGUAAAUACCUUAACGAGGʍACAAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUAGCGUAUAUUAAAGUUGUUGCAGUUʍAAAAGCUCGUAGPUGAACUUUGGGCCCGGUUGGCCGGUCCGAUUUUUUCGUGUACUGGAUUUCCAACGGGGCCUUUCCUUCUGGCUAACCUUGAGUCCUUGUGGCUCUUGGCGAACCAGGACUUUUACUUUGAAAAAAUPAGAGUGPUCAAAGCAGGCGUAUUGCUCGAAUAUAUUʍGCAUGGAAUAAUAGAAUAGGACGUUUGGUUCUAUUUUGUUGGUUUCUAGGACCAUCGUAAUGAUUAAUAGGGACGGUCGGGGGCAUCAGUAUUCAAUUGUCAGAGGUGAAAUUCUUGGAUUUAUUGAAGACUAACUACUGCGAAAGCAUUUGCCAAGGACGUUUUCAUUAAUCAAGAʍCGAAAGUUAGGGGAUCGAAGAUGAPCAGAUACBGUCGUAGUCUUAACCAUAAACUAUGCCGACUAGGGAUCGGGUGGUGUUUUUUUAAUGACCCACUCGGCACCUUACGAGAAAUCAAAGUCUUUGGGUUCUGGGGGGAGUAUGGUCGCAA#GCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCPUAAUUPGACαCAACACGGGGAAACUCACCAGGUCCAGACACAAUAAGGAUUGACAGAUUGAGAGCUCUUUCUUGAUUUUGUGGGUGGJG#UGCAUGGCCGUUCUUAGUPGGUGGAGUGAUUUGUCUGCUUAAUUGCGAUAACGAACGAGACCUUAACCUACUAAAUAGUGGUGCUAGCAUUUGCUGGUUAUCCACUUCUUAGAGGGACUAUCGGUUUCAAGCCGAUGGAAGUUPGAGGCAAUAACA#GUCUGUGAUGCCCUUAGACGUUCUGGGCCGCACGCGCGCUACACUGACGGAGCCAGCGAGUCUAACCUUGGCCGAGAGGUCUUGGUAAUCUUGUGAAACUCCGUCGUGCUGGGGAUAGAGCAUUGUAAUUAUUGCUCUUCAAC#AG7AAUUCCUAGUAAGCGCAAGUCAUCAGCUUGCGUUGAUUACGUCCCUGCCCUUUGUACACACCGBCCGUCGCUAGUACCGAUUGAAUGGCUUAGUGAGGCCUCAGGAUCUGCUUAGAGAAGGGGGCAACUCCAUCUCAGAGCGGAGAAUUUGGACAAACUUGGUCAUUUAGAGGAACUAAAAGUCGUAACAAGGUUUCCGUAGGUGζζCCUGCGGAAGGAUCAUUA
1241 RIBOMAP_SC58S  rRNA  LSU-S  5.8S  Saccharomyces cerevisiae  Cytoplasm  AAACUUUCAACAACGGAUCUCUUGGUUCUCGCAUCGAUGAAGAACGCAGCGAAAUGCGAUACGUAAUGUGAAPUGCAGAAUUCCGUGAAUCAUCGAAUCUUUGAACGCACAUUGCGCCCCUUGGUAUUCCAGGGGGCAUGCCUGUUUGAGCGUCAUUU
1242 RIBOMAP_SC5S  rRNA  LSU  5S  Saccharomyces cerevisiae  Mitochondrion  GGUUGCGGCCAUAUCUACCAGAAAGCACCGUUUCCCGUCCGAUCAACUGPAGUUAAGCUGGUAAGAGCCUGACCGAGUAGUGUAGUGGGUGACCAUACGCGAAACUCAGGUGCUGCAAUCU
1243 RIBOMAP_AT25S  rRNA  LSU-L  25S  Arabidopsis thaliana  Cytoplasm  GCGACCCCAGGUCAGGCGGGAUUACCCGCUGAGUUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACUAACAAGGAUUCCCUUAGUAACGGCGAGCGAACCGGGAAGAGCCCAGCUUGAAAAUCGGACGUCUUCGGCGUUCGAAUUGUAGUCUGGAGAAGCGUCCUCAGCGACGGACCGGGCCUAAGUUCCCUGGAAAGGGGCGCCAGAGAGGGUGAGAGCCCGUCGUGCCCGGACCCUGUCGCACCACGAGGCGCUGUCUACGAGUCGGGUUGUUUGGGAAUGCAGCCCCAAUCGGGCGGUAAAUUCCGUCCAAGGCUAAAUACGGGCGAGAGACCGAUAGCGAACAAGUACCGCGAGGUAAAGAUGAAAAGGACUUUGAAAAGAGAGUCAAAGAGUGCUUGAAAUUGUCGGGAGGGAAGCGGAUGGGGGCCGGCGAUGCGUCCUGGUCGGAUGCGGAACGGAGCAAUCCGGUCCGCCGAUCGAUUCGGGGCGUGGACCGACGCGGAUUACGGUGGCGGCCUAAGCCCGGGCUUUUGAUACGCUUGUGGAGACGUCGCUGCCGUGAUCGUGGUCUGCAGCACGCGCCUAACGGCGUGCCUCGGCAUCAGCGUGCUCCGGGCGUCGGCCUGUGGGCUCCCCAUUCGACCCGUCUUGAAACʍCGGACCAAGGAGUBUGACAUGUGUGCGAGUCAACGGGUGAGUAAACCCGUAAGGCGCAAGGAAGCUGAUUGGCGGGAUCCUCGCGGGUGCACCGCCGACCGACCUUGAUCUUCUGAGAAGGGPJCGAGUGUGAGCAUGCCUGUCGGGACCC#AʍAGAUGGUGAʍCPAUGCCUGAGCGGGGUAAAGCCAGAGGAAACUCUGGUGGAAGCCCGCAGCGAUACUGʍCGUGCAAAUCGUUCGUCUGACUUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGAGCUCGGACGCGAGUUCUAPCGGGUAAAGCCAAPGAUUAGAGGCAUUGGGGGCGCAACGCCUCGACCUAUUCUCAAACUUUAAAUAGGUAGGACGUGUCGGCUGCUUUGUUGAGCCGUCACACGGAAUCGAGAGCUCCAAGUGGGCCAUUUUUGGUAAGCʍGAACUGGCGAUGCGGGAUGAACCGGAAGCCGGGUUACGGUGCCCAACUGCGCGCUAACCUAGAACCCACAAAGGGUGUUGGUCGAUUAAGACAGCAGGACGGUGGUCAUGGAAGUCGAAʍUCCGCUAAGGAGUGJGUAACAACUCACCUGCCGAAUCAACUAGCCCCGAAAAUGGAUGGCGCUUAAGCGCGACCUAUACCCGGCCGUCGGGGCAAGAGCCAGGCCUCGAUGAGUAGGAGGGCGCGGCGGUCGCUGCAAAACCUAGGGCGCGAGGCGCGGAGCGGCCGUCGGUGCAGAUBUUGGUGGUAGUʍ#CAAAUAUUCAAAUGAGAACUUUGAAGGCCGAAGAGGGGAAAGGUUCCAUGUGAACGGBACUUGCACAUGGGUUAGUCGAUCCUAAGAGUCGGGGGAAACCCGUCUGAUAGCGCUUAAGCGAACUUCGAAAGGGGAUCCGGUUAAAAUUCCGGAACCGGGACGUGGCGGUUGACGGCAACGUJAGGGAGUCCGGAGACGUCGGCGGGGGCCUCGGGAAGAGUUAUCUUUUCUGUUUAACAGCCUGCCCACCCUGGAAACGGCUCAGCCGGAGGUAGGGUCCAGCGGCUGGAAGAGCACCGCACGUCGCGUGGUGUCCGGUGCGCCCCCGGGCGCCCUUGAAAAUCCGGAGGACCGAGUGCCGCUCACGCCCGGUCGUACUCAUAACCGBAUCA#GUCUBCAAGGUGAACʍGCCUCUGGUCGAUGGAACAAJGUAGGCAAGGGAAGUCGGCAAAAUGGAUCCGUAACJUCGGGAAAAGGAUUGGCUCUGAGGGCUGGGCUCGGGGGUCCCAGUUCCGAACCCGUCGGCUGUCAGCGGACUGCUCGAGCUGCUUCCGCGGCGAGAGCGGGUCGCCGGCUGCCGGCCGGGGGACGACUGGGAACGGCUCUCUCGGGAGCUUUCCCCGGGCGUCGAACAGUCAGCUCAGAACUGGUACGGACAAGG#GʍAUCCGACUGPUUAAUUAAAACAAAGCAUUGCGAUGGUCCCUGCGGAUGCUAACGCAAUGUGAUUUCUGCCCAGUGCUCUGAAUGPCAʍAGUGAʍGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGPAACPAPGACUCUCUUAAGGUAGCCAAʍUGCCUC#UCAUCUAAUUAGUGACGCGCAUGAAPGGAUUAʍCGAGʍUUCCCACUGUBCCUGUCUACUAPCCAGCGAAACCACAGBCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGJUGA#CUUGACJCUAGUCCGACUUUGUGAAAUGACUUGAGAGGUGUAGGAUAAGUGGGAGCUUCGGCGCAAGUGAAAUACCACUACUUUUAACGUUAUUUUACUUACUCCGUGAAUCGGAGGCCGGGGUACAACCCCUGUUUUUGGUCCCAAGGCUCGCUUCGGCGGGUCGAUCCGGGCGGAGGACAUUGUCAGGUGGGGAGUUUGGCUG#GGCGGCACAUCUGUUAAAAGʍUAACGCAGGJ#UCCUAAGAUGAGCUCAACGAGAACAGAAAUCUCGUGUGGAACAAAAGGGUAAAAGCUCGUUUGAPUCUGAUUUUCAGUACGAAUACGAACCGUGAAAGCGUGGCCUAUCGAUCCUUUAGACUUCGGAAUUPGAAGCUA#A#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCPUGUGGCAGCBAAGCGUUCAUAGCGACGUUGBUUUUUGAUBCUUCGAUGUCGGBPCUJCCUAUCAUUGUGAAGCAGAAUUCACCAAGUGUU#GAUUGPUCACCCACCAAUAGGGAACGUGGBUGG#JUUAGABCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGCCCGCGUCGCGAUAGUAAUUCAACCUAGUACGAGAGGAACCGUUGAUUCGCACAAUUGGUCAUCGCGCUUGGUUGAAAAGCCAGUGGCGCGAAGCUACCGUGCGCUGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCGGGCUAGAAGCGACGCAUGCGCCCGCCGCCCGAUUGCCGACCCUCAGUAGGAGCUUAGGCUCCAAAGGCACGUGUCGUUGGCUAAGUCCGUUCGGCGGAACGGUCGUUCGGACCGCCUUGAAUUAUAAUUACCACCGAGCGGCGGGUAGAAUCCUUUGCAGACGACUUAAAUACGCGACGGGGUAUUGUAAGUGGCAGAGUGGCCUUGCUGCCACGAUCCACUGAGAUUCAGCCCUUUGUCGCUAAGAUUCGA
1244 RIBOMAP_AT18S  rRNA  SSU  18S  Arabidopsis thaliana  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGUCAUʍUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUGUAAGUAUGAACGAAUUCAGACUGUGAAACUGCGAAUGGCUCAUUAAAUCAGPUAUAGUUUGUUUGAUGGUAACUACUACUCGGAUAACCGUAGUAAUUCUAGʍGCUAAUACGUGCAACAAACCCCGACUUAUGGAAGGGACGCAUUUAUUAGAUAAAAGGUCGACGCGGGCUCUGGCUUGCUCUGAUGAUUCAUGAUAACUCGACGGAUCGCAUGGCCUCUGUGCUGGCGACGCAUCAUUCAAAUUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUGGUAACGGGPGACGGAGAAUUAGGGUUCGAUUCCGGAGA##GAGCCUGAGAAACGGCUACCACAUBCAAGGAAGGCAGCAGGCGCGCʍAAUUACCCAAUCCUGACACGGGGAGGUʍGUGABAAUAAAUAACAAUACCGGGCUCUUUCGAGUCUGGUAAUUGGAAUGAGUACAAUCUAAAUCCCUUAACGAGGʍUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUA#CGUAUAPUUAA#UUGUUGCAGUUʍAAAAGCUCGUAGPUGAACCUUGGGAUGGGUCGGCCGGUCCGCCUUUGGUGUGCAUUGGUCGGCUUGUCCCUUCGGUCGGCGAUACGCUCCUGGUCUUAAUUGGCCGGGUCGUGCCUCCGGCGCUGUUACUUUGAAGAAAPUAGAGUGCUCAAAGCAAGCCUACGCUCUGGAUACAUUʍGCAUGGGAUAACAUCAUAGGAUUUCGAUCCUAUUGUGUUGGCUUCGGGAUCGGAGUAAUGAUUAACAGGGACAGUCGGGGGCAUUCGUAUUUCAUAGUCAGAGGUGAAAUUCUUGGAUUUAUGAAAGACGAACAACUGCGAAAGCAUUPGCCAAGGAUGUUUUCAUUAAUCAAGAʍCGAAAGUUGGGGGCUCGAAGACGAPCAGAUACCGJBCUAGUCUCAACCAUAAACGAUGCCGACCAGGGAUCAGCGGAUGUUGCUUAUAGGACUCCGCUGGCACCUUAUGAGAAAUCAAAGUUUUUGGGUUCCGGG#GGAGUAPGGUCGCAAGGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGGAAACUUACCAGGUCCAGACAUAGUAAGGAJUGACAGACUGAGAGCUCUUUCUUGAUUCUAJGGGUGGJ##UGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGUUAACGAʍCGAGACCUCAGCCUGCUAACUAGCUACGUGGAGGCAUCCCUUCACGGCCGGCUJCUUAGAGGGACUAUGGCCGUUUAGGCCAAGGAAGUUUGAGGCAAUAACA#GUCUGUGAUGCCCJUAGAUGUUCUGGGCCGCACGCGCGCUACACUGAUGUAUUCAACGAGUUCACACCUUGCCGACAGGCCCGGGUAAUCUUUGAAAUUUCAUCGUGAUGGGGAUAGAUCAUUGCAAUUGUUGGUCUUCAACGAGGAAUUCCUAGUAAGCGCGAGUCAUCAGCUCGCGUUGACUACGUCCCUGCBCUUUGUACACACCGBCCGUCGCUCCUACCGAUUGAAUGAUCCGGUGAAGUGUUCGGAUCGCGGCGACGUGGGUGGUUCGCCGCCCGCGACGUCGCGAGAAGUCCACUAAACCUUAUCAUUUAGAGGAʍGGAGAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUG
1245 RIBOMAP_AT58S  rRNA  LSU-S  5.8S  Arabidopsis thaliana  Cytoplasm  AAAACGACUCUCGGCAACGGAUAUCUCGGCUCUCGCAUCGAUGAAGʍACGUAGCGAAAUGCGAUACUUGGUGUGAAUU#CAGAAUCCCGUGAACCAUCGAGUCUUUGAACGCAAGUUGCGCCCCAAGCCUUCUGGCCGAGGGCACGUCUGCCUGGGUGUCACAA
1246 RIBOMAP_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUUGѢAACʍCGGACCAAGGAGUBUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC#AʍAGAUGGUGAʍCPAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGPAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCPCAGGAPAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAPGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCPAUPCUCAAACUUPAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACPUPUGGUAAGCʍGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUBUUGGUGGUAGUʍ#BAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGAGAAGGGUUCCAUGJGAACAGBA#UUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAPCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCʍUAUCCGCAGCAGGUCUBCAAGGUGAACʍGCCUCUGGBAUGUUGGAACAAJGUAGGUAAGGGAAGUCGGCAAGCBGGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGACPGPUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUPCUGCCBAGUGCUCUGAAUGPCAʍAGUGAʍGAAAUPCAAPGAAGCGCGG#UAAACGGCGGGAGPAʍCPAPGACPCPCUUAAGGUAGC?AAʍUGCCUCGUCAUCUAAUUAGUGABGCGCAUGAAZGGAPGAʍCGAGʍUUCCCACUGUBCCPACCUACPAPCCAGCGAAACCACAGBCAAGGGAACGGGCUPGGBGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCPUGACJCUAGUCUGGCACGGUGAA#AGACAUGAGAGGUGPAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCC#GUGAAAUACCABUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG#GGCGGUACACCUGUCAAACGGUЖACGCAGGJ#UCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAPCUPGAPUUUCAGJACGAAPACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUPUGGGUUUPAAGCAGGA#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCPUGUGGCGGCCAAGCGUPCAPAGCGACGPCGCUUUUUGAP?CUUCGAUGUCGGBPCUUCCUAUCAUUGPGAAGCAGAAUUCGCCAAGCGUU#GAUJ#PUCACCCACUAAUAGGGAACGPGʍGCUGGGδPUAGABCGUCGUGAGACAGGUPAGUUUUACCCUACUGAUGʍUGUGPUGPUGCCAUGGUAʍUCCUGCUCAGUACGAGAGGAACCGCAG#UJCA#ACAUPUGGUGUAP#UGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAPCUGUGGGAUUAUGACPGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAPUCGUAGACGACCUGCUUCUGGGUCGGGGPUUCGUACGPAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1247 RIBOMAP_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUʍUGCUUGPCPCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAPGGCUCʍUUAAAPCAGPUAUGGUJCCPUJGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAʍUUCUAGʍGCUAAJABAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAPGCGUGCAPUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGPGACGGGGAAUCAGGGUUCGAUJCCGGAGA#GGAGCCUGAGAAACGGCUACCACAUBCAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCACUCCCGACCCGGGGA#GUʍGUGABGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUPUAAʍUCCUUUAACGAGGʍUCCAUUGGAG#GCAAGUCPGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUA#CGUAPAPUAAAGUUGCUGCAGUUʍAAAAGCUCGUAGPU#GAPCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGBGJUPACUUUGAAAAAAPPAGAGUGPUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAPAAP#GAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUPAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUPCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUPGCCAAGAAUGUUUUCAUUAAUCAAGAʍCGAAAGUCGGAGGUUCGAAGACGAPCAGAUACCGUCGUAGUUCCGACCAPAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAPGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCPUAAUUPGACαCAACACGGGAAACCUCACCCGGCBCGGACACGGACAGGAJUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGZG#UGCAUGGCCGUUCUUAGUPGGUGGAGCGAUUUGUCUGGPUAAUUCCGAUAACGAʍCGAGACUBUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUJCUPAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA#GUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUPCCCCAUGAACGAG7AAUPCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUʍAGUCCCUGCCCUUPGUACACACCGBCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUJGACUAUCUAGAGGAAGUAAAAGUCGUAЖCAAGGUUUCCGUAGGUGζζCCUGCGGAAGGAUCAUUA
1248 RIBOMAP_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGJGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCPGCGAGAAUUAAUGPGAAUU#CAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1249 KROGH_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGʍGʍGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCC#UCUUGAʍACʍCGGACCAAGGAGUBUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC#AʍAGAUGGUGAʍCUAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAUGAUUAGAGGUCUUGG#GCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACUUUUGGUAAGCʍGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUBUUGGUGGUAGUʍ#BAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGʍGAAGGGUUCCAUGJGAACAGBA#UUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCʍUAUCCGCAGCAGGUCUBCAAGGUGAACʍGCCUCUGGBAUGUUGGAACAAJGUAGGUAAGGGAAGUCGGCAAGCBGGAUCCGUAACUUC#GGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG#GAAUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCCBAGUGCUCUGAAUGUCAʍAGUGAʍGAAAUUCAAUGAAGCGCGG#UAAACGGCGGGAGUAʍCUAUGACUCUCUUAAGGUAGCCAAʍUGCCUC#UCAUCUAAUUAGUGABGCGCAUGAAJGGAUGAʍCGAGʍUUCCCACUGUBCCUACCUACUAUCCAGCGAAACCACʍGCCAAGGGAACGGGCUUGGBGGAAUCAGCGG#GAAAGAAGACCCUGUUGAGCUUGACJCUAGUCUGGCACGGUGAA#AGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCC#GUGAAAUACCABUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG#GGCGGUACACCUGUCAAACGGUACGCAGGJ#UCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAGJACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGA#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGGBUCUUCCUAUCAUUGUGAAGCAGAAUUCGCCAAGCGUU#GAUJ#UUCACCCACUAAUAGGGAACGUGʍGCUGGGUUUAGABCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGʍUGUGUUGUUGCCAUGGUAʍUCCUGCUCAGUACGAGAGGAACCGCAG#UJCA#ACAUUUGGUGUAU#UGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1250 MOTORIN_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGʍGʍGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCC#UCUUGAʍACʍCGGACCAAGGAGUBUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC#AʍAGAUGGUGAʍCUAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG#GGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAUGAUUAGAGGUCUUGG#GCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACUUUUGGUAAGCʍGAACUGGCGBUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUBUUGGUGGUAGUʍ#BAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGʍGAAGGGUUCCAUGJGAACAGBA#UUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCʍUAUCCGCAGCAGGUCUBCAAGGUGAACʍGCCUCUGGBAUGUUGGAACAAJGUAGGUAAGGGAAGUCGGCAAGCBGGAUCCGUAACUUC#GGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG#GAAUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCCBAGUGCUCUGAAUGUCAʍAGUGAʍGAAAUUCAAUGAAGCGCGG#UAAACGGCGGGAGUAʍCUAUGACUCUCUUAAGGUAGCCAAʍUGCCUC#UCAUCUAAUUAGUGABGCGCAUGAAJGGAUGAʍCGAGʍUUCCCACUGUBCCUACCUACUAUCCAGCGAAACCACʍGCCAAGGGAACGGGCUUGGBGGAAUCAGCGG#GAAAGAAGACCCUGUUGAGCUUGACJCUAGUCUGGCACGGUGAA#AGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCC#GUGAAAUACCABUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG#GGCGGUACACCUGUCAAACGGUACGCAGGJ#UCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAGJACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGA#GUGUCAGAAAAGUUACCACAG#GAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGGBUCUUCCUAUCAUUGUGAAGCAGAAUUCGCCAAGCGUU#GAUJ#UUCACCCACUAAUAGGGAACGUGʍGCUGGGUUUAGABCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGʍUGUGUUGUUGCCAUGGUAʍUCCUGCUCAGUACGAGAGGAACCGCAG#UJCA#ACAUUUGGUGUAU#UGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1251 MARCHAND_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUUGAAACACGGACCAAGGAGUCUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCGAAAGAUGGUGAACPAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGPAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCPCAGGAPAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAPGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCPAPPCUCAAACUUPAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACPUPUGGUAAGCAGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGAGAAGGGUUCCAUGUGAACAGCAGUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAPCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUPUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCAUAUCCGCAGCAGGUCUCCAAGGUGAACAGCCUCUGGCAUGUUGGAACAAUGPAGGUAAGGGAAGUCGGCAAGCCGGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGACPGPUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUPCUGCCCAGUGCUCUGAAUGPCAAAGUGAAGAAAUPCAAPGAAGCGCGGGUAAACGGCGGGAGPAACPAPGACPCPCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGAPGAACGAGAUUCCCACUGUCCCPACCUACPAPCCAGCGAAACCACAGCCAAGGGAACGGGCUPGGCGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCPUGACUCUAGUCUGGCACGGUGAAGAGACAUGAGAGGUGPAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCCGGUGAAAUACCACUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGGGGCGGUACACCUGUCAAACGGUACGCAGGUGUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAPCUPGAPUUUCAGUACGAAPACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUPUGGGUUUPAAGCAGGAGGUGUCAGAAAAGUUACCACAGGGAUAACUGGCPUGUGGCGGCCAAGCGUPCAPAGCGACGPCGCUUUUUGAPCCUUCGAUGUCGGCPCUUCCUAUCAUUGPGAAGCAGAAUUCGCCAAGCGUPGGAUUGPUCACCCACUAAUAGGGAACGPGAGCUGGGUUPAGACCGUCGUGAGACAGGUPAGUUUUACCCUACUGAUGAUGUGPUGPUGCCAUGGUAAUCCUGCUCAGUACGAGAGGAACCGCAGGUUCAGACAUPUGGUGUAPGUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAPCUGUGGGAUUAUGACPGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAPUCGUAGACGACCUGCUUCUGGGUCGGGGPUUCGUACGPAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1252 INCARNATO_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUʍUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCʍUUAAAUCAGUUAUGGUJCCUUJGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAʍUUCUAGAGCUAAJABAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCACUCCCGACCCGGGGA#GUʍGUGABGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAAʍUCCUUUAACGAGGʍUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUA#CGUAUAUUAAAGUUGCUGCAGUUʍAAAAGCUCGUAGUU#GAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGBGJUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAU#GAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGAʍCGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAJUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGJGGUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGAʍCGAGACUBUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUJCUUA#AGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA#GUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUʍAGUCCCUGCCCUUUGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUJGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1253 KROGH_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUʍUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCʍUUAAAUCAGUUAUGGUJCCUUJGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAʍUUCUAGʍGCUAAJABAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCJGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUJCCGGAGAJGGAGCCUGAGAAACGGCUACCACAU#CAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCACUCCCGACCCGGGGA#GUʍGUGABGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAAʍUCCUUUAACGAGGʍUCCAUUGGAG#GCAAGUCUGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUA#CGUAUAUUAAAGUUGCUGCAGUUʍAAAAGCUCGUAGUU#GAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGBGJUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAU#GAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGAʍCGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCBCGGACACGGACAGGAJUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGJG#UGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGAʍCGAGACUBUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAABUJCUUA#AGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA#GUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUʍAGUCCCUGCCCUUUGUACACACCGBCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUJGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1254 MOTORIN_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUʍUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCʍUUAAAUCAGUUAUGGUJCCUUJGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAʍUUCUAGʍGCUAAJABAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCJGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUJCCGGAGAJGGAGCCUGAGAAACGGCUACCACAU#CAAGGʍAGGCAGCAGGCGCGCʍAAUUACCCACUCCCGACCCGGGGA#GUʍGUGABGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAAʍUCCUUUAACGAGGʍUCCAUUGGAG#GCAAGUCUGGUGCCAGCAGCCGCGGJAAUUCCAGCUCCAAUA#CGUAUAUUAAAGUUGCUGCAGUUʍAAAAGCUCGUAGUU#GAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGBGJUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAU#GAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGAʍCGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCBCGGACACGGACAGGAJUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGJG#UGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGAʍCGAGACUBUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAABUJCUUA#AGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA#GUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUʍAGUCCCUGCCCUUUGUACACACCGBCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUJGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1255 MARCHAND_HS18S  rRNA  SSU  18S  Homo sapiens  eukaryotic cytosol  UACCUGGUUGAUCCUGCCAGUAGCAUAUGCUUGPCPCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAPGGCUCAUUAAAPCAGPUAUGGUUCCPUUGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAPGCGUGCAPUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCPAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGPGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGAAGGCAGCAGGCGCGCAAAUUACCCACUCCCGACCCGGGGAGGUAGUGACGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUPUAAAUCCUUUAACGAGGAUCCAUUGGAGGGCAAGUCPGGUGCCAGCAGCCGCGGUAAUUCCAGCUCCAAUAGCGUAPAPUAAAGUUGCUGCAGUUAAAAAGCUCGUAGPUGGAPCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUPACUUUGAAAAAAPPAGAGUGPUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAPAAPGGAAUAGGACCGCGGUUCUAUUUUGUUGGUPUUCGGAACUGAGGCCAUGAUPAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUPCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUPGCCAAGAAUGUUUUCAUUAAUCAAGAACGAAAGUCGGAGGPPCGAAGACGAPCAGAUACCGUCGUAGUUCCGACCAPAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCPUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAPGGPUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCPGCGGCPUAAUUPGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAUUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGUGGUGCAUGGCCGUUCUUAGUPGGUGGAGCGAUUUGUCUGGPUAAUUCCGAUAACGAACGAGACUCUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUUCUPAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACAGGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUPCCCCAUGAACGAGGAAUPCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUAAGUCCCUGCCCUUPGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUUGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1256 CARLILE_HS18S  rRNA  SSU  18S  Homo sapiens  eukaryotic cytosol   UACCUGGUUGAUCCUGCCAGUAGCAUAUGCUUGPCPCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCAUUAAAUCAGPUAUGGUUCCPUUGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAPGCGUGCAPUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCPAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGPGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGAAGGCAGCAGGCGCGCAAAUUACCCACUCCCGACCCGGGGAGGUAGUGACGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUPUAAAUCCUUUAACGAGGAUCCAUUGGAGGGCAAGUCPGGUGCCAGCAGCCGCGGUAAUUCCAGCUCCAAUAGCGUAUAUUAAAGUUGCUGCAGUUAAAAAGCUCGUAGUUGGAPCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUUACUUUGAAAAAAUPAGAGUGPUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAPAAPGGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUPAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUPCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUPGCCAAGAAUGUUUUCAUUAAUCAAGAACGAAAGUCGGAGGUPCGAAGACGAPCAGAUACCGUCGUAGUUCCGACCAPAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAPGGPUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAUUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGUGGUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGAACGAGACUCUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUUCUPAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACAGGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUPCCCCAUGAACGAGGAAUPCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUAAGUCCCUGCCCUUPGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUUGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1257 INCARNATO_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGJGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUU#CAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1258 KROGH_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGJGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUU#CAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1259 MOTORIN_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGJGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUU#CAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1260 1ASZ_A  tRNA  Asp  QUC  Saccharomyces cerevisiae  Cytoplasm  UCCGUGAUAGUUPAADGGDCAGAAUGGGCGCPUGUCKCGUGCCAGAU?GGGGTPCAAUUCCCCGUCGCGGAGCCA
1261 1ASZ_B  tRNA  Asp  QUC  Saccharomyces cerevisiae  Cytoplasm  UCCGUGAUAGUUPAADGGDCAGAAUGGGCGCPUGUCKCGUGCCAGAU?GGGGTPCAAUUCCCCGUCGCGGAGCCA
1262 1B23_A  tRNA  Cys  GCA  Escherichia coli  Cytoplasm  GCGCGU4AACAAAGCGGDDAUGUAGCGGAPUGCA*APCCGUCUAGUCCGGTPCGACUCCGGAACGCGCCUCCA
1263 1C0A_A  tRNA  Asp  QUC  Escherichia coli  Cytoplasm  GAGCGG4AGUUCAGDCGGDDAGAAUACCUGCCUʆUCACGCAGGGG7UCGCGGGTPCGAGUCCCGPCCGUUCCGCCA
1264 1F7U_A  tRNA  Arg  ICG  Escherichia coli  Cytoplasm  UCCUCGUKRCCCAADGGDCACGGCRPCUGGCUICGAACCAGAAGADU?CAGGTPCAѢGUCCUGGCGGGGAAGCCA
1265 1F7V_A  tRNA  Arg  ICG  Escherichia coli  Cytoplasm  UCCUCGUKRCCCAADGGDCACGGCRPCUGGCUICGAACCAGAAGADU?CAGGTPCAѢGUCCUGGCGGGGAAG
1266 1OB2_B  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  CGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAYAP?UGGAG7UC?UGUGUPCGѢUCCACAGAAUUCGCACC
1267 1OB5_B  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  CGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAYAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGCAC
1268 1OB5_D  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  GCGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAYAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGCAC
1269 1OB5_F  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  GCGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAYAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGCAC
1270 1QF6_A  tRNA  Thr  CGU  Escherichia coli  Cytoplasm  CCGAUAUAGCUCAGDDGGDAGAGCAGCGCAUUCGUEAUGCGAAG7UCGUAGGTPCGACUCCUAUUAUCGGCACCA
1271 1TTT_A  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  CGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAϓAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGCACCA
1272 1TTT_B  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  GCGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAϓAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGCACCA
1273 1TTT_C  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  GCGGAUUUARCUCAGDDGGGAGAGCRCCAGABU#AAϓAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGCACCA
1274 3B0V_A  tRNA  Phe  #AA  Thermus thermophilus  Cytoplasm  CCGAGGUAGCUCAGUUGGDAGAGCAUGCGACUGAAAAUCGCAGUGUCGGCGGUUCGAUUCCGCCCCUCGGCA
1275 3B0V_B  tRNA  Phe  #AA  Thermus thermophilus  Cytoplasm  GCCGAGGUAGCUCAGUUGGDAGAGCAUGCGACUGAAAAUCGCAGUGUCGGCGGUUCGAUUCCGCCCCUCGGCA
1276 3V11_D  tRNA  Sec  UCA  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGDAGCUCGUCGGGBUCAUAACCCGAAGAUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1277 4DR1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1278 4DR2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1279 4DR3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1280 4DUY_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUCUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1281 4DUZ_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUCUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1282 4DV0_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCGGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1283 4DV1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCGGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1284 4DV2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUAAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1285 4DV3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUAAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1286 4DV4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAGAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1287 4DV5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAGAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1288 4DV6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAGGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1289 4DV7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAGGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1290 4JI0_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1291 4JI1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1292 4JI2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1293 4JI3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCPPUCU
1294 4JI4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGUGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1295 4JI5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1296 4JI6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1297 4JI7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1298 4JI8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1299 4JYZ_B  tRNA  Gln  㑆UG  Escherichia coli  Cytoplasm  GGGUA4CGCCAAGC#GDAAGGCACCGGUJUUGɿPACCGGCACGCAGGTPCGAAUCCUGCUACCCCAGCCA
1300 4KVB_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCACPPUCU
1301 4LF4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCACPPUCU
1302 4LF5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCACPPUCU
1303 4LF6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCAUCU
1304 4LF7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCPUCU
1305 4LF8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCPUCU
1306 4LF9_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1307 4LFA_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1308 4LFB_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1309 4LFC_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1310 4NXM_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCCGCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1311 4NXN_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCCGCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1312 4P5J_A  tRNA  Ser  CGA  White bream virus  Cytoplasm  GCUCGCCAGUUAGCGAGGUCUGUCUCGACACGACAGAUAAUCGGGUGCAACUCCCGCCCCUCUUCCGAGGGUCAUCGGAACCҔ
1313 4WPO_FB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1314 4WPO_MD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1315 4WQF_DB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGUCGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1316 4WQF_EB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1317 4WQF_JD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGUCGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1318 4WQF_KD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1319 4WQU_DB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGUCGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1320 4WQU_EB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1321 4WQU_KD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGUCGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1322 4WQU_LD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1323 4WQY_DB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1324 4WQY_ID  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1325 4WRA_ZB  tRNA  Tyr  GUA  Escherichia coli  Cytoplasm  GUGGGGUUCCCGAGCGGCCAAAGGGAGCAGACUGUA*APCUGCCGUCAUCGACUUCGAAGGUUCGAAUCCUUCCCCCACCACCA
1326 4WSD_AC  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGUCGGUAGAGCAGGGGAPUGAAAAUCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1327 4WZO_YB  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCCGGUAGCUCGUCGGGBUCAUAACCCGAAG7UCGUCGGUPCAAAUCCGGCCCCCGCAACCA
1328 4Y4O_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1329 4Y4O_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1330 4Y4P_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1331 4Y4P_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1332 4YBB_VB  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1333 4Z3S_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1334 4Z3S_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1335 4Z8C_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1336 4Z8C_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1337 5BR8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1338 5CCX_C  tRNA  Lys  !UU  Homo sapiens  Cytoplasm  GCCCGGAUAGCUCAGUCGGUAGAGCAUCAGACUUUUAAUCUGAGGGUCCAGGGUUCAѢGUCCCUGUUCGGGCGCCA
1339 5DFE_LA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1340 5DFE_GB  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1341 5DOX_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1342 5DOX_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1343 5DOY_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1344 5DOY_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1345 5E7K_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGUUGGUAGAGCAGUUGACUUUUAAPCAAUUGGUCGCAGGTPCGAAUCCUGCACGACCCACCA
1346 5EL4_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGGGUAGAGCAGUUGACUUUUAAPCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1347 5EL5_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGUUGGUAGAGCAGUUGACUUUUAAPCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1348 5EL7_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCCAGUUGGUAGAGCAGUUGACUUUU6APCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1349 5F8K_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1350 5F8K_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1351 5FDU_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1352 5FDU_HC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1353 5FDV_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1354 5FDV_IC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1355 5HCP_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1356 5HCP_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1357 5HCQ_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1358 5HCQ_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1359 5HCR_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1360 5HCR_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1361 5HD1_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1362 5HD1_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1363 5IB8_YB  tRNA  Lys  !UU  Thermus thermophilus  Cytoplasm  GGUCGUUAGCUCAUGGAGCAGUUGACUUUUAAUCAAUUGCGCAGGTPCGAAUCCUGCACGACCCA
1364 5IBB_YB  tRNA  Lys  !UU  Thermus thermophilus  Cytoplasm  GGUGAUUAGCUCAUGGAGCACCUCCCUUACAAGGAGGGGCGGCGGTPCGAUCCCGUCAUCACCCACCA
1365 5IT8_JB  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1366 5J4B_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1367 5J4B_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1368 5J4C_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1369 5J4C_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1370 5J5B_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1371 5J7L_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1372 5J88_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1373 5J8A_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1374 5J8B_FB  tRNA  Phe  GAA  Thermus thermophilus  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGUGUCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1375 5J91_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1376 5JC9_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUKPTGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGPGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACЖGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCURCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGPAACAPAACGGUCCUAAGGUAGCGAAATUCCUUGUCGGGUAAGUUCCGAC?UGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGЖAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU7AACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG#GGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGRGGADAACAGGCPGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCABCUCGɿPGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCJGUUCGCCAUUUAAAGUGGUACGCGAGCPGGGUUUAGAACGUCGUGAGACAGPPCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1377 5L4O_A  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGDAGCUCGUCGGGBUCAUAACCCGAAGAUCGUCGGTPCAAAUCCGGCCCCCGCUACC
1378 5V8I_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1379 5V8I_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1380 5VPP_ZC  tRNA  Glu  UUC  Escherichia coli  Cytoplasm  GGUGAUUGGCGCAGCCUGGUAGCGCACUUCGUUCGGKGACGAAGGGGUCGGAGGUUCGAAUCCUCUAUCACCGACCA
1381 5VPP_BD  tRNA  Glu  UUC  Escherichia coli  Cytoplasm  CGGUGAUUGGCGCAGCCUGGUAGCGCACUUCGUUCGGKGACGAAGGGGUCGGAGGUUCGAAUCCUCUAUCACCGACCA
1382 5W4K_JC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAU
1383 5WIS_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1384 5WIS_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1385 5WIT_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1386 5WIT_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1387 5WNQ_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1388 5WNR_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1389 5WNS_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUCCPPUCU
1390 6CAE_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1391 6CAE_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1392 6CFJ_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1393 6CFJ_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1394 6CFK_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1395 6CFK_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1396 6CFL_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1397 6CFL_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1398 6CZR_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1399 6CZR_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1400 6FKR_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1401 6FKR_HC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1402 6GSJ_ZB  tRNA  Thr  GGU  Escherichia coli  Cytoplasm  CUGAUAUAGCUCAGUAGAGCGCACCCUUGGUAAGGGUGAGGUCGGCAGTPCGAAUCUGCCUAUCAGCACCA
1403 6N9E_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1404 6N9E_FD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1405 6N9F_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1406 6N9F_FD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1407 6ND5_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1408 6ND5_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1409 6ND6_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1410 6ND6_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1411 6O97_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1412 6O97_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1413 6OF1_DB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1414 6OF1_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1415 6QNQ_AC  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGGBUCAUAACCCGAAG7UCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1416 6QNR_CC  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGDCGGUAGAGCAGGGGAPUGAA*APCCCCGU7ѮCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1417 6UO1_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1418 6UO1_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1419 6XHV_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1420 6XHV_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1421 6XHW_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1422 6XHW_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1423 6XHX_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1424 6XHX_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1425 6XHY_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1426 6XHY_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1427 6XQD_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1428 6XQD_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1429 6XQE_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1430 6XQE_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1431 7AZO_ZB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAUAGCUCAGUCGGUAGAGCAGGGGAPUGAA*APCCCCGUGUCCUUGGTUCGAUUCCGAGUCCGGGCACCA
1432 7AZS_ZB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAUAGCUCAGUCGGUAGAGCAGGGGAPUGAA*APCCCCGUGUCCUUGGTUCGAUUCCGAGUCCGGGCACCA
1433 7JQL_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1434 7JQL_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1435 7JQM_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1436 7JQM_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1437 7MD7_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1438 7MD7_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1439 7RQ8_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1440 7RQ8_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1441 7RQ9_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1442 7RQ9_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1443 7U2H_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCG4AGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGTPCGAUUCCCUUCGCCCGCUCCA
1444 7U2H_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCG4AGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGTPCGAUUCCCUUCGCCCGCUCCA
1445 7U2I_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCG4AGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGTPCGAUUCCCUUCGCCCGCUCCA
1446 7U2I_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCG4AGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGTPCGAUUCCCUUCGCCCGCUCCA
1447 7U2J_EB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCG4AGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGTPCGAUUCCCUUCGCCCGCUCCA
1448 7U2J_JD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCG4AGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGTPCGAUUCCCUUCGCCCGCUCCA
1449 7VNV_A7  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGCC4ACG4CRUCPA(CBUGGUUAGGACRCCGCCBUJACAAGGCGGAGGѮ??UGGG2PBOѢGUCCCAGCGGGCCCACCA
1450 7VNV_B  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGGCC4ACG4CRUCPA(CBUGGUUAGGACRCCGCCBUJACAAGGCGGAGGѮ??UGGG2PBOѢGUCCCAGCGGGCCCACCA
1451 7VNW_A  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGCC4ACGUCRUCPA(CBUGGUUAGGACRCCGCCBUJACAAGGCGGAGGU??UGGGUPBOѢGUCCCAGCGGGCCCACCA
1452 7VNW_B  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGGCC4ACGUCRUCPA(CBUGGUUAGGACRCCGCCBUJACAAGGCGGAGGU??UGGGUPBOѢGUCCCAGCGGGCCCACCA
1453 8CVJ_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1454 8CVJ_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1455 8CVK_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1456 8CVK_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1457 8CVL_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA4AGCUCAGGGUAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1458 8CVL_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA4AGCUCAGGGAGAGCAGGGGAPUGAA*APCCCCGU7UCCUUGGTPCGAUUCCGAGUCCGGGCACCA
1459 8EKB_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1460 8EKB_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1461 8EV6_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1462 8EV6_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1463 8EV7_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1464 8EV7_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1465 8FC1_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1466 8FC1_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1467 8FC2_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1468 8FC2_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1469 8FC3_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1470 8FC3_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1471 8FC4_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1472 8FC4_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1473 8FC5_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1474 8FC5_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1475 8FC6_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1477 8FC6_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGPGCCAGCAGCC7CGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAAR?AACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGRCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC?GλC?GU?ACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGδAACAAGGUAGCUGUACCGGζζGGUGCGGCUGGAUC
1478 8JOZ_B  tRNA  Ser  NGA  Escherichia coli  Cytoplasm  GAAGUG4GGCCGAGC#GDDGAAGGCACCGGUBUѮGAZJSAACCGGCGACCCGAAAGGGUUCCAGAGTPCGAAUCUCUGCGCUUCCGCCA
1479 1D4R_C  other      synthetic construct    ƇGUGACCUCCCGGGAGCGGGGGACCACUA
1480 1DUH_A  other      synthetic construct    UCUGUUUACCAGGUCAGGUCCGGAAGGAAGCAGCCAAGGCAGAȺ
1481 1DUL_A  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGCѮ
1482 1F1T_A  other      synthetic construct    GACCCGACGGCGAGAGCCAGGAACGAAGGACC
1483 1HQ1_A  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGCѮ
1484 1I7J_A  other      synthetic construct    #B#B#
1485 1I7J_B  other      synthetic construct    B#B#B#
1486 1JBS_A  other      synthetic construct    #BJBBUCAGUACGAUAGGAACC##ʍ#B#
1487 1JBS_B  other      synthetic construct    B#BJBBUCAGUACGAUAGGAACC##ʍ#B#
1488 1JID_A  other      synthetic construct    GGACCCCCGGGAGCGGGGGACCACUҔ
1489 1JZV_B  other      synthetic construct    AGUACGC
1490 1JZV_D  other      synthetic construct    CAGUACGC
1491 1K8W_A  other      synthetic construct    GCAACGGUCGAUCCCGUUGC
1492 1KFO_A  other      synthetic construct    AAUGCCUGCGAGCACCC
1493 1L9A_A  other      synthetic construct    ACACUAAGUUCGGCAUCAAUAUGGUGACCUCCCGGGAGCGGGGGACCACCAGGUUGCCUAGAGGGGUGAACCGGCCCAGGUCGGAAACGGAGCAGGUCAAAACUCCCGUGCUGAUCAGUAGUGUѮ
1494 1LNT_B  other      synthetic construct    GGAAGCAGGC
1495 1MFQ_A  other      synthetic construct    ACACUAAGUUCGGCAUCAAUAUGGUGACCUCCCGGGAGCGGGGGACCACCAGGUUGCCUAAGGAGGGGUGAACCGGCCCAGGUCGGAAACGGAGCAGGUCAAAACUCCCGUGCUGAUCAGUAGUGUѮ
1496 1NJM_B  other      synthetic construct    GGGCUAAGCCGCUUAGCUCCACC
1497 1NJP_B  other      synthetic construct    GGGCUAAGCCGCUUAGCUCCACC
1498 1QBP_A  other      synthetic construct    GAGUUCGCUGGC
1499 1QBP_B  other      synthetic construct    UGAGUUCGCUGGC
1500 1QBP_C  other      synthetic construct    UGAGUUCGCUGGC
1501 1QBP_D  other      synthetic construct    UGAGUUCGCUGGC
1502 1QBP_E  other      synthetic construct    UGAGUUCGCUGGC
1503 1QBP_F  other      synthetic construct    UGAGUUCGCUGGC
1504 1QZW_A  other      synthetic construct    GCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUѮ
1505 1QZW_B  other      synthetic construct    GTPGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUѮ
1506 1QZW_C  other      synthetic construct    GTPGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUѮ
1507 1QZW_D  other      synthetic construct    GTPGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUѮ
1508 1RLG_A  other      synthetic construct    CCGACCGAAAGGCGUGAGAGC
1509 1RLG_B  other      synthetic construct    GCCGACCGAAAGGCGUGAGAGC
1510 1S77_C  other      synthetic construct    CACGGCGA
1511 1VQ4_C  other      synthetic construct    C2OPPO2DACC
1512 1VQ5_C  other      synthetic construct    DC2OPPO2ACC
1513 1VQ7_C  other      synthetic construct    C2OPPAEACC
1514 1VQL_C  other      synthetic construct    CTSEDACC
1515 1VQM_C  other      synthetic construct    CPO2DACC
1516 1VQP_C  other      synthetic construct    DCHFAPO2ACC
1517 1XMO_C  other      synthetic construct    ACU{UU6AUC
1518 1XMQ_C  other      synthetic construct    ACUUUU6AUC
1519 1Y27_A  other      synthetic construct    GAUCAUAUAAUCGCGUGGAUAUGGCACGCAAGUUUCUACCGGGCACCGUAAAUGUCCGACUAUGGUѮ
1520 1Y3O_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1521 1Y3O_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1522 1Y3S_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1523 1Y3S_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1524 1Y90_A  other      synthetic construct    UGCUGAGGUGCACACAGCAAG
1525 1Y90_B  other      synthetic construct    CUGCUGAGGUGCACACAGCAAG
1526 1YVP_B  other      synthetic construct    GACAGCC
1527 1YVP_D  other      synthetic construct    GACAGCC
1528 1YXP_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1529 1YXP_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1530 1YY0_B  other      synthetic construct    CAGAUUAAAUCUGC
1531 1YZD_A  other      synthetic construct    CAGAUUAAGUCUGC
1532 1YZD_B  other      synthetic construct    GCAGAUUAAGUCUGC
1533 1YZD_C  other      synthetic construct    GCAGAUUAAGUCUGC
1534 1Z79_A  other      synthetic construct    CAGAUUAAAUCUGC
1535 1Z79_B  other      synthetic construct    GCAGAUUAAAUCUGC
1536 1Z79_C  other      synthetic construct    GCAGAUUAAAUCUGC
1537 1ZCI_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1538 1ZCI_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1539 1ZCI_C  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1540 1ZCI_D  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1541 1ZE2_A  other      synthetic construct    GCCACGGUCGAAUCCGUGGC
1542 1ZE2_B  other      synthetic construct    GGCCACGGUCGAAUCCGUGGC
1543 1ZL3_A  other      synthetic construct    GCAACGGUNCGAUCCCGUUGC
1544 2A0P_A  other      synthetic construct    CCGGGG
1545 2A0P_B  other      synthetic construct    CCCGGGG
1546 2AB4_A  other      synthetic construct    CACGGUCGAAUCCGUGGC
1547 2ANR_A  other      synthetic construct    CGCGGAUCAGUCACCCAAGCGAG
1548 2AO5_A  other      synthetic construct    GCGGCGCU
1549 2AO5_B  other      synthetic construct    GGCGGCGCU
1550 2AO5_C  other      synthetic construct    GGCGGCGCU
1551 2AO5_D  other      synthetic construct    GGCGGCGCU
1552 2AZ0_A  other      synthetic construct    CAGGACGCGCCAGC
1553 2AZ0_B  other      synthetic construct    GCAGGACGCGCCAGC
1554 2AZ2_A  other      synthetic construct    CAGGACGCGCCAGC
1555 2AZ2_B  other      synthetic construct    GCAGGACGCGCCAGC
1556 2B3J_A  other      synthetic construct    UGACUCGGAUCAA
1557 2B3J_B  other      synthetic construct    UUGACUCGGAUCAA
1558 2B3J_C  other      synthetic construct    GACUCGG
1559 2B3J_D  other      synthetic construct    UUUGACUCGGAUCAA
1560 2B63_A  other      synthetic construct    AGCACUGAUGCGGCGAGGUAGCGAUG
1561 2BU1_D  other      synthetic construct    AUGAGGAUACCCAUG
1562 2BU1_E  other      synthetic construct    CAUGAGGAUACCCAUG
1563 2C4Q_D  other      synthetic construct    AUGAGGAUACCCAUG
1564 2C4Q_E  other      synthetic construct    CAUGAGGAUACCCAUG
1565 2C4Y_D  other      synthetic construct    AUGAGGAU2ACCCAUG
1566 2C4Y_E  other      synthetic construct    UGAGGAU2ACCCA
1567 2C4Z_D  other      synthetic construct    AUGAGGA22ACCCAUG
1568 2C4Z_E  other      synthetic construct    UGAGGA22ACCCA
1569 2CZJ_E  other      synthetic construct    GGGGUGAAACGGUCUCGACAGGGGUUCGCCUUUGGACGUGGGTPCGACUCCCACCACCUCC
1570 2CZJ_G  other      synthetic construct    GGGGGUGAAACGGUCUCGACAGGGGUUCGCCUUUGGACGUGGGTPCGACUCCCACCACCUCC
1571 2DLC_A  other      synthetic construct    UCUCGGUALCCAAGU#GGAAGGCRCAAGAUGPAЧAPCUUGAGGU?GGGCGTPCGѢCUCGCCCCCGGGAGACCA
1572 2E9T_B  other      synthetic construct    GGCCCN
1573 2E9T_D  other      synthetic construct    GGGCCCN
1574 2FCX_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1575 2FCX_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1576 2FCY_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1577 2FCY_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1578 2FCZ_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1579 2FCZ_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1580 2FCZ_C  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1581 2FCZ_D  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1582 2FD0_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1583 2FD0_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1584 2FMT_A  other      synthetic construct    GCGGGG4GGAGCAGCCUGGDAGCUCGUCGGGBUCAUAACCCGAAGAUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1585 2FMT_B  other      synthetic construct    CGCGGGG4GGAGCAGCCUGGDAGCUCGUCGGGBUCAUAACCCGAAGAUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1586 2GCS_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1587 2GCV_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1588 2GDI_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
1589 2GDI_B  other      synthetic construct    GTPGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
1590 2H0S_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1591 2H0W_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1592 2H0X_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1593 2HO6_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1594 2HO7_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1595 2HOJ_A  other      synthetic construct    CGACUCGGGGUGCCCUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
1596 2IZ9_D  other      synthetic construct    UGAGGAUACCCAU
1597 2IZ9_E  other      synthetic construct    AUGAGGAUACCCAU
1598 2JLT_B  other      synthetic construct    GAGCCUGGGAGCCC
1599 2OEU_B  other      synthetic construct    GCGUBCUGGAUCCAAUCDC
1600 2PN3_B  other      synthetic construct    CGGUCGUGCAGCCCCGG
1601 2PN4_B  other      synthetic construct    CGGUCGUGCAGCCCCGG
1602 2PN4_D  other      synthetic construct    GCGGUCGUGCAGCCCCGG
1603 2R1S_A  other      synthetic construct    CGUUGAAACGC
1604 2R1S_B  other      synthetic construct    GCGUUGAAACGC
1605 2R20_A  other      synthetic construct    CGUUGAAACGC
1606 2R20_B  other      synthetic construct    GCGUUGAAACGC
1607 2R21_A  other      synthetic construct    CGUUGAAACGC
1608 2R21_B  other      synthetic construct    GCGUUGAAACGC
1609 2X2Q_B  other      synthetic construct   
1610 2X2Q_D  other      synthetic construct   
1611 2XD0_D  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1612 2XD0_E  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1613 2XD0_F  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1614 2XD0_G  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1615 2XD0_H  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1616 2XD0_I  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1617 2XDB_B  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1618 2XDD_D  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1619 2XDD_E  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1620 2XDD_F  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGAҔ
1621 310D_A  other      synthetic construct    #B#B#
1622 310D_B  other      synthetic construct    B#B#B#
1623 3B4A_B  other      synthetic construct    GCUUUAAGUUGACGAGAGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGAҔ
1624 3B5F_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1625 3B5S_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1626 3B91_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1627 3BBI_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1628 3BNO_A  other      synthetic construct    CGUCACCCGAACAAGUCGC
1629 3BNO_B  other      synthetic construct    GCGUCACCCGAACAAGUCGC
1630 3BNO_C  other      synthetic construct    GCGUCACCCGAACAAGUCGC
1631 3BNO_D  other      synthetic construct    GCGUCACCCGAACAAGUCGC
1632 3BNQ_D  other      synthetic construct    CGUCACCCGAGCAAGUCGC
1633 3BNR_D  other      synthetic construct    CGUCACCCGAGCAAGUCGC
1634 3BNS_D  other      synthetic construct    CGUCACCCGAGCAAGUCGC
1635 3BNT_A  other      synthetic construct    GCGUCACCCGAGCAAGUCGC
1636 3BO4_A  other      synthetic construct    GCCGUGUGCCUUGCGCCGGGAAACCACGCAAGGGAUGGUGUCAAAUUCGGCGAAACCUAAGCGCCCGCCCGGGCGUAUGGCAACGCCGAGCCAAGCUUCGCAGCCAUUGCACUCCGGCUGCGAUGAAGGUGUAGAGACUAGACGGCACCCACCUAAGGCAAACGCUAUGGUGAAGGCAUAGUCCAGGGAGUGGCGҔ
1637 3BSN_C  other      synthetic construct    GCCCGGG
1638 3BT7_C  other      synthetic construct    CUGUGTUCGAUCCACAGC
1639 3BT7_D  other      synthetic construct    GCUGUGTUCGAUCCACAGC
1640 3CJZ_A  other      synthetic construct    GACGRACGUCCU
1641 3CJZ_B  other      synthetic construct    GGACGRACGUCCU
1642 3DH3_B  other      synthetic construct    GAACGUCGUGAGACAGUCGG
1643 3DH3_D  other      synthetic construct    AGAACGUCGUGAGACAGUCGG
1644 3DH3_F  other      synthetic construct    AGAACGUCGUGAGACAGUCGG
1645 3DH3_H  other      synthetic construct    AGAACGUCGUGAGACAGUCGG
1646 3DIG_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1647 3DIL_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1648 3DIM_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1649 3DIO_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1650 3DIQ_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1651 3DIR_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1652 3DIS_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1653 3DIX_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1654 3DIY_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1655 3DIZ_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1656 3DJ0_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1657 3DJ2_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUѮ
1658 3DVV_A  other      synthetic construct    UJGCUGAAGUGCACACAGCAAG
1659 3DVV_B  other      synthetic construct    CUJGCUGAAGUGCACACAGCAAG
1660 3DW4_A  other      synthetic construct    GCJCCUAGUACGAGAGGACCGGAGUG
1661 3DW5_A  other      synthetic construct    GCUCCUAGJACGAGAGGACCGGAGUG
1662 3F2Q_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUѮ
1663 3F2T_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUѮ
1664 3F2W_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUѮ
1665 3F2X_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUѮ
1666 3F2Y_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUѮ
1667 3F30_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUѮ
1668 3HAX_E  other      synthetic construct    UAAUUGACUCAA
1669 3HAY_F  other      synthetic construct    UAAUUGACUCAA
1670 3HGA_A  other      synthetic construct    CGCG
1671 3HHN_B  other      synthetic construct    CCAGUAGGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGCUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGҔ
1672 3HHN_D  other      synthetic construct    UCCAGUAGGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGCUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGҔ
1673 3HJW_E  other      synthetic construct    AGCGGCGGUUU
1674 3I5Y_B  other      synthetic construct    UUUUUUUU
1675 3IBK_B  other      synthetic construct    AGGGUUAGGGU
1676 3IIN_B  other      synthetic construct    GCCGUGUGCCUUGCGCCGGGAAACCACGCAAGGGAUGGUGUCAAAUUCGGCGAAACCUAAGCGCCCGCCCGGGCGUAUGGCAACGCCGAGCCAAGCUUCGCAGCCAUUGCACUCCGGCUGCGAUGAAGGUGUAGAGACUAGACGGCACCCACCUAAGGCAAACGCUAUGGUGAAGGCAUAGUCCAGGGAGUGGCGҔ
1677 3LOA_B  other      synthetic construct    GGGGUGAAGUCGUAACGCGGC
1678 3LQX_B  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGCѮ
1679 3LWO_E  other      synthetic construct    AGCGGCGGUUU
1680 3LWQ_E  other      synthetic construct    AGCGδGCGGUUU
1681 3MEI_A  other      synthetic construct    CGCCGCGCCAGCCUGUGGCGG
1682 3MEI_B  other      synthetic construct    CCGCCGCGCCAGCCUGUGGCGG
1683 3MJ0_B  other      synthetic construct    GUUACGCJ
1684 3NCU_D  other      synthetic construct    ƇACGCUAGCGUC
1685 3O6E_B  other      synthetic construct    CGAAUAUUCGCUJ
1686 3O7V_B  other      synthetic construct    CGAAUAUUCGCUJ
1687 3O8C_B  other      synthetic construct    UUUU
1688 3O8R_B  other      synthetic construct    UUUU
1689 3OWI_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1690 3OWW_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1691 3OWZ_B  other      synthetic construct    GCUCUGGAGAGAACCGUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1692 3OX0_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1693 3OXB_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCCCAGGCAAAAGGACAGAGUѮ
1694 3OXD_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAACGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUGAGGCAAAAGGACAGAGUѮ
1695 3OXE_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1696 3OXJ_A  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1697 3OXJ_B  other      synthetic construct    ƇGCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1698 3OXM_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUѮ
1699 3R1D_A  other      synthetic construct    CGCGGCGGC
1700 3R1D_B  other      synthetic construct    GCGCGGCGGC
1701 3R1D_C  other      synthetic construct    GCGCGGCGGC
1702 3R1D_D  other      synthetic construct    GCGCGGCGGC
1703 3R1D_E  other      synthetic construct    GCGCGGCGGC
1704 3R1E_A  other      synthetic construct    CGCGGC
1705 3R1E_B  other      synthetic construct    GCGCGGC
1706 3R1H_C  other      synthetic construct    GAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGҔ
1707 3R1H_F  other      synthetic construct    GTPGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGҔ
1708 3R1L_C  other      synthetic construct    GAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGҔ
1709 3R1L_F  other      synthetic construct    GTPGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGҔ
1710 3RW6_B  other      synthetic construct    GCACUAACCUAAGACAGGAGGGCCGGGAAACCUGCCUAAUCCAAUGACGGGUAAUAGUGUѮ
1711 3RW6_C  other      synthetic construct    GTPGCACUAACCUAAGACAGGAGGGCCGGGAAACCUGCCUAAUCCAAUGACGGGUAAUAGUGUѮ
1712 3S49_A  other      synthetic construct    UAUAѮAC
1713 3S49_B  other      synthetic construct    GUAUAѮAC
1714 3S49_C  other      synthetic construct    GUAUAѮAC
1715 3S49_D  other      synthetic construct    GUAUAѮAC
1716 3S49_E  other      synthetic construct    GUAUAѮAC
1717 3S49_F  other      synthetic construct    GUAUAѮAC
1718 3S49_G  other      synthetic construct    GUAUAѮAC
1719 3SKI_B  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1720 3SKL_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1721 3SKL_B  other      synthetic construct    GTPGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1722 3SKR_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1723 3SKR_B  other      synthetic construct    GTPGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1724 3SKT_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1725 3SKT_B  other      synthetic construct    GTPGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1726 3SKW_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1727 3SKW_B  other      synthetic construct    GTPGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUѮ
1728 3SKZ_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1729 3SKZ_B  other      synthetic construct    GTPGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1730 3SLM_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1731 3SLM_B  other      synthetic construct    GTPGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1732 3SLQ_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1733 3SLQ_B  other      synthetic construct    GTPGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUѮ
1734 3SUH_A  other      synthetic construct    GACAGAGUAGGUAAACGUGCGUAAAGUGCCUGAGGGACGGGGAGUUGUCCUCAGGACGAACACCGAAAGGUGGCGGUACGUUUACCGCAUCUCGCUGUUѮ
1735 3SUX_A  other      synthetic construct    GACAGAGUAGGUAAACGUGCGUAAAGUGCCUGAGGGACGGGGAGUUGUCCUCAGGACGAACACCGAAAGGUGGCGGUACGUUUACCGCAUCUCGCUGUUѮ
1736 3T1H_W  other      synthetic construct    ACUNUUHAPC
1737 3T1Y_W  other      synthetic construct    ACUNUUHAPC
1738 3T3N_B  other      synthetic construct    JBB#J
1739 3T4B_A  other      synthetic construct    CUCCCGGGAGAGCCGCUAAGGGGGAAACUCUAUGCGGUACUGCCUGAUAGGGUGCUUGCGAGUGCCCCGGGAGGUCUCGUAGҔ
1740 3TD0_A  other      synthetic construct    CGUCGCGCGACGAAGUCGC
1741 3TD0_B  other      synthetic construct    UUGCGUCGCGCGACGAAGUCGC
1742 3TD1_A  other      synthetic construct    GCGUCGCGCGACGAAGUCGC
1743 3TD1_B  other      synthetic construct    UUGCGUCGCGCGACGAAGUCGC
1744 3ZD4_B  other      synthetic construct    GCGUBCUGGUAUCCAAUCDC
1745 3ZD5_B  other      synthetic construct    GCGUBCUGGAUCCAACDC
1746 3ZP8_B  other      synthetic construct    GCGUBCUGGUAUCCAAUCDC
1747 406D_A  other      synthetic construct    ACCGGAUGGUCGGUG
1748 406D_B  other      synthetic construct    CACCGGAUGGUCGGUG
1749 430D_A  other      synthetic construct    GGUGCUCAGUACGAGAGGAACCGCACC
1750 464D_B  other      synthetic construct    GGGCA
1751 464D_D  other      synthetic construct    GGGGCA
1752 4ATO_B  other      synthetic construct    AAUUGGUGUAACCUUACCGUAGUAGGUGCUAAҔ
1753 4E58_A  other      synthetic construct    CCCCGC
1754 4E58_B  other      synthetic construct    GCCCCGC
1755 4E58_C  other      synthetic construct    GCCCCGC
1756 4E78_B  other      synthetic construct    ACCG
1757 4G6P_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1758 4G6S_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1759 4GKJ_W  other      synthetic construct    CC>AUACC
1760 4GXY_A  other      synthetic construct    GCGGCAGGUGCUCCCGACGUCGGGAGUUAAAAGGGAAGCCGGUGCAAGUCCGGCACGGUCCCGCCACUGUGACGGGGAGUCGCCCCUCGGGAUGUGCCACUGGCCCGGCCGGGAAGGCGGAGGGGCGGCGAGGAUCCGGAGUCAGGAAACCUGCCUGCCGUѮ
1761 4JAH_A  other      synthetic construct    UGUAѮAC
1762 4JAH_B  other      synthetic construct    GUGUAѮAC
1763 4JAH_C  other      synthetic construct    GUGUAѮAC
1764 4JAH_D  other      synthetic construct    GUGUAѮAC
1765 4JAH_E  other      synthetic construct    GUGUAѮAC
1766 4JAH_F  other      synthetic construct    GUGUAѮAC
1767 4LGT_B  other      synthetic construct    GAACGUCGUGAGACAGUCG
1768 4LGT_D  other      synthetic construct    GAACGUCGUGAGACAGUCG
1769 4NFP_A  other      synthetic construct    CAGCUUAAGUCUGC
1770 4NFP_B  other      synthetic construct    GCAGCUUAAGUCUGC
1771 4NFP_C  other      synthetic construct    GCAGCUUAAGUCUGC
1772 4NFQ_A  other      synthetic construct    CAGCUUAAGUCUGC
1773 4NFQ_B  other      synthetic construct    GCAGCUUAAGUCUGC
1774 4NFQ_C  other      synthetic construct    GCAGCUUAAGUCUGC
1775 4NYA_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
1776 4NYA_B  other      synthetic construct    GTPGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
1777 4NYB_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
1778 4NYC_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
1779 4NYD_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
1780 4NYG_A  other      synthetic construct    CGACUCGGGGUGCCCUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
1781 4P3S_A  other      synthetic construct    CGUCCCGCGACGAAGUCGC
1782 4P3S_B  other      synthetic construct    UGCGUCCCGCGACGAAGUCGC
1783 4P3T_A  other      synthetic construct    UGCGUCCCGCGACGAAGUCGC
1784 4P3T_B  other      synthetic construct    UUGCGUCCCGCGACGAAGUCGC
1785 4P3U_A  other      synthetic construct    CGUCUCGCGACGAAGUCGC
1786 4P3U_B  other      synthetic construct    UGCGUCUCGCGACGAAGUCGC
1787 4P3U_C  other      synthetic construct    UGCGUCUCGCGACGAAGUCGC
1788 4P3U_D  other      synthetic construct    GCGUCUCGCGACGAAGUCGC
1789 4PCJ_A  other      synthetic construct    UGCPGGCUAAGGCAUGAAAGUGCUAUGCCUGCUG
1790 4PLX_A  other      synthetic construct    GAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUCUUAAAAAAAAAAAAAGCAAAҔ
1791 4PLX_B  other      synthetic construct    GTPGAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUCAAAAAAAAAAAAGCAAAҔ
1792 4PLX_C  other      synthetic construct    GTPGAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUAAAAAAAAAAAGCAAAҔ
1793 4RMO_B  other      synthetic construct    AGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1794 4RMO_D  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1795 4RMO_F  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1796 4RMO_H  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1797 4RMO_J  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1798 4RMO_L  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1799 4RMO_N  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1800 4RMO_P  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGҔ
1801 4TS0_B  other      synthetic construct    CAGCCGGCUUGUUGAGUAGAGUGUGAGCUCCGUAACUGGUCGCGUѮ
1802 4TS2_B  other      synthetic construct    CAGCCGGCUUGUUGAGUAGAGUGUGAGCUCCGUAACUGGUCGCGUѮ
1803 4UYJ_E  other      synthetic construct    GGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGUAAGGGUUCCCACCCUCGGGCGUGCCUѮ
1804 4UYJ_F  other      synthetic construct    GGGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGUAAGGGUUCCCACCCUCGGGCGUGCCUѮ
1805 4UYK_C  other      synthetic construct    GGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGAAGCCGCCUCUGUAAGGAGGCGGUGGAGGGUUCCCACCCUCGGGCGUGCCUѮ
1806 4V8X_EC  other      synthetic construct    AAAUGJʍʍA
1807 4WFL_A  other      synthetic construct    GCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUUCGGUAACGAAUCGACAGAAGGUGCACGGUѮ
1808 4WFM_A  other      synthetic construct    GCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUGGUAACAUCGACAGAAGGUGCACGGUѮ
1809 4WFM_B  other      synthetic construct    GTPGCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUGGUAACAUCGACAGAAGGUGCACGGUѮ
1810 4X62_W  other      synthetic construct    ACUNUUHAPC
1811 4X64_W  other      synthetic construct    ACUNUUHAPC
1812 4X65_W  other      synthetic construct    ACUNUUHAPC
1813 4X66_W  other      synthetic construct    ACUNUUHAPC
1814 4XW0_A  other      synthetic construct    CCUCCUGC
1815 4XW0_B  other      synthetic construct    GCCUCCUGC
1816 4XW1_A  other      synthetic construct    CCUCCUG
1817 4Y27_A  other      synthetic construct    GCUCCUAGUACGA#GGACCGGAGUG
1818 4Z4F_C  other      synthetic construct    AAUGUGAA
1819 5AOX_F  other      synthetic construct    ƇGCCGGGCGCGGUGGCUCACGCCUGUAAUCCCAGCACUUUGGGAGGCCGAGGCGGGAGGAUCGCGAACACGCGAGACCCCGUCUCUA
1820 5BJO_A  other      synthetic construct    GCGCGAGGAAGGAGGCUGAGGAGGUCACUGCGCC
1821 5BJO_B  other      synthetic construct    GGCGCGAGGAAGGAGGCUGAGGAGGUCACUGCGCC
1822 5BTE_B  other      synthetic construct    UUU
1823 5BTE_C  other      synthetic construct    UUUU
1824 5D8T_B  other      synthetic construct    GAAU5MUCG
1825 5DGV_GF  other      synthetic construct    CPROPRO
1826 5DGV_HF  other      synthetic construct    CCPROPRO
1827 5DHB_A  other      synthetic construct    UACA
1828 5DHB_B  other      synthetic construct    LCCUACA
1829 5DHB_C  other      synthetic construct    LCCUACA
1830 5DHB_D  other      synthetic construct    LCCUACA
1831 5DHC_A  other      synthetic construct    LCCACUUAAGUCU
1832 5DHC_B  other      synthetic construct    LCCLCCACUUAAGUCU
1833 5DHC_C  other      synthetic construct    LCCLCCACUUAAGUCU
1834 5DHC_D  other      synthetic construct    LCCLCCACUUAAGUCU
1835 5DO5_A  other      synthetic construct    GCGAAUUAF2CG
1836 5DUN_A  other      synthetic construct    UUUJAAUGAAGCCACAGGCUGUGAGGGUCCUAAGCCCCUAAUUCAGAAGGGAA
1837 5GUH_B  other      synthetic construct    AUUUUUJ
1838 5HAU_EB  other      synthetic construct    CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1839 5HAU_KD  other      synthetic construct    GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1840 5HBW_A  other      synthetic construct    UACA
1841 5HBW_B  other      synthetic construct    LCCUACA
1842 5HBX_A  other      synthetic construct    LCCACUUAAGUCU
1843 5HBX_B  other      synthetic construct    LCCLCCACUUAAGUCU
1844 5HBX_C  other      synthetic construct    LCCLCCACUUAAGUCU
1845 5HBX_D  other      synthetic construct    LCCLCCACUUAAGUCU
1846 5HBY_A  other      synthetic construct    LCCLCCACUUAAGUC
1847 5HN2_A  other      synthetic construct    UA>GUAC
1848 5HN2_B  other      synthetic construct    GUA>GUAC
1849 5HN2_C  other      synthetic construct    GUA>GUAC
1850 5HN2_D  other      synthetic construct    GUA>GUAC
1851 5HN2_E  other      synthetic construct    GUA>GUAC
1852 5HN2_F  other      synthetic construct    GUA>GUAC
1853 5HNJ_A  other      synthetic construct    UA>GUAC
1854 5HNJ_B  other      synthetic construct    GUA>GUAC
1855 5HNJ_C  other      synthetic construct    GUA>GUAC
1856 5HNJ_D  other      synthetic construct    GUA>GUAC
1857 5HNJ_E  other      synthetic construct    GUA>GUAC
1858 5HNJ_F  other      synthetic construct    GUA>GUAC
1859 5HNQ_A  other      synthetic construct    UA>GUAC
1860 5HNQ_B  other      synthetic construct    GUA>GUAC
1861 5HNQ_C  other      synthetic construct    GUA>GUAC
1862 5HNQ_D  other      synthetic construct    GUA>GUAC
1863 5HNQ_E  other      synthetic construct    GUA>GUAC
1864 5HNQ_F  other      synthetic construct    GUA>GUAC
1865 5HNQ_G  other      synthetic construct    GUA>GUAC
1866 5HNQ_H  other      synthetic construct    GUA>GUAC
1867 5HNQ_I  other      synthetic construct    GUA>GUAC
1868 5HNQ_J  other      synthetic construct    GUA>GUAC
1869 5HNQ_K  other      synthetic construct    GUA>GUAC
1870 5HNQ_L  other      synthetic construct    GUA>GUAC
1871 5HNQ_M  other      synthetic construct    GUA>GUAC
1872 5J4D_HA  other      synthetic construct    AAAUGPAAAA
1873 5J4D_LC  other      synthetic construct    AAAAUGPAAAA
1874 5KRG_A  other      synthetic construct    LCCLCCACUUAAGUCGG
1875 5KRG_B  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1876 5KRG_C  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1877 5KRG_D  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1878 5L00_A  other      synthetic construct    LCCLCCACUUAAGUCGG
1879 5L00_B  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1880 5L00_C  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1881 5L00_D  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1882 5LQO_A  other      synthetic construct    CGGACGGC
1883 5LQO_B  other      synthetic construct    GCGGACGGC
1884 5LQT_A  other      synthetic construct    CGGЖCGGC
1885 5LQT_B  other      synthetic construct    GCGGЖCGGC
1886 5LR3_A  other      synthetic construct    CGGAUGGC
1887 5LR3_B  other      synthetic construct    GCGGAUGGC
1888 5LR4_A  other      synthetic construct    CGGЖUGGC
1889 5LR4_B  other      synthetic construct    GCGGЖUGGC
1890 5LR4_C  other      synthetic construct    GCGGЖUGGC
1891 5LR4_D  other      synthetic construct    GCGGЖUGGC
1892 5LR5_A  other      synthetic construct    GЖCUAGUC
1893 5LR5_B  other      synthetic construct    GGЖCUAGUC
1894 5LR5_C  other      synthetic construct    GGЖCUAGUC
1895 5LR5_D  other      synthetic construct    GGЖCUAGUC
1896 5LYS_A  other      synthetic construct    GGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCѮ
1897 5LYS_B  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCѮ
1898 5LYU_A  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCѮ
1899 5LYU_B  other      synthetic construct    GGGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCѮ
1900 5LYV_A  other      synthetic construct    GGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCѮ
1901 5LYV_B  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCѮ
1902 5MRX_A  other      synthetic construct    GCUƢCUAGUACGAGAGGACCGGAGUG
1903 5NDH_A  other      synthetic construct    GGGGACGACCCCGC
1904 5NDH_B  other      synthetic construct    GGGGGACGACCCCGC
1905 5NDH_C  other      synthetic construct    GGGGGACGACCCCGC
1906 5NDH_D  other      synthetic construct    GGGGGACGACCCCGC
1907 5NDI_A  other      synthetic construct    UUGCAGGACGACCUGAAA
1908 5NDI_B  other      synthetic construct    UUUGCAGGACGACCUGAAA
1909 5NDI_C  other      synthetic construct    UUUGCAGGACGACCUGAAA
1910 5NDI_D  other      synthetic construct    UUUGCAGGACGACCUGAAA
1911 5NEF_A  other      synthetic construct    GUGGGGACGACCCCAC
1912 5NEO_A  other      synthetic construct    GUGGGGACGACCCCAC
1913 5NEP_A  other      synthetic construct    GUGGGGACGACCCCAC
1914 5NEQ_A  other      synthetic construct    GUGGGGACGACCCCAC
1915 5NEX_A  other      synthetic construct    GUGGGGACGACCCCAC
1916 5NOM_A  other      synthetic construct    GUGGGGACGACCCCAC
1917 5NQI_A  other      synthetic construct    GCUƢCUAGUACGAGAGGACCGGAGUG
1918 5NWQ_A  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1919 5NWQ_B  other      synthetic construct    CCGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1920 5NY8_A  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1921 5NY8_B  other      synthetic construct    CCGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1922 5NZ3_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1923 5NZ3_B  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1924 5NZ6_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCACGACAAGACGGGC
1925 5NZD_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1926 5NZD_B  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1927 5O62_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1928 5O62_B  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGAGACGGGC
1929 5O69_B  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGAGCAAGACGGGC
1930 5T16_G  other      synthetic construct    CAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1931 5T16_H  other      synthetic construct    GCAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1932 5T16_O  other      synthetic construct    GCAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1933 5T16_P  other      synthetic construct    GCAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1934 5T3K_B  other      synthetic construct    AGCGNCACACCACCC
1935 5T3K_D  other      synthetic construct    CAGCGNCACACCACCC
1936 5UZ6_D  other      synthetic construct    ʆCACCUCA
1937 5UZ6_F  other      synthetic construct    ʆCACCUCA
1938 5UZA_A  other      synthetic construct    GGAAGAUAUAAUCCAAGAUAUGGUUUGGGAGUUUCUACCAAGAGCCUUAAACUCUUGAUUAUCUUCCC
1939 5V0H_A  other      synthetic construct    LCCLCCACUUAAGUCGG
1940 5V0H_B  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1941 5V0J_A  other      synthetic construct    LCCACUUAAGUCU
1942 5V0J_B  other      synthetic construct    LCCLCCACUUAAGUCU
1943 5V0K_A  other      synthetic construct    LCCLCCACUUAAGUC
1944 5V1K_A  other      synthetic construct    GCGAA8RJAGCG
1945 5V1K_B  other      synthetic construct    CGCGAA8RJAGCG
1946 5V2H_B  other      synthetic construct    GAAZTHUCG
1947 5V2H_C  other      synthetic construct    GAAZTHUCG
1948 5V2H_D  other      synthetic construct    GAAZTHUCG
1949 5VJB_A  other      synthetic construct    CGGGGACGACCCGC
1950 5VJB_B  other      synthetic construct    GCGGGGACGACCCGC
1951 5VJB_C  other      synthetic construct    GCGGGGACGACCCGC
1952 5VJB_D  other      synthetic construct    GCGGGGACGACCCGC
1953 5VP2_CB  other      synthetic construct    CGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1954 5VP2_GD  other      synthetic construct    GCGGGG4GGAGCAGCCUGGUAGCUCGUCGGG?UCAUAACCCGAAGGUCGUCGGTPCAAAUCCGGCCCCCGCAACCA
1955 5VPO_CD  other      synthetic construct    UUCGUUCGGKGACGAAG
1956 5VPO_DD  other      synthetic construct    CUUCGUUCGGKGACGAAG
1957 5VSU_I  other      synthetic construct    AUUUGAAACAAUACAGAGAUGAUCAGCGGUUCCCCUGCAUAAGGAGAACCGUUUUACAAAGAGAUUUGUUUN
1958 5WNP_W  other      synthetic construct    AGACUNUUHAPCUA
1959 5WNT_W  other      synthetic construct    AGACUNUUHAPCUA
1960 5WNU_W  other      synthetic construct    NUUHA
1961 5WNV_W  other      synthetic construct    AGACUNUUHAPCUA
1962 5XWG_A  other      synthetic construct    GCUCGAAAAAGUC
1963 5ZEG_A  other      synthetic construct    UGCGUCѢCGUCGACGAAGUCGC
1964 5ZEG_B  other      synthetic construct    UUGCGUCѢCGUCGACGAAGUCGC
1965 5ZEG_C  other      synthetic construct    UUGCGUCѢCGUCGACGAAGUCGC
1966 5ZEI_B  other      synthetic construct    CGUCѢCGUCGACGAAGUCGC
1967 5ZEJ_A  other      synthetic construct    GCGUCѢCGUCGACGAAGUCGC
1968 5ZEJ_B  other      synthetic construct    UGCGUCѢCGUCGACGAAGUCGC
1969 5ZEM_A  other      synthetic construct    GCGUCѢCGUCGACGAAGUCGC
1970 5ZEM_B  other      synthetic construct    GCGUCѢCGUCGACGAAGUCGC
1971 6A6J_D  other      synthetic construct    CAU?U
1972 6ASO_I  other      synthetic construct    AAUUUGAAACAAUACAGAGAUGAUCAGCGGUUCCCCUGCAUAAGGGGAACCGUUUUACAAAGAGUUUUN
1973 6C8D_A  other      synthetic construct    LCCLCCACUUAAGUCG
1974 6C8D_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1975 6C8E_A  other      synthetic construct    LCCLCCACUUAAGUCG
1976 6C8E_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1977 6C8I_A  other      synthetic construct    LCCLCCACUUAAGUCG
1978 6C8I_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1979 6C8J_A  other      synthetic construct    LCCLCCACUUAAGUCG
1980 6C8J_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1981 6C8K_A  other      synthetic construct    LCCLCCACUUAAGUCG
1982 6C8K_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1983 6C8L_A  other      synthetic construct    LCCLCCACUUAAGUCG
1984 6C8L_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1985 6C8M_B  other      synthetic construct    LCCLCCACUUAAGUCG
1986 6C8N_A  other      synthetic construct    LCCLCCACUUAAGUCGG
1987 6C8N_B  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1988 6C8O_A  other      synthetic construct    LCCLCCACUUAAGUCGG
1989 6C8O_B  other      synthetic construct    LCCLCCLCCACUUAAGUCGG
1990 6CAB_A  other      synthetic construct    LCCLCCACUUAAGUCG
1991 6CAB_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
1992 6CY0_B  other      synthetic construct    GAAUFBUCG
1993 6CY0_C  other      synthetic construct    GAAUFBUCG
1994 6CY0_D  other      synthetic construct    GAAUFBUCG
1995 6CY0_E  other      synthetic construct    GAAUFBUCG
1996 6CY0_F  other      synthetic construct    GAAUFBUCG
1997 6CY0_G  other      synthetic construct    GAAUFBUCG
1998 6CY0_H  other      synthetic construct    GAAUFBUCG
1999 6CY2_B  other      synthetic construct    GAAUOAUCG
2000 6CY4_B  other      synthetic construct    GAAUOBUCG
2001 6CY4_C  other      synthetic construct    GAAUOBUCG
2002 6CY4_D  other      synthetic construct    GAAUOBUCG
2003 6CY4_E  other      synthetic construct    GAAUOBUCG
2004 6CY4_F  other      synthetic construct    GAAUOBUCG
2005 6CY4_G  other      synthetic construct    GAAUOBUCG
2006 6CY4_H  other      synthetic construct    GAAUOBUCG
2007 6DLQ_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUѮ
2008 6DLR_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUѮ
2009 6DLS_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUѮ
2010 6DLT_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUѮ
2011 6DMC_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUѮ
2012 6DMC_B  other      synthetic construct    GTPGAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUѮ
2013 6DMD_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUѮ
2014 6DMD_B  other      synthetic construct    GTPGAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUѮ
2015 6DME_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUѮ
2016 6DNR_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUѮ
2017 6FZ0_A  other      synthetic construct    GGGCAUUUGAACUGUAUUGUACGCCUUGCAGCAAAAGUACUAAAAA
2018 6HBT_A  other      synthetic construct    GUGGGGACGACCCCAC
2019 6HBX_A  other      synthetic construct    GUGGGGACGACCCCAC
2020 6HC5_A  other      synthetic construct    GUGGGGACGACCCCAC
2021 6LVR_C  other      synthetic construct    CGGAUUUALCUCAGDDGGGAGAGCRCCAGABU#AAYAP?UGGAG7UC?UGUGTPCGѢUCCACAGAAUUCGC
2022 6N1D_GB  other      synthetic construct    GUGGGGUUCCCGAGCGGCCAAAGGGAGCAGACUQUA*APCUGCCGUCAUCGACUUCGAAGGTPCGAAUCCUUCCCCCACCACCA
2023 6Q8U_A  other      synthetic construct    GGCGAAGЖACCGGGGAGCCG
2024 6Q8U_B  other      synthetic construct    CGGCGAAGЖACCGGGGAGCCG
2025 6Q8V_A  other      synthetic construct    GCGAAGЖACCGGGGAGCC
2026 6TF0_A  other      synthetic construct    GUUCAACAACCCCGUAGGUUGGGCCGAAAGGCAGCGAAUCUACUGGAGCC
2027 6TFH_A  other      synthetic construct    GUUCAACAACCCCGUAGGUUGGGCCGAAAGGCAGCGAAUCUACUGGAGCC
2028 6TQA_B  other      synthetic construct    GUGCCUAAUAUUUAGGCACѮ
2029 6TQA_D  other      synthetic construct    GGUGCCUAAUAUUUAGGCACѮ
2030 6TQA_F  other      synthetic construct    GGUGCCUAAUAUUUAGGCACѮ
2031 6TQA_H  other      synthetic construct    GGUGCCUAAUAUUUAGGCACѮ
2032 6U6J_A  other      synthetic construct    LCCLCCACUUAAGUCGƇ
2033 6U6J_B  other      synthetic construct    LCCLCCLCCACUUAAGUCGƇ
2034 6U89_A  other      synthetic construct    UACA
2035 6U89_B  other      synthetic construct    LCCUACA
2036 6U8U_A  other      synthetic construct    LCCLCCACUUAAGUCG
2037 6U8U_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
2038 6UFG_B  other      synthetic construct    GCAUCGAUCCGGCGAUCACCGGGGAGCCUUCGGAAGAACGGCCAGGCCCAGUAGAACCGAACGGGUUGGCCCGUCACAGCCUCAAGUCGAGCGGCCGCGCGAAAGCGUGGCAAGCGGGGUGGCACCGCGGCGUUCGCGCGAAAGCGUGGCGUCGUCCCCGѮ
2039 6UFH_B  other      synthetic construct    GCAUCGAUCCGGCGAUCACCGGGGAGCCUUCGGAAGAACGGCCGGAAACGGCCCAGUAGAACCGAACGGGUUGGCCCGUCACAGCCUCAAGUCGAGCGGCCGCGCGAAAGCGUGGCAAGCGGGGUGGCACCGCGGCGUUCGCGCGAAAGCGUGGCGUCGUCCCCGѮ
2040 6WY2_A  other      synthetic construct    CGGνGCCGG
2041 6WY2_B  other      synthetic construct    CCGGνGCCGG
2042 6WY2_C  other      synthetic construct    CCGGνGCCGG
2043 6WY2_D  other      synthetic construct    CCGGνGCCGG
2044 6WY2_E  other      synthetic construct    CCGGνGCCGG
2045 6WY3_A  other      synthetic construct    CGGμGCCGG
2046 6WY3_B  other      synthetic construct    CCGGμGCCGG
2047 6WY3_C  other      synthetic construct    CCGGμGCCGG
2048 6WY3_D  other      synthetic construct    CCGGμGCCGG
2049 6XUR_A  other      synthetic construct    GCGAUUAGCG
2050 6XUS_A  other      synthetic construct    GCGAUUAGCG
2051 6Y3G_A  other      synthetic construct    CCCGGA4AGCUCAGDCGGDAGAGCAGGGGAPUGAAAAPCCCCGUGNCCUUGGTPCGAUUCCGAGUCCGGGCACC
2052 6Y4B_A  other      synthetic construct    CCCGGA4AGCUCAGDCGGDAGAGCAGGGGAPUGAAAAPCCCCGUGUCCUUGGTPCGAUUCCGAGUCCGGGCACCA
2053 6YL5_A  other      synthetic construct    GUACAACGGCUUCCUGGCGUGACC
2054 6YL5_C  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2055 6YL5_E  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2056 6YL5_G  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2057 6YL5_I  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2058 6YL5_K  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2059 6Z18_A  other      synthetic construct    CGGμGCCGG
2060 6Z18_B  other      synthetic construct    CCGGμGCCGG
2061 7BAI_D  other      synthetic construct    ƇACGCUAGCGUC
2062 7BAI_F  other      synthetic construct    ƇACGCUAGCGUC
2063 7BPF_A  other      synthetic construct    CUGCG
2064 7BPF_B  other      synthetic construct    GCUGCG
2065 7BPG_A  other      synthetic construct    CUGCGC
2066 7BPG_B  other      synthetic construct    GCUGCGC
2067 7BPG_C  other      synthetic construct    GCUGCGC
2068 7BPG_D  other      synthetic construct    GCUGCG
2069 7EDT_A  other      synthetic construct    GACUCCGGCC
2070 7EDT_B  other      synthetic construct    GGACUCCGGCC
2071 7F3I_D  other      synthetic construct    GU?U?
2072 7F3J_D  other      synthetic construct    UCAU?
2073 7F3J_F  other      synthetic construct    UCAU?
2074 7F3J_H  other      synthetic construct    UCAU?
2075 7F3K_B  other      synthetic construct    CAU?U
2076 7JJD_A  other      synthetic construct    GCUCCUAGUACGAʆAGGACCGGAGUG
2077 7JJE_A  other      synthetic construct    GCUCCUAGUACGAAGGACCGGAGUG
2078 7JJU_A  other      synthetic construct    GAACUAGCUCAGCAUACACGAGUUGCAAGCAUGGGAAGUUCAAGCCUCGҊ
2079 7JJU_B  other      synthetic construct    GTPGAACUAGCUCAGCAUACACGAGUUGCAAGCAUGGGAAGUUCAAGCCUCGҊ
2080 7JNH_B  other      synthetic construct    GGCUGAGUUUUUACAUGACAAAGUUUUUAACGAGGCAGCGGCGAAAGUCGCUGUACUCUUUUCUUUGUCAUGGUUUUCUCAGCCѮ
2081 7JZ0_F  other      synthetic construct    M7GʍUUA
2082 7KUK_A  other      synthetic construct    LCCLCCACUUAAGUCG
2083 7KUK_B  other      synthetic construct    LKCLCCLCCACUUAAGUCG
2084 7KUM_A  other      synthetic construct    LCCLCCACUUAAGUC
2085 7KUM_B  other      synthetic construct    LKCLCCLCCACUUAAGUC
2086 7KUN_A  other      synthetic construct    LCCLCCACUUAAGUCGF2
2087 7KUN_B  other      synthetic construct    LKCLCCLCCACUUAAGUCGF2
2088 7KUO_A  other      synthetic construct    LCCLCCACUUAAGUCGFL
2089 7KUO_B  other      synthetic construct    LKCLCCLCCACUUAAGUCGFL
2090 7KUP_A  other      synthetic construct    LCCLCCACUUAAGUC#
2091 7KUP_B  other      synthetic construct    LKCLCCLCCACUUAAGUC#
2092 7L6R_C  other      synthetic construct    ʍUUAA
2093 7LO9_A  other      synthetic construct    GCGHAUAGCG
2094 7LO9_B  other      synthetic construct    CGCGHAUAGCG
2095 7LO9_C  other      synthetic construct    CGCGHAUAGCG
2096 7LO9_D  other      synthetic construct    CGCGHAUAGCG
2097 7TDA_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
2098 7TDB_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
2099 7TDC_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCҔ
2100 7TZR_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
2101 7TZR_B  other      synthetic construct    GTPGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
2102 7TZS_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
2103 7TZS_B  other      synthetic construct    GTPGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUѮ
2104 7U87_A  other      synthetic construct    LCCLCCACUUAAGUCʆʆ
2105 7U87_B  other      synthetic construct    LCCLCCLCCACUUAAGUCʆʆ
2106 7U88_A  other      synthetic construct    LCCLCCACUUAAGUCʆʆ
2107 7U88_B  other      synthetic construct    LKCLCCLCCACUUAAGUCʆʆ
2108 7U89_A  other      synthetic construct    LCCLCCACUUAAGUCGʆ
2109 7U89_B  other      synthetic construct    LKCLCCLCCACUUAAGUCGʆ
2110 7U8A_A  other      synthetic construct    LCCLCCACUUAAGUCGʆ
2111 7U8A_B  other      synthetic construct    LKCLCCLCCACUUAAGUCGʆ
2112 7U8B_A  other      synthetic construct    LCCLCCACUUAAGUCGʆ
2113 7U8B_B  other      synthetic construct    LCCLCCACUUAAGUCGʆ
2114 7V9E_A  other      synthetic construct    GGGCUGACCGACCCCCCGAGUUCGCUCGGGGACAACUAGACAUACAGUAUGAAAAUACUGѢGCCCGC
2115 7VNV_A  other      synthetic construct    GGCC4ACG4CLUCPA(CBUGGUUAGGACRCCGCCBUJACAAGGCGGAGGN??UGGG2PBOѢGUCCCAGCGGGCCCACCA
2116 7WL0_B  other      synthetic construct    GGЖCUGC
2117 7WL0_D  other      synthetic construct    UGGЖC
2118 7WL0_F  other      synthetic construct    UGGЖCUGC
2119 8CLM_B  other      synthetic construct    Jʍ##ʍ#ʍB
2120 8CLM_D  other      synthetic construct    UZLJʍ##ʍ#ʍB
2121 8CLM_F  other      synthetic construct    UZLJʍ##ʍ#ʍB
2122 8DZK_H  other      synthetic construct    ʆUGUU
2123 8SWG_A  other      synthetic construct    LCCLCCACUUAAGUCG
2124 8SWG_B  other      synthetic construct    LCCLCCLCCACUUAAGUCG
2125 8SWO_A  other      synthetic construct    LCCLCCACUUAAGUCG
2126 8SWO_B  other      synthetic construct    LCCLCCACUUAAGUCG
2127 8SX5_A  other      synthetic construct    LCCACUUAAGUCG
2128 8SX5_B  other      synthetic construct    LCCLCCACUUAAGUCG
2129 8SX6_A  other      synthetic construct    LCCLCCACUUAAGUCG
2130 8SX6_B  other      synthetic construct    LCCLCCACUUAAGUCG
2131 8SXL_A  other      synthetic construct    ACUUAAGUCU
2132 8SXL_B  other      synthetic construct    ACUUAAGUCU
2133 8SY1_A  other      synthetic construct    LCCLCCACUUAAGUCG
2134 8SY1_B  other      synthetic construct    LCCLCCACUUAAGUCG
2135 8SY1_C  other      synthetic construct    LCCLCCACUUAAGUCG
2136 8SY1_D  other      synthetic construct    LCCLCCACUUAAGUCG
2137 tdbR00000643  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGѴAUAGCUCAGNGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCAAAUCCAGGUGCCCCCUCCA
2138 tdbR00000644  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGʆGGUAGAGCACUUGACUGCAGAUCAAGHAGUCCUUGGUUCAAAUCCAGGUGCCCCCUCCA
2139 tdbR00000646  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGNGUAGCUCAGUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCHAAUCCAGGUGCCCCCUCCA
2140 tdbR00000650  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGGGGUAGAGCAUUUGACUGCAGAUCAAʆAGGUCCCUGGUUCAAAUCCAGGUGCCCCCCCCA
2141 tdbR00000652  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGNAUAGCUCAGGGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCCGGUUCAHAUCCGGGUGCCCCCUCCA
2142 tdbR00000660  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCAHAUCCGGGUGCCCCCUCCA
2143 tdbR00000662  SO:0000257 tRNA  Asp  GUC  Homo sapiens  Cytoplasm  UCCUCGUUHGUAUAGUGGUUAGUAUCCCCGCCUGUCACGCGGGAGACCGGGGNUCHHUUCCCCGACGGGGAGCCA
2144 tdbR00000665  SO:0000257 tRNA  Asp  GUC  Homo sapiens  Cytoplasm  UCCUCGUUAGUAUAGUGGUGAGUʆUCCCCGNCUGUCACGCGGGAGACCGGGGUUCʆHUUCCCCGACGGGGAGCCA
2145 tdbR00000692  SO:0000263 tRNA  Ile  IAU  Homo sapiens  Cytoplasm  GGCCGGUUAGCUCAGUCGGCUAGAGCʆUGGUGCUIAUAACGCCAAGGUCGCGGGUUCGANCCCCGUACʆGGCCACCA
2146 tdbR00000693  SO:0000263 tRNA  Ile  IAU  Homo sapiens  Cytoplasm  GGCCGGUUAGCUCAGUUGGUUAGAGCʆUGGUGCUIAUAACGCCAAGGUCGCGGGUUCGHNCCCCGUACʆGGCCACCA
2147 tdbR00000739  SO:0000268 tRNA  Pro  ѴGG  Homo sapiens  Cytoplasm  GGCUCGUUGGUCUAGGGGNAUGAUUCUCGCUUѴGGGUGNGAGAGGUCCCGGGUUCAAAUCCCGGACGAGCCCCCA
2148 tdbR00000820  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAACGGUAGCGCGUCUGACUCCAGAUCAGAAGGUUGCGUGUUCAAAUCACGUCGGGGNCACCA
2149 tdbR00000822  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAACGGUAGCGCGUCUGACUCCAGAUCAGAAGGCUGCGUGUUCGAAUCACGUCGGGGNCACCA
2150 tdbR00000824  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAAUGGUAGCGCGUCUGACUCCAGAUCAGAAGGUUGCGUGUUCAHGUCACGUCGGGGNCACCA
2151   mRNA  unknown    Homo sapiens    AAAAAAGAAAAAAGCCAAAUGUGGUUGCUCACACCUGUGAUCUGAGCACUUUGGGAGGCCAAGGUGAGAGGAUCGCUUAAGCCUAGGAGUUCAAAACCAGCCUCGGCAACAUGGUGAGAACCCAUCUGUACAAAUCAUUUAAAAGCUAGCUGGGUGUGCUGCUGCAUGCCUGUGGUCUCAGCCACUUGGGAGGGUGAGGCAGGAGGAUCGCCCGAGCCUGGAAGAUCGAGGUUGCAGUGAACCAUGAUUGCACCACUGCACUCCAGCCUGGACAACAGAGCAAGACCCUGUCUUAAAAAAAGAAGAAAGAAAUGUGGAGGGUUUCUUACUCGUCAGCUGUAGCCUUUGCUGAUAAGAUGCCCUUGUGUCUCUGCAGUGUGUGAUCCAGUCUUGGGUGACAAGUGGGACGGCGAAGGCUCGAUGUACGUCCCGGAGGACCUCCUUCCCGUCUACAAAGAAAAAGUGGUGCCGCUUGCA#ACAUUAUCACGCCCAACCAGUUUGAGGCCGAGUUACUGAGUGGCCGGAAGAUCCACAGCCAGGAGGAAGCCUUGCGGGUGAUGGACAUGCUGCACUCUAUGGGCCCCGACACCGUGGUCAUCACCAGCUCCGACCUGCCCUCCCCGCAGGGCAGCAACUACCUGAUUGUGCUGGGGAGUCAGAGGAGGAGGAAUCCCGCUGGCUCCGUGGUGAUGGAACGCAPCCGGAUGGACAUUCGCAAAGUGGACGCCGUCUUUGUGGGCACUGGGGACCUGUUUGCUGCCAUGCUCCUGGCGUGGACACACAAGCЖCCCCAAUAACCUCAAGGUGGCCUGUGAGAAGACCGUGUCUACCUUGCACCACGUUCUGCAGAGGACCAUCCAGUGUGCAAAAGCCCAGGCCGGGGAAGGAGUGAGGCCCAGCCCCAUGCAGCUGGAGCUGCGGAUGGUGCAGAGCAAAAGGGACAUCGAGGACCCAGAGAUCGUCGUCCAGGCCACGGUGCUGUGAGGGCCCCGCCGCUUGCCCGUGACACGCAGCGCGUUGGUGUCUCCGUGUUUGUCCCUGUGAAAACAUGUAACGUCUGCCUUAGAGCCAUGACCGAAЖCUUGAUAUUUUUUU
2152   mRNA  unknown    Homo sapiens    AAAAAGUUCGCGCUGCUGGUCCCGCGCGGGCGGCCCCUGGGCUUUGUGUCCACCAGGACAGCGGGCCGGGCUCCCUGCAGGCGCGGGCGGCGCCGAACGGUGCUCAGCAACCACCCGGACAGGGCCAGGCCGUUUUCUCCCGCUCAGGCAUUAGUCGUUGGCUGUGGGCCGCCGCGGGAAGUUGAGGCCUACCACGGAGGAGGCUGCUGAGGUGGAUCUCAGGGGAUCCGCAAGGGCUCCCUCACCCUUGCCGGGACCCUGGGAACCCGAAACAAAAUCCUACGCCACCAGCCCGCCGAAUGCGCCCCCUCGGCCGGGGGUCCUGGGUCUUCAGAGAAGAACUCGGCCGAAUGCGGUCAGAAAGCCCGCGAACCGCCUGGACCUGCAGGCCCCGCCGCUUGGAGCUCCCGCCUUUCCCGACCGAGCCCGUGUCUGCUCGUGUGUCUCACUGAUGUCUUAGGUCUCAAAAAAAAAAGAAAAGAAAAGGUUUUUAGUAGACAGAAGAGAAAUGGGGCCGUGGGUUCGUGGUCCCAGGGGGAAACUGACGUCGCAUGAGGUCGUCGUCCCUCAGCUUGAGCUCAGCGGAACAUAAGCUUGCAGAGGUGGAAACCACGGAAGGUUUGGGUGUCUUGGAGCUCUCUGGACACCGAAGCCCGGЖCACAGUCCCGGGGUCCGCACCGCCUGUGACCUGUGGCGGGЖCCGCCGGGGUGGGCGUUUUCUCAGCUGGCGCGCGCGUAGGUGGAЖCUUGGGAAACUAЖCUGGAGCGAAGUGGCAAAAAACCAAGACAGGGCCGGUGACCUCGCGCAGGCCGUCCUUAЖCUGUGGAGUAUUCCUUCAGCUAACCCCUUUAUUUCAUGUGUCCAAGUCUGGUUUCUGGGUUUCUUUGUAGUCCUCCGGGCCUGUUCGUGCGCCUUCACUUGCAAAAGGUUCGUCGUGGAGGGCCGUGUGCUUGUUUGCAGCAGUAACGAUGCCCUUCCCGAGCGUGCUGGAGUGGCUCCUCGCUGACGCAAGCUCACCUUGCAGCCUCCUCAGCAACUGCAACUUAAACGCGCCCUCAGGAAGCCCUGGAAUCUCGCUCAGAAUUUUUUUUCUUUUUUUGAGЖCAGUCUCGCUGCGACGCCCAGGCUAUAGCGCAAUGGCGCGAUCUCGGCUCCCUGCAACCUCCCUCAGGAAGCCGUGGAAGCUCGACCGCCAGAAЖCUUCCUUCUCCUGACUCAGGCCACAGUCUUCUGUGUGGCUGGUCUCCAGGAGGUAAGGCCCGCCCUGCAGGCAACACCGGUGCUUGGGCUCCUGCUGAGCAGUUCUUUCCUGCGAGUAACAGAACCAGGGAGGGAGGUGGGCUGUGGCCUCCCCUGCCCCUACAGUCGUCUCCUGCAGCUCCCACCAUGCUGGACUCAUCAGCAGCAGAGCAAGUGACCCGACUGACGCUGAAGCUCUUGGGACAGAAGCUGGAGCAAGAACGGCAGAACGUGGAAGGGGGACCUGAGGGCCUCCACCUCGAGCCAGGAAAUGAGGACCGGCCGGACGAUGCCCUGCAGACUGCUCUGAAGAGAAGGAGGGACCUUCUGCAGAGACUCCGGGAACAACACCUCCUGGACGAGCUCUCUCGGGCCCAGGCCUGGAGCGGGCCAAGCAGAGGAGCCCUCGGGUCAGCCCUGCCCCCAGAGCUGCCCCCCACGGGCAUCCUACCCACUGCCUCCCCAUCCCCGCUGGCCCCAGACCCGCCAAGGAUCAUCCUGCCUACGGUCCCCCAGCCUCCUGCCACCAUCAUUCAGCAGCUCCCUCAGCAGCCACUCAUAGCACAGAUUCCUCCUCCCCAGGCCUUCCCUACUCAACGGUCAGGAAGUAUUAAGGAAGACAUGGUGGAGCUGCUGCUGCUGCAGAACGCACAGGUGCACCAGUUGGUCCUGCAGAACUGGAUGCUCAAGGCCCUGCCCCCAGCCCUGCAGGACCCGCCACAUGUGCCCCCGAGGGUCCCACGAGCUGCCAGGCCAAGGCUGCCUGCCGUGCACCACCACCACCACCACCACCAUGCUGUGUGGCCACCUGGGGCUGCCACUGUCCUCCAGCCCGCCCCCAGCCUGUGGACGCCUGGCCCACCCUGAGUGUGAGUCACAGAGACCCUGGCCGGGGCACCCUCCACCCCCAGGCUUCCUCAGGGCUGUGGGCUGUGGCGGGACUAUGGAAGGGAGCAGGGAGAGACCCUGCCACCACCCGGAGUGGCUACGCGAGUGUGGACUGCAGGCUCCUCCUGGGGAAGCUGGGCAGGCUCGCUUUCUGGUCACGGGGCCAUUCCAGGGGGCAUCCCUUGCUCCGGGUCCCCUGCAGUGAGGGGCCUGUGAACCCCACCAGGGCAACAGCCCCUCCCAGGGACCCCUCCUUUCCUGUAGGGCGGCGCCGGCCCACCUGGGAGCCUCAGAUCCCCCUCUUCCAUCACGGAGGUAAAGUUGAGGCCGUGGACGCCACCAGCCUGAUGAAAUAAAGAUUUCAUCCAGAAAGAGUUUAAGAAAAUCUCAGCUCAGGAGCCAGAACAGAAAAGAUCAAUAGCUUUAGCCACAUGGAAGUGUGAACAUCCUGAUGGGGAAAAUACCACAAAGUCUAAUUUAAUAACUAGGGACACCUGUGUCCACAGCUGUGGCACAGACUCCCACUAAAGAAGUAGGGGUGCAUGGCUCAUGCCUGUAAUCCCAGCACUUUAAGAGGCUGAGGCAGGAGGAUCACUUGAGCUCAGGAAUUCGAGACCAGCCUGGGUCACAUAGCAAGACCCCGUCUCUACAAAAAAUAAAUUUAAAAAACUAGCCAGGUGUGGUGAUAUGCGCCUGUUAUCUCAGCAGCUCUGGGGGCUGAGGUGGGAGGAUUGCUUGAGCCCAGGAGUUAGAAGCUGCAGUGAGCUCUGAUGGAACCACUGCACUAUAGCCUGGACCACAGAGCAGGCCCCUGUCUCAAAAAUAAAAUAAAAAAGUGAAAGAAGCAA
2153   mRNA  unknown    Homo sapiens    AAAAAUAACUCAUAUUGUCUCUGAGGUUCUUUUCCAGUGAAGUGUUUAGUAUUGCUGCUAUUUGGAGUACAAAGUUGGAGCUUUUAAAGAACCUGGGAGUUCAAAAGUAUAAGGAGAAAUAAAUGAAAAGCAGAAAUAUUUUGAGGCAAUAAGUAUAGACUCAAAUCUAUAUUAUGACCCACUUGUAGCACCACUUGGAAUUCUACCAAUAAGAGAUUUAUUUGGGCAAACUAUAAUGGUUGUUGGAAAUUGCAAAUCUUAGUGUGAAUUAUUUUAGUCCAGUUGGUUUCUUUCUUUCUCUUACCUGAAAUGAACUAUACUGAGGCAAUAGGAGCUUUGUAUAGUAAUUUAGGAGUGUAAAACAACUUAGGGAAAAGGAUUAUUAAGCAGGAUGAUUGGGAUGACAUCAUGUGAAAUUUAGGAAUUGGAGGCAUUGGGAAUUGAGAGGGUGCUAACAAAGGAAAACAGCUUAUUUUAGAAUUUGUCUGGAGGAUGUAGAAUUGAAGAAGUUUUGGUAUUUCUUCUGCAGCGGCCCCAGUGCCCUUGACCAGGAACAUCUCUUGGAGUCAGUAGUUUUCAUGAGGCUGACCUAGGAACUUGGCCAACAUAUGCAACAUUGUUCUAUUUAAAAUAUUCCUUGAAUUAAAUUCGAUAGUAUCAAUUUAAAACAUAAAGUUUUCACUCAACUCCUUUAGAAGUUAGAUUUUAGCUUGUACUUGUCUUUACCUCUUCUGCUGAUUAUCAGUUGACAACACUGAGAUUACUUUCAUUUUCCUGUAAGUCAUUAUGAAUUUUUCUGGUCAACCAUGAGUUAUCAGUGGAAGCAAUAAGUAGGAAGUACUGUAAAAGAAUUACAAUAAAAUAAGAGAAACCACUUGGAGAGCAAGAGGGCUUGUGGACUUGGGGGAGCGGUUGUGAGAAAUGUCUCAGAACUUAAUUUACAAAUAACAUUGGUAGAUUGACAUGUUGUCUUUCCUAUAAAGUAACUUUACCUCUGUCUUAAUAGUAAACUACUAUGAAAGUGAAUUCGUGUUCCUCUUGAUUUGUGAACUGAUGAAAAUUACAAAAUGUGGAGUUUUUUCCCCAGAUAAAGUAAAUGGUGGAAUAUUCAGGUUUAUUUGAUACCUAGAAAAUACCUGAAAUUUUCCGUGGUAAUAGGCACAUUUUGAAACUGUUUUUUUUUUCUCUGACAAUUGAAUAUAUUUUAUAUAUAGUUGAUUUUGAUUAUUGAAGACUAAGGAAAAUUUAAGUUUGAAUGUUAGAAAAUGAAUUUUGCAAAUUUGAAGUAAUUUUAUUCUUUAUGUUUUGGGAUUGUAGUUAUGUUAGAUAUUCCUCAGUUGGGGUAAUUGUCUUGCAUCAUUAUCUCUUAUCAUAAUCUGUUUUUCUUCACACAGUGUUAUAGUUUUGCCGCUGGACUCUUCCCUCCCUUCCCCCACCCCAUCAGGAUGAUAUGAGACUUGAAAGAAGACGAUGCAUACAGGAGGAGAGACUUCAGCAUGCAAACCUUCAUCUGUUCGGCUUGCACCGUCAUUUUCAUUCCAUGCUGCUGGCCUUCAGAUGGCUGGACAGAUGCCCCAUUCACAUCAGUACAGUGACCGUCGCCAGCCAAACAUAAGUGACCAACAGGUUUCUGCCUUAUCAUAUUCUGACCAGAUUCAGCAACCUCUAACUAACCAGAGGCGGAUGCCCCAAACCUUCCGUGACCCAGCAACUGCUCCCCUGAGAAAACUUUCUGUUGACUUGAUCAAAACAUACAAGCAUAUUAAUGAGGUUUACUAUGCAAAAAAGAAGCGAAGACACCAACAGGGCCAGGGAGACGAUUCUAGUCAUAAGAAGGAACGGAAGGUUUACAAUGAUGGUUAUGAUGAUGAUAACUAUGAUUAUAUUGUAAAAAACGGAGAAAAGUGGAUGGAUCGUUACGAAAUUGACUCCUUGAUAGGCAAAGGUUCCUUUGGACAGGUUGUAAAGGCAUAUGAUCGUGUGGAGCAAGAAUGGGUUGCCAUUAAAAUAAUAAAGAACAAGAAGGCUUUUCUGAAUCAAGCACAGAUAGAAGUGCGACUUCUUGAGCUCAUGAACAAACAUGACACUGAAAUGAAAUACUACAUAGUGCAUUUGAAACGCCACUUUAUGUUUCGAAACCAUCUCUGUUUAGUUUUUGAAAUGCUGUCCUACAACCUCUAUGACUUGCUGAGAAACACCAAUUUCCGAGGGGUCUCUUUGAACCUAACACGAAAGUUUGCGCAACAGAUGUGCACUGCACUGCUUUUCCUUGCGACUCCAGAACUUAGUAUCAUUCACUGUGAUCUAAAACCUGAAAAUAUCCUUCUUUGUAACCCCAAACGCAGUGCAAUCAAGAUAGUUGACUUUGGCAGUUCUUGUCAGUUGGGGCAGAGGAUAUACCAGUAUAUUCAGAGUCGCUUUUAUCGGUCUCCAGAGGUGCUACUGGGAAUGCCUUAUGACCUUGCCAUUGAUAUGUGGUCCCUCGGGUGUAUUUUGGUUGAAAUGCACACUGGAGAACCUCUGUUCAGUGGUGCCAAUGAGGUAGAUCAGAUGAAUAAAAUAGUGGAAGUUCUGGGUAUUCCACCUGCUCAUAUUCUUGACCAAGCACCAAAAGCAAGAAAGUUCUUUGAGAAGUUGCCAGAUGGCACUUGGAACUUAAAGAAGACCAAAGAUGGAAAACGGGAGUACAAACCACCAGGAACCCGUAAACUUCAUAACAUUCUUGGAGUGGAAACAGGAGGACCUGGUGGGCGACGUGCUGGGGAGUCAGGUCAUACGGUCGCUGACUACUUGAAGUUCAAAGACCUCAUUUUAAGGAUGCUUGAUUAUGACCCCAAAACUCGAAUUCAACCUUAUUAUGCUCUGCAGCACAGUUUCUUCAAGAAAACAGCUGAUGAAGGUACAAAUACAAGUAAUAGUGUAUCUACAAGCCCCGCCAUGGAGCAGUCUCAGUCUUCGGGCACCACCUCCAGUACAUCGUCAAGCUCAGGUGGCUCAUCGGGGACAAGCAACAGUGGGAGAGCCCGGUCGGAUCCGACGCACCAGCAUCGGCACAGUGGUGGGCACUUCACAGCUGCCGUGCAGGCCAUGGACUGCGAGACACACAGUCCCCAGGUGCGUCAGCAAUUUCCUGCUCCUCUUGGUUGGUCAGGCACUGAAGCUCCUACACAGGUCACUGUUGAAACUCAUCCUGUUCAAGAAACAACCUUUCAUGUAGCCCCUCAACAGAAUGCAUUGCAUCAUCACCAUGGUAACAGUUCCCAUCACCAUCACCACCACCACCACCAUCACCACCACCAUGGЖCAACAAGCCUUGGGUAACCGGACCAGGCCAAGGGUCUACAAUUCUCCAACGAAUAGCUCCUCUACCCAAGAUUCUAUGGAGGUUGGCCACAGUCACCACUCCAUGACAUCCCUGUCUUCCUCAACGACUUCUUCCUCGACAUCUUCCUCCUCUACUGGUAACCAAGGCAAUCAGGCCUACCAGAAUCGCCCAGUGGCUGCUAAUACCUUGGЖCUUUGGЖCAGAAUGGAGCUAUGGЖCGUUAAUUUGACCGUCUACUCCAAUCCCCGCCAAGAGЖCUGGCAUAGCUGGЖCAUCCAACAUACCAAUUUUCUGCUAAUACAGGUCCUGCACAUUACAUGЖCUGAAGGЖCAUCUGACAAUGAGGCAAGGGGCUGAUAGAGAAGAGUCCCCCAUGACAGGAGUUUGUGUGCAACAGAGUCCUGUAGCUAGCUCGUGACUACAUUGAAACUUGAGUUUGUUUCUUGUGUGUUUUUAUAGAAGUGGUGUUUUUUUUCCAAAAACAAAGUGCAAAGCUGCUUGAAUCAGGAGGAGAUUAACACACUGAACCGCUACAAGAGGGCAAAGCUGAUUUUUUUUUUAACUUGAAAAGAUUGCAAAGGGЖCAUUGAAGUGUUUAAAAGAGCCAUGUCCAAACCCAUCUUCAUGGAUAGCUCAGAGGUAUCCUCUUUUUGCUCCCCCAUUUUAACUUGCCACAUCCCAGUCACAGUGGGGUUUUUUUGUCUUUCUAUUCAGCAAAAGUUAAUAUUCAGAUGUUGGUCUUGGUCAUUUGCCAACUAAUUUUAAAGUAAAAGGCACUGCACAUAAUUUGCAUAAAGGGCCCCAUGAGGGUGUUUUUUUUUUUUCUUUUUGUCCCCCCCAUCCCCCUUUUUUUUUGUUUUGUUCUGUUUUGUUUUGGGUGGGAGGGUGGGAAAUUUGGGUUUUUAAGUCCUCUAAACACACUUGGGCACGGAAAUGCAGUACUGUAAGGAAGAGGGACCUCCAGCUUCCACAAACACCAUCUUCAGCUGUAUGAAAGGGЖCGGUUGUGGUGAAGUUUGUCAGGCACAGUAAGCAUGCUGAGUGGCGGGGAUCAGAЖCUCUCCUAUCUGAACCUACUGAGGAGCAAAGCAGCAAUUACAUGGGAUCCUGUGGCUCUCCCGUUGCAGAGGCCACAGGAAGAUAGGAUGGAACGUGЖCUGGUCUCCUAACCAAGGUGCACUGAGAAGCAAUCAACGGGUCGGUCGUGGCCAGUCCUGGGGAGGUCUGAGUGGUGGUCUUUGGGAUAACCUUUGGCCUUAUGGЖUUUGGЖCUCGAAAUUAGAAGAGCCUACCAUUUCAGAUGCAAUCACUUUUGGЖCAUGCUUUUGCAGЖCAGUCCUUAAUGCUGAAAACACAGAGAAUGGGUAAUUCAAGAGGCCUUUCUUUUAAAAUAGЖCUUUUGUGACCCACUAAUUGUAAGGUAUUGCAAGGUCACUUUGCGUGUGUCAUAAAGUUGACUUCCUUAUUGGUUGAAGGUCACAGAAGUAGUGGUUUGCUUUGAUGGAAAUAGCUACAGCUGUGUCCCUUCCUGCUUUUUACUUUUUCUUUUGCUUUUUCUCGGCACGUGGUAUCUCCACCAUUUCUUCUGCACAAAGAUGUCUUCUGUUCAPCCUGAACAUUUUUAAAAAAUGCAGAAUUUUAUGUGACUGCUUUUUUGCCUCACAAUUAUGCUGUGAAUUUUACAAAAAUUUA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UUGGAACAUAACCACAUUCAUUUGCAAGUUGUCCACGGCCACUUUGGUGCUACUGUGGCAGAAUUGAGUAGUUGCUGCAGAGACCGUAUGAUGAGAAUAUGUGGCAUUCUCAUCAUUUUGCCCUGCCGCUCUGUGCAAUGUAAAUUGCAGUGACACAGUUAUAACUCAGCAGCAUUUUGAAUGCCACUUGUAUUCCCAUGCUACAACAUUUUAUUUUUUAUUACCAAUAUAUACAAGAAAAGUGGAUUUCAAAUAUCAUUGUGCUUUUAAGGUACAAUGGAGUAUGAAUUGUUACUGAAUUAGGCAGCAAAGUGCAAUGACAUGGUAGCUGUCCUAAGGAACACAAUACAACCAGGUGCAGUGGCUCAUGCCUGUAAUCCCAACGAUUUGGGUGGCUGAGGUGGGAGAAUCACUUGAACCCAGGAUUUGGAGACCAGCUUGGGUGGUAUAGUGAGACCCCCCAUCUCCACAAAAAGUAAAAAAAAACCAAAAUACAUGUUGUUACUUCCCAUCUUAGCACUCAUCAAGAUAUUUCUAAUUCACAAGAAAGCAAUGGUCAGAAAAAUUAGAAAAUUUAAAAUUGAAUAUCUCAUCACAGAAUUUAUUCACAAAAAUAAAAAAUGAAAAUGAAGCUACAACCAAAGUAAGUUUCAGAUGGCUCAUUUGUUAGCCAAGCAAGGAAAGUCACUUAUGGUGAAUUAAUUAAAUCAUGCUUGAUUACUGCAGCUGAAGAAACAUGCUCAGAGAAAGUAAACUUGUUUAUUGGCCUUUCCACGACAACAGUUGCUCAAAGAGUUGACAUUAGGAAUGACAUCAGUAGUCGACUAAAAAGGCAAAUGGUUUUGAGUGGUUUCCCCUGACUCUCAUGACAGGGGUCACCAUAUGUUAUGCACACUGCUCCGCUAUUGCUCUUUAUUUGAGGAGCCAGUACCAAGUUGGAAGUAACUGAAGAAUUGGCCUCUAUCAAUAGUCUUAUGUGGAACAACUACUGGCAAAAGUAUUUUCAAAGCUGAGAAAACUGGUCAGGUGUGGCGGCUCAUGCCUAUAGUCCCAACACUUUGGGAGGCCAAGGUGGGCAGAUCACCUGAGGUCAGGAGUUUGAGACCUGCCUGGCCAACAUGGUGAAACUACAUCUCUACUAAAAGUACAAAAAUUAGCCGGGCAUGAUGGCAUGCACUGGUAAUUCCAGCUACUCAGGAGGCUGAGGCAGGAGAAUCGCUUGAACCCAGGAGGUGGAGGUUGCAGUGAGCUGAGAUUGCACCACUGUACUCCAGCCUGGAUGACAGAGUGAGAACAUUGUCUCAAAACAAAAAGUUGAGAAAACGAAUUCAGUACACCCUGAAGUGGAAUCUGCUAAGAUGUGUUAUGACUGUUGGUAGUGGAAAUAUAUGUGUGUAUUAGUCCAUUUUCAUACUGCUAUAAAGAAAAGCCUGAGACUGGGUAAUUUAUAAAGAAAAAGAGGUUUAAUGGACUCACAGUCCCGCAUGGUUGGGGAGGCCUCACAAUCGUUGUGGAAGGUAAAGGAGAAGCCAAGGCAAGUCUUAGGUGGCGGCAAGCAAGAGAGUGUGUGCAGGGGAACUGCCCUUUAUAAAACCAUCAGAUCUCAUGAGACUUACUCACUAUUAUGAGAACAGCAUGGUAAAAUCCUGCCUCCAUGAUUCAGUUACCUCCCACUGGGUCCUACCCAUGACACGUGGGGAUUAUGGGGGCUACAAUUCAAUGAGAUUUGGGUGGGGACACAGCUAACUCAUAUCAGUGUGGAAUAGAAAAUGGCUCAGUUGGACAACUUACAAAGCUUGUAAUAAUAUAAGGUGUUAAAGCCUAUAGAUUAUUCAUUGUAUUAUUUAAGUCAACAGAUACUUUGUGAGAAAUAUUUGAAUCUAUCAUGCAUUAUUGAACCAGUAUUGUCAAUAGUGAACUUCCUUUAGCUCUUGUGGACUUCACUAUCAACAGCUCUCAUGAAUUUUUGUCAGAAAUAUUAGCUGAAUAUCCCGACAUGGCCUGUAAUACAGCAGUUCAAUGGUUUAGUAGUGGUAAAGUUUCAUUUAAGUUUUGAGCUCAGGACAAAGAUUGAAAUUUUUCUGAAUGAGAACUGCCCCGAACCACCGUUACUAAACACUGAAUAGUUUUGGAAAUUCACUUUUGCUGCAGACUUGAUAGUGUUUCUUAAGGAAUUCAGCCUAAACCACAAGAUAAAAACAGUGUUUAUGUGAAACUCCUACUGUGUUAAGUGAUUUCAAGAAGAACUAUUGUUUGAAUCACAACUAAUGUUACUGCUUUAAGCUCUUCCCAUGUUGUUAAAAGUUAAAAAAAGAAGAGCUCCAUUCCCACACACAUUUGCCACAGAUACAUUAUCUGAGCCCAAACUACAGUUUGAGCAGUGUGUUAGGGACCUCAAUGCAAACCCAAAAGAAAUUUUUAUAUUUCAGAAUCCAUUGAUCUGCAUUUGAGAAGUGAUUAAUGUGUUGAAAGGCAACUAUCUAAAGAAAAAUUUAAUAGAGUCUAAUAGAAUCUUAUAAAAAUGUAUAAAUGUGUUUUAUGUAAUAAAUAUGCUAAGCUAAA
2154   unknown  unknown    Homo sapiens    AAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCCAAGAUCUUAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCGUGCGCAAUCACUAACACACAGCCAUUCUCAUAAAACACUAGAGCACGCUGCGCAAUCACUAACAUGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCAGUAACACGAGGCAUUCUCAUAAAACACUAGAGCACGCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGUGCAAUCACUAACACAAGGCAUUCUCAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCAGUAACACGAGGCAUUCUCAUAAAACACUAGGGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCCAAGAUCUUAUAAAACACUAGAGCACCCUGCACAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCACAAUCACUAACACAAGGCGUUCUCAUAAAACUCUAGAGCAGCCUGCGCAAUCACUAACACAAGGCCAAGAUCUUAGAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAAGCAUUGUUAUAAAACACUAAAGCACCCUGCGCAAUGCCAAUACAAGGCCAUUCUCAUAAAACCCUUCUGUAUGGGCGAGUGUUUUUGUGCUUGUGGAGAGAAAAUUGAGACAUCAGAAUUGAGAGGUUGUCCCUGAGUGGUGGAGUUGUGUCUCAGCGUGAAGUUCCCUGGCGUGAGCCUGUUCAGUGCCCCCUGGGGGCCCCUCAACUGCACGUUGGGUCCUGCCUUUAUCCAGCCCACGUCACCUGCCUACCUUCCUCCCCUGCUCCCCAGAGUGGCGCGGGUUGCCACACGGGUCUGCUUUGGGUUGGCCGGGCGUGCCAGCCUCCUCUGCCCCUGGACUGCAGAAGUGUACUGUCCAUCUCUUUCCUGGGGAAUCUCUGUCCAGUAUAUGCUUUACCAUUUUUGGGAUACUCUUGCUCCCCAAGACUGGGCCACAUGCCCUCAUCUGGGUUCUCAGAACACCCCACACUCUGCCUGCCGCCCACCAACUCGCUGGGCUGUGGUGGCCUCUGUCCCAUGCUCCACAGUGAGCCCUCAGGACUGAGUUAAGUGCCUUUAAAAAUUACUUGUCUUGUUCCCAUUUUGAGGGGCAACCUUUGUUUAAAGGGCAUUCAUAGGGUCCACCUCCCCAUCAGUUUUUGGGGUGAAACAGACCGUGGACUCUAUUCUUGCUUGCCCCUGACCCCCCAGAGCCCCCCAGACGUGAGCUGAUGUGAGCACUUGCACCAGGAGGAAGCUGGUCCCCCUUUGGCCUCCUCCCUGUCUCCCUCUCUGUGGACCACAUACAUAAUUACGUGCCACACGUUUCCCUUCGCUCCGGGGAACACGGGUCCUGUGCCGCCUGGUGGGGCGCUGACAGCCGUCAGAGCAAGGUGUCUGGGCUGGUGAAACAAACACACUCCCCAGUUCUCCCCUGGCGAUCAUCCCCCACAGUGGCCGUUCCCUAGGGCAGUGGCUGUUCCCAAGGCGGUGGCCGUUCCUCAGGGCAGUGGCCCACAGCUUGUCUUAUUUCUCUAAGCAUUUUGGGGUCCUUUAGCUUCUGAGGAAUGUCCUCUCAACUUUCCUCACGUGGCCGUCUGUUGGGGAUGCUUGCUCUUGGAUGUCCUGAAUCAUCUGAGAGGCUUUGUCUAAAGACCAGGCUUGGGUUUUCUUUCCCAGACUCUCUCAAUCAGAGUCGCUAAGGGCCGGCCUUUUCGUCUUCACCCUCUCAAGUUCCACAGACUGUCCUGGGAGAUUCAGCCUCCUCAUACAUAAAAUAACAGAUUUUAACAGGAUUAUCUGUACGCCUCCCCCCGGGCUCUAAUUAAACCUGUUUCCACCACAAGGCCACCUACCGUGCACCUCCUGAUCCUGGGAAUGUCACGAUGAUGGCUAUGCUGGUUCUUUUUCCCUAGUAAUCAGGGAACUGGUUAUUUUGUUCAUGCACUUUGUGGAAAUUUGUUGAGCCCGCACUCACUUACAAUUUGUGUUUUUCUGUCUAUGAGUUUGAUGUCAAUCAAAAGUGUCCUUAAAAUAAGCAACAAAACAGUGACACUUCCUGGUCUUGUCCCUGGACCUGGGGAGGGACCCUCCCUACUCUGGGAGGCUCUGGGGGGUUAAGGCCCCUCCCUUGGAAGGUGGAGUCUUAGAAUCCGUGGGCACGAGUGGCCGUGCGGGAGCAAUUGCCACCUCUGGUGUUGGUCUAUUAAAGCAUCCGCUUCUGGCUCCCGUGAGGCCAAUCCAUGAGCCAGGACUGACUGAGUACUUAUCAAAUAUUUUAAAAAGUCAAGGCCGGUCGCAGUGGCUCACGCUUGUAAUCCCAGCACUUUGGGAGGCCGAGGCGGGCGGAUCACGAGGUCAGGAGAUCGAGACCACGGUGAAAGCCCGUCUCUACUAAAAAUACAAAAAAUUAGCUGGGCGUGGUGGCGGGUGCCUGUAGUCCCAGCUACUCAGAGAGGCUGAGGCAGGAGAAUGGCCUGAACCCGGGAAGCGGAGCUUGCAGUGAGCCGAGAUCGCGCCGCUGCACUCCAACCUGGGCAACAGAGUGAGACGCUGUCUCAAAAAAAAAAAAAAAAAAAAAGUCAGGUAAGCUCUAAUUUACCUUUCUGUUGUUAGAGAUGGGGUCUCUCUGUUGCUCAUGCUGGAGUGCAGUGAUGUGAUCACAGCUCAUUGCGGCCUUGAAGUCCUGGGCUCAAGUGAUCCUCCCACCUCAGCUUCUCGAGUAGCUGGGACUACAGGCACACACCAUCAUGCCCGGCUGGUUAUUUUAUUUUAUUUUAUUUUAUUUUAUUUUUGUAGAGACAGGGUCUCGCCAUGUUGCCCAGGCUGGUCUUGAACUCCUGGACUCGAGCGAUCUUCCUUCGGCCUCCCAAAGUGCUGGGAUCACAGGCAUGAGCCACCGUGCCUGGCAUCAGCUCUCAUUUGAAUUAGUCAAGUUUUGAAGAAUCACACUCAUUUUGUCCGAGCACGGCAGUUCUGUUGUCUUUUACGCUUGGCUCGUCUGUGUCCUCCUUGCCAUUGGUCCUGAUUUCAGUUACCAUUUCCUCUCUCAUUGUAAUAUCACAUGUGCUGCCUAAGAGCUUCCUGGACUAAGGGAGGUGUGGAUACAUUAAUGCUUUAAAGAAAUUCCUAUCGUUUUUCUGCUUGUCCACAUGUGGGUUCCACUUUCUGUCUGUGUUUUCAGACAGCCUUUCCCACAUCUCAUGUUUUUUUGAUAUGAAAUGUCACUAUGGAAGCAUAAACUUUCCAAGCCACACUUUGCUGGCCGAGGCUGGGGAUGAGCGUUCAUUGUCUGCUGUCUUCUUGCAAUUCACCUUCUCCUGAAGGCCCUACAGUGCCUGGAACGUGUCAGGGAGAAGACAUGCCCUGAUGUGGACUUACAACACUCAUUAAACGUAGGAAGUUAUGUGCGCCUUUCUCUGCAGGGAUUAAAGAUUUCAUGUGUGAAUUGUGUGGGAAGACAUUCAGCGAGAGGAACACCAUGGAGACCCACAAGCUCAUCCACACAGGUGAGCGGCGCAGCCUGAAGGAGCCUUCGGGGCGCACGCGGCAGGCUGCCGGGGCUGUCUGAGUGCCUGCUGGGGUGGAAACGACUAUUCUAUUAUCUAGACGGUUCCAGCACAUUUAGUGUUGUCUUGGCUUCAUGGUGGCCCCUUGGCCUCUGAAGGUCAACCCGCCACAGCUUUCAAGUAUCCCUUCUUGAAUUUUCUCAUAUUGGUUCCGUGAUGCAGCUGCUGCUGGCAGUGCUCCCCAAGGGACAGAGGCUCUGUGCUCAUGUGUGCUCGGGGACCAGCACCGGCCCUCUCAGGAUGGGCGGGGCGUGACAGGCUUCUUGCCUCGUCCAGCAGGCCAGGGUCAUUGGGAUGGCUGCACUAGUGACCUGCGUGUCUCUUCCUUUCCACGCGCAUGUGUGUCUGCGUGUGUGUGAAAAGUGGGCAAGCAGUGGACGUGCUCCGUGUGCGACAAGAAGUACGUGACCGAGUACAUGCUGCAGAAGCACGUUCAGCUCACACACGACAAGGUGGAGGCGCAGAGCUGCCAGCUGUGCGGGACCAAGGUGUCCACCAGGGCCUCCAUGAGCCGACACAUGCGGCGCAAGCACCCCGAGGUGCUCGCGGUGAGGAUCGAUGACCUGGACCACCUCCCGGAGACCACCACCAUCGACGCCUCCUCCAUUGGCAUCGUCCAGCCUGAGCUGACUCUGGAGCAGGAGGAUUUGGCCGAAGGGAAGCACGGGAAAGCUGCCAAGCGAAGUCACAAGAGAAAGCAGAAGCCAGAAGAGGAGGCGGGUGCUCCGGUGCCCGAGGACGCCACCUUCAGCGAAUACUCAGAGAAAGAGACGGAGUUCACAGGCAGUGUAGGCGACGAGACCAAUUCCGCAGUACAGAGCAUUCAGCAGGUAGUGGUGACCCUGGGUGACCCAAAUGUGACCACACCAUCGAGCUCAGUCGGCUUAACCAACAUCACCGUGACCCCCAUCACCACUGCGGCCGCGACUCAGUUUACCAAUCUCCAGCCGGUGGCCGUGGGGCACCUUACCACCCCUGAACGCCAGUUACAGCUGGЖCAACUCAAUCCUGACCGUGACCUUUGAUACCGUCAGCGGCUCUGCCAUGUUGCACAACCGCCAAAAUGACGUCCAGAUCCACCCCCAGCCGGAAGCCUCGAACCCACAGUCUGUGGCCCAUUUCAUCAACCUGACGACCCUGGUCAACUCCAUCACGCCCCUGGGGAGCCAGCUUAGUGACCAGCACCCGCUCACGUGGCGGGCAGUGCCCCAGЖCUGACGUCUUGCCACCCUCGCAGCCGCAGGCACCCCCACAGCAGGCGGCCCAGCCCCAGGUGCAGGCGGAGCAGCAGCAGCAGCAGAUGUACAGCUACUGAGCUGCGUUCCGGGAGЖCUCGGGGCAAGAЖCUGCAGAGGGAUGUUUGGGAUUUGUUUAGAUGUGUUUGCUGGAUACCAAACAAACAAAAAGUCAUACAUUGCAAUGUAAGGUUGACUUAGCUUUGCAGAGUAUCUCCAGAUCCCCCGCCAGCAACCAUUACGGUCUGUCAGCUUAACUCUAGAAGGGACCUCUGGCAGGCCAGAGUUUUAAACUGGAUGGGGCUCCACACCAUGCCUUACCAAGGCAGUAAGUCCUGGGCCGGGGCCGCAUCUGCCUCCCCUUACAGAACCAGUGUUCGCCCGACACAGGGUUCGGGAAAGUGAAGCUGAGAGAGAAGCAGGAUUUUAAGAGGCAGGAGAUAAGUUAUUAGGAACACAAAUGGUUCAUUUUCUUUUUUCUUUUAGAGCUCGGUUCCUAUGAGAACACAGACAGUAUUCACAGGUGGCAGCAGGCAGCAGGGAACAUUUUCUCCUCACUUCUGGAUUUUUUUGCAAGCGAGCACAUAGAAGUUAAAGUAACGUGUAUUCUCUUUGAACUAGGAGUGGAGUCGGUUCUUAUACAACUAUGGGCUGAAACCAUGAGGCGUGCUGAGCCGCACCUGAUCCUGCAACCUUCGAGGUCAUCACGGUCAUCAUGUGCAAGGGGUCACGUGAGGUCACUGACUCCAGCUCAAAACGCAUCUUAGUAAUAUCCAUGAAUCGAUUUCCAAUAGAGUUUUUUUCCUUUUUUUUUUUUAACUUUAUUUCAAACAUACAUUAUGUGUUCAAGЖCUGUUAUGGCCAAUAUUGUGUUUUAGUUUUAUGUUAACAUGAUAAAGUCAUGUGCACUGUAGGACCAUCUGUCCCUGUCCACCCUUCACAGCUGCCCAGAUGCAGAGGGUCGCGCGGCUGUGUGUGAGGAGUGAGCCUCCCUGCUGCCCCCAGGGGCUCCUCCGGGUUGUCUCAGGAUUCUCUGCAAUCCAAAUGUAUCCAUUCUGGCUGAAGCCCAGCCAGAAUCCCGAGUGGAAGAAACGGGGGAAAAGUCAUAUUUUCCUUCUGUUUAAACUUCAAUUCCAAAGGUGCACAGAUGUAUUCAUAAAGGAAGACAUUAGAUCCAGCCAUUGUGGCCACCAGGCUCUGUGGЖCCCAUCUCAGUGGAGAAUUCGUUUUGGACCCGUGGCUCCGUGCAGCUGUGGЖCUCGAGUGCCAUCCACUGGUGUGAGUCUUGCGGGGAGGCCACAGGAAAACGUUCUGUGCCAAGUGCCGCCUCGCUGUGUCCGGCAUGGGЖCUGCGCUGGAGGGUCCGGCGUGGAAGGCAGACCUCCUGUACCUCUAUCGUUCCCAUUUGUGGCAUCCAAAGGCGGAAGGCUCAUGGCUUCCCCACUAGAGGCGGCGUCUUGGGCUUUCCCAUUGGAUUGUGAAAGGCAUUAAGЖCUGUUUGGAGAUGUUGGCUGUAUUUCCUGUCACAUCAGGUUGUAUGAUGACGAAUAAAAGGUGCUGUGACCCGUGUUUUCAA
2155   mRNA  unknown    Homo sapiens    AAAAGGCCCCGGAACGAGGCCGGCCCGCGAGGGCCCGCGCUCCCCPCCUCCCCGGCGGCCGCACUCACCCACUCCGGAAUCGGCCCUGUCGCCCCCGCCCGCACUCCAGAGCCGGCUGAGAACGGCAGCGGCGAGGGCUCCACGUGCAGCGUCUCUCCGGGUAAGЖCCUGCAGCUCCCGCGACUAGAAGUGUGAGGUCCCAGGGCCCUUCCCGCGGAAUCGGCGCUGAGAAGCCCCAACCCCCCUCCCGCCUCCCAGGCACCUUCGGGUCCAGGЖCUACAACUCCCGGCAGGGUGCGCAAAACGACCGCCCAAGGCAACGGAGGCUCACGAGAAUCAGCAUGAUUCUUCAGAGGCUCUUCAGGUUCUCCUCUGUCAUUCGGUCAGCCGUCUCAGUCCAUUUGCGGAGGAACAUUGGUGUUACЖGCAGUGGCAUUUAAUAAGGAACUUGAUCCUAUACAGAAACUCUUUGUGGACAAGAUUAGAGAAUACAAAUCUAAGCGACAGACAUCUGGAGGACCUGUUGAUGCUAGUUCAGAGUAUCAGCAAGAGCUGGAGAGGGAGCUUUUUAAGCUCAAGCAAAUGUUUGGUAAUGCAGACAUGAAUACAUUUCCCACCUUCAAAUUUGAAGAUCCCAAAUUUGAAGUCAUCGAAAAACCCCAGGCCUGAAGAAAUAAAGUAAAAUUAAUCUGGUAAUUUGUCACGGAUUAGUUGUACAACUAGUUAGAAGUUUCAGAAUAAACAUGCAUUUCAUAACUGUCAAAUGUUCUUUUAAUUCUGAGUCCAAAUAAAUUAUUUGGUGAUGUUGAGUGUGUUCUUGAUGAAUUGA
2156   mRNA  unknown    Homo sapiens    AAAAGUUCGCGCUGCUGGUCCCGCGCGGGCGGCCCCUGGGCUUUGUGUCCACCAGGACAGCGGGCCGGGCUCCCUGCAGGCGCGGGCGGCGCCGAACGGUGCUCAGCAACCACCCGGACAGGGCCAGGCCGUUUUCUCCCGCUCAGGCAUUAGUCGUUGGCUGUGGGCCGCCGCGGGAAGUUGAGGCCUACCACGGAGGAGGCUGCUGAGGUGGAUCUCAGGGGAUCCGCAAGGGCUCCCUCACCCUUGCCGGGACCCUGGGAACCCGAAACAAAAUCCUACGCCACCAGCCCGCCGAAUGCGCCCCCUCGGCCGGGGGUCCUGGGUCUUCAGAGAAGAACUCGGCCGAAUGCGGUCAGAAAGCCCGCGAACCGCCUGGACCUGCAGGCCCCGCCGCUUGGAGCUCCCGCCUUUCCCGACCGAGCCCGUGUCUGCUCGUGUGUCUCACUGAUGUCUUAGGUCUCAAAAAAAAAAGAAAAGAAAAGGUUUUUAGUAGACAGAAGAGAAAUGGGGCCGUGGGUUCGUGGUCCCAGGGGGAAACUGACGUCGCAUGAGGUCGUCGUCCCUCAGCUUGAGCUCAGCGGAACAUAAGCUUGCAGAGGUGGAAACCACGGAAGGUUUGGGUGUCUUGGAGCUCUCUGGACACCGAAGCCCGGЖCACAGUCCCGGGGUCCGCACCGCCUGUGACCUGUGGCGGGЖCCGCCGGGGUGGGCGUUUUCUCAGCUGGCGCGCGCGUAGGUGGAЖCUUGGGAAACUAЖCUGGAGCGAAGUGGCAAAAAACCAAGACAGGGCCGGUGACCUCGCGCAGGCCGUCCUUAЖCUGUGGAGUAUUCCUUCAGCUAACCCCUUUAUUUCAUGUGUCCAAGUCUGGUUUCUGGGUUUCUUUGUAGUCCUCCGGGCCUGUUCGUGCGCCUUCACUUGCAAAAGGUUCGUCGUGGAGGGCCGUGUGCUUGUUUGCAGCAGUAACGAUGCCCUUCCCGAGCGUGCUGGAGUGGCUCCUCGCUGACGCAAGCUCACCUUGCAGCCUCCUCAGCAACUGCAACUUAAACGCGCCCUCAGGAAGCCCUGGAAUCUCGCUCAGAAUUUUUUUUCUUUUUUUGAGЖCAGUCUCGCUGCGACGCCCAGGCUAUAGCGCAAUGGCGCGAUCUCGGCUCCCUGCAACCUCCCUCAGGAAGCCGUGGAAGCUCGACCGCCAGAAЖCUUCCUUCUCCUGACUCAGGCCACAGUCUUCUGUGUGGUCUGGGCCCCUGCUGCUGACAUCCCCCACAUGUCAGUCUGCCUGCUAGUGGGAUUGACUAACUCAUCAACGUGGAGUUUAAUGCCCAACCAAGUGCAGACCACGCUCCUGUUUUGCGUCACCCUCUGCGAAGCUUCCUGCAAACUUGACUCCCUGCCCAGUGCCCCCAGCCCCAAGGCUGGUCUCCAGGAGGUAAGGCCCGCCCUGCAGGCAACACCGGUGCUUGGGCUCCUGCUGAGCAGUUCUUUCCUGCGAGUAACAGAACCAGGGAGGGAGGUGGGCUGUGGCCUCCCCUGCCCCUACAGUCGUCUCCUGCAGCUCCCACCAUGCUGGACUCAUCAGCAGCAGAGCAAGUGACCCGACUGACGCUGAAGCUCUUGGGACAGAAGCUGGAGCAAGAACGGCAGAACGUGGAAGGGGGACCUGAGGGCCUCCACCUCGAGCCAGGAAAUGAGGACCGGCCGGACGAUGCCCUGCAGACUGCUCUGAAGAGAAGGAGGGACCUUCUGCAGAGACUCCGGGAGGCCACCCUCAUGCACAUAACCCUGGAAGGGUCUUCCAGUCAUGGCCAUCCUGCCCGGAGAGGCGCCUGUACCUGGCCCAGGCUGGCCUGAGCCUGAUGCUGGGGGUGCCUCUGUGGCGUUGGGGCUCCCCGUCCCCGUGUGCAGCAGCUCUGCAUCGGCCUUGCAGGAACAACACC
2157   mRNA  unknown    Homo sapiens    AAAUUAGUCCAUCCCAUUUACAGCUACUUCCAAUGCAGCUGUGUCAGGGGAGAGAGAAGAAAGGACAUGGAAGAGAGCGUAGAGAUGAGCUGCUUCAGAAAGAGCAAAACUAUUCAGAUGACGUCUUGGCCAACAUGAUUAGUGAЖCCAAGGAUCAGUUACGGAAACGAUGCUCUCAUGCCAUCUUUGACCGAAACGAAAACCACCGUGGAGCUCCUUCCCGUGAAUGGAGAGUUCAGCCUGGACGAUCUCCAGCCGUGGCAUUCUUUUGGGGCUGACUCUGUGCCAGCCAACACAGAAAACGAAGUUGAGCCUGUUGAUGCCCGCCCUGCUGCCGACCGAGGACUGACCACUCGACCAGGUUCUGGGUUGACAAAUAUCAAGACGGAGGAGAUCUCUGAAGUGAAGAUGGAUGCAGAAUUCCGACAUGACUCAGGAUAUGAAGUUCAUCAUCAAAAAUUGGUGUUCUUUGCAGAAGAUGUGGGUUCAAACAAAGGUGCAAUCAUUGGACUCAUGGUGGGCGGUGUUGUCAUAGCGACAGUGAUCGUCAUCACCUUGGUGAUGCUGAAGAAGAAACAGUACЖCAPCCAUUCAUCAUGGUGUGGUGGAGGUUGACGCCGCUGUCACCCCAGAGGAGCGCCACCUGUCCAAGAUGCAGCAGAACGGCUACGAAAAUCCAACCUACAAGUUCUUUGAGCAGAUGCAGAACUAGACCCCCGCCACAGCAGCCUCUGAAGUUGGACAGCAAAACCAUUGCUUCACUACCCAUCGGUGUCCAUUUAUAGAAUAAUGUGGGAAGAAACAAACCCGUUUUAUGAUUUACUCAUUAUCGCCUUUUGACAGCUGUGCUGUAЖCACAAGUAGAUGCCUGAACUUGAAUUAAUCCACACAUCAGUAAUGUAUUCUAUCUCUCUPUACAUUUUGGUCUCUAUACUACAUUAUUAAUGGGUUUUGUGUACUGUAAAGAAUUUAGCUGUAUCAAACUAGUGCAUGAAUAGAUUCUCUCCUGAUUAUUUAUCACAUAGCCCCUUAGCCAGUUGUAUAUUAUUCUUGUGGUUUGUGACCCAAUUAAGUCCUACUPUACAUAUGCUPUAAGAAUCGAUGGGGGAUGCUUCAUGUGAACGUGGGAGUUCAGCUGCUUCUCUUGCCUAAGUAUUCCUUUCCUGAUCACUAUGCAUUUUAAAGUUAAЖCAUUUUUAAGUAUUUCAGAUGCUPUAGAGAGAUUUUUUUUCCAUGACUGCAUUUUACUGUACAGAUUGCUGCUUCUGCUAUAUUUGUGAUAUAGGAAUUAAGAGGAUACACACGUUUGUUUCUUCGUGCCUGUUUUAUGUGCACACAUUAGGCAUUGAGACUUCAAGCUUUUCUUUUUUUGUCCACGUAUCUUUGGGUCUUUGAUAAAGAAAAGAAUCCCUGUUCAUUGUAAGCACUUUUACGGGGCGGGUGGGGAGGGGUGCUCUGCUGGUCUUCAAUUACCAAGAAUUCUCCAAAACAAUUUUCUGCAGGAUGAUUGUACAGAAUCAUUGCUUAUGACAUGAUCGCUUUCUACACUGUAUUACAUAAAUAAAUUAAAUAAAAUAACCCCGGGCAAGACUUUUCUUUGЖAGGAUGACUACЖ#ACAUUAAAUAAUCGAAGUAAUUUUGGGUGGGGAGAAGAGGCAGAUUCAAUUUUCUPUAACCAGUCUGAAGUUUCAUUUAUGAUACAAAAGAAGAUGAAAAUGGAAGUGGCAAUAUAAGGGGAUGAGGAAGGCAUGCCUGGACAAACCCUUCUUUUAAGAUGUGUCUUCAAUUUGUAUAAAAUGGUGUUUUCAUGUAAAUAAAUACAUUCUUGGAGGAGCA
2158   unknown  unknown    Homo sapiens    AACAUGGUCAUUUUUAUUAAAGUAAAAAAUAAGAUAGUAGUAGCUCUGGACAUUUGGAAAUGUGUAUGUUUGUUUACACCCUGUGAAAAGUAGACAUGGUCUGCAAAAGAGCCAAUCUCCUAAAUAUAUUUCUUUCUCUAGAAAUGUUAUUUUGGGACAAAUGAAUGAAUCCCUGUUGGGAAAAAAGAACCUGCUGCAUAUCAUCCAUAUUUUAUUUUAUUAUUAUUUUUUUUGAGAUGGAGUCUCACUCUGUCUCCCAGGCUGGAGUGGAGUGGCACAAUCUCGGCUCACUGCAACUUCUGCCUCCUGGGUUCAAGCGAUUCUGCUGCCUCAGCAUGCCCAGUAGCUGGGAUUACAGGUGCAUGCCACCACACCCGGCUAAUUUUUGUAUUUUUAGUAGAGACGGGGUUUCACUAUGUUGGCCAUGCUGGUCUUGAACUCCUGACCUCAAGUGAUCCACCCGCCUCGGCUUCUGGAAUUACAGGUGUGAGCCACCGCACCCAGCCAUGAUCCAUACUUUAAUGUGGGUUCUGGAUUGCUUCCUAGGCCACGUGUUUAACAUGCCACAUGAUGAUGCAAAGCAGUGUGCCAGCCUUAAUGGUGUGAACCAGGAUUCCCACAUGAUGGCGUCAAUGCUUUCCAACCUGGACCACAGCCAGCCUUGGUCUCCUUGCAGUGCCUACAUGAUUACAUCAUUUCUGGAUAAUGGUCAUGGGGAAUGUUUGAUGGACAAGCCUCAGAAUCCCAUACAGCUCCCAGGCGAUCUCCCUGGCACCUCGUACGAUGCCAACCGGCAGUGCCAGUUUACAUUUGGGGAGGACUCCAAACACUGCCCCGAUGCAGCCAGCACAUGUAGCACCUUGUGGUGUACCGGCACCUCUGGUGGGGUGCUGGUGUGUCAAACCAAACACUUCCCGUGGGCGGAUGGCACCAGCUGUGGAGAAGGGAAAUGGUGUAUCAACGGCAAGUGUGUGAACAAAACCGACAGAAAGCAUUUUGAUGUGAGUUUUUCUACUGAAACACAUUCAGAAUUGAAAAGAACAAAGUGAUGGUAAAAGAUAUGAUACCAAGUUAAACAUCCCCAUCCGUGUCCUCUAGCAGGAAUGCGAGAUAGCUUAUUUUUAGAACUGAUUCUUUGUCCCAUGUGGCUUUCUUUGAUACCCUAAAAGUUCUCUUUAGAUAAUUCUAAUGCUGAUGAUUUAUGUCUCCAUUUAGACGCCUUUUCAUGGAAGCUGGGGAAUGUGGGGGCCUUGGGGAGACUGUUCGAGAACGUGCGGUGGAGGAGUCCAGUACACGAUGAGGGAAUGUGACAACCCAGUCCCAAAGAAUGGAGGGAAGUACUGUGAAGGCAAACGAGUGCGCUACAGAUCCUGUAACCUUGAGGACUGUCCAGACAAUAAUGGAAAAACCUUUAGAGAGGAACAAUGUGAAGCACACAACGAGUUUUCAAAAGCUUCCUUUGGGAGUGGGCCUGCGGUGGAAUGGAUUCCCAAGUACGCUGGCGUCUCACCAAAGGACAGGUGCAAGCUCAUCUGCCAAGCCAAAGGCAUUGGCUACUUCUUCGUUUUGCAGCCCAAGGUAGUUCGUUUUUACCUUAUUUUUACCUAAAAAUCAAGGCCUGGGCUUGCUACCUUUUCAAACAAUUUUUGUUAUACUUUCUUUGCUUUCCAUAUUAACAUAUCUUCAAUUUCAAAUUUGAACUCCUUUUCUUUUACAUUAAUUGGCAACUGCCUGCUUUGAGUUUAGUGUUUUCAGUUAUGAAUGAAGCUUAAAUCUAACACUUCACAUGCUUGCAAUUGCUCGCUAUUACUCUUUUAUAUGCAAAGAAAAGCUUUUUGGACAGUCAAGCGCUCCUCUGUGCGACUAGGCUUCACAUACAGCUCAUAGUUAGAUACAUUUUAUAUUCACACAGUAACCAGUAGUUUUGGAAAAUAGUCUAUGCAUGGUCCAAAAUACUUGUUACUGGGUAACUAGCAGUAGCAGGUGCAAACAGAAUAAUAGAAGUGGUAGUCUGAGUAUUGAUUAUUUUUAUGUUUGAAAACACAUAUUGAACUAGGAAAAGCAUCAUUUCUUUUGCUGUUUUGCUAAGGGAAUACAUCUGGAUCUGAGACAGAAAAUGGAAUUUAAUGUGAUUGAGAUGAUCGUGUGUCAUUAGCACCAUAGGCUAUGAAAAUAUUCCCAAGUUGCAGAUUCAAUAUUCAGCAAGUGAUUUCUGAAGCACUUACUCUUGCCAGAUACUAAUUAUUCUAGGCUCUGAAGAUACAGCAGUAAACAAAGUGACAAACAGCUCUACUUUCAUUGACCUUAGCUGGAGGAGACAUAGGUCAAUAGAUAAAUAAUUUUUAAAAAUAUCUAAUUUCUUCAGAUGUCUAUACGUAGUACUGAAAAAUAUGCCAAAGUGAAGGGUAAAUGCAUGAAAUGCAUAAUGUGUAGAGGGUACUGUGUUUAAUUAGCAUGGUCAGGAAAGUAGAGAGAAAAUGUUUACACUUAUCAUUGCAGCAUCUCCUUCCUUUGCUUGUAUGUAACACUAGACAUGUGUCCUUUUUUCAGGUUGUAGAUGGUACUCCAUGUAGCCCAGAUUCCACCUCUGUCUGUGUGCAAGGACAGUGUGUAAAAGCUGGUUGUGAUCGCAUCAUAGACUCCAAAAAGAAGUUUGAUAAAUGUGGUGUUUGCGGGGGAAAUGGAUCUACUUGUAAAAAAAUAUCAGGAUCAGUUACUAGUGCAAAACCUGGAUAUCAUGAUAUCAUCACAAUUCCAACUGGAGCCACCAACAUCGAAGUGAAACAGCGGAACCAGAGGGGAUCCAGGAЖCAAUGGCAGCUUUCUUGCCAUCAAAGCUGCUGAUGGCACAUAUAUUCUUAAUGGUGЖCUACACUUUGUCCACCUUAGAGCAAGЖCAUUAUGUACAAAGGUGUUGUCUUGAGGUACAGCGGCUCCUCUGCGGCAUUGGAAAGAAUUCGCAGCUPUAGCCCUCUCAAAGAGCCCUUGACCAUCCAGGUUCUUACUGUGGGCAAUGCCCUUCGACCUAAAAUUAAAUACACCUACUUCGUAAAGAAGAAGAAGGAAUCUUUCAAUGCUAUCCCCACUUUUUCAGCAUGGGUCAUUGAAGAGUGGGGCGAAUGUUCUAAGUCAUGUGAAUUGGGUUGGCAGAGAAGЖCUGGUAGAAUGCCGAGЖCAUUAAUGGЖCAGCCUGCUUCCGAGUGUGCAAAGGAAGUGAAGCCAGCCAGCACCAGACCUUGUGCAGACCAUCCCUGCCCCCAGUGGCAGCUGGGGGAGUGGUCAUCAUGUUCUAAGЖCCUGUGGGAAGGGUUACAAAAAAAGAAGCUUGAAGUGUCUGUCCCAUGAUGGAGGGGUGUUAUCUCAUGAGAGCUGUGAUCCUUUAAAGAAACCUAAACAUUUCAUAGЖCUUUUGCACAAUGGCAGAAUGCAGUUAAGUGGUUUAAGUGGUGUUAGCUUUGAGGGCAAGGCAAAGUGAGGAAGGGCUGGUGCAGGGAAAGCAAGAAGGCUGGAGGGAUCCAGCGUAUCUUGCCAGUAACCAGUGAGGUGUAUCAGUAAGGUGGGAUUAUGGGGGUAGAUAGAAAAGGAGUUGAAUCAUCAGAGUAAЖCUGCCAGUUGCAAAUUUGAUAGGAUAGUUAGUGAGGAUUAUUAACCUCUGAGCAGUGAUAUAGCAUAAUAAAGCCCCGGGCAUUAUUAUUAUUAUUUCUUUUGUUACAUCUAUUACAAGUUUAGAAAAAACAAAGCAAUUGUCAAAAAAAGUUAGAACUAUUACAACCCCUGUUUCCUGGUACUUAUCAAAUACUUAGUAUCAUGGGGGUUGGGAAAUGAAAAGUAGGAGAAAAGUGAGAUUUUACUAAGACCUGUUUUACUPUACCUCACUAACAAUGGGGGGAGAAAGGAGUACAAAUAGGAUCUUUGACCAGCACUGUUUAUGGCUGCUAUGGUUUCAGAGAAUGUUUAUACAUUAUUUCUACCGAGAAUUAAAACUUCAGAUUGUUCAACAUGAGAGAAAGGCUCAGCAACGUGAAAUAACGCAAAUGGCUUCCUCUUUCCUUUUUUGGACCAUCUCAGUCUPUAUUUGUGUAAUUCAUUUUGAGGAAAAAACAACUCCAUGUAUUUAUUCAAGUGCAUUAAAGUCUACAAUGGAAAAAAAGCAGUGAAGCAUUAGAUGCUGGUAAAAGCUAGAGGAGACACAAUGAGCUUAGUACCUCCAACUUCCUUUCUUUCCUACCAUGUAACCCUGCUUUGGGAAUAUGGAUGUAAAGAAGUAЖCUUGUGUCUCAUGAAAAUCAGUACAAUCACACAAGGAGGAUGAAACGCCGGAACAAAAAUGAGGUGUGUAGAЖCAGGGUCCCACAGGUUUGGGGACAUUGAGAUCACUUGUCUUGUGGUGGGGAGGCUGCUGAGGGGUAGCAGGUCCAUCUCCAGCAGCUGGUCCAACAGUCGUAUCCUGGUGAAUGUCUGUUCAGCUCUUCUGUGAGAAUAUGAUUUUUUCCAUAUGUAUAUAGUAAAAUAUGUUACUAUAAAUUACAUGUACUPUAUAAGUAUUGGUUUGGGUGUUCCUUCCAAGAAGGACUAUAGUUAGUAAUAAAUGCCUAUAAUAACAUAUUUAUUUUUAUACAUUUAUUUCUAAUGAAAAAAACUUUUAAAUUAUAUCGCUUUUGUGGAAGUGCAUAUAAAAUAGAGUAUUUAUACAAUAUAUGUUACUAGAAAUAAAAGAACACUUUUGGAA
2159   mRNA  unknown    Homo sapiens    AACCCGCUCUGUGGCGGGGCUUCCGGUCGGGAGGGUCCGCCCGCUCUCGCGUCCUUUGCUGGGUCCAGACACCGGUUCCGUUGCAAACAUUUUUAAAGGGCUGGUUAUUCUUCCUGAAAUGAGUUUGGUGAUUAGAAAUCUGCAGCGAGUCAPCCCCAUCAGGAGAGCGCCACUUCGCAGUAAGAUCGAGAUUGUAAGGAGGAUUUUAGGAGUGCAGAAAUUUGACCUGGGGAUCAUCUGUGUUGACAACAAGAAUAUUCAGCACAUUAAUAGAAUCUACAGAGAUAGAAAUGUCCCAACCGAUGUGCUUUCUUUUCCAUUUCAUGAGCAUCUGAAAGCAGGUGAAUUUCCCCAGCCUGAUUUUCCAGAUGACUACAAUUUGGGAGACAUUUUCCUAGGAGUGGAGUAUAUCUUCCAUCAGUGUAAAGAAAAUGAAGAUUACAAUGACGUCCUGACUGUGACGGCCACCCACGGACUCUGUCACUUGCUGGGAUUCACACACGGCACGGAGGCAGAGUGGCAGCAGAUGUUCCAGAAGGAGAAGGCGGUGCUGGACGAGCUGGGCCGACGCACGGGGACCCGGCUGCAGCCCCUGACCCGGGGCCUCUUCGGAGGGAGCUGAGGGCCGCGUUCCUUCUGAAAGCGGGACGCGGGAGGGGUGGAGGCUGCGGGGAGCCGGGGUCGCACACGAAUAAAUAACGAAUGAACGUACGAGGGGAACCUCCUCUUAUUUCCUUCA
2160   mRNA  unknown    Homo sapiens    AACGGCGGAGCCGCCGGCCGGGCGCGGACCGGAGCGCGUGAGGCUCCGGCGCGCAAGCCCGGAGCAGCCCGCUGGGGCGCACAGGGUCGCGCGGGCGCGGGGAUGGAGGACGGCGUGGCCGGUCCCCAGCUCGGGGCCGCGGCGGAGGCGGCGGAGGCGGCCGAGGCGCGAGCGCGGCCCGGGGUGACGCUGCGGCCCUUCGCGCCCCUCUCGGGGGCGGCCGAGGCGGACGAGGGCGGCGGCGACUGGAGCUUCAUUGACUGCGAGAUGGAGGAGGUGGACCUGCAGGACCUGCCCAGCGCCACCAUCGCCUGUCACCUGGACCCGCGCGUGUUCGUGGACGGCCUGUGCCGGGCCAAAUUUGAGUCCCUCUPUAGGACGUAUGACAAGGACAUCACCUUUCAGUAUUUUAAGAGCUUCAAACGAGUCAGAAUAAACUUCAGCAACCCCUUCUCCGCAGCAGAUGCCAGGCUCCAGCUGCAUAAGACUGAGUUUCUGGGAAAGGAAAUGAAGUUAUAUUUUGCUCAGACCUUACACAUAGGAAGCUCACACCUGGCUCCGCCAAAUCCAGACAAGCAGUUUCUGAUCUCCCCUCCCGCCUCUCCGCCAGUGGGAUGGAAACAAGUGGAAGAUGCGACCCCAGUCAUAAACUAUGAUCUCUUAUAUGCCAUCUCCAAGCUGGGGCCAGGGGAAAAGUAUGAAUUGCACGCAGCGACUGACACCACUCCCAGCGUGGUGGUCCAUGUAUGUGAGAGUGAUCAAGAGAAGGAGGAAGAAGAGGAAAUGGAAAGAAUGAGGAGACCUAAGCCAAAAAUUAUCCAGACCAGGAGGCCGGAGUACACGCCGAUCCACCUCAGCUGAЖCUGGCACGCGACGAGGACGCAUUCCAAAUCAUACUCACGGGAGGAAUCUUUUACUGUGGAGGUGGCUGGUCACGACUUCUUCGGAGGUGGCAGCCGAGAUCGGGGUGGCAGAAAUCCCAGUUCAUGUUGCUCAGAAGAGAAUCAAGGCCGUGUCCCCUUGUUCUAAUGCUGCACACCAGUUЖCUGUUCAUGGCACCCGGGAAUGACUUGGGCCAAUCACUGAGUUUGUGGUGAUCGCACAAGGЖCAUPUGGGЖCUGUCUUGAGAAAACAGAUAAUGAUAGUGUUUUGUACUUGUUCUUUUCUGGUAGGUUCUGUCUGUGCCAAGGGCAGGUUGAUCAGUGAGCUCAGGAGAGAGCUUCCUGUUUCUAAGUGGCCUGCAGGGGCCACUCUCUACUGGUAGGAAGAGGUACCACAGGAAGCCGCCUAGUGCAGAGAGGUUGUGAAAACAGCAGCAAUGCAAUGUGGAAAUUGUA#CGUUUCCUUUCUUCCCUCAUGUUCUCAUGUUUGUGCAUGUAUAUUACUGAUUUACAAGACUAACCUUUGUUCGUAUAUAAAGUUACACCGUUGUUGUUUUACAUCUUUUGGGAAGCCAGGAAAGCGUUUGGAAAACGUAUCACCUUUCCCAGAUUCUCGGAUUCUCGACUCUUUGCAACAGCACUUGCUUGCGGAЖCUCUUCCUGGAAUGCAUUCACUCAGCAUCCCCAACCGUGCAACGUGUAЖCUUGUGCUUUUGCAAAAGAAGUUGAUCUGAAAUUCCUCUGUAGAAUUUAGCUUAUACAAUUCAGAGAAUAGCAGUUUCACUGCCAACUUUUAGUGGGUGAGAAAUUUUAGUUUAGGUGUUUGGGAUCGGACCUCAGUUUCUGUUGUUUCUUUUAUGUGGUGGUUUCUAUACAUGAAUCAUAGCCAAAAACUUUUUUGGAAACUGUUGGUUGAGAUAGUUGGUUCUUUUACCCCACGAAGACAUCAAGAUACACUUGUAAAUAAAGCUGAUAGCAUAUAUUCAUACCUGUUGUACACUUGGGUGAAAAGUAUGGCAGUGGGAGACUAAGAUGUAUUAACCUACCUGUGAAUCAUAUGUUGUAGGAAAAGCUGUUCCCAUGUCUAACAGGЖCUUGAAUUCAAAGCAUGUCAAGUGGAUAGUAGAUCUGUGGCGAUAUGAGAGGGAUGCAGUGCCUUUCCCCAUUCAUUCCUGAUGGAAUUGUUAUACUAGGUUAЖCAUUUGUAAUUUUUUUCUAGUUGUAAUGUGUAUGUCUGGUAAAUAGGUAUUAUAUUUUGGCCUUACAAUACCGUAACAAUGUUUGUCAUUUUGAAAUACUUAAUGCCAAGUAACAAUGCAUGCUUUGGAAAUUUGGAAGAUGGUUUUAUUCUUUGAGAAGCAAAUAUGUUUGCAUUAAAUGCUUUGAUUGUUCAUAUCAAGAAAUUGAUUGAACGUUCUCAAACCCUGUUUACGGUACUUGGUAAGAGGGAGCCGGUUUGGGAGAGACCAUUGCAUCGCUGUCCAAGUGUUUCUUGUUAAGUGCUUUUAAACUGGAGAGGCUAACCUCAAAAUAUUUUUUUUAЖCUGCAUUCUAUAAUAAAUGGGCACAGUAUGCUCCUUACAGAAAAGUUGUCAUUUUAUUUCUAGAAUAAAUCUGUGAACCUUCUAAA
2161   mRNA  unknown    Homo sapiens    AЖCGUUCCAUGAUGUCAUCUUACGAЖCGCUCUAUGAUGUCUUAUGAGCGGUCUAUGAUGUCCCCUAUGGCUGAACGCUCUAUGAUGUCAGCCUACGAGCGCUCUAUGAUGUCAGCCUACGAGCGCUCUAUGAUGUCCCCUAUGGCUGAGCGCUCUAUGAUGUCAGCUUAUGAЖCGCUCCAUGAUGUCAGCUUAUGAЖCGCUCCAUGAUGUCCCCAAUGGCUGAUCGAUCUAUGAUGUCCAUGGGUGCUGACCGGUCUAUGAUGUCGUCAUACUCUGCUGCUGACCGGUCUAUGAUGUCAUCGUACUCUGCAGCUGACCGAUCUAUGAUGUCAUCUUAUACUGCUGAUCGUUCAAUGAUGUCUAUGGCUGCUGAUUCUUACACCGAUUCUUACACUGЖCACAUAUACAGAGGCAUAUAUGGUGCCACCUUUGCCUCCUGAAGAGCCCCCAACAAUGCCACCGUUGCCACCUGAGGAGCCACCAAUGACACCACCAUUGCCUCCUGAGGAACCACCAGAGGGUCCAGCAUUGCCCACUGAGCAGUCAGCAUUAACAGCUGAAAAUACUUGGCCUACAGAGGUGCCAUCAUCACCAUCUGAAGAGUCUGUAUCGCAGCCUGAGCCUCCUGUGAGUCAAAGUGAGAUUUCGGAGCCUUCAGCAGUGCCUACUGAUUAUUCAGUGUCAGCAUCAGAUCCCUCAGUUUUAGUAUCAGAGGCUGCUGUGЖCUGUUCCAGAACCACCACCAGAGCCAGAAUCUUCAAUUACGUUAACACCUGUAGAGUCUGCAGUAGUAGCAGAAGAACAUGAAGUUGUUCCAGAGAGACCAGUGЖCUUGUAUGGUAUCUGAAACUCCCGCCAUGUCAGCUGAACCAACUGUGUUAGCAUCAGAGCCUCCUGUUAUGUCAGAGЖCAGCAGAAACAUUUGAUUCCAUGAGAGCCUCAGGЖCAUGUUGCCUCAGAAGUAUCUACAUCCUUGUUGGUUCCAGCAGUAACUACUCCAGUGCUGGCAGAGAGCAUUCUGGAGCCGCCAGCCAUGGCUGCCCCAGAGUCUUCAGCUAUGGCUGUCCUGGAGUCUUCGGCUGUGACCGUCCUGGAGUCUUCGACUGUGACUGUCCUGGAGUCUUCGACUGUAACUGUCCUGGAGCCUUCGGUUGUGЖCUGUCCCGGAGCCUCCUGUUGUGGCUGAGCCAGЖCUAUGUUACCAUUCCUGUGCCAGUUGUUUCUGCGCUGGAGCCUUCUGUGCCUGUUCUGGAACCAGCGGUGUCAGUCCUUCAACCUUCUAUGAUUGUUUCAGAACCAUCUGUUUCUGUCCAGGAAUCGACUGUGACAGUUUCAGAGCCUGCUGUCACAGUCUCAGAGCAGЖCUCAAGUAAUACCAACUGAGGUGGCUAUAGAGUCCACACCAAUGAUACUGGAAUCUAGUAUCAUGUCAUCACAUGUUAUGAAAGGAAUUAAUCUAUCCUCUGGUGAUCAAAAUCUUGCUCCAGAGAUUGGCAUGCAGGAGAUUGCAUUGCAUUCAGGUGAAGAACCACAUGCUGAGGAACACCUGAAAGGUGЖCUUUUACGAAAGUGAЖCAUGGUAUAAAUAUAGЖCCUUAAUAUAAAUAAUCAUUUAAUUGCUAAAGAGAUGGAACAUAAUACAGUGUGUGCUGCUGGUACUAGUCCUGUUGGGGAAAUUGGUGAAGAGAAAAUUUUGCCCACCAGUGAGACUAAACAGCGCACAGUAUUGGAUACCUACCCUGGUGUUAGUGAAGCUGAUGCAGGAGAAACUCUAUCUUCUACUGGUCCUUUUGCUCUGGAACCUGAUGCAACAGGAACUAGUAAGGGUAUUGAAUUUACCACAGCAUCUACUCUCAGUUUAGUUAAUAAAUAUGAUGUUGAUUUAUCUUUAACUACUCAAGAUACUGAACAUGACAUGGUAAUUUCCACCAGUCCUAGUGGUGGUAGUGAAGCUGACAUUGAAGGGCCUUUGCCUGCUAAAGAUAUUCAUCUUGAUUUACCAUCUAAUAAUAACCUUGUUAGUAAGGAUACAGAAGAACCAUUACCUGUAAAAGAGAGUGACCAGACAUUAGCAGCUCUGCUCAGCCCUAAAGAAAGUAGUGGAGGAGAAAAAGAAGUACCUCCCCCUCCUAAAGAGЖCACUGCCUGAUUCAGGAUUUUCUGCCAAUAUUGAGGAUAUUAAUGAAGCAGAUUUAGUGAGACCGUUACUUCCUAAGGЖCAUGGAACGUCUUACAAGCCUUAGAGCUGGCAUUGAAGGЖCCUUUACUUGCAAGUGAUGUUGGACGUGACAGAUCUGCUGCCAGCCCGGUUGUAAGUAGUAUGCCAGAAAGAGCUUCAGAGUCUUCUUCAGAGGAAAAAGAUGAUUAUGAAAUUUUUGUAAAAGUUAAGGЖCACUCACGAAAAAAGCAAGAAAAAUAAGAACCGUGAUAAGGGGGAGAAAGAGAAGAAAAGAGЖCUCUUCAUUAAGAUCUCGAAGUAAGCGUUCCAAAUCUUCUGAACACAAAUCACGCAAGCGUACCAGUGAAUCUCGUUCUAGGGCAAGAAAGAGAUCAUCUAAGUCCAAGUCUCAUCGCUCUCAGACACGUUCACGGUCACGUUCAAGACGCAGGAGGAGAAGCAGCAGAUCAAGAUCAAAGUCUAGAGGAAGAAGAUCUGUAUCAAAAGAGAAGCGCAAAAGAUCUCCAAAGCACAGAUCCAAGUCUAGGGAAAGAAAAAGAAAAAGAUCAAGCUCCAGGGAUAACCGAAAGЖCAGUUAGAGCUCGAAGUCGAACCCCAAGUCGUCGGAGUCGGAGUCAUACUCCAAGUCGUCGACGAAGGUCUAGAUCUGUGGGUAGAAGAAGGAGCUPUAGCAUUUCCCCAAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGGAGCCGCACCCCUAGCCGUCGGAGCCGCACCCCAAGCCGCCGGAGAAGAUCAAGGUCUGUGGUAAGAAGACGAAGCUUCAGUAUCUCACCAGUCAGAUUAAGGCGAUCAAGAACACCCUUAAGAAGAAGGUUUAGCAGAUCUCCCAPCCGUCGUAAAAGAUCCAGGUCUUCUGAACGAGGCAGAUCACCCAAACGUCUGACAGAUUUGGAUAAGGCUCAAUUACUUGAAAUAGCCAAAGCUAAUGCAGCUGCCAUGUGUGCUAAGGCUGGUGUCCCUPUACCACCAAЖCCUAAAGCCUGCACCUCCACCUACUAUAGAAGAGAAAGUUGCUAAAAAGUCAGGAGGAGCUACUAUAGAAGAACUAACUGAGAAAUGUAAЖCAGAUCGCACAGAGUAAAGAAGAUGAUGAUGUAAUAGUGAAUAAACCUCAUGUUUCGGAUGAAGAGGAAGAAGAACCUCCUUUUUAUCAUCAPCCCUPUAAACUCAGUGAACCCAAACCUAUUUUUUUCAAUCUGAAUAUUGCUGCAGCAAAACCAACUCCACCAAAAAGCCAGGUAACAUUAACAAAAGAAUUCCCUGUAUCAUCUGGAUCUCAACAUCGGAAAAAAGAAGCGGAUAGUGUUUAUGGAGAAUGGGUUCCUGUGGAGAAAAAUGGUGAAGAAAACAAAGAUGAUGAUAAUGUUUUCAGCAGCAAUUUGCCCUCAGAGCCUGUGGACAUCUCUACAGCAAUGAGUGAACGGGCACUUGCUCAGAAAAGACUCAGUGAGAAUGCAUUUGAUCUUGAAGCCAUGAGCAUGUUAAAUAGAGCUCAGGAAAGGAUUGAUGCCUGGGCUCAGCUGAACUCUAUUCCUGGCCAGUUCACAGGAAGUACAGGAGUACAGGUUUUGACACAAGAACAGUUGGCCAAUACUGGUGCCCAAGCCUGGAUUAAAAAGGAUCAGUUCUUAAGAGCAGCCCCGGUAЖCUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCAPCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAAЖCAPCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCUPUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGGЖCCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCUPUAAUGUUGUAAAUAUUUGGCAAUUUAAGЖCAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUAЖCAPCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUAЖCACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGACAGAUAAUGGGCCAGUGUUAUUGAGGUGAUCAAGAUCUGUUCCACAGGGCUAAUGCCACCAUCUCCCCUCAAAAUUUUGUAGAGGUUCUAAAAAGAAAGUGGUAUGUUGUGUGAUGAUCAGCACUAAGUCCUGCAUUCCUGUUAAAGCCACUUGGGUCAPAAGAAGGGAGUAAAAAAUGAAGUCUGACUAGAAUUCUAUUGCAGAGGCCAGUACAUUUAGUAUGGCAUUGAGUUGUGAUAUAGUUUUACUUUGAUGUGCAUUUUGAAUUUCAGCUACACCUAGAUAGACGUAAAAUGAUAAUUAAAAUGCUGUAACCAACUUAUCUAAUAAAAUUGGCAACCAGCCACUAUUUUGUUGACUAUGAGAAAGUUAAAAGUUUAUGUUAAUUUUUAGGGUCUGAUAGAAUAUUUCAUGUGUAUUACAGUGGUAUUCAUAUGCUAUGUCUCUAAACUPUAUUUUCAAAAGCUUAAGGCCCAAAUACAAACUUCUCUGGAAUAAA
2162   mRNA  unknown    Homo sapiens    AAGACUCAGGGGCUCUCUUGUUGGUGAACAGUAGCAAAAUCUGGAGUAACUGUGCCUGGAAUUUUUUGGCCCCAAGUCUAAACAAAGGAAUAGUUUCCAGAUAAGCGCUGUUUGCAUAGGUGGUGGUCUGUCACGUGGUGGGCCAGGCUAUUCAGUUCUUGGUCAGCGAGACGCCUGCCUUGGGUGCUGGAUGCCGGCUGUACGACAUGCGGCUCUCCCCUUUCCAUUUACAGCUGGAGUUCCACAUGAAGGAGAAGAGAGAGGACCUCCAGAUUAGCUGGUCUUUCAUCAGUGUGCCGGAAAUGGCCGUUAAUAUCCAGCCCAAAGCACUGGGGGAGGACCAGGUGGCUGAGACAAGUGCGAUGUCUGACGUUCUCAAGGACAUCUUGAAGCAUUUGGCUGGUUCUGCCUCUCCAUCAGUGGUUCUGAUUACCAAGCCCACGACUGUAAAGGAAGCUCAGAACUUACAGUGUGCUGCAUCUACUGCUCAGGAAUCCUGUCCUCCUAAACCUCCAAGGGCUCACGAGCUGAAGCUACUGGUGAGGAACAUCCACGUCUUGCUGCUCAGCGAGCCCGGUGCCUCAGGCCACAUUAAUGCAGUGUGCGUCGUGCAGCUGAACGAUCCUGUUCAGAGGUUCUCCAGCACCCUGACGAAAAACACUCCGGACCUCAUGUGGGAAGAGGAAUUCACCUUCGAGUUGAAUGCCAAGUCGAAGGAGUUACACCUGCAGAUUUCAGAGGCUGGGCGAUCCUCAGAAGGUCUGCUGGCGACGGCGACAGUUCCUCUGGACUUAUUUAAGAAGCAGCCUUCUGGGCCACAGAGCUUCACGCUGACCAGCGGGUCUGCCUGCGGCAGCUCGGUGCUGGGCUCGGUCACGGCAGAGUUCUCUUACAUGGAACCUGGUGAAUUGAAAUCCUGGCCCAUCCCUCCCCCUGUUCCUGCUGCAAAAAUAGAAAAGGACCGCACGGUGAUGCCCUGUGGGЖCUGUGGUCACUACUGUCACUGCUGUGAAGACCAAGCCUCGCGUCGACGUGGGGAGGGCGUCCCCGCUGAGCUCUGAUUCUCCGGUGAAGACUCCCAUCAAGGUGAAGGUGAUCGAGAAGGACAUCUCUGUCCAGGCCAUCGCCUGCCGCAGCGCCCCCGUCAGCAAAACACUCUCUUCUUCAGACACAGAAUUGUUGGUGUUGAAUGGUUCGGAUCCAGUGGCUGAAGUGGCCAUUCGACAGCUCAGUGAAUCUUCAAAGCUGAAACUCAAGUCGCCACGGAAGAAAAGCACUAUUAUCAUAUCAGGGAUCUCCAAGACCUCACUAUCUCAGGACCACGACGCUGCCCUGAUGCAGGGCUACACGGCCUCUGUGGACAGCACCCACCAGGAGGACGCCCCAUCCCAUCCGGAGAGGGCGGCAGCCUCUGCCCCGCCAGAGGAAGCCGAGUCAGCCCAGGCAUCCCUUGCCCCCAAGCCCCAGGAGGACGAGCUAGACUCCUGGGACUUGGAGAAGGAGCCACAGGCCGCGGCAUGGAGCAGCCAGGUCCUGCUGGACCCCGACGGUGAUGAGCUGUCAGAGAGCUCCAUGAGUGUCUUGGAGCCGGGCACUGCCAAAAAGCAUAAAGGAGGAAUUCUAAGGAAAGGUGCAAAGCUGUUCUUCCGCCGGCGGCAUCAACAGAAAGACCCAGGCAUGAGUCAGUCACACAAUGACCUUGUGUUCCUGGAGCAGCCAGAGGGUUCCCGGAGGAAAGGCAUCACCCUCACCAGGAUCCUGAACAAGAAGCUGCUCUCCAGGCACAGAAACAAGAACACCAUGAЖCGGUGCCCCCGUGGAGCCCUGCACGUAGGGCCUGAGGUCAUCACCUCCAAGCCAGAAGACGUGCACCCAUGUUAACUACCCUCACCAGGACGCAGCCAGUGUGUCCGCCGGAUGUCCAGAUGCCCCGCUUGUCUUGCUGGGUUUCUUCCAACCAUCUCGUCAUUUAAAGGGAAAACAAAAUCUGAGUCUCCAGCCAGGAGGCUUCUCCCAGAGAGGЖCAAAAAAGCCCAACUUGCCACCAGAUGCUAAAUGAGЖCUUGACAGCUGCAGAGCUUGGGCUGUGCUCAUAGCUAAGGGUUAGGGUUCAAUAUUAGAAGGAGAUUAACAUUAUAAGUGAAAUAAUAUGCUCUAAUAGAUUGUGGAGGGCAGGUUUGAGGGЖCUUAGUUUACCUAUUCUACACUAACAAGUGUUGUUUUGGGUCCAUGCCUGGACCAUGUCACAAAAAGGAGGUGCCCCCCUGUGCUGUCACUGUGAAUGGAAAGGAUGGGUCACCUCUCUUCAUCUGCUGCUUGGAAUAAAAAAUGCAGCUGGCCCUGAGUACAGGGAAGUGGAACAUAGGCAGGAUUUUGGAUUAAUAGAGAAAUUUUGAUAAGAAUGGAGACGCUACGACAGAUGUAGGAAGUCAUCUACCUUUGAUAUUAGCCAUAGAACUUGAACACUAACUAUAUCCUAUGCAUAGUAUGCAGAACACUUUUCUAAGUUUACUUUGAGCCUACUUGCAAGUGGAAGAUAUAUAUAUUCUCACAUGGUUUUUACAUUUUUCUCUAUCGUGUUAAAAGCUCUAAUAAUGCUAGUGGAGCAGUUGACAUCCAGGGUUUUUUUUCCUGCCUGUCAUACUUGCUAAACAAGAGCACAGCGGGCCUGUCAGAUGAAGUCAGGAGCCAUACGUGACCGCUCGUAGAACACAGUAACCAAACACAUACAUGGAUUUUGCCAAGUGCUGCCAGUAGCCAAAACAAAGUCUUUUUAGGGCAAUAGAGGAAAUUAUUUUGUGUCUCAGGUGUCAGUCUUAGGAAUGGAAGUUUAAUAACAAAUGGGCCAAACUCGCAGGЖCAUUCCUUCUAUGAGCGCUUCAGAAUUUUGCUGUGAACAGUCCUCUUGGACACAGGUUGGGGUGCCCUUGUUUGGGUUUGUUUUGGUGGAAAACAUCACAAACCUGGCACACCAUUUGAAUAUCCCUAAUAUCAUUCCAGUCGCUUUCCUCAUCAGUUGCCUUUCUAUUUCAGUUCAUUCACAGAUCUCACUUCUGAAUGUGCCACUUCCAGUAGACAUGCUGGUCAAAGAGCAGUCAUCAUUGGGGUGAAGUGUUCUUGACAGUUUAAUAUGAUUCACUUUUCUCCAAAGACAUGUAAAAGGCUGUUACGAAAGCUUGGCUUCUGUCAUGGAGACGGAAAUGGGCAAGCUUCCUUCCGUAGCCUCUUGUUAAUCCUUAAACAUUAAAUAUUUCGGGGGUAAUAGAGCCACUGGUGAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCGGUAUCAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCUAUAUGAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUGUAUAAAAACCAAAAUUAUAGGAUUUUUUUUUCUUCUUUUUUAGAGAGAGAGAUUAGAAAACGACAUUAGGAAUUUCACUUUAAAAUGCGCAUUACAAACUUCUUAGGUGUUCCAGGAAUUAUCAAGUGACUUUAAAAUGACUUUUCCAACCUGCUUUGUUUUUAAAAAUUAUAUUCCAGUUUUAAUCAUUGUAAAAAAAGCACCUGGAGUUUCAAAACAUGUGAAUACUACCAAGUUUCUGUCCCCAAAGUCAGGCAUCACUGUUAGUCUUUUGGGACAGAUGGGACAGAUGUUCACUUUAAUGUUUUACUUGAAGUUUUACUGCUCUUUGCCAUGUGGUAAAAAGAGGCUGAGACAUAUUUAAGAAUUCCAAGAGGAUAUUAUGUGUCAGAAUUUCAGACACUGAUGAGAAGUUUUUAAUUGUUCUUUUUUAUUUGAUUUUGGAAUUCAGGUGCACUCUAUUCAAGUGCAAGGAUAUCAGAAGUUUUUUUUUAUUUAAAAAAUUUUUUUUUCGAGAUGGAGUUUCACUCUGUUGCCCAGGCUGGAGUGCAAUGGCAGCUUACUGCAACCUCCACCUCCUGGUUCAAGCGAUUCUCCUGCCUCAGCCUCCCAAGUAGCUGGGAUUACAGGCACGCGCCACCACACCUGGCUAAUUCUAUUUAGUAGAAAUGGAGUCUCACCAUGUUGGUCAGGCUGGUCUCGAACUCCUGACCUCAGGUGAUCCACCCACCUUGGCCUCCCAGCGUGCUGGGAUUAUAGGCAUGAGCCACCAGGCCGGCCCCAGGAUUUUAUAUUAAGCCUUCUUGCUCUCAAAAAAAAAAAAAGGUUUUAACUAUUCCAUUUCCAGAUGAAUCCCAUGAGCGCUGCUUACUGUUGAAUACCAAGGUCUAGGGCUCUGCUUCCUGUAGACACGCACACGUUGUCUCCAUCCAAUGGCCUUUUCUGAAGUUACAGAAAACACCAACAUGGGAGGGAGUUUAUGAAGCAAAGGCAAAGGCAACACGUCGGCUAGCUUCAGGGUAGCACCGUGAGAAAUGGGCUGUAUUGAUACUGUGAAUGUUUGUUUUCCAAGCUGUUUUAUACAGGUUUGUUUUUUCAUGGUGUAGGGUAUUUAUGACAAAGUAAAUGUUGUGAAGGUUAAAGAUAAAUUAAGAUUAUCCACCAAAUGCUAAAAAUACUGAUGUGUAAAUCACCUUUAUCGCCUCACCUCUUCUACAAGCUUUUGUGGCUUGAGGGCUUUUGUUUUUGGCUUUUGUCUGGAUGAAAGUUUUGCCCAGUUGUGUUUUAAAAACAAUUCCUCAUGAACACUAAGAUUAAUUGUGUCUGUAUCUCUGGAACUGGGUGCUCAUGUUGGUUUUAAUGAGCUUGCAACCCUUCCCCGUUUGCUUUGUUUAAGGAGGUGCCUCUGUUCUUUGUGGAGGAGUGAAAUGGAGCUUUAAGUGUGUGUGUGUGUUAUGUGUGUUUGCACACACGCGUGUGUUAUUGUAGCAAUAACAAAAAGUAGCCAUCUCCUUGUUCCAGCUGAAAACCUGCUGUGAGAGUUUUGACAGAGCACUPUAUUUUCGUCAAGUUUCAAGUCUGAGUUCAAAACCAGCCCUGAUCCCUUAUGACCAACUGCUACUCGACCAGUCGCCACUCAGUGGCCACCUGGUGCCCGUUUAGAUUUUUGCUUGGGUUUUACUGGCCACCUCUAUAGACGAGAGUUGCAAAGUUGCUUUGAGCAGAGAGGGAAAGAUUAAUUUACACUGCUGGCCACCGAAGGCAGGUGUUUCCUGGGUAGUAAUCUCACGGCUCUUGAUCUGGAAACUUCAGAGUACAAAUUGGUGGAUGGUGGAAGGCAGGЖCACGUAUCUCUGUCUGACGGAAAACAGACCUCGGGGCUGGCGUAAACCCUGCUGCCAGGCCCUCUCCCCACUGCCCCAAACCGGCCUAGACACGAAGACCAAAGCAGCCUGCACAGGGCAAGGCCCCCGCGGAAUCCUGCAGAGCAAЖCUCAGGUUAЖCUUGGGUCCAUGACCGUUUGCAUUCGAAACACAAUACACUGCCUCGUUCUCUCAGUUAGCAGCUGGGCAGCAGCGCACCAUUCAUCAUUUAGGCUUGUGGUUUGUUGUUUACUCUACCAAUGUUAUGUCGAAACUGCAUUGUAAAAAGAGAAGAAAGUGGCAGGUUUUCCAGGUCCACGGAAAGGUUUGGCCUGACGCUGGAGUGCGGUGAUGAЖCUUACGUGACAAUGAUUGUAUUCCUCAGUAGCACUPUAAACGCCGAAGACAGCCCUGCAGCAAGCCUGCACACGGGCUUGGGUGGGUUCCUUUGGAGAAGAUGUGGCUGGAACACAAACAAUCUUUGAAAGAAAUAAAUGUGCACACAGAACACUA
2163   mRNA  unknown    Homo sapiens    AAGCACUAUUAUCAUAUCAGGGAUCUCCAAGGACCACGACGCUGCCCUGAUGCAGGGCUACACGGCCUCUGUGGACAGCACCCACCAGGAGGACGCCCCAUCCCAUCCGGAGAGGGCGGCAGCCUCUGCCCCGCCAGAGGAAGCCGAGUCAGCCCAGGCAUCCCUUGCCCCCAAGCCCCAGGAGGACGAGCUAGACUCCUGGGACUUGGAGAAGGAGCCACAGGCCGCGGCAUGGAGCAGCCAGGUCCUGCUGGACCCCGACGGUGAUGAGCUGUCAGAGAGCUCCAUGAGUGUCUUGGAGCCGGGCACUGCCAAAAAGCAUAAAGGAGGAAUUCUAAGGAAAGGUGCAAAGCUGUUCUUCCGCCGGCGGCAUCAACAGAAAGACCCAGGCAUGAGUCAGUCACACAAUGACCUUGUGUUCCUGGAGCAGCCAGAGGGUUCCCGGAGGAAAGGCAUCACCCUCACCAGGAUCCUGAACAAGAAGCUGCUCUCCAGGCACAGAAACAAGAACACCAUGAЖCGGUGCCCCCGUGGAGCCCUGCACGUAGGGCCUGAGGUCAUCACCUCCAAGCCAGAAGACGUGCACCCAUGUUAACUACCCUCACCAGGACGCAGCCAGUGUGUCCGCCGGAUGUCCAGAUGCCCCGCUUGUCUUGCUGGGUUUCUUCCAACCAUCUCGUCAUUUAAAGGGAAAACAAAAUCUGAGUCUCCAGCCAGGAGGCUUCUCCCAGAGAGGЖCAAAAAAGCCCAACUUGCCACCAGAUGCUAAAUGAGЖCUUGACAGCUGCAGAGCUUGGGCUGUGCUCAUAGCUAAGGGUUAGGGUUCAAUAUUAGAAGGAGAUUAACAUUAUAAGUGAAAUAAUAUGCUCUAAUAGAUUGUGGAGGGCAGGUUUGAGGGЖCUUAGUUUACCUAUUCUACACUAACAAGUGUUGUUUUGGGUCCAUGCCUGGACCAUGUCACAAAAAGGAGGUGCCCCCCUGUGCUGUCACUGUGAAUGGAAAGGAUGGGUCACCUCUCUUCAUCUGCUGCUUGGAAUAAAAAAUGCAGCUGGCCCUGAGUACAGGGAAGUGGAACAUAGGCAGGAUUUUGGAUUAAUAGAGAAAUUUUGAUAAGAAUGGAGACGCUACGACAGAUGUAGGAAGUCAUCUACCUUUGAUAUUAGCCAUAGAACUUGAACACUAACUAUAUCCUAUGCAUAGUAUGCAGAACACUUUUCUAAGUUUACUUUGAGCCUACUUGCAAGUGGAAGAUAUAUAUAUUCUCACAUGGUUUUUACAUUUUUCUCUAUCGUGUUAAAAGCUCUAAUAAUGCUAGUGGAGCAGUUGACAUCCAGGGUUUUUUUUCCUGCCUGUCAUACUUGCUAAACAAGAGCACAGCGGGCCUGUCAGAUGAAGUCAGGAGCCAUACGUGACCGCUCGUAGAACACAGUAACCAAACACAUACAUGGAUUUUGCCAAGUGCUGCCAGUAGCCAAAACAAAGUCUUUUUAGGGCAAUAGAGGAAAUUAUUUUGUGUCUCAGGUGUCAGUCUUAGGAAUGGAAGUUUAAUAACAAAUGGGCCAAACUCGCAGGЖCAUUCCUUCUAUGAGCGCUUCAGAAUUUUGCUGUGAACAGUCCUCUUGGACACAGGUUGGGGUGCCCUUGUUUGGGUUUGUUUUGGUGGAAAACAUCACAAACCUGGCACACCAUUUGAAUAUCCCUAAUAUCAUUCCAGUCGCUUUCCUCAUCAGUUGCCUUUCUAUUUCAGUUCAUUCACAGAUCUCACUUCUGAAUGUGCCACUUCCAGUAGACAUGCUGGUCAAAGAGCAGUCAUCAUUGGGGUGAAGUGUUCUUGACAGUUUAAUAUGAUUCACUUUUCUCCAAAGACAUGUAAAAGGCUGUUACGAAAGCUUGGCUUCUGUCAUGGAGACGGAAAUGGGCAAGCUUCCUUCCGUAGCCUCUUGUUAAUCCUUAAACAUUAAAUAUUUCGGGGGUAAUAGAGCCACUGGUGAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCGGUAUCAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCUAUAUGAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUGUAUAAAAACCAAAAUUAUAGGAUUUUUUUUUCUUCUUUUUUAGAGAGAGAGAUUAGAAAACGACAUUAGGAAUUUCACUUUAAAAUGCGCAUUACAAACUUCUUAGGUGUUCCAGGAAUUAUCAAGUGACUUUAAAAUGACUUUUCCAACCUGCUUUGUUUUUAAAAAUUAUAUUCCAGUUUUAAUCAUUGUAAAAAAAGCACCUGGAGUUUCAAAACAUGUGAAUACUACCAAGUUUCUGUCCCCAAAGUCAGGCAUCACUGUUAGUCUUUUGGGACAGAUGGGACAGAUGUUCACUUUAAUGUUUUACUUGAAGUUUUACUGCUCUUUGCCAUGUGGUAAAAAGAGGCUGAGACAUAUUUAAGAAUUCCAAGAGGAUAUUAUGUGUCAGAAUUUCAGACACUGAUGAGAAGUUUUUAAUUGUUCUUUUUUAUUUGAUUUUGGAAUUCAGGUGCACUCUAUUCAAGUGCAAGGAUAUCAGAAGUUUUUUUUUAUUUAAAAAAUUUUUUUUUCGAGAUGGAGUUUCACUCUGUUGCCCAGGCUGGAGUGCAAUGGCAGCUUACUGCAACCUCCACCUCCUGGUUCAAGCGAUUCUCCUGCCUCAGCCUCCCAAGUAGCUGGGAUUACAGGCACGCGCCACCACACCUGGCUAAUUCUAUUUAGUAGAAAUGGAGUCUCACCAUGUUGGUCAGGCUGGUCUCGAACUCCUGACCUCAGGUGAUCCACCCACCUUGGCCUCCCAGCGUGCUGGGAUUAUAGGCAUGAGCCACCAGGCCGGCCCCAGGAUUUUAUAUUAAGCCUUCUUGCUCUCAAAAAAAAAAAAAGGUUUUAACUAUUCCAUUUCCAGAUGAAUCCCAUGAGCGCUGCUUACUGUUGAAUACCAAGGUCUAGGGCUCUGCUUCCUGUAGACACGCACACGUUGUCUCCAUCCAAUGGCCUUUUCUGAAGUUACAGAAAACACCAACAUGGGAGGGAGUUUAUGAAGCAAAGGCAAAGGCAACACGUCGGCUAGCUUCAGGGUAGCACCGUGAGAAAUGGGCUGUAUUGAUACUGUGAAUGUUUGUUUUCCAAGCUGUUUUAUACAGGUUUGUUUUUUCAUGGUGUAGGGUAUUUAUGACAAAGUAAAUGUUGUGAAGGUUAAAGAUAAAUUAAGAUUAUCCACCAAAUGCUAAAAAUACUGAUGUGUAAAUCACCUUUAUCGCCUCACCUCUUCUACAAGCUUUUGUGGCUUGAGGGCUUUUGUUUUUGGCUUUUGUCUGGAUGAAAGUUUUGCCCAGUUGUGUUUUAAAAACAAUUCCUCAUGAACACUAAGAUUAAUUGUGUCUGUAUCUCUGGAACUGGGUGCUCAUGUUGGUUUUAAUGAGCUUGCAACCCUUCCCCGUUUGCUUUGUUUAAGGAGGUGCCUCUGUUCUUUGUGGAGGAGUGAAAUGGAGCUUUAAGUGUGUGUGUGUGUUAUGUGUGUUUGCACACACGCGUGUGUUAUUGUAGCAAUAACAAAAAGUAGCCAUCUCCUUGUUCCAGCUGAAAACCUGCUGUGAGAGUUUUGACAGAGCACUPUAUUUUCGUCAAGUUUCAAGUCUGAGUUCAAAACCAGCCCUGAUCCCUUAUGACCAACUGCUACUCGACCAGUCGCCACUCAGUGGCCACCUGGUGCCCGUUUAGAUUUUUGCUUGGGUUUUACUGGCCACCUCUAUAGACGAGAGUUGCAAAGUUGCUUUGAGCAGAGAGGGAAAGAUUAAUUUACACUGCUGGCCACCGAAGGCAGGUGUUUCCUGGGUAGUAAUCUCACGGCUCUUGAUCUGGAAACUUCAGAGUACAAAUUGGUGGAUGGUGGAAGGCAGGЖCACGUAUCUCUGUCUGACGGAAAACAGACCUCGGGGCUGGCGUAAACCCUGCUGCCAGGCCCUCUCCCCACUGCCCCAAACCGGCCUAGACACGAAGACCAAAGCAGCCUGCACAGGGCAAGGCCCCCGCGGAAUCCUGCAGAGCAAЖCUCAGGUUAЖCUUGGGUCCAUGACCGUUUGCAUUCGAAACACAAUACACUGCCUCGUUCUCUCAGUUAGCAGCUGGGCAGCAGCGCACCAUUCAUCAUUUAGGCUUGUGGUUUGUUGUUUACUCUACCAAUGUUAUGUCGAAACUGCAUUGUAAAAAGAGAAGAAAGUGGCAGGUUUUCCAGGUCCACGGAAAGGUUUGGCCUGACGCUGGAGUGCGGUGAUGAЖCUUACGUGACAAUGAUUGUAUUCCUCAGUAGCACUPUAAACGCCGAAGACAGCCCUGCAGCAAGCCUGCACACGGGCUUGGGUGGGUUCCUUUGGAGAAGAUGUGGCUGGAACACAAACAAUCUUUGAAAGAAAUAAAUGUGCACACAGAACACUA
2164   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGCAAGAUGUGAGUGAGUUUACACACAAAUUAUUAGAUUGGUUAGAAGAUGCCUUCCAAAUGAAAGCUGAAGAGGAGACGGAUGAAGAGAAGCCAAAGAACCCCAUGGUAGAGUUGUUCUAUGGCAGAUUCCUGGCUGUGGGAGUACUUGAAGGUAAAAAAUUUGAAAACACUGAAAUGUUUGGUCAGUACCCACUUCAGGUCAAUGGGUUCAAAGAUCUGCAUGAGUGCCUAGAAGCUGCAAUGAUUGAAGGAGAAAUUGAGUCUUUACAUUCAGAGAAUUCAGGAAAAUCAGGCCAAGAGCAUUGGUUUACUGAAUUACCACCUGUGUUAACAUUUGAAUUGUCAAGAUUUGAAUUUAAUCAGGCAUUGGGAAGACCAGAAAAAAUUCACAACAAAUUAGAAUUUCCCCAAGUUUUAUAUUUGGACAGAUACAUGCACAGAAACAGAGAAAUAACAAGAAUUAAGAGGGAAGAGAUCAAGAGACUGAAAGAUUACCUCACGGUAUUACAACAAAGGCUAGAAAGAUAUUUAAGCUAUGGUUCCGGUCCCAAACGAUUCCCCUUGGUAGAUGUUCUUCAGUAUGCAUUGGAAUUUGCCUCAAGUAAACCUGUUUGCACUUCUCCUGUUGACGAUAUUGACGCUAGUUCCCCACCUAGUGGUUCCAUACCAUCACAGACAUUACCAAGCACAACAGAACAACAGGGAGCCCUAUCUUCAGAACUGCCAAGCACAUCACCUUCAUCAGUUGCUGCCAUUUCAUCGAGAUCAGUAAUACACAAACCAUUUACUCAGUCCCGGAUACCUCCAGAUUUGCCCAUGCAUCCGGCACCAAGGCACAUAACGGAGGAAGAACUUUCUGUGCUGGAAAGUUGUUUACAUCGCUGGAGGACAGAAAUAGAAAAUGACACCAGAGAUUUGCAGGAAAGCAUAUCCAGAAUCCAUCGAACAAUUGAAUUAAUGUACUCUGACAAAUCUAUGAUACAAGUUCCUUAUCGAUUACAUGCCGUUUUAGUUCACGAAGGCCAAGCUAAUGCUGGGCACUACUGGGCAUAUAUUUUUGAUCAUCGUGAAAGCAGAUGGAUGAAGUACAAUGAUAUUGCUGUGACAAAAUCAUCAUGGGAAGAGCUAGUGAGGGACUCUUUUGGUGGUUAUAGAAAUGCCAGUGCAUACUGUUUAAUGUACAUAAAUGAUAAGGCACAGUUCCUAAUACAAGAGGAGUUUAAUAAAGAAACUGGGCAGCCCCUUGUUGGUAUAGAAЖCAUUACCACCGGAUPUGAGAGAUUUUGUUGAGGAAGACAACCAACGAUPUGAAAAAGAACUAGAAGAAUGGGAUGCACAACUUGCCCAGAAAGCUUUGCAGGAAAAGCUUUUAGCGUCUCAGAAAUUGAGAGAGUCAGAGACUUCUGUGACAACAGCACAAGCAGCAGGAGЖCCCAGAAUAUCUAGAGCAGCCAUCAAGAAGUGAUUUCUCAAAGCACUUGAAAGAAGAAACUAUUCAAAUAAUUACCAAGGCAUCACAUGAGCAUGAAGAUAAAAGUCCUGAAACAGUUUUGCAGUCGAUCAUGAUGACACCGAACAUGCAAGGUAUUAUCAUGGCGAUAGGUAAAUCCAGGAGUGUAUAUGACAGGUGUGGCCCUGAAGCAGGGUUCUUUAAGGCAAUUAAGUUGGAAUAUGCAAGGUUGGUUAAGUUGGCCCAAGAAGACACCCCACCAGAAACCGAUUAUCGUUUACAUCAUGUAGUGGUCUACUPUAUCCAGAACCAGGCACCAAAGAAAAUUAUUGAGAAAACAUUACUAGAACAAUUUGGAGAUAGAAAUUUGAGUUUUGAUGAAAGGUGUCACAACAUAAUGAAAGUUGCUCAAGCCAAACUGGAAAUGAUAAAACCUGAAGAAGUAAACUUGGAGGAAUAUGAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAAЖCAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACCPCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGAЖCUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAAЖCUGCACACUUUCCCUGAACACACUGUAUAAЖCUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUAЖCUUUUUUUUAUUUUAAUAЖCUGCAAAAGACAAAAUGACUAUACAGЖCUPUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGAЖCUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUAUGUGUUUGUAAGCAGGUAUAUUGUAUAUUAGUGUAUUAGUAAUACUAGAUAAAUGAAUUUUGUCUGGGGAUUAAGAUUGGAUAGUUAAUAGAUUAAUACAAUCUUUUAAUUCUGCUCUAAUGCUAGCAAAUUGGAAAAUGUUUAAGUCUUUGACACUUAAAUUUAUCUAUAUUUUUAACAAAGUUCUUGAACUUAGUAUGGCACCGGAACCUGUUUUGAAUUCAGUCAGGUUUUUACUCAAGUAAGUGGUUGAUUUUUUUUAAGUCAAACUACACUGAAACUUUUAUCCUUUUCUUAGAUUAAUCUUACUUUUUAAAUGUAUUUACAAUAUACAGCAAGGUGAUUAUUUCAAGAGAAUCCCAAAGUACUUGAAUAAGGGCUAUUGUAAAAUUUAAAAGAAAUAUUUAUAUAUACACAUAUAUACACAUACACACAUGUAUAUAUAUAUUCUUCAUAAUGGAGGACAAUGUUUUGCAAUAUAUAAAUCAUUCUAUUUUUGUAAAUUGUAUAUCACUUUAAUUGAAAAUGUUCUCUACUAAUUAAUACUGUGAAACAAAAUUGAUGUUGUUUAACUAGAAGUUAUGAGUAUCUUAACUGCCUUUAUUCCUUUUCAAAAAGGAAAAAGCUGUAGAACAUUUUGUAGAUGAAACUACUGUUUAAGAUUAAUGAAUUAAUAUUGUGAAUGAAAAUCAAAAUCCAUACUUUAAAGGUAAUCAUGUUACUAACAACCUAUUUUUGAAUUCAUAAAAAUUUCUUUAUAAAUGAUGUUUUGUGAACAUAGUAAAAUAGACCAUUAUACUAUGUGUAUGUUUGAUACAGCGUCGCCAAAACUAGUGUUCUUUAUUAGUGCCUCUCACAAAAGAUCCUGGAUGGAGGAGUAAGAUGAAAUAUUAUGCUAUUAUAUGAUGCUGUUUGUAAAGGUAUUAAUGUACUAGUAAGGUGUUAAUGACAAGGAAUUAGUACUAUUCCUGUUGUAAAGUUAGAUUUUGCAUAUUGUAUCUAUCAAAAUAUGUUUGGGUUUAGAUUUUAAGUUGUCUACUGAGCAGAUUUCUGCAUUGGUUUUCCAGUCCUGUUAAAAGUUUAGAAACUUCAUAUGUGUCAUCACAGCUUUUGUAAAGAAAGUAUCCUUAAUAUUUUAUGACAUUCU
2165   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGCAAGAUGUGAGUGAGUUUACACACAAAUUAUUAGAUUGGUUAGAAGAUGCCUUCCAAAUGAAAGCUGAAGAGGAGACGGAUGAAGAGAAGCCAAAGAACCCCAUGGUAGAGUUGUUCUAUGGCAGAUUCCUGGCUGUGGGAGUACUUGAAGGUAAAAAAUUUGAAAACACUGAAAUGUUUGGUCAGUACCCACUUCAGGUCAAUGGGUUCAAAGAUCUGCAUGAGUGCCUAGAAGCUGCAAUGAUUGAAGGAGAAAUUGAGUCUUUACAUUCAGAGAAUUCAGGAAAAUCAGGCCAAGAGCAUUGGUUUACUGAAUUACCACCUGUGUUAACAUUUGAAUUGUCAAGAUUUGAAUUUAAUCAGGCAUUGGGAAGACCAGAAAAAAUUCACAACAAAUUAGAAUUUCCCCAAGUUUUAUAUUUGGACAGAUACAUGCACAGAAACAGAGAAAUAACAAGAAUUAAGAGGGAAGAGAUCAAGAGACUGAAAGAUUACCUCACGGUAUUACAACAAAGGCUAGAAAGAUAUUUAAGCUAUGGUUCCGGUCCCAAACGAUUCCCCUUGGUAGAUGUUCUUCAGUAUGCAUUGGAAUUUGCCUCAAGUAAACCUGUUUGCACUUCUCCUGUUGACGAUAUUGACGCUAGUUCCCCACCUAGUGGUUCCAUACCAUCACAGACAUUACCAAGCACAACAGAACAACAGGGAGCCCUAUCUUCAGAACUGCCAAGCACAUCACCUUCAUCAGUUGCUGCCAUUUCAUCGAGAUCAGUAAUACACAAACCAUUUACUCAGUCCCGGAUACCUCCAGAUUUGCCCAUGCAUCCGGCACCAAGGCACAUAACGGAGGAAGAACUUUCUGUGCUGGAAAGUUGUUUACAUCGCUGGAGGACAGAAAUAGAAAAUGACACCAGAGAUUUGCAGGAAAGCAUAUCCAGAAUCCAUCGAACAAUUGAAUUAAUGUACUCUGACAAAUCUAUGAUACAAGUUCCUUAUCGAUUACAUGCCGUUUUAGUUCACGAAGGCCAAGCUAAUGCUGGGCACUACUGGGCAUAUAUUUUUGAUCAUCGUGAAAGCAGAUGGAUGAAGUACAAUGAUAUUGCUGUGACAAAAUCAUCAUGGGAAGAGCUAGUGAGGGACUCUUUUGGUGGUUAUAGAAAUGCCAGUGCAUACUGUUUAAUGUACAUAAAUGAUAAGGCACAGUUCCUAAUACAAGAGGAGUUUAAUAAAGAAACUGGGCAGCCCCUUGUUGGUAUAGAAЖCAUUACCACCGGAUPUGAGAGAUUUUGUUGAGGAAGACAACCAACGAUPUGAAAAAGAACUAGAAGAAUGGGAUGCACAACUUGCCCAGAAAGCUUUGCAGGAAAAGCUUUUAGCGUCUCAGAAAUUGAGAGAGUCAGAGACUUCUGUGACAACAGCACAAGCAGCAGGAGЖCCCAGAAUAUCUAGAGCAGCCAUCAAGAAGUGAUUUCUCAAAGCACUUGAAAGAAGAAACUAUUCAAAUAAUUACCAAGGCAUCACAUGAGCAUGAAGAUAAAAGUCCUGAAACAGUUUUGCAGUCGGCAAUUAAGUUGGAAUAUGCAAGGUUGGUUAAGUUGGCCCAAGAAGACACCCCACCAGAAACCGAUUAUCGUUUACAUCAUGUAGUGGUCUACUPUAUCCAGAACCAGGCACCAAAGAAAAUUAUUGAGAAAACAUUACUAGAACAAUUUGGAGAUAGAAAUUUGAGUUUUGAUGAAAGGUGUCACAACAUAAUGAAAGUUGCUCAAGCCAAACUGGAAAUGAUAAAACCUGAAGAAGUAAACUUGGAGGAAUAUGAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAAЖCAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACCPCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGAЖCUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAAЖCUGCACACUUUCCCUGAACACACUGUAUAAЖCUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUAЖCUUUUUUUUAUUUUAAUAЖCUGCAAAAGACAAAAUGACUAUACAGЖCUPUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGAЖCUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUA
2166   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAAЖCAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACCPCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGAЖCUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAAЖCUGCACACUUUCCCUGAACACACUGUAUAAЖCUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUAЖCUUUUUUUUAUUUUAAUAЖCUGCAAAAGACAAAAUGACUAUACAGЖCUPUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGAЖCUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUA
2167   mRNA  unknown    Homo sapiens    AAGCCAUCCCACUGGCCUGGACUCUGCUGGGAUUAUUUUGACCCCCCAGGGCAGAGUGUAGCCAUCUGACUGGCUUUCUCUCUCGGCAGGAGACGGGGCGCACGCCUGCAGGCUUCAGUUUCACAUUCUUGGUACCUCCUGGUGGUGCCUGGGAGGGAGCCACUGCUGUACAGAGAUGCCAAUUCCAGAGGCAUGGUCCGGCACAGAGCGCUGGCUUCCAGCUGAAGGЖCAUGUGUAACAGCAGGAGAUACCUUUCUCUGGGGUCCCAGGCUCCCGUCCUGGACCUUGGCACCCCGCCCCCCGUGCAUUGUCGUCUUCUGAGUCUGGCUUUGUCUGGCACAUGAAGUUGGAUGGGUAGЖCUCUGGAAGCGUCCAGACCAGCUUGCGAUGCUGAUGAAUAAGCUGAUUUUGAUGGGGUGUGUGAAACGGAGAUGCCAGCCCAGGGGCUCAGCUUGCUCGUGCUCUCAUUUAAAAGCAGAAAAUAGCGЖCUUCAUUCUCGGAUACGUUUGCCAGCCCCAAAGGAUUAAUUAUCUACACACCCAGAAGCAGUGGAGCAGAAUAUUUUGGCAGGAUUUUCAGGAUUUGUGUCAUCGUUGCUUAAUAUCUGUUUCUUCACAGUCGGUUUUGGGAUUUGAGAUUGACGCGGUGAACUCUGUCCAGUUUUCAAЖCCACACAGAGACAAGGUCGGUCUCUGUCGCCCAGGCUGGCGUGAAGUGGCGCAACCAGCUCACUGCAGCCUUGACCUCCUGGGCUGAAGCAAUCUUUCUGCCUCCACCUCCCGAGUGGCUGGGACUAUAGUUGUGCACCAGCACGCCCACCUCCUGCCCAGGGUUGUUACUGGGGUGGUCACGUGGGCAGCUUCUGCCUGGGAUGGGCCACAAAGCCAGACUCCCGGCAGGGACACGGGUGUUCCACACAAGCUGCGUUGUUGGUUCCCUGACGCCCUUCAGGCUGGGGGGUGGGAAAGCCGAUCCCCCAAGUGCCUGCAGAGCCCACCUGGCGCAGGCCUCGCCGCCUCGAGGCUGCUGCUCGCACUUCUGCCCCUUCCCCCGGCCAGGCCCCCGUUCCUUGAGGCCGUACCACAAGGUGCGUUCAUUUUUCCACACCGUGAGCUGGGCUUGGCAGAGCCUCCACCUUGUGGCCAGUAUUCCCAGUGGCCCCUUUGAGAGGAUUUCCUGGAGCUCCCUGUCUGAGCUUCCCGGЖCUGAGGGCACUGGGAAGGAGCCUGCGGAGCUGGAGGUCAGCGGGUGGACGGGUUGCGCUGUCCUGGCUUUCGGAGUGUAGAGCCAGAGGGGAUGGGЖCAGGUGCCCUGCUGCUGGGCUUGGUGGUCCCUGCUGCAGGGAAGGGGCAGCUGGUGUGAACACAAGGAGCUGCGGGGCUGGAGAAGGCCAGGGCCAGGAGCCUGCCGACGGACACCAGCGAGGGGCCAGGCCGGGCCAGGAGCCUGCCGACGGACACCAGCGAGGGGCCAGGCCGGGCCAGACUCCCUGGCCGGCUGGGAUCUGACAGGAGUGCCAGGCUCCUUGGGCCGCCCGAGGAACCGCUUGUUUGCCUGUGCUUUUUCAUCUGUAAAUGGAAUGAGUUGGЖCACAAGAUCCAAGCGCCCUCCCCUGUUGGAGAAGGUUCUUGUGGGCUCUGGGCCCAUCCCACAUCCCACAGUGGGCAGGAGGCCACCAAGAGGUGCAAGACCAUGCCCUCUGUUUCGAUAGGAAGCUGGGCCUCAGAGGGGCCUGGGGCCUGUGUCUGAGACCCGGCCAAGUGCUGGЖCGUCUCCCCUUCCUCAUGGCUGUUAUGGCUGAAUUACGUCCCCCCAAAUUCUCAUGUUGCAGCCUUAACCCCAGCACCUCAGUGUGGGЖCUGGGUUUGGAGAUGGAGCCCCUACAGAGGUCAGCAGGUUAAAAGAGGCCAUCAGGGCUCUGGGUGGGCCCUGAUCCAAGCUGCUUGGUGUCCUUGUAAGAAGAAGAGAUGAGGACACAGACACACACAGAGGGACAGCCCCAUGAGGAAACAGGGAGGCAAUGCCGUCUGCAAGCCCAGGGCAGAGGCCUCAGGAACCAGCCCUGGUGACACCUGGЖCCUUGGACCCCCGUGCCCAGGЖCAGUAGGAGAAUUGGAGCCGCCUGGCUGCAGUCCUUCCCGAUGGCACCCUGUAUUAGUCCGUUCUCACACUGCUAAUUGUUGGGAAAAGGGCUUGUGGAAUGCCUGUAUAAACUGGCCAUGAAAAUAUGGGACAAUAAGUUGUGGAAAGCCACAAGAGGCCUCUGAGGAGGAAAGCCUCCUAAUUGCCAUCAUGUUCGCAUGCUCAGGGCGAGACCUGCUGUCUUAUCUGUAAACACCGUGUUCAAGGAGAAAGЖCAUUCCUUCGAAGCACUGGЖCUGUGGЖCAGACACACGAGCUCCUGGUUAAGCCCGCUCCCACCAGCUCCUGUCCGAUAAGUUAAAGAUACGCUGUUUGAGCACAAAGGAGAUUCAUUGAAACCGCUAUUGCUGUAGAUUACGCCUGUGACGCACUGCCUCCCUUUCACUGUUUCGCCCUGAAUAUCUGCUUCUCAGAUCUAAGUGACUGUACUCAAUAAAUAGCGUGGAGACCAGA
2168   mRNA  unknown    Homo sapiens    AAGCCGGCGGGGGGCGGGGAGCUGCUGCGGCCAGACCCACGGGCAGCCGGGCGGGCGGACGCCUCCAAGACCAGUCUCUGCCUCCGCAGCGUCAGCGGGAGCGGGCUGCCUCCGAAGAAAGGAGAAUGGCGUUCAGUAAAGGAUUCCGGAUCUAUCACAAAUUGGAUCCCCCACCUUUCAGCCUCAUAGUGGAAACUAGGCAUAAGGAAGAAUGUCUCAUGUUCGAGUCUGGGGCUGUCGCUGUGCUCUCAUCUGCAGAAAAAGAGGCAAUCAAGGGUACAUACUCCAAAGUACUGGAUGCAUAUGGACUCUUAGGUGUUCUGCGGUUAAAUCUUGGUGAUACUAUGUUACAUUAUCUGGUCCUAGUCACUGGAUGUAUGUCUGUUGGAAAAAUUCAAGAAUCUGAAGUUUUCCGAGUUACUUCCACUGAGUUUAUAUCACUGCGAAUCGAUUCUUCAGAUGAGGAUCGCAUUUCAGAAGUGCGGAAAGUUUUGAAUUCAGGAAACUUUUAUUUUGCAUGGUCUGCAUCUGGCAUCAGUUUAGAUUUGAGUCUUAAUGCGCAUCGUAGCAUGCAAGAACAGACAACUGAUAAUAGAUUUUUCUGGAAUCAGUCUUUGCAUUUGCAUCUCAAACACUAUGGCGUGAAUUGUGAUGACUGGUUAUUACGUCUUAUGUGUGGAGGAGUAGAAAUCAGAACAAUUUAUGCUGCUCAUAAACAGGCGAAGGCUUGCCUCAUUUCAAGAUUAAGCUGUGAACGAGCUGGGACCAGGUUUAAUGUCCGGGGAACAAAUGAUGAUGGUCAUGUUGCCAAUUUUGUAGAAACAGAACAGGUUGUGUACUUAGAUGACUCAGUUUCUUCCUUCAUACAAAUCCGAGGAUCUGUUCCAUUGUUCUGGGAGCAACCAGGGUUGCAAGUGGGAUCUCAUCGUGUCCGUAUGUCAAGGGGAUUUGAAGCCAAUGCACCUGCUUUUGACAGGCAUUUUAGAACACUUAAGAACUUAUAUGGUAAACAAAUAAUAGUAAAUUUGCUUGGAUCUAAGGAAGGUGAACAUAUGCUAAGUAAAGCUUUCCAGAGUCAUUUGAAAGCUUCUGAACAUGCUGCUGAUAUCCAGAUGGUGAAUUUUGACUAUCAUCAAAUGGUUAAGGGAGGAAAGGCAGAAAAAUUACAUAGUGUUCUUAAACCUCAAGUCCAGAAGUUUCUAGAUUAUGGAUUUUUUUAUUUCAAUGGAAGUGAAGUUCAAAGAUGCCAGAGUGGUACAGUUCGAACAAACUGCUUGGAUUGUCUUGAUAGAACAAAUAGUGUGCAGGCAUUUCUUGGCUUAGAGAUGCUAGCUAAACAGUUGGAAGCUCUUGGUUUAGCUGAAAAGCCUCAGUUGGUGACUCGCUUUCAAGAAGUUUUUCGGUCAAUGUGGUCCGUGAAUGGUGAUUCAAUCAGUAAGAUAUAUGCAGGAACUGGAGCUCUUGAAGGGAAAGCGAAGUUAAAAGAUGGUGCUCGCUCUGUUACCCGAACAAUUCAGAAUAACUUCUUUGACAGCUCCAAGCAAGAGGCCAUUGAUGUUUUGCUACUGGGAAAUACUCUGAAUAGUGAUUUAGCUGACAAAGCUCGAGCACUUUUAACUACUGGAAGUUUGCGUGUUUCUGAGCAGACAUUACAGUCAGCAUCUUCUAAAGUACUAAAGAGCAUGUGUGAGAAUUUCUACAAAUAUUCAAAGCCUAAGAAAAUUCGAGUAUGUGUCGGAACCUGGAAUGUGAAUGGUGGGAAGCAAUUUCGCAGCAUAGCUUUUAAGAAUCAGACACUCACUGACUGGCUUCUUGAUGCACCCAAGUUAGCUGGCAUCCAGGAGUUUCAAGAUAAAAGAAGUAAGCCAACUGAUAUAUUUGCAAUUGGUUUUGAAGAAAUGGUAGAAUUGAAUGCUGGAAACAUUGUGAGUGCAAGCACAACAAAUCAGAAGCUCUGGGCUGUAGAACUUCAGAAGACAAUCUCCAGAGACAACAAGUAUGUGCUGCUGGCUUCUGAACAGUUGGUGGGCGUCUGUUUGUUUGUUUUUAUCAGACCACAGCAUGCUCCUUUUAUCAGGGAUGUUGCAGUUGAUACUGUGAAGACUGGAAUGGGAGGUGCAACUGGAAAUAAGGGAGCAGUUGCAAUCCGAAUGCUCUUCCAUACAACCAGCCUUUGCUUCGUCUGUAGCCACUUUGCUGCAGGGCAGUCACAAGUCAAAGAAAGAAAUGAAGAUUUUAUAGAAAUAGCACGAAAAUUGAGUUUUCCUAUGGGAAGGAUGCUAUUUUCCCAUGACUAUGUAUUUUGGUGUGGUGAUUUCAACUAUCGAAUCGAUCUCCCUAACGAAGAAGUUAAAGAGCUCAUAAGACAGCAAAAUUGGGAUUCUCUUAUAGCAGGAGAUCAACUUAUCAAUCAGAAAAAUGCUGGACAGGUUUUUAGAGGAUUUUUAGAAGGAAAGGUAACCUUUGCUCCGACAUAUAAGUAUGACUUGUUUUCUGACGACUAUGACACCAGUGAAAAGUGCCGCACCCCUGCCUGGACAGACCGUGUCCUUUGGAGAAGGAGGAAAUGGCCUUUUGAUAGAUCAGCUGAAGAUCUAGAUCUUCUAAAUGCUAGUUUUCAAGAUGAAAGCAAAAUUCUGUACACGUGGACUCCAGGCACUUUGCUGCACUAUGGAAGAGCUGAGCUGAAGACUUCUGACCACAGGCCUGUCGUUGCCCUGAUUGAUAUAGAUAUAUUUGAAGUUGAAGCUGAAGAGAGGCAAAACAUUUAUAAAGAAGUAAUUGCAGUUCAGGGUCCACCAGAUGGUACAGUAUUGGUCUCAAUCAAAAGUUCUUUACCAGAAAAUAAUUUUUUUGAUGAUGCCUUGAUUGAUGAGCUUCUGCAGCAGUUUGCAAGUUUUGGUGAAGUUAUACUUAUAAGAUUUGUAGAAGAUAAAAUGUGGGUUACAUUUUUGGAGGGAAGCUCUGCCUUGAAUGUUCUGAGCCUAAAUGGUAAAGAGUUAUUGAAUCGGACUAUAACUAUUGCUUUAAAAAGUCCAGACUGGAUCAAAAAUUUGGAAGAAGAAAUGAGUUUAGAGAAAAUUAGCAUUGCAUUGCCAUCAUCAACAAGCUCUACCCUGCUUGGUGAAGAUGCAGAGGUUGCAGCAGAUUUUGAUAUGGAAGGUGAUGUUGAUGACUAUAGUGCUGAAGUGGAGGAACUUCUUCCUCAGCAUCUCCAGCCAUCUUCAAGUUCCGGCCUUGGUACUUCCCCCAGCUCUUCACCCCGAACUAGUCCCUGCCAGUCACCUACAAUAUCAGAGGGUCCUGUACCUUCCCUUCCCAUCAGACCAAGCCGAGCACCGUCAAGAACUCCUGGGCCUCCCAGUGCACAGAGUUCUCCUAUUGACGCGCAGCCAGCAACGCCGCUGCCGCAGAAAGACCCCGCCCAGCCCUUGGAGCCCAAGCGGCCGCCGCCGCCCCGCCCGGUCGCCCCUCCCACACGCCCGGCUCCCCCACAGAGACCUCCUCCGCCUUCAGGGGCUAGGAGUCCUGCACCCACUAGAAAGGAAUUUGGAGCACCCAAAAGCCCUGGAACAACAAGGAAAGAUAAUAUAGGACGCAGUCAGCCUUCACCUCAAGCAGGACUUGCAGGCCCAGGACCUGCUGGAUACAGUACAGCCAGACCGACGAUUCCUCCUCGUGCUGGAGUUAUCAGUGCCCCACAGAGCCACGCGCGGGCAUCUGCUGGAAGACUGACUCCUGAAAGCCAAAGCAAAACAUCAGAAACGUCGAAAGGUUCAACUUUCCUUCCUGAACCACUGAAGCCUCAGGCUGCUUUUCCUCCGCAGUCUUCUUUGCCCCCGCCUGCUCAAAGGUUGCAAGAGCCUCUUGUCCCUGUGGCAGCACCUAUGCCUCAGUCUGGCCCCCAGCCAAAUUUGGAAACCCCACCACAACCACCACCUCGAAGCAGGUCAUCCCAUAGCUUGCCUUCAGAAGCUUCCUCACAACCGCAACAGGAGCAACCAUCAGGGUAACAGGUAAAAACAAAUGGAAUCUCUGAUGGCAAAAGAGAAUCACCAUUAAAGAUUGACCCAUUUGAAGAUCUGUCAUUUAAUCUGCUUGCUGUAUCAAAGGCUCAGCUAUCUGUUCAAACGUCACCUGUUCCCACCCCAGACCCAAAGAGGUUGAUUCAGUUGCCUUCUGCAACGCAAAGUAAUGUUUUGAGUUCUGUAAGUUGCAUGCCAACAAUGCCUCCAAUUCCAGCUCGGAGUCAAUCCCAGGAAAAUAUGCGAAGUUCUCCAAACCCAUUUAUUACUGGCUUGACCAGGЖCAAAUCCUUUCAGUGЖCAGGЖCUGCUGCUCCUGGAAACCCAUUUAGAGCCAAGUCUGAAGAAUCAGAGGCAACUUCAUGGUUCUCCAAAGAAGAGCCCGUUACUAUCAGUCCUUUCCCUUCUCUGCAGCCUCUUGGUCAUAACAAAAGCAGGGCUUCAUCUUCACUUGAUGGCUUUAAGGЖCAGUUUUGAUCUACAGGGCCAGUCUACAUUAAAAAUUAGCAACCCGAAAGGAUGGGUAACCUUCGAGGAAGAAGAGGAUUUUGGUGUGAAAGGGAAGUCAAAGUCAGCUUGUUCAGЖCUUACUGGGUAAUCAGCCAAGUUCAUUUUCUGGCUCCAACCUGACAUUGAAUGAUGЖCUGGAAUAAAGGUACAAAUGUCUCCUUCUGUGUGUUGCCGUCAAGAAGACCUCCUCCACCUCCUGUCCCUCUGCUCCCGCCCGGCACCAGCCCUCCAGUAGAUCCUUUCACGACCUUGGCCUCUAAGGCUUCACCCACACUGGЖCUUUACAGAAAGAUAACGCCAUGCAAUAGAAAACAGUGGGUACUUGCUUUUGGCAGGAUAGAGCUAAGAGAAUUGGGCAUUAGUAUUUCAUUAUGUGCAAUAAGUCAUUGUAAGUGCACUGAUAUCUUCACAAAACACCACUAUUUGAUGUGUACAGAGUUGGЖCUAUGUGUAUAUUGGAAAUAAGGAAAAACCCUUCUCAUUGUUAACUGGAGUUUUGAUGUAUUUCUCUUUGGAUGAAUAGGAGACAGUAGUAGCCAUAAAAAGUACUUAUACUUUAGAAAACAGUCCUUAUUCAGAAACUUUUCGGUCAGUCUUCUGAAGAAUCUCAAAAAGCCCACCCAACUUUCAGCUGACAUUUCCACCAGCCCUCUCAUACUUGUUAACAAUUGGUAUCUUUGAGUAUUUACCAAAGAGCUGCCAAGGUUACAGUGAACAGAGUUUUGAAAGGCAUUGCUUUAAAGGAAAAAAGUAUAGGUAUGUGUACAUAUAUAAUACAUACAAACACAUGUACUUCUGUAUACAUUUACAUAUUUUUACAAUUCAUACUUUAAUUUCUAGGCUAUAACUCAGACCAAAUUAUACCUAAAAGUUCCAACAAAGUCCCUUUUUCAAUAUCACAUUACCAAAAAGAUGGCUGCAAAUGUAAUUUGGACCUUUCAUUAAUUUUGUUUUCAAAACUAGAAUAAUCUCACCACAGAAUCAGAAUUUUCUACCGUUCCACACCCAACCCCUUCAAAUACACACAACCUUGUUACUUUUCACUCCAGCACCUUCAUACGCUUUUCUCCAGGAGGAGGUUCUUGCAGCUGGAAACAGCCUAUUUUGUGGUCACUGUCAAGUGGAUGGAUAUUCUAGCGCUCCCAAAAAAGCACUAUGGCCUUAUAUGCAGGGAAGGCACAUACCACCAAGUUCAAUGAGAAAUAUUAGAGCUAACCGUACUCUCUUCUCUGCGUACGUUCGAGUAUACGUUGCCCAUAUCCCUCCCAUAUUUUCUUUUUGCUGCUUUUGCUCUGGAACUUUGCUUUUAGCAGGGAAAGCAGCUGUCCCCUGAGUGCUUUGAAUUGGGAAUAUACCCAGUGUGUGUUCUCCCCCCUCUUACGAGGCUACAUAACACAUCUAUGAUGCUGCUUUAAGUUUUUAGAGGCUAUACCUCAAAGUAGCUGCGGAUUUUGUCUCCUGCACUGCCAAUAUGCAACUGAUCCCGCUUUUAUUAAUUUUUUGAAGAAGUACACAGAAUUUUUACAGAAUGUAGUAUUUUGAUAUCAUUAAGUAAACCAAUCAGAAAACUCCUUGAGCAAUAGUUGUUUCUUUGUCAGUUUCAGUUACAAUCAUCUUUACCCAUUAAGACUUACAUUAACAUUCCUUUUAUAUAAAGAGUUGUAUAUGUCCACCUAAAUUCCUAUGUCCACACUUAACCUUUAAAGAUGUACAUUGAGGGAAUAUCAAAAAAUAGCGUUCAUGGCUACGAAUAUGUAGAAUGUUAAAAGCACAGCAAACUGCACUGCACUUAUAAAGCAAAUCUAUUAGAAAAAAAGCAUUUUUCUAAAUGCUCAAAUGUUAUCAAAAUACUAUAUUUAUAGAAGUAAUCUUCUCUGUUAACAGCCAAGAUUUGCUGUUAGAAAUAACUCUUGUGAGUUUUAUAUUGUGCUUUUUGGAGGUUCUAAUCAUUUCAGCAGUAGCGUCUUAAACAGCAGUAUUACUAUAAGCAGUUGCUUCAAAAUGUGAAUUAACUUGUUGAAACUGUGGCUUUAACAPCCAUGUGACUAGUGUAUAUGGUAUUUGCUCUCCAUUAGCAAAAUAAUUCAUUGUUAGGUAAACUUCACUAGUGCAAAUUGCAGAUCUGUGAGCAAUGUUUCCUAUUGAAUAUAAACUACUGUCUAAAAUAUACAUAUCAGCAGCCCAGCCUPUAUCAGGAAAAUUAUACUUGGCAAGUUGCUGAAAAUGCACAAAGUUAUGAAAGUUAAAGGUAUGCUGCAAAUAACUAGCCAUUAUUCUAUGUAUUAUUAAAUAUUUACUAGUUCUGUUAAAAGCAGAGCAGAAGUUAGACACUAAGGAUCUCUUUGUGAACUCUGUGUUCUCUAUAUUAGAUUGCUGUUUAUAUGUAAGAAUUUUAUUGCUUAUGUGGCAUACAAUAUUUAUAACUAUAAACUPUAUAGAAGUACAGUAUUAAAGUCAGUGGUACACAGACAUUCUGUACAUAUCCUGUGAAACGUGCUGUCAUAUGAAAUAAAUAUAUCUGUCUUUACCAUG
2169   mRNA  unknown    Homo sapiens    AAGGAGCCAAGAUGGCCGAAUAGGAACAGCUCUGGUCUACAGCUCCCAGCGUGAGCGACGCAGAAGACGGUGAUUUCUGCAUUUCCAUCUGAGGUACCGGGUUCAUCUCUCUAGGGAGUGCCAGACAGUGGGCGCAGAUGCAGUCGAAGCCCUGUGGCUCCACCCCGAGGGUCCAGCCCUUACCACUGCUAAGAACUACAACUCCCAGCCCGAGGGAGGUCUCUGCGCCUGCGGCCUGACGCCCUACGCCUACACUUCCCAGAGAACCUAGCGGUUACGCCAACGCGCGCGUGCGCCCUUGCGCGUUUCUCUCUUCCCACUCGGGUUUGACCUACAGCCGCCCGGGAGAAGAUGGCUGCCCCAGCAGUGUCCGGGCUCUCCCGGCAGGUGCGAUGCUUCAGUACCUCUGUGGUCAGACCAUUUGCCAAGCUUGUGAGGCCUCCUGUUCAGGUAUACGGUAUUGAAGGUCGCUAUGCCACAGCUCUPUAUUCUGCUGCAUCAAAACAGAAUAAGCUGGAGCAAGUAGAAAAGGAGUUGUUGAGAGUAGCACAAAUCCUGAAGGAACCCAAAGUGGCUGCUUCUGUUUUGAAUCCCUAUGUGAAGCGUUCCAUUAAAGUGAAAAGCCUAAAUGACAUCACAGCAAAAGAGAGGUUCUCUCCCCUCACUACCAAUCUGAUCAAUUUGCUUGCUGAAAAUGGUCGAUUAAGCAAUACCCAAGGAGUCGUUUCUGCCUUUUCUACCAUGAUGAGUGUCCAUCGCGGAGAGGUACCUUGCACAGUGACCUCUGCAUCUACUUCACAUGUAUCAUUCUCCGAGCCUGAUAUUCCGUCCUCAAAAAGUACUGAGUUACCUGUGGACUGGAGUAUUAAAACGCGACUCCUUUUCACCUCUUCUCAACCCUPUACCUGGGCAGAUCAUUUGAAAGCACAGGAAGAAGCUCAAGGUCUUGUCCAGCAUUGUAGGGCAACAGAAGUUACUUUGCCUAAAAGUAUACAGGAUCCCAAACUCUCCUCUGAGCUCCGUUGUACCUUCCAGCAGAGCCUUAUCUAUUGGCUCCACCCUGCUUUGUCUUGGCUAC
2170   mRNA  unknown    Homo sapiens    AAGGCGGGCUCGCCCUGCCGGCGGCGCGGCCAUGCUCAUCACGCUGUGCUACCUGUACCUGUGGGCGCGCUGGGGUCGCCGGCCGGCUGAGCUCGUGCGCGCCACGGUGCGGCGGCUGCGUGCCUCGCGCUGUUCCUUCACCUUCUGCGGCGCGGCCGCGCAGCCCCCGGGCGCCCGCGUGUGCCUGAGCCGUGGCGGCCGCGUCUUCUGCGUCAGCGACAGCCAGUCCAUUGAAGACUUGAACAAGUGGGCCCUAUUUCUUGUGUCUCCUUUUAUACUUGAAGCAGAACACAUAGCAUUUGUGACGGAGAGCAUUUGGGUACAAAGUGAGAAUUUACAGAGAUCAUCCUCUUCAGAAACAAUUGUCAAGUGGUCAGACUGUUGUUUGCCAUUAGCUUGCAGACCUGGGGAUCCUUAUCGGCUAAUUGCUGAAGCAAGUGUGGACAACUUCAGCAAGCUGGGGGUGGCGUUCAUGGAAGAUAGACUCCACAUGGAUAAUGGACUGGUACCCCAAAAGAUUGUGUCGGUGCACUUGCAGGACUCCACUCUGAAGGAAGUUAAGGAUCAGGUCUCAAACAAGCAAGCCCAGAUCCUAGAGCCGAAGCCUGAACCUUCUCUUGAGAUUAAGCCUGAGCAGGACGGUAUGGAGCAUGUUGGCAGAGAUGACCCAAAGGCUCUUGGUGAAGAACCCAAACAAAGGAGAGGCAGUGCCUCUGGGAGUGAGCCUGCUGGGGЖCAGUGACAGGGGAGGGGGCCCCGUUGAGCAUUAUCACCUCCAUCUGUCUAGUUGCCACGAGUGUCUGGAACUUGAGAACAGCACCAUUGAGUCAGUCAAGUUUGCGUCUGCCGAGAACAUUCCAGACCUUCCCUACGAUUAUAGCAGCAGUUUGGAGAGUGUUGCUGAUGAGACCUCCCCCGAAAGAGAAGGGAGGAGAGUCAACCUCACGGGAAAGGCACCCAACAUCCUCCUCUAUGUGGGCUCCGACUCCCAGGAAGCCCUCGGCCGGUUCCACGAGGUCCGGUCUGUGCUGGCCGACUGUGUGGЖCAUUGЖCAGUUAUAUUCUCUACCACCUGCUGGAGGЖCAGUGCUCUCAGAGACCCGUGGACGGACAACUGUCUGCUGUUGGUCAUUGCUACCAGGGAGUCCAUUCCCGAAGACCUGUACCAGAAGUUCAUGGCCUAUCUUUCUCAGGGAGGGAAGGUGUUGGGCCUGUCUUCAUCCUUCACCUUUGGUGGCUUUCAGGUGACAAGCAAGGGUGCACUGCACAAGACAGUCCAGAЖCUUGGUUUUCUCCAAGGCUGACCAGAGCGAGGUGAAGCUCAGCGUCUUGAGCAGUGGCUGCAGGUACCAGGAAGGCCCCGUCCGGCUCAGCCCCGGCAGGCUCCAGGGCCACCUGGAGAAUGAGGACAAGGACAGGAUGAUUGUGCAUGUGCCUUUUGGAACUCGCGGGGGAGAAGCUGUUCUUUGCCAGGUGCACUUAGAACUACCUCCCAGCUCCAACAUAGUGCAAACUCCAGAAGAUUUUAACUUGCUCAAGUCAAGCAAUUUUAGAAGAUACGAAGUCCUUAGAGAGAUUCUGACAACCCUUGGCCUCAGCUGUGACAUGAAACAAGUUCCUGCCUUAACUCCUCUUUACUUGCUGUCAGCUGCGGAGGAAAUCAGGGAUCCUCUUAUGCAGUGGCUUGGGAAACAUGUGGACUCCGAGGGAGAAAUAAAAUCCGGCCAGCUCUCUCUUAGAUUUGUUUCAUCCUACGUGUCUGAAGUAGAAAUAACCCCAUCUUGUAUACCUGUGGUGACCAACAUGGAGGCCUUCUCAUCAGAACAUUUCAACUUAGAGAUCUAUCGCCAAAAUCUGCAGACCAAGCAGUUGGGGAAAGUAAUUUUGUUUGCCGAAGUGACCCCCACAACGAUGCGUCUCCUGGAUGGGCUGAUGUUUCAGACACCGCAGGAAAUGGGCUUAAUAGUGAUCGCGGCCCGGCAGACCGAGGGCAAAGGACGGGGAGGGAAUGUGUGGCUGAGCCCUGUGGGAUGUGCUCUUUCUACUCUGCUCAUCUCCAUUCCACUGAGAUCCCAGCUGGGACAGAGGAUCCCGUUUGUCCAGCAUCUGAUGUCCGUGGCUGUCGUGGAAGCAGUGAGGUCCAUUCCCGAGUAUCAGGAUAUCAACUUACGAGUGAAGUGGCCCAACGAUAUUUAUUACAGUGACCUCAUGAAGAUCGGCGGAGUUCUGGUUAACUCAACACUCAUGGGAGAAACAUUUUAUAUACUUAUUGGCUGUGGAUUUAAUGUGACUAACAGUAACCCUACCAUCUGCAUCAACGACCUCAUCACAGAAUACAAUAAACAACACAAGGCAGAACUGAAGCCCUUAAGAGCCGAUUAUCUCAUCGCCAGAGUCGUGACUGUGCUGGAGAAACUGAUCAAAGAGUUUCAGGACAAAGGGCCCAACAGCGUCCUUCCCCUUUAUUACCGAUACUGGGUCCACAGUGGUCAGCAAGUCCAUCUGGGCAGCGCAGAGGGACCAAAGGUGUCCAUCGUUGGCCUGGACGAUUCUGGCUUCCUCCAGGUUCACCAGGAGGGCGGCGAGGUUGUGЖCUGUGCACCCGGACGGCAACUCCUUCGACAUGCUGAGAAACCUCAUCCUCCCCAAACGGCGGUAAUGCCGGGCGUCCCCGAGACGCGGCUGCCUGUCCGUGCCCAUGCAUCUGGAAAUCUAAUUUAGAGUUGUAGGUGAAUUUUCUUUUCCUCCAAUUCAUUUGUUAAGUCUUUGUUCUUUUUCUGUGUUUCUGUUUGUUUUUAGGUUUGUUUUGUUGUCGUUUUCUUUGGUGUUUGAAGAGGCUCUGGGAUAGAUGGUUAAGAAGUAGAAAAUUUAGUUUAGGGAAAGCCCUCCCACAGGUGGGAAAUUGCUCUCCCCUCUGUGGCUUGGЖCUUACGUUUAUUGUCAAGGGGAGUUUUUACAUGGAAAUGACAAUGGGAAAAUUCAGAUAUUUUCUUAGUAGUGCAGACCUUUACCCCUAGUCUAUGAAAAAACAAACCAAAAUAUGCUCUUGCGCCCAGGCCAGUGGUGAGUUAGAGGUAUGCUAUCACUGUUUGUAAGCAUCUGGGGAGGUACUGAACUGUAAGAACAUGCUUGGACACUUAGUCAUUGUUCUGUGUUUUUAUUAAUGAAGAAAAGGGAAGACAGACUUCCAAGAGUUACUGUCCACCCGGUGGUGUGGCCCCAUAGCGAAGUCUAAAUGCCUGUAGAGAUAGAGCUAGCUGGUGUGGUUGCAGUGACCUUGUAGAGGAAAUCAGUUCAUUACUUUGACAUCAUUCAGUGAGCUCUCCUUUCCUAAGGAAGUUUAAAUGUCCUUAGUUAGGGACUGACUUUCUUAAGUAAGUUUAAAUUUACUACAUAUUGUGAAGAGACAGGAUCAAGUUCAGAAUCCUUAAAUGUCUGAUUAGGCAUCACUUGGAUGAGGAGGUGGGCGAUUUGGCUCUGACAGCUGGAGAUGAAGGCACACUCAUACCACAUACAAGGGAGGAUUUGGAGCUUUUAAGCCAGUUUCAGAUUUACUCUGAAAUGUGGAGCAUUCCUGCAAGACUGUGCAGCUCACGGAAUAUAGAAGACAUGGCAUUUUACUCAGAAGUCAUAAGUUUUUGCCCCCCUCAUUUACCUCGUAUUACCAAGAAAGAAAAUGUUAUCGAUACUAAACACCAUCAGUUCAGAGGGAGGAUGUGUGUGUGUGCCCGCAUAUGUGUGUGCGUGCGUGUGUGCGCACAUAGCUUUAAAAGAAGACAUUCAAAAUUUGAUGUGCUACAAGCCUCAUGAAAGAACAAAAGAAAUGAAGCCUUUUGAUAUGCAUUCGCUAUUCCCAGAUGUACGCCAUGCCUUUUCCAUGUCCCUCCUAUCUCUGUUGAACUUAUGAAUCAUACUCAUUACUUUUCAGCUUUUUAAAAGGCCAAUUUUUGUCCAGUUUUCUCUCUUCCAGUCCCAGCUGAAAUUAGUGGAAAGAAAGUUUGAUGGAGCUUUCAGCUUUGAACAAAAUCCCUUCAUUGUAAACUAGCACCAUCUPUAUCCAGGUCUUACCCAGUCAGGCUAAUUCCAGAAACUUGUGGUUUUUAGUAUAGUCUGUCUACCUPUAGCCAGGCACAGGACAGCCCUAUGAAAAAAUACCCAAUAUAUAUUUUUUGGAAAUGAAACAUUAAAAGAACUUAAAAAGUAAUUUUUGGAAAUGAGGCUUCAAUUAGAAUUAUUUUUCUCAAAAAACAAACAAACAAAAAACACAAAAAAAACCACUCUUCUCCAAAUGCCCAAGCCUUCUUUCAAAAUUAGUUAGAAACUUAAGUAAAAUACAAGUCCACACCAUCCCCAAAUUACAAAAUGGЖCUUACCCUUGAGAGGGCAUCUGCAGAAUAUCAUCAGGGACAAAGAUCUCGAGGCUAACGAUGUAGGUUUCAUUUCUCAGACUUUGUAAUAUAAGGCAAGCCCUCUCUCAGAGCUGCCAUCAUCACUUUUUGAAUUUCUUUGGGGGUUAUUUAAUGAAAAACAUGCUAUGUUUUGUUUUAAGCUGAAGUCCUAUUCUGGACACUCUGCUUUGGGAAAAAAUGUUAUCAUUUAAUUUCCUUUCUGCAAAUUAAAACUAAUGAAGUGUGGCCUUGUCAAAGGCUAUGGAGAUGUUCCGGGCAUACUGCUGUGCUCUGUGCUUUCCAGCAGGCGCUCCUCCCUCACGCAGGAGACUCAGUUGUCCUGAGAGAGAUGAAGCAGCCUUGAAGCAGAUGCUGCGUUUUCCAUAAACCUGAUUUUGCCUCACAUGAACCAAAGЖCUCUCAAAACUCCGCUUCUAUAGAAUUAGCUGAAUAAAGGCAUUUUACUGAUAGCUGUUCGUGUUAGCGAAACCUGUCUACCUGCUAUAGCACACUCUCCGAUUUGGGCCAUUUAUGCACCCCGCAACCUGGGAUCUCAAGGAGCUPUAAAGUCUUAAUGGGAACUUGGCAUUUUCCUGAUGAUCUPUAAAAUGUGGUCACUAAACUCAGGAUUGGCGUGUGCUUUUAGAACACUGGAGUAGCCCUUGUUUUAGAGGCUGUGCAUUGAGUAUCGACCGUAUUUUGUAAAAGGCAAGAUAUCCUCCCUUCCAGGCUGGUAACGGGUUUCAAGGGGACUCUUGAGGAAGUGCCCCCUAAAAUAGAACACAGCAAUAACUGGGCUUCCUGUCCCCACCCCCACCCCAGCAGUGCUCUCUGGCACUGGGAACUCUGCUAGGGAGUGGUGGAAGUAGGAAGGAUUUGUGUGCAAAGGAAAAUCGUGGUUGAGUUUCACUGCAGCAGGCUGACGUUGCCUGAUGUGAGAGCAAGUGGCCGACUGGGGUGCGGGUGCACAGGUCGGGGGAGCACAGGCCACAGAGCGCAGCCUCUGGGGGUCCCCCAAGGCACAGCAUAUACAGCAUGGUCGCCCCUUGCCCUGGAGUCUGGGAACAAAGAGAGGAGCCAGCCUCCCCGCACUGCUUCAGAUGGAAAAGGGAGGCAGGGUGGGCUUCCGUUCUCCAGAUCUGUUUGCUCUUAACAGGCAGAACAUGGGAGAAUCCUUAUUCCUGGUUAAUCACUAUGCAUAUUUGAAAUAAAAGAAAGCGUAAGCCUCUGCAAUUUUAACUUCUCAAAGGAUGUCUCUGAAAAGAAUCACUPUAAACCAAUGCCUAUAAAAAGCAAGUCUACCAAAAUAAACUAAGACUUUCUAUGUGGUUUGGGCUCCCUCUUAUUUUUACAAGUUUCAUUUUUAAAAGUAGGCAACUACUUUGGGUUACAGUAUUUUUAUUCAUAUUUAAACAUUUUUACAAAAUAAAUAAAGUGUUUUACAUAGUAAGGAAUAUGUACGUAUUUCCAAGUAUUAAGAAGCCAAGUGUUUUUUUUUUUGACGUAUUAUUGACAAAUGUAUUCAGCGCCAUACACAAGAGAAAUAUUAUUACUCCAAAGAACGAAAGUUAACAAAACUCCAAAGCAAAAACCCUUUUAAUGGAGGUGAGAAAUAAAUUUAAUGUAACAACAGCUAGAUUGUUUUUAGGAUUUUUCUUUUCUUUUGUGGAAACUUCUUGACUUGACUUUUCAUCUGAACAGUUUUUCCCCCCAAGAUUUUAAUCUUAUAUGUCAUACUUAAGUUUAGGAACAGCUUGAAUAAUUAGCAUUCUAGAUAACACAAGGGCCAUGAUUCACUAAAAUUCCAAGCUACUGUAAUUUUAUGGCAUUUAUUUGCAAAUGUUCUUUGUAUCUCAUUUUAUCUGUAGCAGUCCCCACUAGUCUACCUUAACCAUCUUAUAGCUCUGGUAAAUUAAAACUUACGUAGACUUUAUACAAGAUCCAUUGGCCGUAUUAAACCUCCCCCACUCUUAGGGCUUAGGGCGGAAGGGACGAAGGCAGGGCUGAUAGGACUUUUAAAAGGAUAAAAGGAGUGGGGGCAAGGGAGGCGGAAAAUACAGGCUCUUGCAGAUACCCUCCGCGCUGCCCUCCACACCCAGCCCACUGCUCUACAAAGGUAUGAAUGGAAUGGCUUUUCUAGAAAAGGGCUUCCAAGAACAUAAAGGAAUUCCUUUCCCUGGGAGGCCCCGUGGAGGGCUGAGCCAGCCUUGAAUUGGGCUUAUUUCUCAAAUCCAUUUGAUCUGGCAUUUUUGUCAACAUGGUACAUGUUAGGGCCUACGAUGAUUUUUUUUUCUUUUUUGUAAAAGAGAGGCAUAUGUAUUAAAAUGCUUCCUCUUCCCCUGCCGGAGCCUCACAGAAGUCAAGAAACGCUAUCCCCAGCUUAAAUGUGCAGACUCUUCAAGAUGGAGGUCACAAUAUUAGGUUGCCACAGUAACAGCUCUGCUGACUUCACACUCAGCCCUGGCCGUCCUGAAGCCAGCUCGUGUAAGAAUCUUCCUUCAUGUUCUAGGUUAUGAAAACGAAGUUUGUUUAGACAAGGACGUUUUCACUAGUACACAUUUUCAAGUACAUACACACUCUGUUACGCCUGUCCACGUUGUCACUUGUAAAUCUAUGAUAGGGUCUUUUUUCUCAACAGUAACCUUUGUUAUUGAACUGCUCCGAUAGCCUUGAUUUAUUUUUACUAAAUACAGCCCCAAAAGUUAAUAACAAGGUAGACACAAAAGCAUUUUGCAGUACUUUAUUGAAAAAUGUCGGUGGUAUCUCCUAGUAAUCAAACCUACACCUUUCAAGAAUCACGGUUUAAUUACAAGACUCAUGAACAUAAAAAAAUAAUACCCUCGGCUUAUUUCCUGUGCACACACUCACAAGGAGCUGUGAAUGAGGUAUAGCUGAGUGCGUGGAGAGGCGGGCACAUCCCUUCCUACCAUCCAGCCCCUUCGCUGCAUGACCCACGGUCCUAAAUUUGCAAAUUGUGACUCUUACCAUGAGGCCCACUGACAGACACCCUGUAGGGAUUGUGUCAGGUCCUCACUAAGUGACACAGGGUUGGCAAAAAAAAAAAAAAAAAAGUCAGUUCACAUUUUGAGAGCAGUUGGUGUAGGUGCACUUGAUUUUAGAACGAUGAGUUUAAAACAUUUGUGAAAACCUCUUUCCAUUCAGAAAGGUGGAAAAAGUUUCCUAAAAUAAACCAUUUUGAUAAAGCAGCAAAAUGCUGCAGUGUUGAUAGUGUGAAGAAAAUUGAAGGACGGCGGUUCAAUGCAUUGUGCAGUUCAGAGCCAUGACAGGAUUUUUCCAUGUUGAGAUCUUUAAGCAAAACCCAUAAAAAGUAAAAAUUAAUGGAAGCUCAUUUUUUAAACACUGCUGGUGCUUUAUGAAAGGAUUUCUGUUUACCUGUUGCACACGUAACAUGUUCUUACGAAGUUUUCUCGCUGUGUAGAAAAUGCUUAAAAUGUCUACAUCAUUUUCAUUACACCCCCUUAAGCAUGUUUUUCCUUCACAAGGUGCAGUCCAUUGACAGUGUUCCGUAUUGCACGUGCAAUUUAACUUUAUUAGCACUAUUUGUAGCAAACACGAGCCUAGUGAAUUACAGAUCUGUGUGGGCCAGAGGGAUUUUGCCACGUAAUAAUGAAGCUUGACAGGGUCAUUCUCAUAAACUGUCUGGCUACAUAUAUAUUUUUGCAUUUAAUGCCUAUUCAAUAUAUUCUGAAGGUGCUACUCUUGGUGUUAUCAAGAGUUCAUAGGGGUUAGGGGGAAGUAAGAGCUUGUUAAUGUAUUUGGGAAGCACACCUAUGUUCACAGACACAAAAUGGAAUUGCAUGGUCACCCCCUUAGUCUUGGUUUGUUGGCUUUUUGUAUUGAAGAAAGGGUUAAAUAAAAACAAAAAUAAUGAGA
2171   unknown  unknown    Homo sapiens    AAGUAAGAUUCCUCUUUUUAGAAAGUAAACAAUGAAUCUGUCACCAAGUUCUAACUGUAAAAUGGGGACAUUUUACCUUUCUUUCUUUGGAUAGGAUCAGUUCUUAAGAGCAGCCCCGGUAЖCUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCAPCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAAЖCAPCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCUPUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGGЖCCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCUPUAAUGUUGUAAAUAUUUGGCAAUUUAAGЖCAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUAЖCAPCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUAЖCACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGAC
2172   mRNA  unknown    Homo sapiens    AAGUCUCUGUAGGGCGGCCGGCUACCCUCAGCCGCCGCGCGUCAUGGCCCUUUCGGUGCCCGGCUACUCACCGGGCUUCCGAAAGCCGCCCGAGGUAGUGCGGCUCCGACGGAAAAGGGCCCGGAGCCGUGGAGCUGCCGCCUCCCCGCCCCGUGAGCUGACGGAGCCGGCGGCCCGCCGAGCCGCCCUGGUGGCGGGGCUGCCUCUUCGCCCUUUCCCUGCUGCGGGGGGCAGAGGCGGUGGCAGCGGCGGCGGCCCGGCCGCUGCUCGGAGGAACCCCUUCGCCCGCCUGGACAACCGACCGCGGGUCGCCGCGGAGCCCCCCGACGGGCCGGCCCGCGAGCAGCCGGAGGCCCCGGUCCCGUUUUUAGAUUCUAAUCAAGAAAAUGAUUUGCUAUGGGAAGAGAAGUUUCCUGAAAGAACAACUGUUACUGAAUUACCUCAGACUUCACAUGUAUCAUUCUCCGAGCCUGAUAUUCCGUCCUCAAAAAGUACUGAGUUACCUGUGGACUGGAGUAUUAAAACGCGACUCCUUUUCACCUCUUCUCAACCCUPUACCUGGGCAGAUCAUUUGAAAGCACAGGAAGAAGCUCAAGGUCUUGUCCAGCAUUGUAGGGCAACAGAAGUUACUUUGCCUAAAAGUAUACAGGAUCCCAAACUCUCCUCUGAGCUCCGUUGUACCUUCCAGCAGAGCCUUAUCUAUUGGCUCCACCCUGCUUUGUCUUGGCUACCACUGUUCCCUCGUAUUGGAGCUGAUAGAAAAAUGGCUGGAAAGACAAGUCCUUGGUCAAAUGAUGCAACCCUGCAGCAUGUUUUAAUGAGUGACUGGUCUGUGAGCUPUACUUCUCUAUAUAAUUUGCUGAAGЖCAAAACUUUGCCCCUAUUUCUACGUUUGUACCUAUCAGUUUACUGUCCUGUUCCGAGCAGCAGGAUUAGCUGGAAGUGACUUAAUCACAGCUCUCAUAUCUCCAACAACUCGAGGUUUAAGAGAAGCUAUGAGAAAUGAAGGUAUUGAAUUUUCUCUGCCUPUAAUAAAAGAAAGUGGCCAPAAGAAGGAGACAGCAUCUGGAACAAGCUUGGGAUAUGGGGAGGAGCAAGCCAUCAGUGAUGAGGAUGAAGAGGAAAGUUUUUCCUGGCUGGAAGAGAUGGGUGUGCAAGAUAAAAUUAAAAAGCCAGACAUACUUUCUAUCAAGCUGCGUAAAGAGAAACAUGAAGUACAAAUGGAUCACAGACCUGAAUCUGUUGUGUUGGUAAAAGGAAUCAACACCUPUACAUUGCUCAAUUUUUUGAUUAACUCUAAGAGUUUAGUUGCUACCUCAGGUCCACAGGCAGGACUUCCPCCAACCCUCUUGUCCCCUGUUGCUUUCCGAGGUGCCACAAUGCAAAUGCUUAAGGCACGGAGUGUGAAUGUGAAGACACAAGCUCUUUCUGGAUACAGAGACCAAUUUAGUUUGGAGAUUACAGGUCCUAUCAUGCCUCAUUCUCUGCAUUCACUGACCAUGCUGCUCAAAUCUUCACAGAGUGGAUCUUUCUCUGCAGUACUGUAUCCACACGAGCCAACUGCUGUAUUUAЖCAUCUGCCUGCAAAUGGACAAAGUACUUGAUAUGGAGGUUGUUCAUAAGGAGCUUACUAЖCUGUGGUUUGCACCCUAЖCACUCUGGAGCAACUUAGUCAAAUACCGUUACUUGGGAAAUCAUCUPUACGGAAUGUGGUGCUGAGAGЖCUACAUUUAUAAUUGGAGAUCCUGAACACCAAAGUAAGCCUAAAAGGAAUCUUUGAGGAAAAAAGCCUUCUAGCAAGGAAAUUCAAGAUUCUUGAAGUUGAAGGAAUAUACUGAAAUGUUUAUAAACAUAЖCUUUUACUACЖGUAGCAUCUAAGGUUUUAAAUGUGUUUUACUAUUUUCAGAUUAGAUUUUUAGAUAUAAAGAUGAAAAACUCAGAUAACUCAAAUGAGAUAUCUAUAUCCCUACAACCUAAUUGUAUAUUGAGCAGAAACUGAAUUAAUAUGCUUCCUUGCAAAUGGGAAAUCACAUAGCAGUUACCCCAUGGCAUUGUGACUAAUGGCAUCAGGGCAAAAAUAUGUUACUPUACGAUUUACCUGUUAGCAGGUUCUUGUUUCAUAAAGGUAGAAAAUAAAUACAGACAACAUCUACUGAGCUAGUUGAUUGGUGAUGCUUCUACCUUAAUAUCUUUCCUACUGAUUUAUAAUUCCUPUAUUUUCACAUAUACUAAAACUUUUUAAAUGCAUGUUAAUUCAGAUAAAAAGGCAUUUUGUAUUCCACAUAGAAUAGUGUUAAGAAUUGUGAAGUACACUGAGCUGUCACGGCAAAGUAGUAUUUAAUGUGCUUAUAGGGGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUAGGGGGGGACUGUAUAAUUCACAUUUUUAAAAUAAAAGUGCUUAAAAAUCAAAA
2173   unknown  unknown    Homo sapiens    AAUCCGGUUCCAUCCGGUUCUCCCACCGCCCCCGCUGUGGGUCUCAGCAGCUCGGGCGGCGGGAGGAGUGGCAGCGGCAAGGCAGCCCAGUUUCGCGAAGGCUGUCGGCGCGCCGCGGCCCGCAGGCACCCGGCACGCGCCUUCCCCGCAGGCACCCGGCACGCGCCUUCCCCGCCGCCACGAUGCCCAAGAGGAAGGUCAGCUCCGCCGAAGGCGCCGCCAAGGAAGAGCCCAAGAGGAGAUCGGCGCGGUUGUCAGCUAAACCUCCUGCAAAAGUGGAAGCGAAGCCGAAAAAGGCAGCAGCGAAGGUAAGCCUCGAAACGCGCAUUGGGAUGCAGCGGGGCCUUAGGCUACACUGCUUCUUAAUGCGGGGCUUCCAUUUUGAUUAGCUAUUGGAGCUUUAUUUAUACUUUAAUAAUUACGGUAAAUAAUUUUUCUAGUGGUCGAGGCAAAAAUGUAAUGGAUAUAUUCAUCCUGGUUUAUAGAACUAUAUCACACUAAUGCUGCUGCAGAUGUUAGGAGACUUAGGACGACAAAAAAUAUUAAAUAUUAAGUCUACAAAGGAAAUUUAUUCUUUGCGUUGCGUACAUUGUGGCUGGUGCUUGGCUUUUAAUUCGUGCUUGUACUUCCUUUUUUGACAAUAAAAGAGUCAAGAUAGCACCGAGGCCAGGAGAAAGGGAACGUGUAAGUUUUUAUAUAUACAGUUUCCAAGCCAACUUCGGGAAGCCUUAACCUUUUUACGGGGUGGGGGUGGGGAGGUAAAAAGUUGUGAUCUCUGAGAAAAUAACCGCCACUACUCUGGAAGUGUUCAUCAGCAGUUAUACAAAACCGUGAUUUUGGCUGCUCCCUAACAAAUUCGUGAUUGCAUGAUUCGAAUUGCAGGUCUGUAGAAUGAAGUUGGCUUUGGGUGUACGUGUGUUUGAUAACUUGCAGGGUGGAAAAGCAGAACAUGUGUAAAACAAGUAUAAGCUUUGUGUUUGGAUAUAGCAUUGAAACCUGUAAAGCUCUACЖUGUUCUUCGCGGGGUGAUUAAUUUUUAUCCAAAACUUAGGUGAGAGUUUGCUAUUUGAAGUCUCAAAAAAAAUUUUUGUUAAUGCCUUCACCUCUUUCCUAAAAGUGUAGGUAGAAGUUUAGCACUGCAGUCAUCAGAAGAGGCAAGAUUAAUUUCCUUGACAUUGAGGAGUUGUUGGAUAAUUACUAAAUUUGUCCUUGUUAAAUAAAGGUAUAAAACAAAGAUGUUUUUUCUUUUUUAAUUUAAAUUUUUUACAGAGCUGAGUGUAAAAAUGUUAACUAUGUUUUCUUUAACAGAAAGUUCUGUUUUUGUGAUCCUUUUAAAAAUAAAGCUUCACGGAAGGUAUGAGAAUAGUAUUUUUCAACUUUAAAUUUCUCAUUACCAGAAGACCAUGUGGUAAUUCUCUGUAUACAGUUAGAACAGCACGGAAACUUGAAGGCCUAAAAAAUUAGCUGACCUUGUUAAAAAUGUUGGCGUGAGCAGUAUAUUAUUACCUAUCUUUUUUUAUUGUGUGUGUGUGUGUGUGUGUGUUUUAAACUAAUUGGCUGAAAUAUCUGCCUGUUUCCCUCUUUACAUUUUUCUUGUUUCUUUCCUUAUUUAUCUUUGUCCAUCUUGAGAUCUACUGUAAAGUGAAUUUUUUAAUGAAAACAGUUCCAAGUUUUACUCUCAGUGGGUUUGGGACAUCAGAUGUAAUUGAGAGGCCAACAGGUAAGUCUUCAUGUCAGUGUUUGUUGAGGAACGAGCCUAUGAGGUCAGUUUUCCCAAAAGGAAAAAGGGCAGAAGGGAUUUGUUCAUUUUUACAUCUCGUUUCUGUAAUACACCUUUGACUUCAUGGUUGAUCAGACUUUGAAGUCUAAACAGAACGUAAGCACUUGGUGUAUCGAUUAUCAUACUACACAGUAGACAUGUUUUCAAGGCAUAUCUUGUCACUGUGUGUGCUUCUGACUUGUAUCUUUCCCUAGAACUAAAUAUUUUGAAGGUCCAAACAUUAUACUUUGGGAAACUUGAUUGAUUUUUUUUUAAUCUAGCUUUUCAGCUGAUAAUGGUUACACGUGGUAUUAUUUCAAGUCCAAGAUAUUAUGUAUUCUAUUUUAACUGUUUCCCAGUUUUGUAUUUUUUGUAUUGGAAUGAUUAUGAAAUUAAUGAGAAAUCUUUAGAAACAGACUACAAAAGAGUAGUUCUUAAAUACAGAAGUGAUUGUGAAACUUUGUGAUAGCAAUGUGUGUAGUAGCAGUUUUGUCUCAAAUACAUUUAUCAUUUGUUACUCAAAGGAUGUUGAAGUAUUAAAAGUCAUUAUGCUGUCUGUGGAAUCCUACUAUUAGUACAGAACACCCUGCAGUGAUUUUUCCGCCCGUGUUAGCAUUGAAGUUGUGAGCUCUACUUGCUUGUCUUUAUGGCCCUPUAAUUCAAGUAAUUGGUCAGUAUCCGUAUGGGUCUUUUAUACCACCCGCUGGGGGCUAAACUAAUUUAGCUGCUGCUGUAUACUUACUAACAAGGAAUAAAUGUUAAGCUUUCUUCUCAGUAUUGAUGGAUGGUAUCUAAAAGUAUUUUUAUGUUUCUUUAACAUGGCUUAAAUUUUGAACUUAAUGUAUCAAGUUAGUAUGGUCAUAUUAAUACCUGUGCUUUUCAGAUUCUUCAAЖCACCUAAAUGAAAGUGAUAAAUUCAAAACUGAUCCUUUUAGUUCCUCAUUAUAUGAUAUGЖAGGGAUUAACUGUAGCAGGAUAGUCAACCUGACCGUACGGCAUGGUGCUUUUUUUCAGGUGAUUGGUCUUAAUGUGAGGGUUAAGGUCUUGUGAGGACAGUAUUGUUGAAGUUCACAACAAAUUUGGGGAUGGGUGGGAAUACGGUCGACGAGACUCCUCCGGUAUUCAACUUCAUGACAUUGUCCUGUCAUGUGGAACUGUAGGGAAUAGUGGAUGAUGGCGACAGUGGUGAAAUAUAGCUCGGGCUUUAGGAUUUGUCAUAUGUCUAAUGAGGCUUGACAUGCAAGUACUAUUAAAAUCUCCUUAGCAUACAUUGUUUUCCUGAUUACUGGGGGGGACCUUAAGUUGUCUCAUGUAAUAGGUGUAUCAACUGAUGUGUGAUAGACAUUAAUAUGACAGCUGUUAUGGAUACAGUCUAUACAAAAUGAGAUCCUUUCAUAAGCUUGAAGAUUGGGGUUUCACGCUCAUGUGUGAGAUGUCCCUCUCUCAAACCUUACUAUGAAGUCAGCACCACUGGGCACAUUACUUGUCUGACAUGAAGGGGAAAAAGUAAAACAAAAUGUAAAUAAGGAGUAAAGCAUGUACUUAAAAUAUAUUCUUAUUCUAUCAUAGGAUAAAUCUUCAGACAAAAAAGUGCAAACAAAAGGGAAAAGGGGAGCAAAGGGAAAACAGGCCGAAGUGGCUAACCAAGAAACUAAAGAAGACUUACCUGCGGAAAACGGGGAAACGAAGACUGAGGAGAGUCCAGCCUCUGAUGAAGCAGGAGAGAAAGAAGCCAAGUCUGAUUAAUAACCAUAUACCAUGUCUUAUCAGUGGUCCCUGUCUCCCUUCUUGUACAAUCCAGAGGAAUAUUUUUAUCAACUAUUUUGUAAAUGCAAGUUUUUUAGUAGCUCUAGAAЖCAUUUUUAAGAAGGAGGGAAUCCCACCUCAPCCCAUUUUUUAAGUGUAAAUGCUUUUUUUUAAGAGGUGAAAUCAUUUGCUGGUUGUUUAUUUUUUGGUACAACCAGAAAAUAGUGUGGGAUAUUGAAUUAUGGGAGGCUCUGACUGUCUCGGGUGUCAGCUUAACAUUCCACAGAUGGGGGGUUAGUUUUUAUAUCCUAUAAUACAAAGCAUAUUAAAUGGCAAUAUGGAGUCAGUCCUGCAUUUAAUGUCUUGAACAUUUUAAAUUACUUCUAUUACCAUGUUGUUUUUUAGUAGAAUUGUUUCCUAAAGAAAACCACUCUUUGAUCAUGGCUCUCUCUGCCAGAAUUGUGUGCACUCUGUAЖCAUCUUUGUGGUAGUCCUGUUUUCCUAAUAЖCUUUGUUACUGUGCUGUGAAAGAUUACAGAUUUGAACAUGUAGUGUACGUGCUGUUGAGUUGUGAACUGGUGGGCCGUAUGUAACAGCUGACCAACGUGAAGAUACUGGUACUUGAUAGCCUCUUAAGGAAAAUUUGCUUCCAAAUUUUAAGCUGGAAAGUCACUGGAAUAЖCUPUAAAAAAGAAUUACAAUACAUGGCUUUUUAGAAUUUCGUUACGUAUGUUAAGAUUUGUGUACAAAUUGAAAUGUCUGUACUGAUCCUCAACCAAUAAAAUCUCAGUUAUGAAAAUA
2174   lncRNA  unknown    Homo sapiens    AAUCUGGCGCGGCCUUUGUCUCACUUCAGCCAGAGAGCGGGGUUAGGGCUUCAUUGCCUUGUGUCCUCUGCUCCGGGAGACUUCGGUGAUUCUGCCACUCCCUCCGUCGCUCUGUGACCUGCUGGCAUUGAAUGAUUUAUAGCUAAGACUCCAGGACACCCCUGAAGCCGAGAAAUGAAAUCCCAAGUUGACCGUCAAGUCCAACGCUCGCUGCAGACAUCUAGUGGACCCGGCGCUCGCGGACGGAAGCGGACAGACCUAGUUGGAUCCUUAUCCCACCAAUCUGGCCCACCUUUGCUGCCAUCUAACUCCGCUGACCGGCCCACCGUUCCUCCACUGUUCGCUGGUUGACCCGGGCAGCGGAGAGAGGAGGGUGUUGUCAAUGGAAAUAUGGAUUCUUCUACAGCAAACAUGUACAUCUAUAUCAUGUGGAACAAGGAUAGUGGGAAAACCUCUGAUUGUGAGGACGUAGAЖCUGAGAAGAGCAUAUGAAAUGUCAUAAGAAAAACACUUCUGGAGCAUGUCGUCUUCAAGAAAAUGGUGCCCAGACAGUCAGGAUUGUGUUACAUUUUAAUAGGAAUGGGGAUAUUUGUGAUAUACUGACAAACCAAGACAGGUGACUAUAAAЖCUGCAAUGUAAAGUGUCAGCUUCUCCUCACACCUUUAUAGUAGACAUCUGAGAACCUCACUCCUGUCAGCAUAUUCUUGGGGUUGAAUCUCAAGUGAUCCAUAGAAUCUUAGAUAAAGCAGAUGAAAAUAGGCUUUUCUGUCUUCCUAAGUAAACAGCAAUGAAGUUGAGAGAAAGAAGAUAUUGCUGGAAGUCAUGAUAAAGUCUAUCUUCUGUGACCAUAUGUUUCCUUAGAGAGUUUUAGACAUUGACCCUCAUCUAAAAAAUUGUGAAAAAGGACUCUCACCAGUCUGUUAAUAUGUAUGUAUAUGAAAGAAAUUACUGGUAAACUUCUAAGGCAGGCAUUGGUGUUACUUUUUUUUAUCUUUAUUGUGUCUGUGAAAUGAUUGUGUGUAUUUUUUCUUUGAUUAGACAAUGAGAUUCCCAAAUAAAUUUUAUUAAAGCCAAAAAAACCUUUA
2175   lncRNA  unknown    Homo sapiens    AAUCUGGCGCGGCCUUUGUCUCACUUCAGCCAGAGAGCGGGGUUAGGGCUUCAUUGCCUUGUGUCCUCUGCUCCGGGAGACUUCGGUGAUUCUGCCACUCCCUCCGUCGCUCUGUGACCUGCUGGCAUUGAAUGAUUUAUAGCUAAGACUCCAGGACACCCCUGAAGCCGAGAAAUGAAAUCCCAAGUUGACCGUCAAGUCCAACGCUCGCUGCAGACAUCUAGUGGACCCGGCGCUCGCGGACGGAAGCGGACAGACCUAGUUGGAUCCUUAUCCCACCAAUCUGGCCCACCUUUGCUGCCAUCUAACUCCGCUGACCGGCCCACCGUUCCUCCACUGUUCGCUGGUUGACCCGGGCAGCGGAGAGAGGAGGUUCUUGUGUACUAUGUUUAACAUUGACAAGAAGAUAAUUAGGAAAUAAAUAUAUAUAAAUACAGGAACAUAAAGAGAAAUAAAGAGGAAGCACCACAGUCAACUAAAAAAGAGAGAUUCCCAGCAACCUACACAACCAUUUCUAUAGGCUCUCAGCUGAUGCUUAGUGUUUGGЖCAACUCACACAUGCAGAUUGACAGAUGACCAACUUAUAAAAGAGAUUUUUAAUAAUUCUUAAUGAUUUCACAGGGUGUUGUCAAUGGAAAUAUGGAUUCUUCUACAGCAAACAUGUACAUCUAUAUCAUGUGGAACAAGGAUAGUGGGAAAACCUCUGAUUGUGAGGACGUAGAЖCUGAGAAGAGCAUAUGAAAUGUCAUAAGAAAAACACUUCUGGAGCAUGUCGUCUUCAAGAAAAUGGUGCCCAGACAGUCAGGAUUGUGUUACAUUUUAAUAGGAAUGGGGAUAUUUGUGAUAUACUGACAAACCAAGACAGGUGACUAUAAAЖCUGCAAUGUAAAGUGUCAGCUUCUCCUCACACCUUUAUAGUAGACAUCUGAGAACCUCACUCCUGUCAGCAUAUUCUUGGGGUUGAAUCUCAAGUGAUCCAUAGAAUCUUAGAUAAAGCAGAUGAAAAUAGGCUUUUCUGUCUUCCUAAGUAAACAGCAAUGAAGUUGAGAGAAAGAAGAUAUUGCUGGAAGUCAUGAUAAAGUCUAUCUUCUGUGACCAUAUGUUUCCUUAGAGAGUUUUAGACAUUGACCCUCAUCUAAAAAAUUGUGAAAAAGGACUCUCACCAGUCUGUUAAUAUGUAUGUAUAUGAAAGAAAUUACUGGUAAACUUCUAAGGCAGGCAUUGGUGUUACUUUUUUUUAUCUUUAUUGUGUCUGUGAAAUGAUUGUGUGUAUUUUUUCUUUGAUUAGACAAUGAGAUUCCCAAAUAAAUUUUAUUAAAGCCAAAAAAACCUUUA
2176   mRNA  unknown    Homo sapiens    ACAAGUUGCACUUAAGAAGCUAUGCUAAGAAAACAAACACACAGAAGCCUACAUCAUUACAUGUAUAGAAUGUUCAAGAACUGAUGAAACCAGUCCGUGGUCACAAAAGCCAGAAAGUGGUUGCUUCUGGGGACCAGAAGGGAAAGGGGCAUAAAGGAACCUUUUGAGGUGAAUAGAAGUUUCUGCAUCUUGGUUUGGCACACAUGCCAAAACUCACCAGCUACAGAUUCUCGUUGACACUGGAAGCAGUAЖCUUUGCCGUGGCAGGAACCCCGCACUCCUACAUAGACACGUACUUUGACACAGAGAGGUCUAGCACAUACCGCUCCAAGGGCUUUGACGUCACAGUGAAGUACACACAAGGAAGCUGGACGGGCUUCGUUGGGGAAGACCUCGUCACCAUCCCCAAAGGCUUCAAUACUUCUUUUCUUGUCAACAUUGCCACUAUUUUUGAAUCAGAGAAUUUCUUUUUGCCUGGGAUUAAAUGGAAUGGAAUACUUGGCCUAGCUUAUGCCACACUUGCCAAGCCAUCAAGUUCUCUGGAGACC
2177   mRNA  unknown    Homo sapiens    ACACGCUUUCAGGAGAGGAGCCGUGUGAUCAUUUGCCAGAGAAGGAUAGGCUGGUGGGUGCUGAGACCAGAAUCUUUAUAGCAGAAACUUGUGAAGCGUUCCAGCUGAAAGUCCAAUCUCUAAACCUCGUCACGUGUUCAAUAUGCUAAAGAAGUAUGUCCGCGCAGAACAGAAGGACAGACAGCACACCCUAAAGCAUUUCGAGCAUGUGCGCAUGGUGGAUCCCAAGAAAGCCGCUCAGAUCCGGUCCCAGGUUAUGACACACCPCCGUGUGAUUUAUGAGCGCAUGAAUCAGUCUCUCUCCCUGCUCUACAACGUGCCUGCAGUGGCCGAGGAGAUUCAGGAUGAAGUUGAUGAGCUGCUUCAGAAAGAGCAAAACUAUUCAGAUGACGUCUUGGCCAACAUGAUUAGUGAЖCCAAGGAUCAGUUACGGAAACGAUGCUCUCAUGCCAUCUUUGACCGAAACGAAAACCACCGUGGAGCUCCUUCCCGUGAAUGGAGAGUUCAGCCUGGACGAUCUCCAGCCGUGGCAUUCUUUUGGGGCUGACUCUGUGCCAGCCAACACAGAAAACGAAGUUGAGCCUGUUGAUGCCCGCCCUGCUGCCGACCGAGGACUGACCACUCGACCAGGUUCUGGGUUGACAAAUAUCAAGACGGAGGAGAUCUCUGAAGUGAAGAUGGAUGCAGAAUUCCGACAUGACUCAGGAUAUGAAGUUCAUCAUCAAAAAUUGGUGUUCUUUGCAGAAGAUGUGGGUUCAAACAAAGGUGCAAUCAUUGGACUCAUGGUGGGCGGUGUUGUCAUAGCGACAGUGAUCGUCAUCACCUUGGUGAUGCUGAAGAAGAAACAGUACЖCAPCCAUUCAUCAUGGUGUGGUGGAGGUUGACGCCGCUGUCACCCCAGAGGAGCGCCACCUGUCCAAGAUGCAGCAGAACGGCUACGAAAAUCCAACCUACAAGUUCUUUGAGCAGAUGCAGAACUAGACCCCCGCCACAGCAGCCUCUGAAGUUGGACAGCAAAACCAUUGCUUCACUACCCAUCGGUGUCCAUUUAUAGAAUAAUGUGGGAAGAAACAAACCCGUUUUAUGAUUUACUCAUUAUCGCCUUUUGACAGCUGUGCUGUAЖCACAAGUAGAUGCCUGAACUUGAAUUAAUCCACACAUCAGUAAUGUAUUCUAUCUCUCUPUACAUUUUGGUCUCUAUACUACAUUAUUAAUGGGUUUUGUGUACUGUAAAGAAUUUAGCUGUAUCAAACUAGUGCAUGAAUAGAUUCUCUCCUGAUUAUUUAUCACAUAGCCCCUUAGCCAGUUGUAUAUUAUUCUUGUGGUUUGUGACCCAAUUAAGUCCUACUPUACAUAUGCUPUAAGAAUCGAUGGGGGAUGCUUCAUGUGAACGUGGGAGUUCAGCUGCUUCUCUUGCCUAAGUAUUCCUUUCCUGAUCACUAUGCAUUUUAAAGUUAAЖCAUUUUUAAGUAUUUCAGAUGCUPUAGAGAGAUUUUUUUUCCAUGACUGCAUUUUACUGUACAGAUUGCUGCUUCUGCUAUAUUUGUGAUAUAGGAAUUAAGAGGAUACACACGUUUGUUUCUUCGUGCCUGUUUUAUGUGCACACAUUAGGCAUUGAGACUUCAAGCUUUUCUUUUUUUGUCCACGUAUCUUUGGGUCUUUGAUAAAGAAAAGAAUCCCUGUUCAUUGUAAGCACUUUUACGGGGCGGGUGGGGAGGGGUGCUCUGCUGGUCUUCAAUUACCAAGAAUUCUCCAAAACAAUUUUCUGCAGGAUGAUUGUACAGAAUCAUUGCUUAUGACAUGAUCGCUUUCUACACUGUAUUACAUAAAUAAAUUAAAUAAAAUAACCCCGGGCAAGACUUUUCUUUGЖAGGAUGACUACЖ#ACAUUAAAUAAUCGAAGUAAUUUUGGGUGGGGAGAAGAGGCAGAUUCAAUUUUCUPUAACCAGUCUGAAGUUUCAUUUAUGAUACAAAAGAAGAUGAAAAUGGAAGUGGCAAUAUAAGGGGAUGAGGAAGGCAUGCCUGGACAAACCCUUCUUUUAAGAUGUGUCUUCAAUUUGUAUAAAAUGGUGUUUUCAUGUAAAUAAAUACAUUCUU
2178   mRNA  unknown    Homo sapiens    ACACGUGCGACGGCCGUGAUGAAGUUCGCUUACCGGUUUUCAAAUUUGCUGGGUACGGUGUACCGGCGUGGGAACCUAAAUUUUACCUGCGAUGGAAAUUCAGUUAUCAGUCCCGUGGGCAAUAGAGUCACUGUAUUUGACCUUAAAAACAACAAAUCUGACACGCUGCCCCUGGCCACUCGGUACAACGUCAAGUGCGUGGGGCUGUCCCCGGAUGGCCGCCUCGCUAUCAUCGUCGAUGAAGGGGGCGAUGCGCUGCUGGUCAGCCUGGUCUGCAGGUCUGUGCUGCACCACUUCCACUUCAAGGGCUCUGUGCACAGUGUGUCCUUCUCCCCUGAUGGCAGGAAGUUUGUUGUCACAAAGGGUAACAUUGCCCAGAUGUAUCAUGCCCCUGGGAAGAAGCGGGAGUUCAACGCCUUCGUUCUGGACAAGACCUAUUUUGGGCCCUACGAUGAGACCACCUGCAUCGACUGGACGGAUGACUCCAGGUGCUUUGUGGUUGGGAGCAAAGACAUGUCCACCUGGGUGUUCGGAGCCGAGCGCUGGGACAACCUCAUCUACUAUGCACUGGGGGGACAUAAGGAUGCCAUCGUGGCCUGCUUCUUUGAAUCCAACAGCCUGGACCUGUACUCACUCAGCCAGGACGGAGUGCUGUGCAUGUGGCAGUGUGACACGCCCCCCGAGGGCUUGCGGCUGAAGCCCCCUGCGGGCUGGAAAGCAGACCUGUUGCAGCGGGAGGAGGAAGAGGAGGAGGAGGAGGACCAGGAGGGCGACAGAGAGACCACCAUCCGGGGAAAAGCCACUCCGGCCGAGGAGGAGAAGACAGGAAAAGUGAAGUACUCACGGCUGGCCAAGUACUUCUUCAAUAAAGAAGGGGAUUUUAACAACCUGACAGCUGCAGCAUUUCAUAAGAAGUCUCACCUCUUGGUCACUGGCUUUGCUUCUGGAAUCUUCCAUCUUCAUGAGCUGCCAGAGUUUAACCUCAUCCACUCCCUGAGCAUUUCAGAUCAGAGCAUCGCCUCAGUGGCCAUCAAUAGCUCGGGGGACUGGAUUGCUUUUGGCUGUUCAGGCCUGGGCCAGCUGCUGGUGUGGGAGUGGCAGAGUGAGUCCUACGUGCUCAAGCAGCAGGGCCACUUCAACAGCAUGGUGGCCCUGGCCUACUCGCCCGACGGACAGUACAUCGUGACUGGCGGGGACGACGGCAAGGUCAAGGUGUGGAACACCCUCAGCGGCUUCUGCUUCGUCACUUUUACGGAGCACUCCAGCGGGGUGACCGGUGUGACCUUUACUGCCACCGGCUACGUUGUGGUGACCUCAUCCAUGGACGGGACCGUGCGAGCCUUUGACCUUCACAGGUACCGAAACUUCCGCACCUUCACCUCUCCACGCCCCACCCAGUUCUCCUGUGUGGCGGUGGAUGCGAGCGGUGAGAUCGUCUCUGCAGGGGCGCAGGACUCCUUUGAGAUUUUCGUGUGGUCCAUGCAGACAGGCAGGCUCCUUGAUGUUUUGUCUGGACACGAAGGGCCCAUCAGUGGUCUGUGUUUUAACCCAAUGAAGUCCGUCCUGGCCAGUGCCUCCUGGGACAAGACAGUGCGCCUAUGGGACAUGUUUGACAGCUGGAGGACCAAGGAGACGCUGGCCCUGACCUCUGAUGCUCUGGCUGUGACUUUUCGCCCUGAUGGUGCGGAGCUGGCUGUGGCCACACUGAACUCACAGAUCACCUUCUGGGACCCUGAGAACGCGGUGCAGACGGGCUCCAUUGAGGGCAGGCAUGACCUCAAGACUGGCAGGAAGGAGCUGGACAAGAUUACAGCCAAGCACGCGGCCAAGGGGAAGGCCUUCACCGCCCUGUGCUACUCUGCAGACGGCCACAGCAUCCUGGCGGGAGGCAUGUCCAAGUUCGUGUGCAUCUACCACGUCCGUGAGCAGAUUCUCAUGAAGAGGUUCGAGAUCUCUUGCAACCUGUCUUUGGACGCCAUGGAGGAAUUUUUGAACCGAAGAAAAAUGACAGAGUUUGGCAACCUGGCACUAAUUGAUCAGGAUGCUGGGCAGGAGGAUGGAGUCGCGAUACCACUGCCAGGCGUCAGGAAAGGUGACAUGAGUUCUCGGCACUUCAAACCUGAGAUCAGGGUGACCUCACUCCGCUUCUCUCCCACUGGGCGCUGCUGGGCGGCCACCACCACGGAGGGACUCCUCAUCUACUCCCUGGACACCCGCGUGCUCUUUGACCCGUUUGAGCUGGACACCAGCGUCACCCCCGGGAGGGUGCGCGAGGCACUGCGCCAGCAGGACUUCAC?AGGGCCAUCCUCAUGGCCCUCCGGCUCAACGAGAGCAAACUGGUGCAGGAGGCCCUGGAGGCGGUGCCCAGGGGCGAGAUUGAAGUGGUCACCUCCUCCCUUCCUGAACUGUAUGUGGAGAAAGUGCUGGAGUUUUUAGCUUCCUCCUUUGAAGUGUCUCGCCACCUGGAAUUCUACCUCCUCUGGACUCACAAACUGCUCAUGUUGCACGGACAGAAGCUGAAGUCCAGAGCCGGGACGCUGCUGCCUGUCAUUCAGUUCCUCCAGAAGAGCAUCCAGCGGCACCUGGACGACCUGUCGAAACUCUGUAGCUGGAACCACUAUAACAUGCAGUACGCACUAGCAGUUUCCAAGCAGCGGGGCACAAAACGCUCCCUAGACCCGCUGGGAAGUGAGGAGGAGGCAGAAGCAUCUGAAGAUGACAGCCUGCAUCUGCUUGGAGGAGGAGGCAGAGACUCAGAAGAAGAGAUGCUGGCCUAGAGCCAGCCGGUUGCAGCGUUGGAUUGUGCCGGCUAAGACCUGCCAGGGAGAUGGGЖCCCUUGUGCCACCUGGGCCAGCAAAGAGGAGGGGUCCAGAGAЖCAGCUGAAAUACUGUCACUAGUGGUAGUGACUUGCUUUUCCUGUGCACACAUGUAGCCCAUCAGGЖCAGCGAGCCGACGGGUCACGCCAGGGGCCGGCACGCACUGGCACCUGGCCCCAGGAGCGGGGCCGUGUGAACGGUGAUGAAUGUUGAAAAUGCGUCUCAGAGAGGUAUUCACAUGAЖCUUUGUAUGAGЖCUUAUUUAUAUCUUUAACAUAAAGGUUUGAUAAAGAACUUAGGGAUUAAAAAAAAGAUGGAGUUUUCUAACGUGAGGAUGAAGUCUACACUUCAGAUUAAAAAGGGUUAUGUUGUA
2179   mRNA  unknown    Homo sapiens    ACACUCAGGAUCUUGCCUGAACAACAAACCAACUCACCACUCCUGACACCAUGAGUCACUACGGCAGCUACUACGGAGGCCUGGGCUACAGCUGUGGAGGCUUCGGUGGCCUGGGCUAUGGCUAUGGCUGUGGAUGUGGCAGCUUCUGCAGACGGGGUUCUGGCUGUGGCUAUGGAGGCUACGGAUAUGGCUCUGGCUUUGGAAGCUACGGAUAUGGCUCUGGCUUUGGAGGCUACGGAUAUGGCUCUGGCUUUGGAGGCUAUGGAUAUGGCUGCUGCCGCCCAUCGUACAAUGGAGGAUACGGЖUUCUCUGGCUUUUAUUAAAUGAAUUGCUGAAAUUGGAAGCAGAGGAGAAACCUCCAAAUGUGUUUGGUCCUGUCCCGUGCUUUCAUUCCAAAAAUCCAUUCUAUUGCCUUCAGCAUCAAUGGAGAGAUAUUUAGCUAUGUUAAAUCUUUAAAAUAGAUUUAAGCUGCUUCUGUGAAUAUUUGUUGUCUUUUUACUUUCGGAGUCCGUCACCUGAAAUCAUAUUCAUGUAUAACUACUCUAGGUUGUUCUUCUAAAUUUGCUUUAUUUUUCUUACCACCAUUACCUUGAUGUUAUCUAUCAAGAUCCUAGCAAAAACUUGUAUUUUGCUUUUAUCUAAUAAAUGAAGUAAAGUAUAAA
2180   mRNA  unknown    Homo sapiens    ACAGCGCUCGCGCUGCUCUCGGCGCUCGCAGCUGCCGACUGGGGAUGACGGCGGGCAGGAGGAGACCGCAGCCGAAGGGACACAGACACGCCGCUUCACCAGCUCGCCUCAGGCUGCCCCCCUGCAUUUUUGUUUUAAUUUUUACGGCUUUUUCCCCUCUCUUUCUUCCCUUCCUCCUGGUCCCAGCAGAGCCAAGGAAACCCACAAAAUAAGAAAGGAAGUGGGCCCCGGAGCUUGGAACCUCCACAGCCGGCUUGUCCAGCGCAGCGCGGGGGCGGGAGGCUGCGCGCACCAGUUGCCAGCCCGGUGCGCGGUACCUUUCCUUACUUUUCUUGAAACAGCGAUCGUGCCUGCAUUUGGUGGUUUUUUGGUUUUUGUUUUUUUCCUUUUCCCGUAUUUGCUGAAUCUCCACUAUCCGACUUUUUUUUUUUAAUCUUUUCUUUCCCCCCCCCCCCACCCCACCUCUUUCUGGAGCACGAAUCCAAACAUUUUCCCAAGCAACAAAGAAAAGUUCGCACGCUGGCACCGCAGCCCGGACAGGCUGGCGCUGCUGCCGGGCCCCCCUCCCUCCGACACUUGACUCAAUCCUGCAAGCAAGUGUGUGUGUGUCCCCAUCCCCCGCCCCGUUAACUUCAUAGCAAAUAACAAAUACCCAUAAAGUCCCAGUCGCGCAGCCCCUCCCCGCGGGCAGCGCACUAUGCUGCUCGGGUGGGCGUCCCUGCUGCUGUGCGCGUUCCGCCUGCCCCUGGCCGCGGUCGGCCCCGCCGCGACACCUGCCCAGGAUAAAGCCGGGCAGCCUCCGACUGCUGCAGCAGCCGCCCAGCCCCGCCGGCGGCAGGGGGAGGAGGUGCAGGAGCGAGCCGAGCCUCCCGGCCACCCGCACCCCCUGGCGCAGCGGCGCAGGAGCAAGGGGCUGGUGCAGAACAUCGACCAACUCUACUCCGGCGGCGGCAAGGUGGGCUACCUCGUCUACGCGGGCGGCCGGAGGUUCCUCUUGGЖCCUGGAGCGAGAUGGUUCGGUGGGCAUUGCUGGCUUCGUGCCCGCAGGAGGCGGGACGAGUGCGCCCUGGCGCCACCGGAGCCACUGCUUCUAUCGGGGCACAGUGGЖCGGUAGUCCCCGCUCUCUGGCUGUCUUUGACCUCUGUGGGGGUCUCGACGGCUUCUUCGCGGUCAAGCACGCGCGCUACACCCUAAAGCCACUGCUGCGCGGЖCCCUGGGCGGAGGAAGAAAAGGGGCGCGUGUACGGGGAUGGGUCCGCACGGAUCCUGCACGUCUACACCCGCGAGGGCUUCAGCUUCGAGGCCCUGCCGCCGCGCGCCAGCUGCGAAACCCCCGCGUCCACACCGGAGGCCCACGAGCAUGCUCCGGCGCACAGCAACCCGAGCGGACGCGCAGCACUGGCCUCGCAGCUCUUGGЖCCAGUCCGCUCUCUCGCCCGCUGGGGGCUCAGGЖCCGCAGACGUGGUGGCGGCGGCGGCGCCGCUCCAUCUCCCGGGCCCGCCAGGUGGAGCUGCUUCUGGUGGCUGACGCGUCCAUGGCGCGGUUGUAUGGCCGGGGCCUGCAGCAUUACCUGCUGACCCUGGCCUCCAUCGCCAAUAGGCUGUACAGCCAUGCUAGCAUCGAGAACCACAUCCGCCUGGCCGUGGUGAAGGUGGUGGUGCUAGGCGACAAGGACAAGAGCCUGGAAGUGAGCAAGAACGCUGCCACCACACUCAAGAЖCUUUUGCAAGUGGCAGCACCAACACAACCAGCUGGGAGAUGACCAUGAGGAGCACUACGAUGCAGCUAUCCUGUUUACUCGGGAGGAUUUAUGUGGGCAUCAUUCAUGUGACACCCUGGGAAUGGCAGACGUUGGGACCAUAUGUUCUCCAGAGCGCAGCUGUGCUGUGAUUGAAGACGAUGGCCUCCACGCAGCCUUCACUGUGGCUCACGAAAUCGGACAUUUACUUGGCCUCUCCCAUGACGAUUCCAAAUUCUGUGAAGAGACCUUUGGUUCCACAGAAGAUAAGCGCUUAAUGUCUUCCAUCCUUACCAGCAUUGAUGCAUCUAAGCCCUGGUCCAAAUGCACUUCAGCCACCAUCACAGAAUUCCUGGAUGAUGGCCAUGGUAACUGUUUGCUGGACCUACCACGAAAGCAGAUCCUGGGCCCCGAAGAACUCCCAGGACAGACCUACGAUGCCACCCAGCAGUGCAACCUGACAUUCGGGCCUGAGUACUCCGUGUGUCCCGGCAUGGAUGUCUGUGCUCGCCUGUGGUGUGCUGUGGUACGCCAGGGCCAGAUGGUCUGUCUGACCAAGAAGCUGCCUGCGGUGGAAGGGACGCCUUGUGGAAAGGGGAGAAUCUGCCUGCAGGGCAAAUGUGUGGACAAAACCAAGAAAAAAUAUUAUUCAACGUCAAGCCAUGGCAACUGGGGAUCUUGGGGAUCCUGGGGCCAGUGUUCUCGCUCAUGUGGAGGAGGAGUGCAGUUUGCCUAUCGUCACUGUAAUAACCCUGCUCCCAGAAACAACGGACGCUACUGCACAGGGAAGAGGGCCAUCUACCGCUCCUGCAGUCUCAUGCCCUGCCCACCCAAUGGUAAAUCAUUUCGUCAUGAЖCAGUGUGЖGGCCAAAЖAUGGCUAUCAGUCUGAUGCAAAAGGAGUCAAAACUUUUGUGGAAUGGGUUCCCAAAUAUGCAGGUGUCCUGCCAGCGGAUGUGUGCAAGCUGACCUGCAGAGCCAAGGGCACUGGCUACUAUGUGGUAUUUUCUCCAAAGGUGACCGAUGGCACUGAAUGUAGGCUGUACAGUAAUUCCGUCUGCGUCCGGGGGAAGUGUGUGAGAACUGGCUGUGACGGCAUCAUUGGCUCAAAGCUGCAGUAUGACAAGUGCGGAGUAUGUGGAGGAGACAACUCCAGCUGUACAAAGAUUGUUGGAACCUUUAAUAAGAAAAGUAAGGGUUACACUGACGUGGUGAGGAUUCCUGAAGGGGCAACCCACAUAAAAGUUCGACAGUUCAAAGCCAAAGACCAGACUAGAUUCACUGCCUAUUUAGCCCUGAAAAAGAAAAACGGUGAGUACCUUAUCAAUGGAAAGUACAUGAUCUCCACUUCAGAGACUAUCAUUGACAUCAAUGGAACAGUCAUGAЖCUAUAGCGGUUGGAGCCACAGGGAUGACUUCCUGCAUGGCAUGGGCUACUCUGCCACGAAGGAAAUUCUAAUAGUGCAGAUUCUUGCAACAGACCCCACUAAACCAUUAGAUGUCCGUUAUAGCUUUUUUGUUCCCAAGAAGUCCACUCCAAAAGUAAЖCUCUGUCACUAGUCAUGGCAGCAAUAAAGUGGGAUCACACACUUCGCAGCCGCAGUGGGUCACGGGCCCAUGGCUCGCCUGCUCUAGGЖCCUGUGACACAGGUUGGCACACCAGAACGGUGCAGUGCCAGGAUGGAAACCGGAAGUUAGCAAAAGGAUGUCCUCUCUCCCAAAGGCCUUCUGCGUUUAAGCAAUGCUUGUUGAAGAAAUGUUAGCCUGUGGUUAUGAUCUUAUGCACAAAGAUAACUGGAGGAUUCAGCACUGAUGCAGUCGUGGUGAACAGGAGGUCUACCUAACGCACAGAAAGUCAUGCUUCAGUGЖCAUUGUCAACAGGAGUCCAAUUAUGGGCAGAAUCUGCUCUCUGUGACCAAAAGAGGAUGUGCACUGCUUCACGUGACAGUGGUGACCUUGCAAUAUAGAAAAЖCUUGGGAGUUAUUGAACAUCCCCUGGGCUUACAAGAAACACUGAUGAAUGUAAAAUCAGGGGACAUUUGAAGAUGGCAGAЖCUGUCUCCCCCUUGUCACCUACCUCUGAUAGAAUGUCUUUAAUGGUAUCAUAAUCAUUUUCACCCAUAAUACACAGUAGCUUCUUCUUACUGUUUGUAAAUACAUUCUCCCUUGGUAUGUCACUUUAUAUCCCCUGGUUCUAUUAAAAUAUCCAUAUAUAUUUCUAUAAAAAAAGUGUUUGACCAAAGUAGGUCUGCAGCUAUUUCAACUUCCUUCCGUUUCCAGAAAGAGCUGUGGAUAUUUUACUGGAAAUUAAGAACUUGCUGCUGUUUUAAUAAGAUGUAGUAUAUUUUCUGACUACAGGAGAUAAAAUUUCAGUCAAAAAACCAUUUUGACAGCAAGUAUCUUCUGAGAAAUUUUGAAAAGUAAAUAGAUCUCAGUGUAUCUAGUCACUUAAAUACAUACACGGGUUCAUUUACUUAAACCUUUGACUGCCUGUAUUUUUUUCAGGUAGCUAGCCAAAUUAAUGCAUAAUUUCAGAUGUAGAAGUAGGGUUUGCGUGUGUGUGUGUGAUCAUACUCAAGAGUCUAAAAACUAGUUUCCUUGUGUUGGAAAUUUAAAAGGAAAAAAAUCGUAUUUCACUGUGUUUUCAAUUUAUAUUUUCACAACUACUUUCUCUCUCCAGAGCUUUCAUCUGAUAUCUCACAAUGUAUGAUAUACGUACAAAACACACAGCAAGUUUUCUAUCAUGUCCAACACAUUCAACACUGGUAUACCUCCUACCAGCAAGCCUUUAAAAUGCAUUUGUGUUUGCUUAUUUGUUUUGUUCAAGGGUUCAGUAAGACCUACAAUGUUUUGUAUUUCUUGACUUAUUUUAUUAGAAACAUUAAAGAUCACUUGGUAGUUAGCCACAUUGAGAAGUGGUUAUCAUUGUUAAUGUGGUUAAUGCCAAAAAGUGGUUAAUAUUAAUAAGACUGUUUCCACACCAUAGGCAAUAAUUUCUUAAUUUAAAAAAUCUAAGUAUAUUCCUAUUGUACUAAAUAUUUUUCCCAACUGGAAAGCACUUGAUUGUACCCGUAAGUGUUUGAGUGAUGACAUGUGAUGAUUUUCAGAAAGUUGUUGUUUUUGUUUCCAUAGCCUGUUUAAGUAGGUUGUAAGUUUGAAUAGUUAGACAUGGAAAUUAUUUUAUAAGCACACACCUAAAGAUAUCUUUUUAGAUGAUAAAAUGUACACCCCCCCAUCACCAACCUCACAACUUAGAAAAUCUAAGUUGUUUGAUUUCUUUGGGAUUUCUUUUGUUGUGAAACACUGCAAAGCCAAUUUUUCUUUAUAAAAAUUCAUAGUAAUCCUGCCAAAUGUGCCUAUUGUUAAAGAUUUGCAUGUGAAGAUCUUAGGGAACCACUGUUUGAGUUCUACAAGCUCAUGAGAGUUUAUUUUUAUUAUAAGAUGUUUUUAAUAUAAAAGAAUUAUGUAACUGAUCACUAUAUUACAUCAUUUCAGUGGGCCAGGAAAAUAGAUGUCUUGCUGUUUUCAGUAUUUUCUUAAGAAAUUGCUUUUAAAACAAAUAAUUGUUUUACAAAACCAAUAAUUAUCCUUUGAAUUUUCAUAGACUGACUUUGCUUUUGACGUAGAAAUUUUUUUUCUCAAUAAAUUAUCACUUUGAGAAAUGAGGCCUGUACAAGGCUGAUAACCUAUAUGUGAUGGAGAUCACCCAAUGCCAAGGGCAGAAAGCAAACCUAGUUAAAUAGGUGAGAAAAAAAAUAAUAAUCCCAGUGCCAUUUGUCUGUGCAAAGAGAAUUAGGAGAGAGGUUAAUGUUACUUUUUUCCAUUUUGGAAAUAAUUUUAAUCAAGUAACUCAAAUGUGACAAAAUUUAUUUUUAUUUUUUGUGGUUAUAUUCCCAACAACAUUAAAAAAUACUCGAGGCAUAAAUGUAGUUGUCUCCUACUCUGCUUCUCUUACUAUACUCAUACAUUUUUAAUAUGGUUUAUCAAUGAUUCAUGUUUCCCUCAAAUAGUGAUGGUUUACACCUGUCAUGGAAACAAUCCUAGAGAGCUCAGAGCAAUUAAACCACUAUUCCAUGCUUUUAAGUAGUUUUCUCCACCUUUUUCUUAUGAGUCUCACUAGAUUGACUGAGGAAUGUAUGUCUAAAUUCCUGGAGAAGAUGAUAUGGAUUGGAAACUGAAAUUCAGAGAAAUGGAGUGUUCAAUAGAUACCACGAAUUGUGAACAAAGGGAAAAUUCUAUACAACUCAAUCUAAGUCAGUCCACUUUGACUUCGUACUGUCUUUCACCUUUCCAUUGUUGCAUCUUGAAUUUUUUAAAAUGUCUAGAAUUCAGGAUGCUAGGGGCUACUUCUUUAAAAAAAAAAAAAAAAAAGAAUUCGUCUGAAAAUGCUCAGGUUUGUAAGAAUCUAAUCUCACUUACAUAACUAAGCACUCCAUAAUAAGUUUUAUUAAGUACAAAGGGAGCCAGAAAAAAUGACAUUUAUUUCUUCUAGAUCAGAAAAAUUUAAAUUAAGCCCUGCCUUGCUGUUUAGAAAUAUGUGGGCAUUGUUAUAAUUUAUUCAAUAAAUUUAUGUUCCUUUGCCUUCCUGUGGAAACAGUUUUAUCCCACUAAACUAGGAAUUAGGGGAUAAAUCACAAACAAAAAAAAAGUUGCAGCACUGAAAAAAAGUAAUUUAUUGUUUUUGCAACUGGUAUGUGAAUUUGUGUGAUAAAAUUAUUUAUUCUUAUUUAACAAAAAUAUGUUCAAAUUUUUCUAUAUUUAAAAUGUUUUGCUGUUGUCCUACUUUUUAAUUUAUGCUUCAUGUUUGUGUAUAAAGUACACUUUUACACUUUGUGAGUUUACAUAAUAUACAGCACUGGUUGCUUUUGUAUUUUUUUACAGAAAGCUUUCUGUGUGAAGCAGGUGUAUAUGUAUAUAUUCCUCAUGUAUUCUUAUUCUGAUACUAUCAUUUUUCUUUCCAAGGAAAUUUUAAUCUGUCAUGACCAAUAGUGUUCAUUACUUGUGCCUAUGAUAAUAGGUUUUUUACAUCACAUUAACACUAUUUUUUCCAAGUCACAAAUAAGAAAAACACUUAUUCAAUGAAACAAGGUGCAAGUUUUAAAUUUGGGUACACAAAUAGCCUAGAAGCUUCCUACAGACGCUAAGACACAGCCAAUAAUCAGAUCCUUUCACUUCAUCGAGAAACUUGGACAAGUCGAUAUUGAUGUAUUAGAUGAAAGUUGUCUACACACAACUUCUGAGGGAUACAAACGAUAAUAAAACCAAAUGUUGUCUGUUUCUCCUUUAGAAACACCUCCUAAAAUUAAUAUCAUUUAGUCUCUAGUGUCUGUAGGAUUCUACAGAUGAGCACAAAUAGAUUGGGUUUGUAUAACAAAUGCUAAUAGUCAUAACUGUUUCUACAAAUAUGGGGUGUCCAUUAAGAGAAUGUGAUGUUUUCCUACUGCUGUUGAAUCCCAUGGGGUGAUUAUAGGACUUGAAAUAGGCAGAGUCACCUCUGAUGACAUCAGCUUGCCUCUGUGAUUUCACAGUCUGAUCCUGGCAACAAGACAAAGCACCCUUGGACACACAGCCAAUCUCUGGUUGUGAUAUUUCCCCAUUGAUUCCUUCCUUGUUAACAAGGUCAUUUUAAUGGUUCAGGUGAGGACAGCAGCCAGAUUCAAAGUCCAGAAUUUGUGCUGUUACAUAGAGUUCACACUGUCAAAUAACAUUGAAUUUAAUAAUGAUCAAAUUUUUCUAGUAGUCUUUGGCAGAGUGUAUAAUCUCAUUGGCAUGAUUGGUGAAUAUUACUAAUCUCUUUAUAAUGAAAGAUGCUUUACAAAUACCUUAUAUUUGCUAACAUUUCAAAACUACUAAAUAAAUGAAAUAGCCAUGUGUACAGAAAUGGUCAUUUAAAGCUUUAAUAGAACCAAAUUCAAGACAAUGUAUCAUUUAGACACACAGAAAAGGAACUUGUAUGUUUUCCCUAUUAUUUUUCUCAUUUGCCAACAAUCUAUAGUUUUAGGUUAUCAAACAGAUAGAUCAACUUAACUGGCUAGUACAUUGAAAAAUCUUCCUAAGAAUCCUUUGUUAGCAUAAUCUAUAGAGAUAAUUUCUCAAAUUAUAUCAUCAUGAUGCAUAUAAACUCUAUAAUGUAUAAUUGUGUUUCAUUUAUUUAAUGUAUGAGAACAUAUUGAAAUACAAAACCAUGCAUUAGCCAAAAAAUUGGAAUACAGGUAGUGUUCAGAUCAGCAAAACAUUCAGUCUGGUAAAUGCCUGCCUGGGGCUAUGAUAUCAUUCUCAAUGCAGGUUUUAUGGAAAAACUAAAAGAAUAUGUUGUUAGAUGAUGUUGGUUUUGAAAAAAAAAAGACAUUAACAUACACAUUAGUUAGCCCAGUUAAUUGCAUUCUACUAAUAUAGUUGCACAUUAGCAAUAAUUUUGCUGUCUCUGGUCUUUAUUUUGUGGCUUCAACUAACUGGACCAUGUGGACUGUAAAGGUCAAAUGGAAAAAACGAGCAGUGGCCCCUCAUCCUGUAAGGUACUGCUACAUCAGAGUGACCUAAAAGUCUAACACUGUGAGGAAAACUGUGAUUUGUAGGAAAAAAAAAAAAAACAAAUAAAAAACAGGGCAUGCUUUUUAAUUUUUUUCCACUUUCCUUUGGCACACCCAAUGAACAAUUCUAAUUUUUAUUGAGGUGCUAACAUCUUUCGUGACCGACUGUCAAAUGUGGUAUUUUUGAGUUACUAUUUUUCUACAUGAUUUUACAGUUUGCAAGAAAGACCUCUAAGCUUUGUGUCACGGUAGGGCACAACUUGAUACUCAAAAUUUGAAAAAUAAGCACAUCCAAUGAUUGUUUUGACCAACAGUGGUCAGUGACGUAAACUGCAUGUGCAUCUGAGGACAUUUAAGGGGUCAUUAAAAUUUGAGGAGCAUCAGGCCGGAGUAGCAGACUUUUAGAUGAGUCAUAUUUCAGCAUUCACUAAGUCCUCAGCAUUCCAUUCAAACUGUCGUGUAUAUUUGGCCUGAUUUUUUUUCAAGCUUUGCAAUAAUUUAUGUUAUUGGUAAACACUUGGUGACUAUAUCUCAGCCUUUUCUUUAACAACUCACAAUAUAUUAGAAACACGUCUACCUAUACUGAGAGUAUAUUUACAAUAGAAGAACAUACUGUAUGUGACUUUGUAAAGCUAGACUUUUGAUUAAGAAAUAUAUAAUCUCUGGAUGCUAUUUUUGCAUUAUACACUCAGGCACAACGUAAACCUUGAUGGCUCAUCUUGCUACAAUUACGAGUUGAAAAACACUACUUACGUAUUUGUAUGACCUAUUAGUCAGAGGAAAUCAUACAUAUGCUUUGUAAAUAGACUUUGCAGAUAACUAAAUAGACUGAAGAAAUAUGUUGCAUUUGAUAGAAGCAAUUGCAUAAAUAUUUGGUUUCUAUAUUAGAGUCUGUGAGUAAAGUCAAGUAAUAAACCUAAGUAGGUAUAACAGAUUUUUAAACCUUGAAACUUGCUUUGAUGGUAGAGAAAAUCAUUGAAGAUUUACAUACUGUAUAUAAGAUGUAAAAUGUACGCUGCUUAUUACCCUCAAUUUUCCAGAAGCAAUGGUAUAUAAUGCAGUUGAAAAACCAAAAAUCUUGGAAAACUAAGACGGGUCUUGUUUAAAAUGUCUCUCAGCUUUGGCAACCUUCAAAUCUUAAUCAACUAUUUAAAGCAUUACUGUGUCUUGUAGCCUGCAUUCCACAACAGCUCUGUUAUUCAGGUAAAAGACUUGAACUGAGCCGUUUGGGACCUAUACUGUAAUAUUUUCAUUGAGGAACAAUAUCCUAUUUUGUAAAGCAUUUCCCUAUGUGUGACUUUAAACUGUAAAAUUAAACACUGCUUUUGUGGGUUCAGUGGGCAUAAUAAAUAUAAAUUGUAAACUA
2181   mRNA  unknown    Homo sapiens    ACAGUCGUUCCGCCACCUCCCAGUCGGGUUGCGGCGGAGGCCGUUCCUGGCUUUGUAGCUCGCUCAAGAUGGCGGCGCAGCCACCCCGCGGGAUACGCCUCAGCGCGCUUUGCCCGAAGUUUUUACAUACAAAUUCUACUAGUCACACCUGGCCAUUCAGUGCAGUUGCUGAAUUAAUAGAUAAUGCUUAUGAUCCUGAUGUGAACGCUAAACAAAUAUGGAUUGACAAAACAGUGAUAAAUGACCAUAUAUGCUUGACAUUCACCGACAAUGGGAAUGGUAUGACUUCUGAUAAAUUACAUAAAAUGCUAAGCUUUGGCUUCAGUGACAAAGUCACCAUGAAUGGUCAUGUCCCAGUUGGAUUAUAUGGGAAUGGCUUCAAGUCGGGUUCUAUGCGUCUGGGUAAAGACGCAAUCGUUUUUACCAAAAAUGGAGAAAGCAUGAGCGUGGGCCUUUUGUCUCAGACCUACUUGGAAGUCAUAAAAGCGGAGCAUGUUGUUGUUCCAAUAGUGGCAUUCAACAAGCACCGACAGAUGAUUAAUUUAGCAGAAUCAAAAGCCAGCCUUGCUGCAAUUCUGGAACAUUCUCUGUUUUCCACGGAACAGAAGUUACUGGCAGAACUUGAUGCUAUUAUAGGCAAGAAGGGGACGAGGAUCAUCAUUUGGAAUCUUAGAAGCUACAAAAAUGCAACAGAGUUCGAUUUUGAAAAGGAUAAAUAUGAUAUCAGAAUUCCCGAGGAUUUAGAUGAGAUAACAGGGAAGAAGGGGUACAAGAAGCAGGAAAGGAUGGACCAGAUUGCCCCUGAGAGUGACUAUUCCCUGAGGGCUUAUUGCAGUAUAUUAUAUCUAAAGCCAAGAAUGCAGAUCAUCCUACGUGGACAGAAAGUGAAGACACAGCUGGUUUCGAAGAGUCUUGCCUACAUCGAACGUGAUGUUUAUCGACCAAAAUUUUUAUCUAAAACAGUGAGAAUUACCUUUGGAUUCAACUGCAGAAAUAAAGAUCAUUAUGGGAUAAUGAUGUAUCACAGAAAUAGACUCAUCAAAGCUUAUGAAAAAGUUGGAUGUCAGUUAAGGGCAAACAACAUGGGUGUUGGAGUGGUUGGAAUUAUAGAGUGUAAUUUCCUUAAGCCAACUCAUAAUAAACAAGAUUUCGACUAUACUAAUGAGUACAGACUUACAAUAACAGCACUAGGAGAAAAGCUGAAUGAUUACUGGAAUGAAAUGAAAGUGAAGAAAAAUACAGAAUAUCCUCUAAAUUUGCCAGUUGAAGAUAUACAGAAGCGUCCUGAUCAGACAUGGGUUCAGUGUGAUGCCUGUCUAAAGUGGCGGAAAUUACCUGAUGGGAUGGAUCAACUUCCUGAAAAAUGGUAUUGCUCCAAUAACCCUGACCCACAGUUCAGAAAUUGUGAGGUUCCAGAAGAACCUGAAGAUGAGGAUUUGGUACAUCCCACUUAUGAAAAAACCUACAAAAAGACCAACAAGGAAAAAUUCAGGAUCAGACAACCGGAAAUGAUCCCUCGGAUUAAUGCUGAACUGUUGUUUCGGCCAACUGCUCUUUCAACUCCAAGCUUUUCUUCUCCUAAGGAAAGUGUUCCAAGAAGACAUCUUUCAGAAGGAACAAAUUCUUAUGCGACAAGACUUCUAAAUAAUCAUCAAGUUCCACCUCAGUCUGAACCUGAGAGCAACAGCUUGAAACGGAGACUUUCUACUCGUUCCUCAAUUUUGAAUGCAAAGAAUCGGAGAUUGAGUAGUCAGUUUGAAAAUUCAGUUUAUAAAGGUGAUGAUGAUGAUGAAGAUGUCAUCAUCUUAGAAGAAAACAGUACCCCCAAACCUGCAGUAGAUCAUGAUAUUGACAUGAAAUCAGAACAGAGUCACGUUGAGCAAGGUGGUGUUCAGGUUGAGUUUGUGGGUGACAGUGAACCUUGUGGCCAGACUGGUUCAACAAGCACCUCAUCAUCCCGAUGCGACCAGGGAAAUACUGCAGCUACCCAGACUGAAGUACCAAGUUUAGUUGUUAAAAAAGAAGAAACUGUUGAAGACGAGAUAGACGUAAGAAAUGAUGCAGUGAUUCUGCCCUCCUGUGUAGAAGCUGAAGCAAAGAUACAUGAAACCCAGGAAACCACCGAUAAAUCUGCAGAUGAUGCAGGCUGCCAAUUACAAGAЖCUGAGAAACCAGCUACUCCUUGUCACUGAGGAAAAAGAGAAUUAUAAAAGACAGUGUCAUAUGUUUACUGAUCAAAUCAAAGUGUUACAACAGAGGAUACUAGAAAUGAAUGACAAGUAUGUUAAGAAAGAAACUUGCCAUCAGUCCACUGAAACCGAUGCUGUAUUUUUACUUGAAAGUAUUAAUGGCAAAUCUGAAAGUCCAGACCAUAUGGUAUCUCAGUAUCAGCAAGCUUUGGAAGAAAUAGAAAGGCUGAAAAAACAAUGUAGUGCUUUGCAACAUGUAAAGGCUGAAUGCAGCCAGUGUUCCAAUAAUGAGAGUAAAAGUGAAAUGGAUGAGAUGGCUGUGCAGCUUGACGAUGUGUUUAGACAACUGGACAAAUGCAGUAUUGAGAGGGACCAGUAUAAAAGUGAGGUUGAAUUGCUGGAAAUGGAAAAGUCACAAAUCCGUUCACAGUGUGAAGAACUCAAAACUGAAGUAGAACAGUUAAAAUCUACAAAUCAACAGACGGCAACAGAUGUUUCAACAUCAAGUAACAUUGAGGAGUCUGUAAAUCAUAUGGAUGGAGAAAGCCUCAAACUCCGAUCUCUUCGAGUUAACGUAGGACAACUGCUGGCUAUGAUUGUGCCUGAUCUUGAUCUUCAGCAAGUGAAUUACGAUGUUGAUGUAGUUGAUGAGAUUUUAGGACAAGUUGUUGAACAAAUGAGUGAAAUCAGUAGUACUUAAAGUAUAUGUUAUGUAAGAUAAAAUAUUUGCUCAAUUCUUUUGGUUGUACAGCUUUCAAAAUAUAAUUAAUUUUGUUUUAUAGAUAUGAUAGGCAACAGЖCUGAAAACCAUAAUCUUUACUGUAUUCUAUGCAUUCAAAUGUGGUCACAAAUAUUGUGGACACAUUAUCUUAUGUUUUGAAAUACCUGUGAAUUGUUGGCAUUGAGCAGCUGAAGCUAACUCAUGACUCUGUUUUGAAUGUAAAUAUUUGUAAUUAAGCCUGCACAUAUUUUUUUAUUGCCCUAGAGUACUCAAGUGUUUUUCACCAAGAGCUUUUCAGGUUGCCCCUAAGCUUUGUGCAAUUUUUUCUGGUUCCCCAAAGUGUAUUUUUCUCUAAGUCGAGGGCUAUGCCAUAAUACAAAUGGAAAUGUUACCUUUGAUUUUCUUAUAAAGGAGUUUAAAUAGGAUUUUUAAAUAAUGUAGUAACACUCCUGAUACAACUCUGGUUAUAAGUGAAUUGAGCAUUAAUGUUUCUUUUGUAUAAAUUCCUGUCCUGAAAUAUUUUAUUCAUGAAAAUAAGGUAAGCAAAAACCAACUCCAUUUUGCCAGGAUUUUGUUGUGCUGAGAUUGCCAAUCACGGUUAAACACAAAGUGUUUUUAUAGAAUGAAGAAACAGUCUUUAACAGAAAAAAGGUAUUGAAAUAUUAAAUGGCCACCAAGUUUACUUUGAAGCCCAUUUUUGGCUGUUUAGUCAGCAUGAAGUGGGCAUGAUAAUUUUUUAAUAUUUCUUUUUGUGAAAUUUCCUGUACAGCCUUUUGUAGGAUUACUACAGGUUAAUGUGAGUUGAGGAAGACAGUCUUUCUCAAACAAUACUACAUACCUUUUAUUAUAUUACAAACCUAAGUGUUUUAUAUCCUAGAGUCAAGGAACAAAUUUCCUUAGGAUUAUAGUAUUACAUGCCAUAAAAUACUAUGCUUUAUUGGUCCCAUGUUUUGUGCAAUUUUAAAGAGAUGGCUUUCUAUUAAGUAUAAACUAUGUAUAUAUAAGAACCAUAUUUUCCACAACUAAAAUGUGCAUUAUUUUUUCCAAAGUUUUAUCAUUGCUAUUUAUUUUUACCUUUGUUUUUGAACAUUCAAUCCGUUCAUUUUGUAUGUAUGCUUAAUACGUGUCGGUCAUAUACAGUAUUGAAUUUUUACUGUAUAGUAAUUCUGGAAAGAGCAAAUAAAUGAAGAUUGUUUUUAUUUGCCUGAUAAAGUAAUUGAAAGUGUAUUUUUGGUAUGAAGCUGGUUUUCUGUCACAAUUGUAAUUUCCCAAAUUUUAAAAUAUCUUAUAAUAAAAUAAAAAUAUAUGAUGGCUAA
2182   mRNA  unknown    Homo sapiens    ACAGUUGCGGCGGGAGAGCGGCGGGGCCGAGAGCGUGACUCGCCCGCUCCGCGCUGCUUCCCCCGCGCCGCCUCCCCGCGCCGCUCGCGCAGCCAUGUCCGAGGAGAAGCCCAAGGAGGGUGUGAAGACAGAGAAUGACCACAUCAACCUGAAGGUGGCCGGGCAGGACGGCUCCGUGGUGCAGUUCAAGAUCAAGAGGCACACGCCGCUGAGCAAGCUGAUGAAGGCCUACUGCGAGAGGCAGGGCUUGUCAAUGAGGCAGAUCAGAUUCAGGUUCGACGGGCAGCCAAUCAAUGAAACUGACACUCCAGCACAGCUGGAGAUGGAGGACGAGGACACCAUCGACGUGUUCCAGCAGCAGACGGGAGGUGUGCCGGAGAGCAGCCUGGCAGGGCACAGUUUCUAGAGGGCCCGUCCCCAGCCCGGGCCGUCCAPCCUCGCAUUGCUGUUGAAUGGUGAGCACGUGACCAUGCCGACCACAAAGGUGUCUGCGGAAACUCGAGGЖCAUUCACCACGAUGAUUUUCCUCUCUUUGAUGUACUUCAAGUGCAACUCAAAACUAUAUCUGCAGGGAUGAAUCUGUAЖCUUAAAUUGGGCCAAUCAGAAUUGUUAUCUUUGUUCAGGUAAAAUGAGUUGCAAGAUAUUGUGGGUACUUUUGUGUGCUCAUUUGUGUUUUCCCCCCCUCCUACAACAUUUUUUUAACCCCAAЖAUUAUAGCCUGAAUGUUCGCUUUUAGUCUGGCCAGGGAUCUGACUCCUGAGUUGGUUGCCUCUCCCCUGCUCACUCCAGUCACAUAGAGAAUUGGUGUUUCCCGCAGUGGGGAUGCAGCUGUUGGACAGGUAUUGGGGGCAAGGUUGGUAGGGAGGACAGACUGUCACUUGCUGUUACAGGCACAGGUGAUUAAAAUGCUAAAUAUUGCAAAUUUAAGCUUUGUCAGUAUAUGGAAAAGUUGAAGGGAAAAUACUGGAAUGCUUCUUCAAAGGUUAAAAAAUAЖCCGAGUCUUUUGGUAAUUUGACCCCACGUGCUCUCUGGCCCUCAAGCAUGUAACCUCGGGGUCUGAGGCCCAGGACCCACCCCCCUGCCACCCCPCCCACCCCACUCCCUGCUCAGUACCUGGCGUUGGUACACAGGCAAGGAUUGGCACAACCAAAAUUGGCCUUUUUCUCCCUCUUAAUAUUGAAGAAAUUCCCACAUUUCUCAUUUGGUAAUGGUGUUGUGGCCUCAGAUUUCUUCUAGUAUUUGCUUCUGAUGAAUGAUUAUGGUCUAUACAUAAAAAAGUAAGACUAAGUAUUGCUGAAUUUGCAGUUAUGUUGUCGUGUAUAAGAGCUACUUCCAAGUGUGGUUACAAAUGAACCCAUGGAAUGAUGACUUCAUGUUCUUCUCGUGGGUUUGUGCCGUGCUGCUUUCCAAAUAGGUAUUGAAUUUAUGCAUUAGUCUGGUGAUUUCAGUUCUGUGAAAUAUUUUGGGAUCUAUACCAAUUAAЖCAUUUUCAUAGUUCUGCCUAUUGUCCUUCCCUGAGGCUCCAUUGCUGCUUGGUGGCCAUUCUCUGCCUUUUUACAGUCACCUGAACAAUGACCCAUCAUCUCUUGCUUGCUUGAAAUCUUGCUGAAAUGUUCUCAUUUCCUGUUUGCUGUAUGGGCUCGGGUGGGAUGUUUGUUGGCUCUGUUGUGUUUAUUCACCAAUUUGUACAUUAUUUGUUGUCCUPUACUACUGUAAЖCAGUAAAUAUAGUUUGGUAUUCUGUC
2183   unknown  unknown    Homo sapiens    ACAUACGCAUGCACAGGCACGUGUGUACACACAUGCAGAUACACCCACAGCAUGCCAUCUGUGACACACACAGACGUAGGUACAUGGAGACACAUGCACACACAGGUCUGUGCACACACAUACGCAUGCACAGGCACCUAUGUACACACAUGCAGAUACACCCACAGCAUCCCAUCUGUGCCACACACAGACAUAGGUACAUGAAGACAGAUGCACACACAGGUCUAUGCACACACGUAUGCAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCACAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGCACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCAUACACAGACAUACGUACAUGGAGACAGAUGCACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGUACACACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGCACACACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUAUGCAGAUGCACCCGCAGUAUCGCAUCUGUGCCACACAGACAUACGUACAUGGAGACAGAUGUACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUACAUACAGAUGCACCCGCAACAUCCCGUCUGUGCUGCCCUAUUAGGUUUGUGGCCAUUUGGGGAAUCUUCCUAAAACCCUAAAAGCUAGGGCAGGUCUGCUUGAGCAGGAGCAGCAGGGUCUGGGGGACCCCUGAGGGCAGGACAGUCAGGGACCCACAGUUGAGCUGGGCCCGCUGAGCCCUGGAUCCUUCUUGGUGUCUUAUCCUGGCCAGCAAGCAAGUGUGAGCUCCUGUGGGUCUCCAGAGGCCCAUGAGGACCAGUGGGCCAGUUGGGAACAAGGCUUGGCGUCCUCUUCAGGGGGGAACACCAGGGCAGGCCUGAGGAGGCCUGUGUCCCCAGCCUGUCAUUGCUGUGGCUCCGCUUCUCAGGGAGCCUAGGAAGAAGGUGUGGCAAGAGCCCGAGGCGCUGGCUGCACCUGGCGGGGCCUGUGGGCGUCAGUUUAGACCCAUCCAUUCUCACUGCAGCAUUCCAGGGUUUGCCCUUAUGCUCGGCUGUGUGAGGGUGAGGAUGAUGCUGUGGGGGCAUGCAUGCUGGGUGUGUUUCAGCCUUCUCUUCCACCAGGCAUCCUGACAUCGAGGCCCAGGAGAGAGGAGUCCGGUGUCUACUUGAGAAACAGCUCCCCAAUGGCGACUGGCCGCAGGAAAACAUUGCUGGGGUCUUCAACAAGUCCUGUGCCAUCUCCUACACGAGCUACAGGAACAUCUUCCCCAUCUGGGCCCUCGGCCGCUUCUCCCAGCUGUACCCUGAGAGAGCCCUUGCUGGCCACCCCUGAGAACAUGCCUACCUGCUGGGUGCCGUCUGUGCGUUCCAGUGAGGCCAAGGGGUCCUGGCCGGGUUGGGGAGCCCUCCCAUAACCCUGUCUUGGGCUCCAACCCCUCAACCUCUAUCUCAUAGAUGUGAAUCUGGGGGCCAGGCUGGAGGCAGGGAUGGGGACAGGGUGGGUGGCUUAGACUCUUGAUUUUUACUGUAGGUUCAUUUCUGAAAGUAGCUUGUCGGGCUUGGGUGAGGAAGGGGGCACAGGAGCCGUGACCCCUGAGGAGGCACAGCGCCUUCUGCCACCUCUGGGCACGGCCUCAAGGUAGUGAGGCUAGGAGGUUUUUUCUGACCAAUAGCUGAGUUCUUGGGAGAGGAGCAGCUGUGCCUGUGUGAUUCCUUAGUGUCGAGUGGGCUCUGGGCUGGGGUCGGCCCUGGGCAGGCUUCUCCUGCACCUUUUGUCUGCUGGGCUGAGGGACACGAGGGCAACCCUGUGACAAUGGCAGGUAGUGUGCAUCCGUGAAUAGCCCAGUGCGGGGGUUGCUCAUGGAGCAPCCUGAGGCCGUGCAGCAGGGAGCCCCAUGCCCCUGGGUCGUGAGCUUGCCUGCGUAUGGGGUGGUGUCAUGGAGCCUCAUGCCCCUGGGUCGUGAGCUCGCCUGAGUAUGGGGUGGUGUCAUGGAGCCGCAUACCCCUGGGUUGUGAGCUCGCCUGCAUAUGCAGGGUCUGUCAUGGAACAUCCCAAGUCUGUGCAGCAGGGAGCCCCAUGCCCCUGGGACAUGAACCCACCUGCGUGGAAUGCUGUUUGUGAGGUGUCUACAGGGUUUAUAGUAGUCUUGUGGACACAGAAAUGCACAGGGGACACUUACGGACACAGAAAUGCACAGGGGAGGCCGAGCAPAACCAGGGGUGAGGGGCAGGCAGCAGUUGUAGUUACUGCCGCGGGGCACUGCUAUGUGCAGGGACAGCCAGCACCCAGCCCAUCACCACUCCCUGGGCUGGCUGGCAGGUAUGGCACCCUGGGAGCCCGGCAUAUACCCAGGGCACCCCUACGGCUGCCGCCAGUCUCAUGCCCAGGUGGGUGCUCUGGGCUGGAGCGAGGGCCAGGUUUUGGGCCGAGGCUUCCCCAGGCAAUCCUGUGAGCUCCCUUCUAGCCUCUGACCCAGUCUGGUCUGGCUUGCAUGGAUGUAGGGCUUGGGGUGGGAAGUUCAGGUCCUGGCUUUGCCUUUGCCUGAUGUGGAUGAGCAGCUCACAUGCUCAGGGCCACCUGAGACUGUCACUGCUCUCCCCUGGCUACUGGGAGGAGUCACUGAGAGCUUCGUUACCCCUGCUGCCUUGCCCAGGGCACACCCUAUACCUCCUUAUCUGCUCUUCCCCUCCCUGCCGCCUUCUGGGCAGGUAGCAGUCCCUGGCCUCUCCCCCUGGCUGAUCACUCUCCCUCAGGCAGUGGAGAUCUGCGUCUGGACACCCUCAGAUCCUGUCAUUGCCUGCCCAGAGUCCUUCAGGGGCACCCCUCUGCCUUGGUGUGCAGUCCAGGGCUCUCACCCAGGUGCCGCACCCUCUGGGGUCUUCUGUCCAGCUCCCUUGCCCCAUGUGCUGUCACUGACUCUCCUUGGGЖCUCGCCUGCCUGCUCAGAGCCCUGCAGGGCUUGGUCAGCUGCCUGUUCAGUGUCAACACUUCCCUGCACAUCUUAAAACUGGGCUPUAUUUUCGCUGAAGGAЖCUGUGUUGGGACCCUUGACAUCUGUCAGGUUUGCACAUGCUGUUUUUUUUUCUCAGCCCACGUGUPCUCCCCCACGUGGGGUAGCAGCAGGACAGACAGUGAAUCACAGAGUCUGCCCUGAGCAGAGGCUGCUGUCCCUGGGACUCCUAGCCAUGGUCAGACUGUACAAAACGGUUUUCCAGAAAUGAAAUGUAAAUCCAUUUUUAUACUGAAAAUGUUACUGAAAGUCACUUUUAUGAGCAUCUGCCUUAAUAAЖCAGACAUUGAUUCCCUUAUCAGAA
2184   unknown  unknown    Homo sapiens    ACCACACCCAGCUAAUUUUUGUAUUUUUAGUAGAGAUGGGGUUUCACCAUGUUGGCCAGGCUGGUCUCAAACUCCUGGCUUCAAGUGACCCGCCUGCCUUGGCCUCCCAAAGUGCUGGGAUUACAGGCGUGAGCCACCACACCCAGCCCCAUUGUCUUUUUUUUAAGACACUGGUUCUCACUCUGUCACCUAGGCUGGAGUGCAGUGGUGUGAUCAAGGCUUACUGCAGCCUCAACCUCUUGGGCUCAAGCAGUCCUCCCACUUUAGCCUCCCAUGUUGCUGGGACCACAGGUGCAUGCCACCAAGCCCCACUAAUUAAAACAAAUUUUUUUUUAUAGAGAAUAGGAUGUAGCUAUGUUGCCCAGGCUGGUCUUGAAUUCCUGGGCUCAAGUGAUCCUCCCACCUUGGCCUCCCAAAGUGCUGGGAUUACAGGUAUGAGCUACUGCACCUGGUCUCUGUCUUCUUUUUUUUUUUUUAAGGCUCUUGUUAGAAUGCCGUGAACAGUUGUCUCCAACUAUUAUAUGUCAUUCCACGGGAUUGGUUUCCUGCUGGCAUUCCAUGGUCUCCGGGGUCCUCUGCAGCACCUUCCUGGCCUUUUGUCAUGUGGAUGCUGCACAGCUGACUUCACCUGGUCUUGUUGAUGGЖCAGUUUGUUUCAUGAUUUCUCUUAUGAAUAAAACCUUCACAAGCCAUCCUUCUCUAUGAGAGUGUUUGCUUGGCACGCAUUCCUGAGCACUGCCCCUGAGCAGACCGCCUAUGAUCUCUAAGCUUGGGUUCCGUGUUGCCAAAGCGCCUUCUGGUGGЖCUCAGCCCAGGAGGAGCCCAUGUGCCCCACGCUGGCCAUGGCUGUGGUCAUGGGCUGACUGCAUGUGUCUGACUGGGCCUUCGUCUGAGACUGCAGUGAUUUCGCUCCUCCUCUCAGAUCCGCAAGGAUGCUCUCCGGGCGCUCAACUUUGCGUACACGGUGAGCACACAGCGAUCUACCAUCUUUCCCCUGGAUGGUGUGGUGCGCAUGCUGCUGUUCAGAGACUGUGAAGAGGCCACCGACUUCCUCACCUGCCACGGCCUCACCGUUUCCGACGGCUGUGUGGAGCUGAACCGGUCUGCAUUCCUGGAACCAGAGGGAUUAUCCAAGACCAGGAAGUCGGUGUUUAUUACUAGGAAGCUGACGGUGUCAGUCGGGGAAAUUGUGAACGGAGGGCCAUUGCCCCCCGUCCCUCGUCAUACCCCUGUGUGCAGCUUCAACUCCCAGAACAAGUACAUCGGGGAGAGCCUGGCCGCGGAGCUGCCCGUCAGCACCCAGAGACCCGGCUCCGACACAGUGGGCGGAGGGAGAGGAGAGGAGUGUGGUGUAGAGCCGGAUGCACCCCUGUCCAGUCUCCCACAGUCUCUACCAGCCCCUGCGCCCUCACCAGUGCCUCUGCCUCCUGUCCUGGCACUGACCCCGUCUGUGGCGCCCAGCCUCUUCCAGCUGUCUGUGCAGCCUGAЖCCACCGCCUCCAGAGCCCGUGCCCAUGUACUCUGACGAGGACCUGGCGCAGGUGGUGGACGAGCUCAUCCAGGAGGCCCUGCAGAGGGACUGUGAGGAAGUUGGCUCUGCGGGUGCUGCCUACGCAGCUGCCGCCCUGGGUGUUUCUAAUGCUGCUAUGGAGGAUUUGUUAACAGCUGCAACCACGGGCAUUUUGAGGCACAUUGCAGCUGAAGAAGUGUCUAAGGAAAGAGAGCGAAGGGAGCAGGAGAGGCAGCGGGCUGAAGAGGAAAGGUUGAAACAAGAGAGAGAGCUGGUGUUAAGUGAGCUGAGCCAGGGCCUGGCCGUGGAGCUGAUGGAACGCGUGAUGAUGGAGUUUGUGAGGGAAACCUGCUCCCAGGAGUUGAAGAAUGCAGUAGAGACAGACCAGAGGGUCCGUGUGGCCCGUUGCUGUGAGGAUGUCUGUGCCCACUUAGUGGACUUGUUUCUCGUGGAGGAAAUCUUCCAGACUGCAAAGGAGЖCCCUCCAGGAGCUUCAGUGCUUCUGCAAGUAUCUACAGCGGUGGAGGGAAGCUGUCACAGCCCGCAAGAAACUGAGGCGCCAAAUGCGGGCUUUCCCUGCUGCGCCCUGCUGCGUGGACGUGAGCGACCGGCUGAGGGCGCUGGCGCCCAGCGCAGAGUGCCCCAUUGCUGAAGAGAACCUGGCCAGGGGCCUCCUGGACCUGGGCCAUGCAGGGAGAUUGGGCAUCUCCUGCACCAGGUUAAGGCGGCUCAGAAACAAGACAGCUCACCAGAUGAAGGUUCAGCACUUCUACCAGCAGCUGCUGAGUGAUGUGGCAUGGGCGUCUCUGGACCUGCCAUCCCUCGUGGCUGAGCACCPCCCUGGGAGGCAGGAGCAUGUGUUUUGGAAGCUGGUGCUGGUGUUGCCGGAUGUAGAGGAGCAGUCCCCAGAGAGUUGUGGCAGAAUUCUAGCAAAUUGGUUAAAAGUCAAGUUCAUGGGAGAUGAAGGCUCAGUGGAUGACACAPCCAGCGAUGCUGGUGGGAUUCAGACGCUUUCGCUUUUCAACUCACUUAGCAGCAAAGGGGAUCAGAUGAUUUCUGUUAACGUGUGUAUAAAGGUGGCCCAUGGCGCCCUCAGUGAUGGUGCCAUUGAUGCUGUGGAGACACAGAAGGACCUCCUGGGAGCCAGUGGGCUCAUGCUGCUGCUUCCCCCCAAAAUGAAGAGUGAGGACAUGGCAGAGGAGGACGUGUACUGGCUGUCGGCCUUGCUGCAGCUCAAGCAGCUCCUGCAGGCUAAGCCCUUCCAGCCUGCGCUUCCUCUGGUGGUUCUUGUGCCUAGCCCAGGAGGGGACGCCGUUGAGAAGGAAGUAGAAGAUGGUUUGUGAAGGAAGUCUCGUUUAUGAAGCAGCAUUGUUUAAUAAAUGGGUGGAGGCCCUGGGUCUGAGGAUGGUCCAGUAGUGUUGGGGUCAGGAAUCACUGAGACAGCAACCCCUGUGGUGACUGUCCACUGCAGGACUGGGUGGGGUCAGCACAGUGAGAUAUGUUAGCAGGUGUGCUGACAGCAGAAUGCAAGUGACCUUCAUCUAUGUCUGUCUUAAAGGUCUGAUGCUACAGGACUUGGUUUCAGCUAAGCUGAUUUCAGAUUACACUGUUACCGAGAUCCCUGAUACCAUUAAUGAUCUACAAGGUUCAACUAAGGUUUUGCAAGCAGUGCAGUGGCUGGUUUCCCACUGCCCCCAUUCCCUUGACCUCUGCUGCCAGACUCUCAUUCAGUACGUCGAAGACGGGAUUGGCCAUGAGUUUAGUGGCCGCUUUUUCCAUGACAGAAGAGAGAGGCGUCUGGGCGGUCUUGCUUCUCAGGAGCCUGGCGCCAUCAUUGAGCUGUUUAACAGUGUGCUGCAGUUCCUGGCUUCUGUGGUGUCCUCUGAACAGCUGUGUGACCUGUCCUGGCCUGUCACUGAGUUUGCUGAGGCAGGGGGCAGCCGGCUGCUUCCUCACCUGCACUGGAAUGCCCCAGAGCACCUGGCCUGGCUGAAGCAGGCUGUGCUCGGGUUCCAGCUUCCGCAGAUGGACCUUCCACCCCUGGGGGCCCCCUGGCUCCCCGUGUGCUCCAUGGUUGUCCAGUACGCCUCCCAGAUCCCCAGCUCACGCCAGACACAGCCUGUCCUCCAGUCCCAGGUGGAGAACCUGCUCCACAGAACCUACUGUAGGUGGAAGAGCAAGAGUCCCUCCCCAGUCCAUGGGGCAGGCCCCUCGGUCAUGGAGAUCCCAUGGGAUGAUCUUAUCGCCUUGUGUAUCAACCACAAGCUGAGAGACUGGACGCCCCCCCGGCUUCCUGUUACAUCAGAGGCGCUGAGUGAAGAUGGUCAGAUAUGUGUGUAUUUUUUUAAAAACGAUUUGAAAAAAUAUGAUGUUCCUUUGUCGUGGGAACAAGCCAGGUUGCAGACGCAGAAGGAGCUACAGCUGAGAGAGGGACGUUUGGCAAUAAAGCCUUUUCAPCCUUCUGCAAACAAUUUUCCCAUACCAUUGCUUCACAUGCACCGUAACUGGAAGAGGAGCACAGAGUGUGCUCAAGAGGGGAGGAUUCCCAGCACAGAGGAUCUGAUGCGAGGAGCUUCUGCUGAGGAGCUCUUGGCGCAGUGUUUGUCGAGCAGUCUGCUGCUGGAGAAAGAAGAGAACAAGAGGUUUGAAGAUCAGCUUCAGCAAUGGUUGUCUGAAGACUCAGGAGCAUUUACGGAUUUAЖCUUCCCUUCCCCUCUAUCUUCCUCAGACUCUAGUGUCUCUUUCUCACACUAUUGAACCUGUGAUGAAAACAUCUGUAACUЖCUAGCCCACAGAGUGACAUGAUGAGGGAGCAACUGCAGCUGUCAGAGGCGACAGGAACGUGUCUAGGCGAACGACUAAAGCACCUGGЖAAGGCUGAUCCGGAGUUCAAGGGAAGAGGAAGUUGCCUCUGAGCUCCAUCUCUCUGCGCUGCUAGACAUGGUGGЖCAUUUGAGCAGCCUGЖCCUGUGGGGAGGGGGUCUCUCCCGAAGAGUUUCUGUUUUUACUCAAAAUAAUGUUAUUCUCAGAUGCUUGAUGCACUGUUGGAAAUGUGAUUAAUUUAAUCAUGCAGAUAAACCAUUUAAAUGUCA
2185   mRNA  unknown    Homo sapiens    ACCCGCUCCCUCCCGCCGUCGGCUGACGUGGAGGGCCGGAGGUGGCGGCGGCGGCGGCGGCGGCUGCUGCUGCUGCUGCCCGCGUCCGAGGCUCGCGGGCGGCGGGCCCGGGUGAGUGCACACCCGGCGCGCUGCCGGGCUCCCGGAUGUGUCACCUUGUCCCGCUGCAGCCGAGAUGCCGGGGGAGCGGGGCCUUCCACACCCCCUCCGUGGGUGUGUGACUUGUGCACCAUGGACAAUUUUGCUGAGGGAGAUUUCACUGUGGCGGAUUAUGCCUUGUUAGAAGAUUGCCCUCACGUGGAUGAUUGUGUCUUUGCUGCUGAAUUUAUGAGCAAUGAUUAUGUUCGUGUGACUCAGCUUUACUGUGAUGGGGUGGGUGUGCAAUAUAAAGAUUAUAUCCAAAGUGAGAGGAAUUUGGAAUUUGACAUCUGCAGUAUAUGGUGUAGUAAACCAAUUUCUGUCCUGCAAGAUUAUUGCGAUGCCAUUAAAAUAAACAUCUUCUGGCCACUUCUGUUUCAACAUCAAAACAGUUCCGUAAUAUCACGAUUGCAUCCCUGUGUGGACGCCAACAAUUCACGUGCUUCUGAGAUAAAUUUGAAGAAACUACAACAUCUUGAGUUGAUGGAAGAUAUUGUGGAUUUGGCAAAGAAAGUUGCUAAUGAUUCAUUCCUUAUUGGAGGCUUAUUGAGAAUUGGUUGUAAAAUAGAAAAUAAAAUCUUGGCAAUGGAAGAAGCUCUGAAUUGGAUAAAAUAUGCAGGCGAUGUAACAAUUCUAACUAAAUUAGGAUCAAUUGACAAUUGUUGGCCUAUGUUAAGUAUUUUCUUUACUGAAUACAAGUACCACAUAACUAAAAUUGUAAUGGAAGACUGCAAUUUGCUUGAAGAACUUAAAACUCAAAGUUGUAUGGAUUGUAUAGAGGAAGGAGAACUAAUGAAAAUGAAAGGAAAUGAAGAGUUUUCCAAAGAAAGAUUUGAUAUAGCUAUUAUCUAUUACACCAGAGCCAUUGAAUAUAGACCUGAAAACUACCUUCUUUAUGGUAACCGAGCUCUUUGUUUUCUUCGUACUGGACAGUUUAGAAAUGCACUCGGUGAUGGAAAGAGAGCCACUAUUCUGAAGAACACUUGGCCAAAGGGUCAUUAUCGUUAUUGUGAUGCUCUUUCUAUGCUGGGGGAAUAUGACUGGGCCCUGCAAGCAAACAUAAAAGCUCAAAAACUCUGUAAAAAUGACCCUGAGGGAAUCAAGGAUCUAAUUCAGCAGCAUGUAAAGUUACAAAAACAAAUAGAAGACCUACAAGGUCGAACAGCAAAUAAGGAUCCAAUUAAAGCCUUUUAUGAAAACAGGGCCUACACACCUAGGAGUUUAUCAGCACCUAUAUUUACUACUUCACUUAACUUUGUGGAGAAGGAAAGAGAUUUCAGAAAAAUUAAUCACGAAAUGGCCAACGGUGGUAAUCAGAAUCUAAAGGUGGCGGAUGAGGCGUUGAAGGUAGAUGAUUGUGACUGUCAUCCUGAAUUUUCACCACCAUCAAGUCAGCCUCCAAAACAUAAAGGAAAACAAAAAUCUCGAAACAAUGAAUCAGAAAAGUUCAGUUCUAGUUCACCAUUGACUUUACCAGCAGAUUUGAAGAACAUCUUGGAGAAACAGUUUUCUAAAUCUUCCAGAGCUGCACACCAGGAUUUUGCUAAUAUAAUGAAAAUGCUGAGAAGCUUAAUUCAAGAUGGCUAUAUGGCCUUAUUGGAGCAGCGUUGCCGCAGCGCUGCACAGGCCUUUACAGAGUUGCUGAACGGUUUAGAUCCUCAAAAAAUAAAGCAAUUGAACCUGGCCAUGAUUAACUAUGUUUUGGUCGUCUAUGGACUUGCCAUUUCUCUCCUUGGAAUAGGACAGCCUGAGGAAUUAUCUGAAGCCGAAAACCAGUUUAAGAGGAUUAUUGAACACUACCCCAGUGAGGGCCUUGAUUGCUUGGCCUACUGUGGAAUUGGAAAAGUAUAUUUGAAAAAAAACAGAUUUCUAGAAGCUCUCAAUCACUUUGAGAAAGCAAGAACCUUGAUUUAUCGUCUUCCUGGAGUGUUAACUUGGCCCACGAGUAAUGUGAUUAUUGAAGAGUCUCAGCCACAAAAAAUAAAGAUGCUGUUAGAGAAAUUUGUUGAAGAAUGCAAGUUCCCUCCAGUGCCAGAUGCCAUUUGUUGCUAUCAGAAGUGCCAUGGAUAUUCUAAGAUCCAGAUAUACAUAACUGAUCCAGACUUUAAGGGUUUUAUACGCAUCAGCUGUUGCCAGUACUGUAAAAUAGAAUUUCACAUGAAUUGCUGGAAGAAGUUAAAAACUACAACCUUUAAUGAUAAAAUUGACAAGGAUUUUCUACAAGGAAUAUGUCUUACCCCUGACUGUGAAGGUGUCAUUUCUAAGAUUAUCAUCUUCAGCAGUGGUGGUGAAGUUAAAUGUGAAUUUGAACACAAGGUCAUAAAAGAAAAGGUUCCUCCAAGACCUAUUCUGAAACAGAAAUGUUCUAGCCUAGAGAAACUAAGACUGAAAGAAGACAAAAAAUUGAAGAGAAAGAUCCAAAAAAAAGAAGCAAAAAAGUUAGCACAAGAAAGAAUGGAGGAGGACUUAAGAGAAAGUAAUCCACCCAAAAAUGAAGAGCAGAAAGAAACUGUAGACAAUGUUCAGCGUUGUCAGUUCCUUGAUGACAGAAUUCUACAGUGUAUAAAGCAGUAUGCUGACAAGAUUAAAUCCGGCAUACAGAAUACAGCCAUGCUUCUCAAAGAAUUGCUUUCUUGGAAAGUUUUGAGCACAGAAGACUAUACAACCUGUUUUUCUAGCAGAAAUUUUCUAAAUGAAGCAGUGGЖCUAUGUUAUUCGCCACUUGAUUCAAGAAAAUAACAGAGUAAAGACAAGAAUAUUUCUGCAUGUUUUGAGUGAGCUUAAAGAAGUGGAGCCCAAAUUAGCCGCCUGGAUCCAAAAACUUAAUAGCUUUGGCUUAGAUGCCACAGGAACUUUCUUUUCUCGUUAUGGAGCAUCUCUUAAACUGCUUGAUUUUAGUAUCAUGACUUUCCUCUGGAAUGAGAAAUAUGGUCACAAACUAGЖCUCUAUAGAAGGAAAGCAACUUGAUUAUUUCUCUGAGCCAGCAUCAUUGAAGGAAGCCCGUUGUUUAAUAUGGCUGCUAGAAGAACACAGAGACAAGUUCCCAGCAUUGCAUAGUGCUUUAGAUGAAUUCUUUGAUAUAAUGGACAGCCGCUGUACUGUGUUAAGGAAACAAGAUAGUGGUGAAGCACCGUUUAGUUCAACCAAGGUGAAAAACAAAAGCAAGAAAAAGAAGCCAAAGGAUUCAAAGCCUAUGUUAGUUGGGUCUGGAACAACUUCAGUAACUUCAAAUAAUGAGAUCAUCACUUCAAGUGAAGACCAUAGCAAUCGAAAUUCAGAUUCUGCAGGCCCAUUUGCAGUGCCUGACCAUCUUCGGCAAGAUGUAGAAGAAUUCGAAGCUCUCUAUGACCAACACAGUAACGAAUAUGUUGUCCGCAAUAAGAAGCUAUGGGACAUGAACCCAAAACAAAAAUGUUCAACUCUAUAUGAUUACUUCUCUCAGUUUUUGGAGGAACAUGGUCCCUUGGЖCAUGAGUAACAAGAUGUUCUCUGCAGAAUAUGAGUUUUUCCCAGAAGAAACUCGACAGAUACUAGAAAAAGCAGGAGGUUUAAAACCUUUUCUCUUGGGAUGCCCUCGUUUUGUUGUGAUUGACAACUGUAUUGCACUGAAGAAGGUUGCAUCACGGCUCAAGAAAAAAAGGAAGAAGAAAAACAUUAAAACAAAAGUAGAAGAAAUUUCAAAAGCAGGGGAGUAUGUACGAGUUAAACUACAACUGAAUCCAGCUGCUAGGGAAUUUAAACCAGAUGUAAAGUCUAAACCAGUGUCAGAUUCAUCUUCAGCACCAGCUUUUGAAAAUGUGAAACCCAAACCUGUGUCUGCAAAUUCUCCCAAGCCAGCUUGUGAAGAUGUGAAGGCCAAACCAGUAUCCGACAAUUCUUCUAGACAAGUUUCUGAGGAUGGGCAACCCAAAGGGGUCUCUUCUAAUUCUCCUAAACCAGGCUCUGAGGAUGCAAAUUACAAGCGAGUCUCCUGUAAUUCCCCCAAACCGGUUCUUGAGGAUGUGAAACCAACUUAUUGGGCUCAAUCCCAUUUGGUCACAGGAUACUGUACGUAUCUUCCUUUCCAGAGAUUUGAUAUCACCCAGACACCGCCAGCAUACЖUAAACGUGUUACCAGGUUUGCCCCAGUACACCAGCAUAUAUACACCCUUGGCCAGCCUUUCUCCUGAAUAUCAGCUACCAAGAUCAGUACCAGUGGUGCCGUCUUUUGUAGCCAAUGЖCAGAGCAGAUAAAAAUGCUGCUGCCUAUUUUGAGGGUCAUCAUUUGAAUGCUGAGAAUGUUGCUGGUCACCAGAUUGCCUCUGAAACACAGAUCCUUGAGGGCUCUUUGGGAAUAUCUGUAAAGUCACACUGCAGCACAGGUGAUGCUCAUACAGUCCUGAGUGAGUCUAACAGAAAUGAUGAGCACUGUGGAAAUUCUAACAACAAAUGUGAAGUAAUUCCAGAAAGCACCAGUGCAGUAACAAACAUUCCACACGUGCAGAUGGUUGCCAUACAGGUAUCUUGGAACAUAAUACACCAAGAAGUCAAUACUGAGCCAUAUAAUCCUUUUGAGGAACGACAAGGGGAAAUUUCACGGAUUGAAAAGGAGCACCAAGUAUUACAAGACCAACUUCAAGAAGUGUAUGAAAAUUAUGAGCAGAUAAAACUUAAGGGCUUAGAAGAGACCAGGGACCUGGAAGAGAAGUUGAAAAGGCACUUAGAAGAAAACAAGAUCUCAAAGACGGAAUUAGAUUGGUUCCUUCAAGAUUUGGAAAGAGAAAUUAAAAAAUGGCAACAGGAAAAAAAAGAAAUCCAAGAAAGACUAAAAUCACUGAAGAAGAAAAUUAAAAAGGUUUCAAAUGCCAGUGAAAUGUAUACCCAGAAAAAUGAUGGAAAGGAAAAGGAACAUGAAUUACAUCUGGAUCAGUCCCUUGAAAUCAGCAACACACUUACAAAUGAGAAAAUGAAAAUAGAAGAGUAUAUAAAGAAAGGGAAAGAGGAUUAUGAAGAGAGUCAUCAGAGAGCUGUGGCUGCAGAGGUAUCCGUACUUGAAAACUGGAAGGAGAGUGAAGUGUAUAAGCUACAGAUCAUGGAGUCACAAGCAGAAGCCUUUCUGAAGAAGCUGGGGCUGAUUAGCCGUGAUCCUGCAGCAUAUCCUGACAUGGAGUCUGAUAUACGUUCAUGGGAAUUGUUUCUUUCUAAUGUUACAAAAGAAAUUGAGAAAGCAAAGUCUCAGUUUGAAGAACAAAUUAAGGCAAUUAAAAAUGGUUCUCGGCUCAGUGAACUUUCUAAAGUGCAGAUUUCUGAGCUUUCAUUUCCUGCCUGUAACACGGUUCAUCCCGAGUUACUCCCUGAGUCUUCAGGCGACGAUGGCCAAGGGCUUGUGACUUCUGCAAGCGACGUGACUGGAAACCACGCAGCACUUCACAGGGAUCCUAGUGUGUUCUCUGCUGGUGAUUCCCCAGGGGAGGCUCCUUCUGCGCUGUUGCCAGGGCCACCCCCUGGUCAGCCUGAAGCCACUCAGCUGACAGGGCCAAAACGGGCUGGCCAGGCAGCUCUGUCAGAACGAAGCCCUGUGGCUGAUCGGAAGCAGCCUGUUCCUCCAGGACGUGCUGCGCGUUCAAGCCAGUCUCCAAAAAAGCCGUUCAAUAGUAUUAUUGAGCACCUGUCAGUGGUAUUCCCAUGUUACAACAGCACUGAGCUUGCUGGUUUUAUUAAAAAAGUGCGAAGCAAAAACAAGAACUCACUCUCAGGAUUGAGUAUUGAUGAAAUUGUCCAAAGAGUGACAGAACACAUUCUAGAUGAACAGAAAAAGAAAAAGCCAAACCCAGGAAAGGACAAGAGGACUUAUGAGCCCAGCUCUGCCACCCCCGUGACCAGGUCCUCCCAGGGCUCACCCUCGGUGGUUGUUGCACCAUCACCCAAAACCAAGGGGCAGAAAGCAGAAGAUGUCCCUGUGAGGAUUGCACUGGGUGCAAGUUCCUGUGAAAUAUGCCACGAGGUGUUCAAAUCAAAAAACGUGCGUGUGCUCAAAUGUGGGCACAAGUAUCACAAAGGGUGCUPUAAGCAGUGGCUUAAAGGGCAGAGCGCUUGCCCGGCCUGCCAGGGUCGUGAUCUCCUGACAGAAGAGUCACCUUCUGGAAGAGGCUGGCCCAGUCAGAAUCAGGAGCUGCCUUCCUGCUCUUCUAGGUAGUCACACUUCACUAAAGUGUCAPCCACCAGUGUGUUGAAUCCGAAGAAUGACAAUUUUCUACCACUGGUGUAAAAAACAAACAUUUGAAGACCCUUGUGCAUUGUGUGUCACAAAGCUAAAUACAUGGAAAUCGUUAAUAUCGCUGAUAUUAAGUAAUUUCCCCACUCUGAGUGAAUACUUUGAUGAUUGCCAACAGUGGCUAAUAAAAUGACGGCUACCACACUCAUGGGUCACUGGGGCUGCGCAGGGCUCUUUGAGGUGGGUGGCUUCUUUUGGAAAGUACUAUGAACGUCUCGAAGCAGUAUUCUAGUGAUAAGAAUUCUUAЖCAUAGCCAAGCGCCCCACGUUUGUUCCCCACGUUUGUUCCCCUUUUCUGUUUGAAAAACCUGUUCUGGUAGCUCCACAAGAGAGAUGAUACUGACUUUUUAAAUUUUUUACAAGAGUCUGUAUUCCUGAUAUGCCUAUAUUUUUCCUCAAAGAUUCUGCAUUUUAAGGAUGGGCAUAAGCAAACUAUAUUUUAAUAAUUUAUAGUUAAUGUUAAAAUAUUGGCUGAUUUAGACCAAAAGAUUCAAAUCUCCUCUUUGUGAAAUCCCAUCUGCAUUUGAUUUUUUAUUAUUUUAUGUUCCCCCGUUAGAUUGUUUUAAGUGUUUGCUUUUCAUCUUUUAUAGAUGUAAUCUGAUUUUCAAAAAUCAUUAACACUUUUUAAUUAGUAUCGACUAAGACUUUUUCCCCCUGGAAUCGAGGCUGUGUGUCCGUCAPCCCAGCCCCCGGUUGGAGCCUGCUCUUUGAACUCCGCUGCCUUCCUUAGCAGCUUCUGUCCUCUUCUGUGAGUCAGUCAGCGAGUGCUUGGGAUCCGCAPCCAGCCGUGCUGAGCACACAACAGGCUGUGUGUGGAAAUGGCCACCACCAUUCUCCUUCCCCACCCCACCACAAAAAGAGAAGCUGUGUCUPUAGACAACCCUGAGGUAUCUGUGUUACAAUCGUUCUGUGUUUGAUAUUUGUGUAAAGUAUGCAUGCAGUCUUGUACUGUGACCUAAGAACAAAACUGUAACUGCAUUAGAAACCAUGAAAAAAUUAGAUAUUGUUUUGUGACUUUUAGACAGUGGUAAAUAUAGAЖCCAUGAAUUCUGGUCACAUUCCAUUUCUCUCCAACAUGAAGGAUCAAAAAAUGUUUUUCAAUGUGUUCUUUGUUCCACUGGAAACUUAGAGUCAUGAGUUUAUGAGCUGAUUUGGUCACCUUCCUCUGCCUUUGUUCACUGUGAGUUCUGAUGUCUUAGUGACUUAGUUCUUAGAAGCUCACGCCUUAGUUUGAAACAGAUUCUCCACGGUGGUCCCCAAAACACUGUCUGCAUAUCCAUAAGAAUUGAGCGCUAUGGGUGUUAACGUGCAUGAGGAUCAGUUUGCAGCAGCAAGUACAAAAGGAGAAGAGGAACAPCCGUUGAAUGAGUGUGUUUUGUACAUAЖCUUCAGAUACUUGUGAACAUGCCUUAUAUUUGUCCAACAACUGUCAGAAUAAAGAACAUUCUAAAAUGAGAA
2186   lncRNA  unknown    Homo sapiens    ACCCGGAAGCGGCUCGGGCGGGCGCAGGGUCGCGGGUGUAGGGUGGCGGCGCUCCGCCUUUCACCGACGCACCUGGGAGAAACAGACCGGAGGACGCGGGUGGCGCGGAGCACGAGAAACAACGAGUUUCUGUCUAGAUCGUGGGGGACCCAAGCCCGGGGUUGCGUCCAAGGUCGGGGAUGGAGAGGACGCGACCCCCGCGGCAGUCGAGAUGGCCUUUUUAAAAUUCUAUAUUUGAGAAGGAGUCUCGCGCUGUCGCCCAGGCUGGAGCGCAAUGGCGCGAAAUCGGCUCAUUGCAGCCUCGACGUCCAGGЖCUCGAGCGAUCCUCCCGCCUCAGCCUCUCGAGAAGGAGUGGCCAGAAGGCUCCUCUCCAGGCCUCACAGAGGGAAACACUGGUCUAGUGAGAGACCUGCGUCCUGCCCAUCAGGACCGAAGCGGCACGCGUGAGGAUCCUGCAGGCCAAGAGACAACAGCGAUUACAAACCCCAGUCCCAGCCUUGCAGCUGACCUUGCAGGUGACGCCCUGCCUGGGUGUCUCGGUGCAGCUGCACAUCAGGGGCCUCUGCUGGACAGAAGCUCUGAGUCCACACUUGGCCCCCAGGCGCUGGAGCUGGAGCACUGCCACGAGAGGGGAUGCUGCCGUGGCUGCGCCAGCUUCAGCCCUUUCCCUGCACCGAGAUGUCCCAGUGAGCGGCUGGGUGCUCACAGUUCCCGUUGGGCCAUCAGAGGAAGAUCAAAGAUCAACCCUCCCCCAUGGGCUCCUGCCUGCCUGCCAGGUGGGUUUCCUGCCUGUCUCCCAGCCCCCAAGAGCUCCACGGЖCUCUGCCAGUAGCUGCUUUAAAGGAGGGAGGGAGUUUUCUGAUCCUCUGGЖCAUCCCUGGGGCUGGAGCUAUGGGCUGAGCCAUAGGAGAGCCAGCCCAGCUCCCUGGGGGUUGGGGGCUGUGUCUCUCCAUCCCUUAGUAAAAAUACAGCAACUCCCAACUCAAAGUCAAGGGUCAAUAGUCACAAAACCUUGGUGCAGCCUGGAACAGGCAUAGAGGUCUCAGCAGAGCUGCCCAAGGACAAGACCUAAGAUCCAGCAGGGAACUAUGUAGUCACCCCGAGAGGCCCAGCUCUCUCCGUGAGCUCUGGGCCUAGGGUGGGGGUGGUUGUUGGUUCUGCGCGCACUGUUCCCCCUACAUGAUGGGUCCAUCCCAGUUGGCUUCUCUCACUCGCUUCCUCCUGUGGAGAAGCCUGUCCAGGUGUCACUGCCUCCAGGAAGCUGUCUCUGAUUUCUCCAGUUGAACAGUGAGAUUUGCCACACCUCACAUGCAUCGCUCUUGUCCCUGGAAUUGUAACCAUAGGUUUUCCUGUCUCCUGGAGGACAAGGAUGAGGGCUUUCCACUUGAGUCUCCCUGGUGGAGCCCAGCUCCUGACAUACCUGGUAAAAGUUCUCAAGAGAAGAACAUGGAGGAGGAAUGUGGAUAACAACCCUGGCUGCCUGUGUGUUCCAAGCUAGGAAGAUGUAAUGUCCCCACAAACGGGGUAAAUGGCUUGCCUGCGUCACAGCUGUCUCAAGCCCAGGCCCUGGGUGCCAGCCCAAGCCCAAGGЖCUAGGUCCAGAGCCACACAGCGCCAGGCCACAUCCGCCUCACCUGGGЖCCUUUUGUGGGGUACAGUCUCCGGCCCCACCCAGACCUGCUGAAGGAGAGACCCCAUGGCAAGGЖCUCAGCCACCUGCAGUUUCAUAAGCCCCCAGUGGGUUCCUAGGCAUGAAGACCACCGGUUAGAGGCUGAЖCUGGCAGGAACCUGUCUCCAGCCCCUUCUCACCCCAGCCGGGCCCUGCCUCAGAGGCAGCACCCAGGЖCGUGGCCAUGACCCGUGGЖCUCCACUCAAUCCCUCUUCUCCAGGAGCCAUGCAAAGUGUCAGCCAGCCAGGCCCCUGGAAGGCAGUCAUCACCUCUUAAGGCAUUGCGGGUGUCGGUCCUGCAACUGCCAGGUGCAGCACACGACCCAUGUCCGGUGUUCGAUAGCAGGGAGCCAUGACCUGGCAACGAUUCCACGCUCAAAGGGGCACCCGGGGGGCCCUGGGUCGGGGCGGAUCAGCUUUCCCUGGGCACAUCUGCCUCAUUCCAGAUCUCCAGGGCUCAUGUCUGUGACAGGGAGGGAAGGCUCUGCCCUGGCCUUCCGUCAGCUCUGCCAGUGCAGGCUGGGCAGCCUGGGCUUUAGAGCUGGCUUCUGCCCACACUUUCUCCGUGAAAGGAAAACAACUAUGAGUCUGCCAAACGCAUCUCAGAUGCGUUUUAAAAAAUUCUGGUCCCCGCUCUCUGUCCCAUCAUCUGCCUCGGGGЖCUUCCUCUCUCCGUGGUUCUCACCCCAUACUCUGUCACUGCCACAUUUUCACCUGGGCCUGGCCUUUGUCUCCACCUGAA
2187   mRNA  unknown    Homo sapiens    ACGAGAGGGCGCAGCGCGGCGCGGCAGGGAUUCGCGGGCGACCACCCGGCGCAGGAGCGGCCGCGUUUCGGCCUCAGAAUCCAUUGAAGACUUGAACAAGUGGGCCCUAUUUCUUGUGUCUCCUUUUAUACUUGAAGCAGAACACAUAGCAUUUGUGACGGAGAGCAUUUGGGUACAAAGUGAGAAUUUACAGAGAUCAUCCUCUUCAGAAACAGUUCGGUUUUUGCCCACUAGGGAUGAUGUGGUUUCUCAUGAGGUUACUUGCUCUAAAGGACUUUAUAUUUUGGAACCAUAAGAGCACCCUUGUGGCCCAGGCACUUUAUGGAUGAUCCCUUUUAGUGCUCCCAGUAACCUUCCAAGAUUGUCAAGUGGUCAGACUGUUGUUUGCCAUUAGCUUGCAGACCUGGGGAUCCUUAUCGGCUAAUUGCUGAAGCAAGUGUGGACAACUUCAGCAAGCUGGGGGUGGCGUUCAUGGAAGAUAGACUCCACAUGGAUAAUGGACUGGUACCCCAAAAGAUUGUGUCGGUGCACUUGCAGGACUCCACUCUGAAGGAAGUUAAGGAUCAGGUCUCAAACAAGCAAGCCCAGAUCCUAGAGCCGAAGCCUGAACCUUCUCUUGAGAUUAAGCCUGAGCAGGACGGUAUGGAGCAUGUUGGCAGAGAUGACCCAAAGGCUCUUGGUGAAGAACCCAAACAAAGGAGAGGCAGUGCCUCUGGGAGUGAGCCUGCUGGGGЖCAGUGACAGGGGAGGGGGCCCCGUUGAGCAUUAUCACCUCCAUCUGUCUAGUUGCCACGAGUGUCUGGAACUUGAGAACAGCACCAUUGAGUCAGUCAAGUUUGCGUCUGCCGAGAACAUUCCAGACCUUCCCUACGAUUAUAGCAGCAGUUUGGAGAGUGUUGCUGAUGAGACCUCCCCCGAAAGAGAAGGGAGGAGAGUCAACCUCACGGGAAAGGCACCCAACAUCCUCCUCUAUGUGGGCUCCGACUCCCAGGAAGCCCUCGGCCGGUUCCACGAGGUCCGGUCUGUGCUGGCCGACUGUGUGGЖCAUUGЖCAGUUAUAUUCUCUACCACCUGCUGGAGGЖCAGUGCUCUCAGAGACCCGUGGACGGACAACUGUCUGCUGUUGGUCAUUGCUACCAGGGAGUCCAUUCCCGAAGACCUGUACCAGAAGUUCAUGGCCUAUCUUUCUCAGGGAGGGAAGGUGUUGGGCCUGUCUUCAUCCUUCACCUUUGGUGGCUUUCAGGUGACAAGCAAGGGUGCACUGCACAAGACAGUCCAGAЖCUUGGUUUUCUCCAAGGCUGACCAGAGCGAGGUGAAGCUCAGCGUCUUGAGCAGUGGCUGCAGGUACCAGGAAGGCCCCGUCCGGCUCAGCCCCGGCAGGCUCCAGGGCCACCUGGAGAAUGAGGACAAGGACAGGAUGAUUGUGCAUGUGCCUUUUGGAACUCGCGGGGGAGAAGCUGUUCUUUGCCAGGUGCACUUAGAACUACCUCCCAGCUCCAACAUAGUGCAAACUCCAGAAGAUUUUAACUUGCUCAAGUCAAGCAAUUUUAGAAGAUACGAAGUCCUUAGAGAGAUUCUGACAACCCUUGGCCUCAGCUGUGACAUGAAACAAGUUCCUGCCUUAACUCCUCUUUACUUGCUGUCAGCUGCGGAGGAAAUCAGGGAUCCUCUUAUGCAGUGGCUUGGGAAACAUGUGGACUCCGAGGGAGAAAUAAAAUCCGGCCAGCUCUCUCUUAGAUUUGUUUCAUCCUACGUGUCUGAAGUAGAAAUAACCCCAUCUUGUAUACCUGUGGUGACCAACAUGGAGGCCUUCUCAUCAGAACAUUUCAACUUAGAGAUCUAUCGCCAAAAUCUGCAGACCAAGCAGUUGGGGAAAGUAAUUUUGUUUGCCGAAGUGACCCCCACAACGAUGCGUCUCCUGGAUGGGCUGAUGUUUCAGACACCGCAGGAAAUGGGCUUAAUAGUGAUCGCGGCCCGGCAGACCGAGGGCAAAGGACGGGGAGGGAAUGUGUGGCUGAGCCCUGUGGGAUGUGCUCUUUCUACUCUGCUCAUCUCCAUUCCACUGAGAUCCCAGCUGGGACAGAGGAUCCCGUUUGUCCAGCAUCUGAUGUCCGUGGCUGUCGUGGAAGCAGUGAGGUCCAUUCCCGAGUAUCAGGAUAUCAACUUACGAGUGAAGUGGCCCAACGAUAUUUAUUACAGUGACCUCAUGAAGAUCGGCGGAGUUCUGGUUAACUCAACACUCAUGGGAGAAACAUUUUAUAUACUUAUUGGCUGUGGAUUUAAUGUGACUAACAGUAACCCUACCAUCUGCAUCAACGACCUCAUCACAGAAUACAAUAAACAACACAAGGCAGAACUGAAGCCCUUAAGAGCCGAUUAUCUCAUCGCCAGAGUCGUGACUGUGCUGGAGAAACUGAUCAAAGAGUUUCAGGACAAAGGGCCCAACAGCGUCCUUCCCCUUUAUUACCGAUACUGGGUCCACAGUGGUCAGCAAGUCCAUCUGGGCAGCGCAGAGGGACCAAAGGUGUCCAUCGUUGGCCUGGACGAUUCUGGCUUCCUCCAGGUUCACCAGGAGGGCGGCGAGGUUGUGЖCUGUGCACCCGGACGGCAACUCCUUCGACAUGCUGAGAAACCUCAUCCUCCCCAAACGGCGGUAAUGCCGGGCGUCCCCGAGACGCGGCUGCCUGUCCGUGCCCAUGCAUCUGGAAAUCUAAUUUAGAGUUGUAGGUGAAUUUUCUUUUCCUCCAAUUCAUUUGUUAAGUCUUUGUUCUUUUUCUGUGUUUCUGUUUGUUUUUAGGUUUGUUUUGUUGUCGUUUUCUUUGGUGUUUGAAGAGGCUCUGGGAUAGAUGGUUAAGAAGUAGAAAAUUUAGUUUAGGGAAAGCCCUCCCACAGGUGGGAAAUUGCUCUCCCCUCUGUGGCUUGGЖCUUACGUUUAUUGUCAAGGGGAGUUUUUACAUGGAAAUGACAAUGGGAAAAUUCAGAUAUUUUCUUAGUAGUGCAGACCUUUACCCCUAGUCUAUGAAAAAACAAACCAAAAUAUGCUCUUGCGCCCAGGCCAGUGGUGAGUUAGAGGUAUGCUAUCACUGUUUGUAAGCAUCUGGGGAGGUACUGAACUGUAAGAACAUGCUUGGACACUUAGUCAUUGUUCUGUGUUUUUAUUAAUGAAGAAAAGGGAAGACAGACUUCCAAGAGUUACUGUCCACCCGGUGGUGUGGCCCCAUAGCGAAGUCUAAAUGCCUGUAGAGAUAGAGCUAGCUGGUGUGGUUGCAGUGACCUUGUAGAGGAAAUCAGUUCAUUACUUUGACAUCAUUCAGUGAGCUCUCCUUUCCUAAGGAAGUUUAAAUGUCCUUAGUUAGGGACUGACUUUCUUAAGUAAGUUUAAAUUUACUACAUAUUGUGAAGAGACAGGAUCAAGUUCAGAAUCCUUAAAUGUCUGAUUAGGCAUCACUUGGAUGAGGAGGUGGGCGAUUUGGCUCUGACAGCUGGAGAUGAAGGCACACUCAUACCACAUACAAGGGAGGAUUUGGAGCUUUUAAGCCAGUUUCAGAUUUACUCUGAAAUGUGGAGCAUUCCUGCAAGACUGUGCAGCUCACGGAAUAUAGAAGACAUGGCAUUUUACUCAGAAGUCAUAAGUUUUUGCCCCCCUCAUUUACCUCGUAUUACCAAGAAAGAAAAUGUUAUCGAUACUAAACACCAUCAGUUCAGAGGGAGGAUGUGUGUGUGUGCCCGCAUAUGUGUGUGCGUGCGUGUGUGCGCACAUAGCUUUAAAAGAAGACAUUCAAAAUUUGAUGUGCUACAAGCCUCAUGAAAGAACAAAAGAAAUGAAGCCUUUUGAUAUGCAUUCGCUAUUCCCAGAUGUACGCCAUGCCUUUUCCAUGUCCCUCCUAUCUCUGUUGAACUUAUGAAUCAUACUCAUUACUUUUCAGCUUUUUAAAAGGCCAAUUUUUGUCCAGUUUUCUCUCUUCCAGUCCCAGCUGAAAUUAGUGGAAAGAAAGUUUGAUGGAGCUUUCAGCUUUGAACAAAAUCCCUUCAUUGUAAACUAGCACCAUCUPUAUCCAGGUCUUACCCAGUCAGGCUAAUUCCAGAAACUUGUGGUUUUUAGUAUAGUCUGUCUACCUPUAGCCAGGCACAGGACAGCCCUAUGAAAAAAUACCCAAUAUAUAUUUUUUGGAAAUGAAACAUUAAAAGAACUUAAAAAGUAAUUUUUGGAAAUGAGGCUUCAAUUAGAAUUAUUUUUCUCAAAAAACAAACAAACAAAAAACACAAAAAAAACCACUCUUCUCCAAAUGCCCAAGCCUUCUUUCAAAAUUAGUUAGAAACUUAAGUAAAAUACAAGUCCACACCAUCCCCAAAUUACAAAAUGGЖCUUACCCUUGAGAGGGCAUCUGCAGAAUAUCAUCAGGGACAAAGAUCUCGAGGCUAACGAUGUAGGUUUCAUUUCUCAGACUUUGUAAUAUAAGGCAAGCCCUCUCUCAGAGCUGCCAUCAUCACUUUUUGAAUUUCUUUGGGGGUUAUUUAAUGAAAAACAUGCUAUGUUUUGUUUUAAGCUGAAGUCCUAUUCUGGACACUCUGCUUUGGGAAAAAAUGUUAUCAUUUAAUUUCCUUUCUGCAAAUUAAAACUAAUGAAGUGUGGCCUUGUCAAAGGCUAUGGAGAUGUUCCGGGCAUACUGCUGUGCUCUGUGCUUUCCAGCAGGCGCUCCUCCCUCACGCAGGAGACUCAGUUGUCCUGAGAGAGAUGAAGCAGCCUUGAAGCAGAUGCUGCGUUUUCCAUAAACCUGAUUUUGCCUCACAUGAACCAAAGЖCUCUCAAAACUCCGCUUCUAUAGAAUUAGCUGAAUAAAGGCAUUUUACUGAUAGCUGUUCGUGUUAGCGAAACCUGUCUACCUGCUAUAGCACACUCUCCGAUUUGGGCCAUUUAUGCACCCCGCAACCUGGGAUCUCAAGGAGCUPUAAAGUCUUAAUGGGAACUUGGCAUUUUCCUGAUGAUCUPUAAAAUGUGGUCACUAAACUCAGGAUUGGCGUGUGCUUUUAGAACACUGGAGUAGCCCUUGUUUUAGAGGCUGUGCAUUGAGUAUCGACCGUAUUUUGUAAAAGGCAAGAUAUCCUCCCUUCCAGGCUGGUAACGGGUUUCAAGGGGACUCUUGAGGAAGUGCCCCCUAAAAUAGAACACAGCAAUAACUGGGCUUCCUGUCCCCACCCCCACCCCAGCAGUGCUCUCUGGCACUGGGAACUCUGCUAGGGAGUGGUGGAAGUAGGAAGGAUUUGUGUGCAAAGGAAAAUCGUGGUUGAGUUUCACUGCAGCAGGCUGACGUUGCCUGAUGUGAGAGCAAGUGGCCGACUGGGGUGCGGGUGCACAGGUCGGGGGAGCACAGGCCACAGAGCGCAGCCUCUGGGGGUCCCCCAAGGCACAGCAUAUACAGCAUGGUCGCCCCUUGCCCUGGAGUCUGGGAACAAAGAGAGGAGCCAGCCUCCCCGCACUGCUUCAGAUGGAAAAGGGAGGCAGGGUGGGCUUCCGUUCUCCAGAUCUGUUUGCUCUUAACAGGCAGAACAUGGGAGAAUCCUUAUUCCUGGUUAAUCACUAUGCAUAUUUGAAAUAAAAGAAAGCGUAAGCCUCUGCAAUUUUAACUUCUCAAAGGAUGUCUCUGAAAAGAAUCACUPUAAACCAAUGCCUAUAAAAAGCAAGUCUACCAAAAUAAACUAAGACUUUCUAUGUGGUUUGGGCUCCCUCUUAUUUUUACAAGUUUCAUUUUUAAAAGUAGGCAACUACUUUGGGUUACAGUAUUUUUAUUCAUAUUUAAACAUUUUUACAAAAUAAAUAAAGUGUUUUACAUAGUAAGGAAUAUGUACGUAUUUCCAAGUAUUAAGAAGCCAAGUGUUUUUUUUUUUGACGUAUUAUUGACAAAUGUAUUCAGCGCCAUACACAAGAGAAAUAUUAUUACUCCAAAGAACGAAAGUUAACAAAACUCCAAAGCAAAAACCCUUUUAAUGGAGGUGAGAAAUAAAUUUAAUGUAACAACA
2188   mRNA  unknown    Homo sapiens    ACGAGUCCUCCGCCGCAGUCUCGGCCUGGCCGCGUCUCUGCGCCUGGAGGGUCCGCUUUCGCCGUCCGCUCUCGGCGUCCGCUCCCCGGCUCCGGCGCGCUCCUUGCACUAGAUGGCUGGUCUGCGGUGUUCUUGCCCGGUUAGCGCCGCCGGGUCGCUUCCGGUCUCCGCGGCGCCGGCGGGGACCGGGUAGGUAGAGCACGUGGGGCGACGCUGACCAGUCAGCAAGGCCCGGCCGAACACGCUCUGCAGAACUGGGAAGAAGCGGGUCUCGGGUCUCCCUGUGAUGAUGACAGCCUCUUCAUCUAUGACUGCAGUGCUGCAGAAAAGAAGUCACAAGAAAAUAAAGGGGAGGACGCGCCCUUGGACCAGGGGAGCGGUGCGAUUCUGGCGUCCACCUUCUCCAAGUCUGGCAGCUAUUUUGCUPUAACCGAUGACAGACCGUGGCAAGGAGGUGUACAGCCCUGACUUUCAUAGCCUCGGAGGAGAAGGUCUUGGUGGCCGACAAGUCUGGAGACGUCUACUCCUUUUCGGUGCUGGAGCCACACGGGUGUGGCCGUCUAGAGCUGGGGCACCUGUCUAUGCUGUUAGAUGUGGCUGUGAGUCCUGAUGACCGCUUCAPCCUCACUGCCGACCGGGACGAGAAGAUCCGAGUCAGCUGGGCCGCGGCGCCCCAUAGCAUCGAGUCCUUCUGCUUGGGGCACACAGAGUUUGUGAGCCGUAUCUCCGUGGUGCCAACUCAGCCCGGGCUGCUUCUGUCCUCCUCUGGGGACGGCACCCUGAGGCUCUGGGAGUACAGGAGCGGCCGCCAGCUGCACUGCUGUCACCUGGCCAGUCUGCAGGAGCUGGUGGACCCCCAGGCCCCCCAGAAGUUUGCCGCGUCCAGGAUUGCAUUCUGGUGCCAGGAGAACUGCGUGGCGCUCCUGUGCGACGGCACUCCUGUGGUCUACAUCUUCCAGCUGGACGCCCGCAGACAGCAGUUGGUGUACAGGCAGCAGCUGGCGUUCCAGCACCAAGUGUGGGACGUGGCUUUCGAGGAGЖCCCAGGGGCUGUGGGUGCUCCAGGACUGCCAGGAAGCCCCCCUGGUGCUCUACAGGCCUGUGGGCGACCAGUGGCAGUCUGUUCCUGAGAGCACCGUGUUAAAGAAAGUCUCUGGUGUUCUUCGUGGGAACUGGGCCAUGCUGGAAGGCUCUGCCGGCGCAGACGCCAGCUUCAGCAGUCUCUACAAGGCCACGUUCGACAACGUGACCUCCUACCUGAAGAAGAAAGAGGAGAGACUGCAGCAGCAGCUAGAGAAGAAGCAGCGGCGCCGGAGUCCCCCGCCUGGGCCCGACGGGCAUGCCAAGAAGAUGAGЖCCGGGGGAGGCGACGCUAAGUUGCUGAUCGUGGCGGUCAGUGGUGUCUCUCACCUCAAAUUAGGAAAAGCUUUUUAACUUGUUCCCCUGCAUCCUGGCAUGUCCCUUCAAGAAGGAAAAGGUGACAUCAGUUGUGACCAGCUCAGAGGAUGGGGCUGUCCCCUGGGCUCUAGAAAGAЖCAUUCUGUGUCACCAGCACAGGCUCUUGCUGGGUGCCUGUGCCCCCUUUCUGGUUGAAGGGAAGCCAGACCAGUGGAGUGGAAGCUCUUGAAGCЖCUUUCUUUUCAUGUCGGAGGCUGCGUGUGAGCCGGUGGUGGCGGCAGCUGUCUGUGUUUCUCCUGUUCUCAUACCGCCCUUCGUGUCCGCUGCAUCUUCCUCUAGGAGCAUCUGUGGGCUGACGUUUCUGGCAUGGUGGAUGUUUUCAUGUUGUUCCGCCGUCUCAGCAUCCAGGUGACGUGCUGUCCCGCAGUAGCUGCUCGCCACACAGGCUGUUGAAЖCUCAGCACGAAUGCUUGAGCCUGCCCCAGCCCCAGCCGUAGCCCUUGUGCUCAGGAGCUGCUCCUGGAGAGUGGCUCCCUUGUGGGAAGUGAGAAЖCACGUUUCGGAGUCGCAGGGAGCUCUGUCUGGCAUCGGUGGCACAGAUGGUGAЖCUUGUUUCAGGAAGUGUGAGCACGGGCCUGGCUGGCACCCGGUUUACAGGGAGGUGAUUGAGGЖCGUCGUUAUGAUUUGAUUUGЖCCUUGGCACACACUGCAGAGCCACAGGGAUGUUGCUGAAUUUCAAUCACCGAUCAGCAAGGAUGAЖCCUUCUCAACUUCCUAGGAAUGUUUAGCAGCAACCGAAUAUACCAGGCAAAACUC
2189   mRNA  unknown    Homo sapiens    ACGCGCAGCCGGAAGUGGCGGCUGCUGCGGAGAAUUGGAGAUGGGGACCGCCCUGGACAUCAAGAUUAAAAGAGCGAAUAAAGUUUAUCACGCCGGGGAAGUGCUCUCUGGCGUGGUGGUCAUAUCGAGUAAGGAUUCAGUCCAACACCAGGGAGUGUCUUUGACCAUGGAAGGAACUGUAAACCUCCAGCUCAGUGCCAAAAGUGUGGGUGUGUUUGAAGCUUUUUAUAAUUCUGUUAAGCCUAUCCAGAUUAUCAACAGCACCAUAGAAAUGGUGAAGCCGGGGAAAUUUCCCAGCGGCAAAACAGAAAUCCCUUUUGAAUUUCCUCUGCACUUGAAGGGUAACAAAGUUCUGUAUGAGACGUAUCAUGGCGUGUUUGUCAACAUUCAGUAUACACUGCGCUGUGACAUGAAGCGGUCUCUGUUGGCCAAGGACUUGACAAAGACCUGUGAAUUUAUCGUUCACUCCGCUCCUCAGAAGGGGAAGUUUACUCCCAGUCCCGUGGACUUCACGAUUACACCUGAAACCUUACAGAACGUCAAAGAGAGAGCUUUGCUUCCCAAAUUUCUCCUUCGAGGACAUCUCAACUCAACAAACUGUGUCAUCACGCAGCCACUAACGGGAGAGCUGGUGGUGGAGAGCUCGGAAGCCGCCAUCAGAAGCGUGGAGCUGCAGCUGGUGCGCGUGGAGACGUGCGGGUGUGCAGAAGGCUAUGCCCGCGACGCCACGGAGAUUCAGAACAUUCAGAUCGCCGACGGGGAUGUGUGCAGGGGCCUCUCUGUCCCCAUCUACAUGGUCUUCCCUAGGCUGUUCACCUGCCCUACACUGGAGACCACCAACUUCAAAGUGGAAUUUGAGGUUAЖCAUCGUGGUGCUGCUUCACCCUGACCACCUCAUCACGGAGAACUUCCCGCUGAAGCUCUGCAGGAUAUAGCCCGGAGGAGGGAAGCAUAGAGAACGGGAGUGGCCAUCUGGAAAUCCAGCUGGUUAUCCAAAUCCUAAGGGGAGCUACAGCCAGCGGCAUAUACUUGUUUUUGUGAUUAUUCUGUAUCAGAAAUGAAЖCAGACCCUCAAAUUAЖCUUUCCUUCCUCAUUUCUUGAGGCUUCUGCUUCCAACAGGCACCUCUAAUCAGACCUUUUCUUUGAAAUUCAACAAGAUUUCUUAAUGCUAUUUGCCAAGACCAUUUCACAGAAAACAUUGЖCUGUGGCUCUUGCCUUAUCUGUUCCUUUUUAGGUACAGUAAAACAAUUGUGACAGCAGUUUGAGCUUGCUGGAGAGUGGCAUCAUGGGGACAAAAGGAAACCUCUGACUUGCUAAUGGAUGUAGCCAGGGACUCCCCAUAGCAAAGGGUCUGUGGCCAGUUGACAUCCAGGAUGGCUGCAAGCGCACUUGAUGGUCAGGAAGUUUGCAGAUACUCGCCAAGGCAGAGCGCAAAGUGCUAGCCACUGGAAAUGCAUGACUUCCCUCCACCCCUACUCUAUUCUGUAGUUUUUUGGUUUUGUUUCUGAGACGGAGUCUCAGUCUGUCACCCAGGCUGGAGUGAUCUCAGCUCACUGCAACCPCCACCUCCCAGGUUCAAGCGACUCUCCUGCCUCAGCCUCCCGAGUAGUUGGGAUUACAGGUGACUGCCACCGUGCCCGGCUAAUGUUUGUAUUUUUAGUAGAGACGGGGCUUCACCAUCUUGGCCAGGCUGGUCUUGAACUCCUGACCUCGUGACCCACCCGCCUUGGCCUCCCAAAGUGCUGGGAUUACAGGUGUGAGCCACCACACCCAGCCUCUGUAGUUCUUUUUACAACAUUUUUCAUUAUAACUPUAAAUUUUUUAAGCAACUGGAAAAGUGUUCCUUGCUCUCUUGGGGGGAUPUGGCUGGUGCCGAAGUGUUUCUGAAGUCUCAAGAACUGCCAUAAAAUCUCACGCUGCCAUUUCCCUGAACAGAUACAUACAUAGAGAGAGACAGUUUUCCAAACUGUGUCACGCAGGCUGAGUGCACUGGCAGGAUCACAGCUCACGGCAGCCUCAACCUCCCUGGCUCAAGCGAUCCCUCCCCUCAGCCUCCUGAGUAGCUGAGACUACAGGUGAGUGCCACCACACUCAGCUAAUUUUCAAAUUUUUUGUAGACAGGGUCUCCCUAUGUUGCCCAGGCUGGUCUUGAACUCCUAGACUCAAGUGAUCCUCCUGUCUUGGCCUCCCAAAGUGCUGAGAUUACAGGUGUGAGCCACUGUGCCCAGCAGUUUCCCAGAAUAUAUUUAAAUGCAAAGUUACAUGAGGGGAAAACAUGUAUGUUUGCUCCUGUUGUUACUGGGUAGGUUCUGAACAGCAGAAACCCAUGUGCAGGGUGGGCUGGUGAAGGCCCCUCUCCGCAAGGUGGUAGCAGGAAAAGGUCCUUGACUUGAUGAAUUUGGUCUGCCUCUGAGCCACUGGAGGAAGCUGUUUUGAGCCAGGGUUUUUUGGCCUAAAGCCAGCAUUUCCUCAGUCUCCCUUUGUGGUUCGAAGGAUAUGGЖCUAUUGCAAUACЖUUUCUUCCUUCAAAUCCUGCCACUGUUUUGUUGGCCCACAACUAAUAGGACCUCAAAAUAAGCCAUGCUGCUUUGCACACACACUAGCCUUCUUUUGUACUUUUCAUUCUGGAUGGGCUUGGCCAAAACAGGCUCAGGCCAAAGЖCCUCCCAAGCUGUAUGUACUUCCAGUAUCCUGAAACAGUGUUUGGUGACAUAAUGCCAAGGGUAAЖCAAGCCUGAUUUAGGCACUGCUPUAUCCAGGGGCUUCACCCAUGAAAUUAAUAAAACUUAUCUGAGUCACUUGAAACUUGGUUCCCAGAAAACACAUUUCUGGUUUAUAAUCUCCUUUUAUGCUCACCUGACAUUAAUUAUCUAUCCUUGAUGAUGUGUUUAAACUGAGUAGCAGAAAЖCAGAGGCCACACUUUCUGGGAAAUUUUAAAGGAAGAAACCAUUUUUAAUGAGAUGAAAAUAUUUAACGAAUUUAAAAAGCUAAUGACAAUUUUGAGAAAAGGUUUGGGAUGUAUAUUGCUAUGUAAUUUAAUAAACUGAUUUUAUGGAUAUAAA
2190   mRNA  unknown    Homo sapiens    ACGUGACGCACCUCGCUUCAACGCCGCCACCCGCUCCCUCCCGCCGUCGGCUGACGUGGAGGGCCGGAGGUGGCGGCGGCGGCGGCGGCGGCUGCUGCUGCUGCUGCCCGCGUCCGAGGCUCGCGGGCGGCGGGCCCGGAAAUGCACUCGGUGAUGGAAAGAGAGCCACUAUUCUGAAGAACACUUGGCCAAAGGGUCAUUAUCGUUAUUGUGAUGCUCUUUCUAUGCUGGGGGAAUAUGACUGGGCCCUGCAAGCAAACAUAAAAGCUCAAAAACUCUGUAAAAAUGACCCUGAGGGAAUCAAGGAUCUAAUUCAGCAGCAUGUAAAGUUACAAAAACAAAUAGAAGACCUACAAGGUCGAACAGCAAAUAAGGAUCCAAUUAAAGCCUUUUAUGAAAACAGGGCCUACACACCUAGGAGUUUAUCAGCACCUAUAUUUACUACUUCACUUAACUUUGUGGAGAAGGAAAGAGAUUUCAGAAAAAUUAAUCACGAAAUGGCCAACGGUGGUAAUCAGAAUCUAAAGGUGGCGGAUGAGGCGUUGAAGGUAGAUGAUUGUGACUGUCAUCCUGAAUUUUCACCACCAUCAAGUCAGCCUCCAAAACAUAAAGGAAAACAAAAAUCUCGAAACAAUGAAUCAGAAAAGUUCAGUUCUAGUUCACCAUUGACUUUACCAGCAGAUUUGAAGAACAUCUUGGAGAAACAGUUUUCUAAAUCUUCCAGAGCUGCACACCAGGAUUUUGCUAAUAUAAUGAAAAUGCUGAGAAGCUUAAUUCAAGAUGGCUAUAUGGCCUUAUUGGAGCAGCGUUGCCGCAGCGCUGCACAGGCCUUUACAGAGUUGCUGAACGGUUUAGAUCCUCAAAAAAUAAAGCAAUUGAACCUGGCCAUGAUUAACUAUGUUUUGGUCGUCUAUGGACUUGCCAUUUCUCUCCUUGGAAUAGGACAGCCUGAGGAAUUAUCUGAAGCCGAAAACCAGUUUAAGAGGAUUAUUGAACACUACCCCAGUGAGGGCCUUGAUUGCUUGGCCUACUGUGGAAUUGGAAAAGUAUAUUUGAAAAAAAACAGAUUUCUAGAAGCUCUCAAUCACUUUGAGAAAGCAAGAACCUUGAUUUAUCGUCUUCCUGGAGUGUUAACUUGGCCCACGAGUAAUGUGAUUAUUGAAGAGUCUCAGCCACAAAAAAUAAAGAUGCUGUUAGAGAAAUUUGUUGAAGAAUGCAAGUUCCCUCCAGUGCCAGAUGCCAUUUGUUGCUAUCAGAAGUGCCAUGGAUAUUCUAAGAUCCAGAUAUACAUAACUGAUCCAGACUUUAAGGGUUUUAUACGCAUCAGCUGUUGCCAGUACUGUAAAAUAGAAUUUCACAUGAAUUGCUGGAAGAAGUUAAAAACUACAACCUUUAAUGAUAAAAUUGACAAGGAUUUUCUACAAGGAAUAUGUCUUACCCCUGACUGUGAAGGUGUCAUUUCUAAGAUUAUCAUCUUCAGCAGUGGUGGUGAAGUUAAAUGUGAAUUUGAACACAAGGUCAUAAAAGAAAAGGUUCCUCCAAGACCUAUUCUGAAACAGAAAUGUUCUAGCCUAGAGAAACUAAGACUGAAAGAAGACAAAAAAUUGAAGAGAAAGAUCCAAAAAAAAGAAGCAAAAAAGUUAGCACAAGAAAGAAUGGAGGAGGACUUAAGAGAAAGUAAUCCACCCAAAAAUGAAGAGCAGAAAGAAACUGUAGACAAUGUUCAGCGUUGUCAGUUCCUUGAUGACAGAAUUCUACAGUGUAUAAAGCAGUAUGCUGACAAGAUUAAAUCCGGCAUACAGAAUACAGCCAUGCUUCUCAAAGAAUUGCUUUCUUGGAAAGUUUUGAGCACAGAAGACUAUACAACCUGUUUUUCUAGCAGAAAUUUUCUAAAUGAAGCAGUGGЖCUAUGUUAUUCGCCACUUGAUUCAAGAAAAUAACAGAGUAAAGACAAGAAUAUUUCUGCAUGUUUUGAGUGAGCUUAAAGAAGUGGAGCCCAAAUUAGCCGCCUGGAUCCAAAAACUUAAUAGCUUUGGCUUAGAUGCCACAGGAACUUUCUUUUCUCGUUAUGGAGCAUCUCUUAAACUGCUUGAUUUUAGUAUCAUGACUUUCCUCUGGAAUGAGAAAUAUGGUCACAAACUAGЖCUCUAUAGAAGGAAAGCAACUUGAUUAUUUCUCUGAGCCAGCAUCAUUGAAGGAAGCCCGUUGUUUAAUAUGGCUGCUAGAAGAACACAGAGACAAGUUCCCAGCAUUGCAUAGUGCUUUAGAUGAAUUCUUUGAUAUAAUGGACAGCCGCUGUACUGUGUUAAGGAAACAAGAUAGUGGUGAAGCACCGUUUAGUUCAACCAAGGUGAAAAACAAAAGCAAGAAAAAGAAGCCAAAGGAUUCAAAGCCUAUGUUAGUUGGGUCUGGAACAACUUCAGUAACUUCAAAUAAUGAGAUCAUCACUUCAAGUGAAGACCAUAGCAAUCGAAAUUCAGAUUCUGCAGGCCCAUUUGCAGUGCCUGACCAUCUUCGGCAAGAUGUAGAAGAAUUCGAAGCUCUCUAUGACCAACACAGUAACGAAUAUGUUGUCCGCAAUAAGAAGCUAUGGGACAUGAACCCAAAACAAAAAUGUUCAACUCUAUAUGAUUACUUCUCUCAGUUUUUGGAGGAACAUGGUCCCUUGGЖCAUGAGUAACAAGAUGUUCUCUGCAGAAUAUGAGUUUUUCCCAGAAGAAACUCGACAGAUACUAGAAAAAGCAGGAGGUUUAAAACCUUUUCUCUUGGGAUGCCCUCGUUUUGUUGUGAUUGACAACUGUAUUGCACUGAAGAAGGUUGCAUCACGGCUCAAGAAAAAAAGGAAGAAGAAAAACAUUAAAACAAAAGUAGAAGAAAUUUCAAAAGCAGGGGAGUAUGUACGAGUUAAACUACAACUGAAUCCAGCUGCUAGGGAAUUUAAACCAGAUGUAAAGUCUAAACCAGUGUCAGAUUCAUCUUCAGCACCAGCUUUUGAAAAUGUGAAACCCAAACCUGUGUCUGCAAAUUCUCCCAAGCCAGCUUGUGAAGAUGUGAAGGCCAAACCAGUAUCCGACAAUUCUUCUAGACAAGUUUCUGAGGAUGGGCAACCCAAAGGGGUCUCUUCUAAUUCUCCUAAACCAGGCUCUGAGGAUGCAAAUUACAAGCGAGUCUCCUGUAAUUCCCCCAAACCGGUUCUUGAGGAUGUGAAACCAACUUAUUGGGCUCAAUCCCAUUUGGUCACAGGAUACUGUACGUAUCUUCCUUUCCAGAGAUUUGAUAUCACCCAGACACCGCCAGCAUACЖUAAACGUGUUACCAGGUUUGCCCCAGUACACCAGCAUAUAUACACCCUUGGCCAGCCUUUCUCCUGAAUAUCAGCUACCAAGAUCAGUACCAGUGGUGCCGUCUUUUGUAGCCAAUGЖCAGAGCAGAUAAAAAUGCUGCUGCCUAUUUUGAGGGUCAUCAUUUGAAUGCUGAGAAUGUUGCUGGUCACCAGAUUGCCUCUGAAACACAGAUCCUUGAGGGCUCUUUGGGAAUAUCUGUAAAGUCACACUGCAGCACAGGUGAUGCUCAUACAGUCCUGAGUGAGUCUAACAGAAAUGAUGAGCACUGUGGAAAUUCUAACAACAAAUGUGAAGUAAUUCCAGAAAGCACCAGUGCAGUAACAAACAUUCCACACGUGCAGAUGGUUGCCAUACAGGUAUCUUGGAACAUAAUACACCAAGAAGUCAAUACUGAGCCAUAUAAUCCUUUUGAGGAACGACAAGGGGAAAUUUCACGGAUUGAAAAGGAGCACCAAGUAUUACAAGACCAACUUCAAGAAGUGUAUGAAAAUUAUGAGCAGAUAAAACUUAAGGGCUUAGAAGAGACCAGGGACCUGGAAGAGAAGUUGAAAAGGCACUUAGAAGAAAACAAGAUCUCAAAGACGGAAUUAGAUUGGUUCCUUCAAGAUUUGGAAAGAGAAAUUAAAAAAUGGCAACAGGAAAAAAAAGAAAUCCAAGAAAGACUAAAAUCACUGAAGAAGAAAAUUAAAAAGGUUUCAAAUGCCAGUGAAAUGUAUACCCAGAAAAAUGAUGGAAAGGAAAAGGAACAUGAAUUACAUCUGGAUCAGUCCCUUGAAAUCAGCAACACACUUACAAAUGAGAAAAUGAAAAUAGAAGAGUAUAUAAAGAAAGGGAAAGAGGAUUAUGAAGAGAGUCAUCAGAGAGCUGUGGCUGCAGAGGUAUCCGUACUUGAAAACUGGAAGGAGAGUGAAGUGUAUAAGCUACAGAUCAUGGAGUCACAAGCAGAAGCCUUUCUGAAGAAGCUGGGGCUGAUUAGCCGUGAUCCUGCAGCAUAUCCUGACAUGGAGUCUGAUAUACGUUCAUGGGAAUUGUUUCUUUCUAAUGUUACAAAAGAAAUUGAGAAAGCAAAGUCUCAGUUUGAAGAACAAAUUAAGGCAAUUAAAAAUGGUUCUCGGCUCAGUGAACUUUCUAAAGUGCAGAUUUCUGAGCUUUCAUUUCCUGCCUGUAACACGGUUCAUCCCGAGUUACUCCCUGAGUCUUCAGGCGACGAUGGCCAAGGGCUUGUGACUUCUGCAAGCGACGUGACUGGAAACCACGCAGCACUUCACAGGGAUCCUAGUGUGUUCUCUGCUGGUGAUUCCCCAGGGGAGGCUCCUUCUGCGCUGUUGCCAGGGCCACCCCCUGGUCAGCCUGAAGCCACUCAGCUGACAGGGCCAAAACGGGCUGGCCAGGCAGCUCUGUCAGAACGAAGCCCUGUGGCUGAUCGGAAGCAGCCUGUUCCUCCAGGACGUGCUGCGCGUUCAAGCCAGUCUCCAAAAAAGCCGUUCAAUAGUAUUAUUGAGCACCUGUCAGUGGUAUUCCCAUGUUACAACAGCACUGAGCUUGCUGGUUUUAUUAAAAAAGUGCGAAGCAAAAACAAGAACUCACUCUCAGGAUUGAGUAUUGAUGAAAUUGUCCAAAGAGUGACAGAACACAUUCUAGAUGAACAGAAAAAGAAAAAGCCAAACCCAGGAAAGGACAAGAGGACUUAUGAGCCCAGCUCUGCCACCCCCGUGACCAGGUCCUCCCAGGGCUCACCCUCGGUGGUUGUUGCACCAUCACCCAAAACCAAGGGGCAGAAAGCAGAAGAUGUCCCUGUGAGGAUUGCACUGGGUGCAAGUUCCUGUGAAAUAUGCCACGAGGUGUUCAAAUCAAAAAACGUGCGUGUGCUCAAAUGUGGGCACAAGUAUCACAAAGGGUGCUPUAAGCAGUGGCUUAAAGGGCAGAGCGCUUGCCCGGCCUGCCAGGGUCGUGAUCUCCUGACAGAAGAGUCACCUUCUGGAAGAGGCUGGCCCAGUCAGAAUCAGGAGCUGCCUUCCUGCUCUUCUAGGUAGUCACACUUCACUAAAGUGUCAPCCACCAGUGUGUUGAAUCCGAAGAAUGACAAUUUUCUACCACUGGUGUAAAAAACAAACAUUUGAAGACCCUUGUGCAUUGUGUGUCACAAAGCUAAAUACAUGGAAAUCGUUAAUAUCGCUGAUAUUAAGUAAUUUCCCCACUCUGAGUGAAUACUUUGAUGAUUGCCAACAGUGGCUAAUAAAAUGACGGCUACCACACUCAUGGGUCACUGGGGCUGCGCAGGGCUCUUUGAGGUGGGUGGCUUCUUUUGGAAAGUACUAUGAACGUCUCGAAGCAGUAUUCUAGUGAUAAGAAUUCUUAЖCAUAGCCAAGCGCCCCACGUUUGUUCCCCACGUUUGUUCCCCUUUUCUGUUUGAAAAACCUGUUCUGGUAGCUCCACAAGAGAGAUGAUACUGACUUUUUAAAUUUUUUACAAGAGUCUGUAUUCCUGAUAUGCCUAUAUUUUUCCUCAAAGAUUCUGCAUUUUAAGGAUGGGCAUAAGCAAACUAUAUUUUAAUAAUUUAUAGUUAAUGUUAAAAUAUUGGCUGAUUUAGACCAAAAGAUUCAAAUCUCCUCUUUGUGAAAUCCCAUCUGCAUUUGAUUUUUUAUUAUUUUAUGUUCCCCCGUUAGAUUGUUUUAAGUGUUUGCUUUUCAUCUUUUAUAGAUGUAAUCUGAUUUUCAAAAAUCAUUAACACUUUUUAAUUAGUAUCGACUAAGACUUUUUCCCCCUGGAAUCGAGGCUGUGUGUCCGUCAPCCCAGCCCCCGGUUGGAGCCUGCUCUUUGAACUCCGCUGCCUUCCUUAGCAGCUUCUGUCCUCUUCUGUGAGUCAGUCAGCGAGUGCUUGGGAUCCGCAPCCAGCCGUGCUGAGCACACAACAGGCUGUGUGUGGAAAUGGCCACCACCAUUCUCCUUCCCCACCCCACCACAAAAAGAGAAGCUGUGUCUPUAGACAACCCUGAGGUAUCUGUGUUACAAUCGUUCUGUGUUUGAUAUUUGUGUAAAGUAUGCAUGCAGUCUUGUACUGUGACCUAAGAACAAAACUGUAACUGCAUUAGAAACCAUGAAAAAAUUAGAUAUUGUUUUGUGACUUUUAGACAGUGGUAAAUAUAGAЖCCAUGAAUUCUGGUCACAUUCCAUUUCUCUCCAACAUGAAGGAUCAAAAAAUGUUUUUCAAUGUGUUCUUUGUUCCACUGGAAACUUAG
2191   mRNA  unknown    Homo sapiens    ACUAGGGAUUUGAAAGUGCACGGGCUGCGGAGUGGAGCUCGCAUCUGUUCCCGCCGCCCGCGAGCGGAUUAAAUUUCUGCAAAUUCAAACUGAAUGGGGCUUUCUUCUGCUGCCUUCCAGAGGGCGCCGGCAGCCCGCCGCGCGCUUCUCUCCGGCGGGAGCGGCCGCCCAGCGCACGGCUAGGAGCGAUCGCGGGAGCCCGACCCAAGCCCGUGCGGGCCAGACGGCGGCGGCGAGGCGGAGGCUGCGGAGGCACCCGGGCUCCCGGACCCAGGCACCCGGACCCCGGGACCCAGGCGCCGCCGGACCGCGCCCCACCCCGCGCGCCCGAGCAGGGCGACUGUCAUUAGCUUCCUGGACGGGЖCCCGGGGCGGGAUCCUGGUGUCCUGAAAGGGGCCCGGGCGACCCUAAGAGGAAGAЖCUUUUGGGGGCGGGGUCCCCGGUCCCGCGUCCCCUGGGCAGCCGCUAUUGUCUACGCGCCUCGCUGGGCGGCGCGGGGGGCGUGAUCGCGGCGGCCCCGGGCUCUGGGUGCGGAGACCCAGGCGGGGCUGGGCCCAGGGCGGCGGCGGGAGAAGCCGGGGAAGCCGAAGAGCCUGGGGAGGAGGAGCUGCGAGCGCGGGAGACGAGCAGGAGCCGCGCGGGCCGCGGCGAGCGCGAUGCCGGCGGCGGCGGGGGACGGGCUCCUGGGGGAGCCGGCGGCGCCUGGGGGCGGCGGCGGCGCGGAGGACGCGGCCAGGCCCGCGGCGGCCUGCGAGGGAAGUUUCCUGCCUGCCUGGGUGAGCGGCGUGCCCCGCGAGCGGCUCCGCGACUUCCAGCACCACAAGCGCGUGGGCAACUACCUCAUCGGCAGCAGGAAGCUGGGCGAGGGCUCCUUUGCCAAGGUGCGCGAGGGGCUGCACGUGCUGACCGGGGAGAAGGUGGCCAUAAAAGUCAUUGAUAAGAAGAGAGCCAAAAAGGACACCUAUGUCACCAAAAACCUGCGGCGAGAGGGUCAGAUCCAGCAGAUGAUCCGCCACCCCAAUAUCACUCAGCUCCUUGAUAUUUUAGAAACGGAAAACAGCUACUACCUGGUCAUGGAGCUGUGCCCUGGGGGCAACCUGAUGCACAAGAUCUAUGAGAAGAAGCGGCUGGAGGAGUCCGAAGCCCGCAGAUACAUCCGACAGCUCAUCUCUGCCGUAGAGCACCUGCACCGGGCCGGGGUGGUCCACAGAGACUUGAAGAUAGAGAAUUUGCUACUAGAUGAAGACAAUAAUAUCAAGCUGAUUGACUUUGGUUUGAGCAACUGCGCAGGGAUCCUGGGUUACUCGGAUCCGUUCAGCACACAGUGUGGCAGCCCUGCCUACGCUGCACCUGAACUGCUCGCCAGGAAGAAAUACGGCCCCAAAAUCGAUGUCUGGUCCAUAGGUGUGAACAUGUAUGCCAUGUUGACCGGGACGCUGCCUUUCACGGUGGAGCCUUUCAGCCUGAGGGCUUUGUACCAGAAGAUGGUAGACAAAGAAAUGAACCCCCUCCCCACUCAGCUCUCCACAGGUGCCAUCAGUUUCCUGCGCUCUCUCCUGGAACCGGAUCCUGUGAAGAGGCCAAAUAUUCAGCAGGCACUGGCGAAUCGCUGGCUUAAUGAGAAUUACACGGGCAAAGUGCCCUGUAAUGUCACCUAUCCCAACAGGAUUUCUCUGGAAGAUCUGAGCCCGAGCGUCGUGCUGCACAUGACCGAGAAGCUGGGUUACAAGAACAGCGACGUGAUCAACACUGUGCUCUCCAACCGCGCCUGCCACAUCCUGGCCAUCUACUUCCUCUUAAACAAGAAACUGGAGCGCUAUUUGUCAGGGAAAUCUGACAUCCAGGACAGCCUCUGCUACAAGACCCGGCUCUACCAGAUAGAAAAGUACAGGGCCCCCAAGGAGUCCUAUGAGGCCUCUCUGGACACCUGGACACGAGAUCUUGAAUUCCAUGCCGUGCAGGAUAAAAAGCCCAAAGAACAAGAAAAAAGAGGGGAUUUUCUUCAUCGACCAUUCUCCAAGAAGUUGGACAAGAACCUGCCCUCGCACAAACAGCCCUCAGGCUCGCUUAUGACACAGAUUCAGAACACCAAAGCCCUCCUGAAGGACCGGAAGGCCUCCAAGUCCAGCUUCCCCGACAAAGAUUCCUUUGGCUGCCGCAAUAUUUUCCGCAAAACCUCAGAUUCCAAUUGUGUGGCUUCUUCUUCCAUGGAGUUCAUCCCCGUGCCACCGCCCAGGACCCCGAGGAUUGUGAAGAAACCGGAGCCCCAUCAGCCAGGGCCCGGAAGCACUGGCAUCCCCCACAAGGAAGACCCCCUGAUGCUGGЖCAUGGUGCGCUCCUUCGAGUCUGUGGAUCGCGACGACCACGUAGAAGUGCUGUCUCCCUCUCAUCACUACAGGAUUCUGAACUCCCCGGUCAGCUUGGCUCGCAGAAAUUCCAGCGAGAGGACGCUGUCCCCGGGUCUGCCAUCCGGAAGCAUGUCGCCUCUCCAUACUCCUUUGCAUCCAACUCUGGUCUCUUUUGCUCACGAAGAUAAGAЖCAGCCCCCCAAAAGAGGAGGGCCUGUGUUGCCCACCUCCGGUUCCCAGCAAUGGCCCCAUGCAGCCUCUGGGGAGCCCCAAUUGUGUGAAAAGCCGAGGCCGGUUCCCUAUGAUGGGCAUCGGЖCAGAUGUUAAGGAAGCGCCAUCAGAGUCUGCAGCCAUCUGCAGAUAGGCCCCUGGAGGCCAGCCUGCCCCCACUGCAGCCCCUAGCCCCUGUGAЖCCUUGCCUUUGACAUGGCCGAUGGGGUCAAGACCCAGUGCUAACUUGGGCCAGCGGGGUUUGGGGUAUCUCUAGAAAACAGCAЖCUGAACAGAGCUCCACACAUCUGUCAGGGUGUGAGCACUCCAAGGCCUCGCGUGGAGCAUCCUUAGUCCCACCUGUAGCUGAAUCCACAGACCCAAAGCCUGCACAACCCAACCUCGCUUAGGGACCCCCAGAGAUGCUGGAAUCGCUAGGAGGGUUGGCUCCAGGGGCAGCCAAUUCCUAUCAUUCAGAUCUUCCUUCCUCCCAAGUЖCUCACCAACCCCUUCCACUUCCCACUUCCCCCAGGCUUGGGGGGAAAACAGGGCAUGAGCCUUCUGGGGCACUCAGAUUAUGGЖCUGUUACCAGAUCUUUCUUCACGCUGUGCUACAUGUGUGCCUCUCACAGCAGUUGGCCACAGUUACAGGGAGAGAЖCAAUAUCACAGUCAUUCAUCCAGGCCACGUUUCCUCUGCGGAGUGUAGCAGCCCUGCCUUUCAUAGCAGGGAUUACCUGAAGGCCAGCAGGAGCCGGGGGCAGGCCCAGGAUCCUCAGAGGAAGAUGGAGAGGAGCUUCGGACCAAGAUCAAACCAAACAGUGGGGACCCCAACAGAAGAGAAAGACUGAAGGAGACACUCAUUUCCCAAGCAAGAUUUUGAUAGAUUUUUGUUGUUGUUGUUGUUGAAACAUGCUAAUGAUUGAAUUAUCUUUUCCAAAGAUUUUUUUUAAAUGUGAUGUCGGUAAAUUGAAAUAACAUAAUUUUUUAAAACUUGGAUGGAGAGAUGAGAAGCAAUUCCACCAAACUCAUGUUUUCACAGGAGGGUUCAGUGUGGAGAGCAAAAAAGCUGЖCUGUGGUGAUUUGCUGAGUGCUGUGGCCCACAGGCAGGGCAAGUCUCGGUGGCCCUGUGUUCAUCCUGUUGUUUAAGGCAUAGCCCUGAUCCUUCUGGAAGGCAUAGAACACGGUUACAGCUGGUUCUGUAGAAAGAGGGAAAAGAUGAUUGUGACAAUUCAGAGCAUAACUCAGAUGGCGAGAAGGCAGCAUUAUCUCUGUGCGAUGCUGAUUUCAAGCUGCCCACAGAЖCUGGUGCGGCUCAGAGCUCGGCGAGUUUGCUGGGAGCUGGGAGCAGGCUUGCCUGGCAGAGAACCUGUUCAGAUACAGGCCAGUUUCUUCUUCGAGGAAAGCCAAGCUCCUCAAACAGGGUUCAGUCCACGUUGUGUUUUCACACCUUUCUCCAAGGAUCGAACCAAAGAUGUGUCUCCAGUAUUGUGUCUGUGCCCCUGUGUGUGUUUUGUGGЖCAGCCGUGUUGUCUGЖCUGUAUCCAGCUGGCACUUGACAGGGUGCAGUCAUUGGUGAGAAGAAUCAGAAAAAGAAGACCCAUCAGCACAGGUUGGAUAGGGGUUAGUGUAGGAGACCAGUUACAGAAUGGCCUGGAGUCUUCAACUUUUGACCGGUGCAGGUGUGACCAGAGACCACCUCUGUGGCCACCUCAGAUAGUCAUCUCAGUCCAAGGAUCCCAAAACACAAAUCUAGAAUUGCAAAGCCAGCCUUUAUUUCCCUGGCAGGCAGCCUUGCCAGAAGGCAGAGAGGCAGUUCUGAAUCAUUCUCUCAUUCACCAGUGGUGACAUCCUUCAGUCCCUCACAUCUCUGACAGAGCGGGACAGAAUGGAUAUUUGGCUGACCUUGGUGAGACCUGGAGCUGCCUGUUUCUUCCCUAGGGGAUCACCACGGCUCUAGGGCAUUCUAGGAUGAGGUCAGACCCCUUGGCCAUUGGUGUUAUUUUUUGUAUAGCUUCAGACUGGGUUCCAGAЖCUUACCAUUGAAAACAGAGCUUUUAGGCCAGGUGUGGUGGCUCACACCUGUAAUCCCAGCACUUUGGGAGGCCGAGGCAGGUGGAUCGCUUGAGCUCAGGAGUUCGAGAGCAGCCUGGGCAACAUGGUGAAAGCCCGUCUCUACCGAAAAAUACAAAAAAAAAUAGCUGGGUGUGGUGGUACGUGCCUGUAGUCCCAGCUACUUCGGGGЖCUGAGGUGGGAGGAUCACUUGAACCUAGGAGGUCGAGGCUGCAGUGAGCCAAGAUCAUGCUACUGCACUCCAGCUUAGGUGGCAAAGUGAGACCCUGUCUCCAAAAAAAGAAAAUAGAGCUUUAUAAGCAGAGAGAAGAAAAUAAUCAUCUAAGACCAUCUCUCCAUUCGACAUGAAGUGUACCUUUUCUAAAGЖCGGUUUCCAGCUGCAACGGCUCCACUUUGCAGGCUUGCAGGGUGUAUACCUGCGCAUUGGGAЖCUUGCUGGAACCCCUGAUGCAUUUUCCUUGAGAGCAGGGGUACUUCCGCCUUGCCGUUAGCUUGUGGAGAACGUGCUUCUUAUUCCUGGCAGGCUUCAAGAACAGCUGCACAUGUGCCGCUAACUGACCGCGUUGCCAUUGGCGACCUGGЖCUCUGAЖCUCAGGUUUAUUCUAAACCCAGUGAGAGGUGAGGGGGAGUGAUGAAAGGGGAUCAGCUGUAUUUGUGUGUGUGUGUGUGUGUGAGCACCUGACAAAUCUAUGAAACCGAGUGAAAGGAGAAAUGUUAGAUUCUUUAUUAUUUUAUUAUAUUUAUAUGGAAAGCUCGACUCUCCCUUUGGUAAGUCCGAAGCAUGUUGUCUGUUCGACCGUGACUGUCUUCCUCAGUCUGUGCCUGUGAUUCCAGUCACCCUGUAGUUACUGACAGAAAUUGACUGGACUGUCAUUGUGUGAAGUCUAGGAGGAAAUGUCCAUUUUAAUUGUAUGAUUUGGUCAUAAGUAAGGACUAUAUUUAUGUCACCAUUAUUAGAUAUAUGUACUUUUGUAAUGACUGUGAAAUACACUUUUCCCUCACUACGACUGCUUCUUUAUUUGCUGAUAAAUCUUAAAACAACUAAGUACGUUGCAAAUAAUAGUACAGGUACCAUCUUUUAUGUGAAGUUCUUUUUCUUUUUUUGAGACAGGGUCUUGCUCUGUCACCCAGGCUGGAGUGCAGUGGCACAAUCACAGUUCACUGCAGCCUCAACCUCUCCAGAUUCAAGUGAUCCUCCCAUCUCAGCCUCCCAAGUAGCUGGGACUACAGUUGUGCACCACAAUGCCUAGCUAAUUUUUUUUGUAUUUUGUAGAAAUGGGGUUUCGCCAUGUUGCUCAGGCUGAUCUCAAACUCCUGGGCUCCAACGAUCUGCCCACCUUGGCCUCCCAAAGUGCUGAGAUUACAGGCGUGAGCCACUGUGCCUGGCCUUAUGUAAAGCUCUUGACCUAGCAUCUGACUGGAAACAAGCGGGAAUUGCAUUGGGGGGCAUUUUCUGGGCCAGUUUCCCUGCCUUAUUUUACCUGCAAUAGGUGUGCCUACAAAAGUCUUUCUGACAUACACACUGCAGGUGGCAGUUCAAGAAGAAUCAACCUUUUUCAUUUGGGGAUAUUAGGAUCUUCCUUGGAGACUCUGAAAAUGGCACACAAAGAAUGGCAGUUAUGAACGUGACUUCUAGAUUUUGUCCUUGUAGGAGGCCUUGGUCAUGGAUAGGGGAAGAGGGAUGAUGGGAUGGAAUGGGAGGGUGGGAUCUAGAUGACCUCUUGAAAUUGUCCCAGUUACUGCUUCCUUCAUAACUGUUCACAAAACGUUUUUCAUAUAUACCACCUUGUUUCCCCUGGGAAGUGAGGGGACGAAGCCUUAGAGGGUGACAUAGCUAGAAAGUGGAGAAGCUCACUGUUCACUGUGCAAAGCCCCAGUAGUCGGAUUCCGGGGAAAAGAACAAGUAUCUAGUUUUGAUGACAAUGUUUUCUUGUAAGAAUCCCAACACUUUAGAAUAGAAAAGGACCUAAGAUUCUCUGGCUCAGCCCCAGCCUUUCUGAAGAAGGGAAAACUAGGGACCCAGAUGGUUUAAGGACACCCCAGAGUCCCCAGAUGAGCUGGCAUUUGAGCUGGUCUGGAGCAGAGUUUCUCCCUCAAAGAACACAGAGAAAUCAGAGAGUGGCUGCCAUGGUCAGAGGGGGAUGUCAACAACAGAUCAAGCCGUCAUCACAACAGGUAUUUCUGAAGUUCCUGCAGGGACUAGGUCUUGCAUUUUUAAGUCCUUUUCAAAACUGUGCAGCUUCCUGAACCUUAUGCUGUUUGUCCCAUCCACUCUUGAAGCUGGGGAAAGACAGCUUUCUUUGGGAACUCUGUCUUUCUCAGUUGACUUCCCAAGUAAGCAGCAAACCCCUGGAUAGCCUUGUUAUCUACUUUAGGUAUUAAGAGGCUAUUGGGUUUUACUAGAUUAAAUCAAUAAAACAUUUCCUAUAGAGCCAUAUCAUACACUGAAGCAAAUUCAGAAAGAAUGCAAAACUGCUAUCUUUUGGGGGAGUCUGGAAGCCUGUUGGUUAGUGUAUUUAUUUUCUUUGUGGGGUCUUCUGUGAGCUACAGGCACAGUAAGAAUAAUUCAGAGCGGUACUGGGAGUUGGUUCAAUUUCAUGUCAUCACUUUUCAAUGAAGGGAGUGCAUUUCCUGAGUAGUAAAUGAGUAUAUUAUUUGUGGCAGCUUUUCUGUUAAGGGAGCUUUCCAGACAUCUGGUUGCAAAGACAAAUAGGAUAUAUAUUUGUACUUCUUCUCUGUGGACAUGUUUUUGUGACACACAGUUAUCUCUAGGAGUUGACGUCUGUGGGCACUAAGGGACUGAGGUUGGGGGAGAAAGCUGAGGAGGCUUUGGAAGAGAAGGUGAGGAGCAUUUCAGGAUUUGCAGUCCCCCUCCACAUGUAUCCACAUCUGAGCUGGUGGUGUUCCAAUAAUGAGGCAUUUGGGGCAACCAAUUUUGGAAGGAUAGAAUAGCUUUAUGUGGAGCAAACUUGAGGAUCAAUUGGAGUUGAGUGGUUUAAAACUUAAAGAUGGCACAGGAAGCUGUAUCAUUUACAGGUGAAAAAAAUAAAUGGGUCUGACUUCA
2192   mRNA  unknown    Homo sapiens    ACUCGCUGAGGCCCCGACGCAGGGCCGGGCCGGGCCCAGGGCCGAGGAGCGCGGCGGCCAGAGCGGGGCCGCGGAGGCGACGCCGGGGACGCCCGCGCGACGAGCAGGUGGCGGCGGCUGCAGGCUUGUCCAGCCGGAAGCCCUGAGGGCAGCUGUUCCCACUGGCUCUGCUGACCUUGUGCCUUGGACGGCUGUCCUCAGCGAGGGGCCGUGCACCCGCUCCUGAGCAGCGCCAUGGGCCUGCUGGCCUUCCUGAAGACCCAGUUCGUGCUGCACCUGCUGGUCGGCUUUGUCUUCGUGGUGAGUGGUCUGGUCAUCAACUUCGUCCAGCUGUGCACGCUGGCGCUCUGGCCGGUCAGCAAGCAGCUCUACCGCCGCCUCAACUGCCGCCUCGCCUACUCACUCUGGAGCCAACUGGUCAUGCUGCUGGAGUGGUGGUCCUGCACGGAGUGUACACUGUUCACGGACCAGGCCACGGUAGAGCGCUUUGGGAAGGAGCACGCAGUCAUCAUCCUCAACCACAACUUCGAGAUCGACUUCCUCUGUGGGUGGACCAUGUGUGAGCGCUUCGGAGUGCUGGGGAGCUCCAAGGUCCUCGCUAAGAAGGAGCUGCUCUACGUGCCCCUCAUCGGCUGGACGUGGUACUUUCUGGAGAUUGUGUUCUGCAAGCGGAAGUGGGAGGAGGACCGGGACACCGUGGUCGAAGGGCUGAGGCGCCUGUCGGACUACCCCGAGUACAUGUGGUUUCUCCUGUACUGCGAGGGGACGCGCUUCACGGAGACCAAGCACCGCGUUAGCAUGGAGGUGGCGGCUGCUAAGGGGCUUCCUGUCCUCAAGUACCACCUGCUGCCGCGGACCAAGGGCUUCACCACCGCAGUCAAGUGCCUCCGGGGGACAGUCGCAGCUGUCUAUGAUGUAACCCUGAACUUCAGAGGAAACAAGAACCCGUCCCUGCUGGGGAUCCUCUACGGGAAGAAGUACGAGGCGGACAUGUGCGUGAGGAGAUUUCCUCUGGAAGACAUCCCGCUGGAUGAAAAGGAAGCAGCUCAGUGGCUUCAUAAACUGUACCAGGAGAAGGACGCGCUCCAGGAGAUAUAUAAUCAGAAGGGCAUGUUUCCAGGGGAGCAGUUUAAGCCUGCCCGGAGGCCGUGGACCCUCCUGAACUUCCUGUCCUGGGCCACCAUUCUCCUGUCUCCCCUCUUCAGUUUUGUCUUGGGCGUCUUUGCCAGCGGAUCACCUCUCCUGAUCCUGACUUUCUUGGGGUUUGUGGGAGCAGCUUCCUUUGGAGUUCGCAGACUGAUAGGAGUAACUGAGAUAGAAAAAGGCUCCAGCUACGGAAACCAAGAGUUUAAGAAAAAGGAAUAAUUAAUGGCUGUGACUGAACACACGCGGCCCUGACGGUGGUAUCCAGUUAACUCAAAACCAACACACAGAGUGCAGGAAAAGЖCAAUUAGAAЖCUAUUUUUCUUAUUAЖCUGGUGACUAAUAUUAACAAAACUUGAGCCAAGAGUAAAGAAUUCAGAAGGCCUGUCAGGUGAAGUCUUCAGCCUCCCACAGCGCAGGGUCCCAGCAUCUCCACGCGCGCCCGUGGGAGGUGGGUCCGGCCGGAGAGGCCUCCCGCGGACGCCGUCUCUCCAGAЖCUCCGCUUCCAAGAGGGAGCCUUUGGCUGCUUUCUCUCCUUAAACUUAGAUCAAAUUUUUUGGUUUUUAAUCAGUUAUCUUGGGAЖCUUAACCUGGCCCCUCACCUCUUCUGCACCCCCCGCCCCCGAAЖCUGUCUCGUAAUGAAUUUCUGCUGUCCUCCUGGGAGUGGACGGCCGGGUCCCGUCCCCCGGGAGCAUCGCUCGGCUCAGCACCUUGGCUCCCAGUGGGGGCCCCGUGGAGGGCGCCCGUAGUGAUAAGCACACCGGCACGAACGUCAGGUCCAUUCCUCGAAGUCGGAGCCCUCACUCUGCCCUGUCCUGGGGCUGGCUGAGGGCGAACGCCCCACCUCACUUUCUAGAGCCCUGUCUGUCCUAGCUCCUAUCUGACCUUGUGUGUAAAUACGUACAUCUGUUUUUAAAGUGGAUGGGCCCCUGAGAACUCAGUGAAAUGCAGAGUUCUCCAUGCACCUAAAGCUCCUUUGUCGCUCUCAUGGCUGUCAGAUCCUGGUCCCUCCACACUGGGUGCUGGGGAGGGAGGACCCUCGGGGCUACCGCGCGCCCCCCCAPCCCACAGAUCAGGAGCCAAGGAGGGAGAACAGGGCAGCCUGUGGGЖCUCUAGGAUGCUUCAGAAGAAGCGACGGCACCGUCAACCCUCUGUUUUUUAAAGGUGGUUGGAGЖCUGUUAACACUGAGCUCAUUGACUUCUAGAGAUUUUAUUUUUACUGGUUGAUCUCUUGGUGGUUUUCAACUUCCUGCUGGAAACUAGAGGUGGGGCACCCCCCACCCCCCAGCCUCGCACUGUGUCCUUGGGGAAGGCCCGCCCCCAPCCUGGCCGGUGUCACUGUGGCCCGGCCACCCCUGAGCGCCCAGCUCCCUACCUCCUGGACGUCUCUGAGAGUCCAGGCAGAGCAGAGGGCAGCGCUCGGCCGGUCAUGCUGGCUCCCUUGGCCUUGCAGCGAGCCCCUGGCCCACGCCGAGCGAGGGAUGCUUCUCCCUACAGCAUGUCCACUCCCCCGGCAUGGCCAGGUGGGGCCCCUGGGGCAAUGGCAGUGGUAGAACGCUCAACUUGGUUGCGGUACCAUCAGCCCACCUGCAUUUGGCUUUCGACUUGCUUGUUCUAAGUCACAGCGCCCUCAUCUUUUUAGCAAGGUAAAAAAACCAAAAUGGGUGUUAUCUCUGAUAUCUUGAAACCAGCGUUCUGAAUAGAGGUAGGUUGAGUUUUCUAGGGGAAAACAAAUGGAGAAAAGAGGCAUGAAGAAAAGUAAACCGAGAACAUAAUUAGGCAUCGGGCCUAAGUGUCCUGGGGAGAUUGGAGGGGACGGCAGCGUUCUGCAUGAUGGAGGCGCUGCCGGGCCCCGGGUCUGUGGGGGCCGUGCUCUCAGGGCGUGUGCGGGACGCCACCUGUGCACACCUGCUCAGAGCACGGCUCCUCGCAGGGGUGAAGGGGCAGACCAACGAAACCAGAUGAGACCAACGACACCAUGCGAGACACGCUUGCAGACACUGUUGUUUUGGAAAUGUGCUUCCCUCCAUCUGAAAUCUCAUCCCUCCACCCGCCCACUCGGGCAGCUGUGCCGUGGGCAGGGCAUGCGCUCCCCUGGCUGAGCACCCCAGAGAUUCUCCUGCACCUUCCUCAUGCCGCACGCUGCUCAPCCGUCUCCAUGUGUGUUUAGAUCCAUGCCAUUCACUGACUCACUAЖCACCUGCAAAAUCUPUAAGGAAAAAAGCUGAAGGGUACGACCAUGCACAUAUGUGACCUGGAAAAUGCAAAUUUAGAUCUUUUAUGAUUUAAUUAUUAUUGUUUCCCAUAGAAGUUCCCUCCCUUUGAAAUUAAUAUAUAAUGUAUAAAUUCUGCACUGAGCCAUGGCGGAGCUGGGCAGCCCCUAGGUUAGAGUGGAGACGGAGGCCCAGGCGCAGGGGUCACACCUCAUCUGGUUUCCUUCCCAUCUCACAGCUUAGCUUGUGCUUCUCAACACCAAGUCUPUAAGAGCAAUAAAAACUACACCAUGAAUGUUUGAAUUUUUUUUUUUUGGGGGGGGGAGGGUGGAUUUUGCUUUUCAUCCAGAAGGAAAAGGGGAGGAGAGCUCCUUUACAUUUUUUAAAUUAAAUUCAUAAAUCCCAGAACAGUCUUUUUUUUUUCUUUUUCCUUUACACCCUACUUCUGAGCUUAAUUCAGUUGAUGUUAUGUCCAAAUUCAGGCUGAGUGCUCAGGCUGAAGCAACUCUGUAGCCCACAGUCCGUGCUGGCCACUGUCGGGGUGAGGCACAUUCUAGGCCUGGCAUCGCUGAUGCCCUCUGCACCCAGUCCUUGAGCCAGGCCGAGGACAGGAAGGGCAUUGCUGGCCUGUAGCUCCUGUUACCCACCCAGAGCCAGGCGCCACACUGGAGGCUCCCAGGCGGGAGGGCCCAGGCCCACCCACGGGCGUCUGGCCGGUCAAGCUCCCAGCCUGGGCCGUGGUCUCCUGGGGACGCCGCUGGCCUCCCAGCUUAGGCCCAGGUGCCAGGUGUCAUGGGGUCUCCUGCCCAUCUUCCCAAGGAUGCCAUUGCUGUCUUCAUCGUCUUCCCCCGUGUGAGACACUGGUUGUCUGGUACUCGGCGACAGUGUACCAGACGCGCACCCUAUGUGAGGUGCUPUAAGGUCCCUGUCCUCAGGAAGCGCAGUCUGGUGGAAGAGAUGAGCGCUGAACAAAUCACUAAAUAACACAAAACAACAAUGUAAGCAGCACUUUCUUGUGUAAAAAAAAAAAAAAAGCACGUCCUGUCGAUGAAUUUUGAGUCUCUCUGCCUUGCCUGUCCCGACUCCCUUUCGCGCACCGUGGCAUGAGAAUCUUUCCUCACGCUGUUCGUUGCGGUAUUGCUGAGCAUUGAUGUUGAUUUGAAGGAAAAGCCGUGGUUGGACCCAGCUGUGUGUUUCACUCACGUGCAAUUGAGUAGCUGUUGCCAGGCUGUCCAUGCCUGUUGUGЖCUACCGGUUGGGGUCAGAUUUGGGGUGAAGAAUGAGUAAGUUUCUGCAUGCUUUGUCUCUACCUGAGACACUUCUACAACAAGCCAAGUAUAAUCUCUCCAGCCCUGCAGAUUUUCACCUGACUUGUUCAGCCCCAUGCGUAGACUCCCGCUGCAGGCCUCUGGCCUGUGGCUCACUGCAUGCAGCCCCUGGCGUGCAAUACUAGUGCUCCACGGCGCGAUGUGCUUCUAGCCCUUGCACUGCACCUAGGCUCAGGGUUCAAACGGCCAGCCCGAAAAGCCUGCCUGCCUUCUUUCUGGAAACAGCACGUCCCCGGCCGUGUGCCUGCCCCUUUCUCUACUGAGCUAGUCCCCAAACCAAAGGCAAGCCCCCUCGGGCCUCGGGGGAUGGGGCCGGCCACACCCCUGACUCCGCCCUGGCUCUGCCCCAUACCCCUGCCGUGGGGCCGACCUGGGGGAUGCAGACAUCCGGCUCCGUAUUCCUGCCUAUCGGGGCCAGGAUGCAAAAACAAUUUUUGCGUAAAAGAUGUCACACUGAUCUGCUGGAGUGGGGUGGACACAUGAAUUCAGUUUUAUCAUGAACACUCGCCACUGGCUGCUUGUUAAUUCAGGGAUAAUGGUGGCAUUCUUACAAACUGCUCGGGAAAUAGAAUGACGGGAACACUUUUAGGGAGCCCAGGAAGUUACCAGGGЖCAUUGGUGUCGCCGGCCCAGGCAACAGCAGCGUACGCUUUUCAAAGAUCAUUGAGUUGUCUUAGAAUUUGAAGCUGUGUAAUGACAAUGUCACCUGGAGUUCGUCUCCAUUUCUUAЖCUUUUUGUUGCACAAGUAUUUGGACAGAAGUCGAЖCUGUGAAUGAGAUACUGAAAUGCACUAAAUUGUAUUACAUUAAACUGGAGUUACUUGAUACAAUGAAGAAAUGCAUCUGAUCUACUUGUAUUUAUUGUCUCAGAAUUGUACGUUGUGACAAUCAAAUGUUACUUGCCUAAAUGCCAGGAAAUUCAACUGGCCUUUUAAUCAGCAAGAUCGCCAGCAAGUACUGUAACUGUAAAGGAAAAUCUCUCUCUCUGGAGAACCCACACAAACCAUUGACCUGAGUGCGCAUGACAGCCACUGGCUUCUUUUUCUAUGAUUGAAAAUCUGCCAUCGCUGACUGUUGGCCAGUUUCAAAGGGACCCAUUGUAUACAGGGUGCAAAUGUAUUAUACGGAUGUUUCCUUUUGUACACUUCAUUUUUACAAGUUUUGCUACUCACAAGCUUUAUGUAGUGGAGGAUAGAGGUAUUUUUGGUCUUUAGAAGCUUGUCGGGGUGAGGGCUGCUAACUUACACUUCAGAGGCCUGUGUCCCAAAGGCCUGGCUGCGUUUGCCGUGCUGUGCGAGGACCUGUGUACACAGGCAGGUGUGCGCCUGCCCGAGCGCGAGUAGCUCUUGUGUAGUGGUGAAAUGCUGCAGGCAUCUGUUUAUUAAAAUUGCUGCUGUGAAAGACAGGGAUAAAAUAUCCACAAUAUAAGAGAAAGCGACUCCGUGCCUCCUUCUGUUUCUUCGUUUCCAGUCUGCAUAGAUGUCUCCAAGGGGAAACCAGGGCCACCAGGCACUCCUGUCCCAUGGGGCCACCCACCUUCAGAGCCCACUCCCACGGGCUCUGUUUCCUUGGAGGCCAUCCUGCCGAUGGCACUUUUCAAGGCCCUCCCUUCCCUACGAGUUGCUUUCUGGGAGGGGAAAUUGAAAAGGAGAGCGGUCACCUGGCAAAAACACAGGGGAAAUCAGCCAGUCCACAAAAAUACGCAAAAUGACCUGAUGAUGUCCAAAAAAGGGUUUUAAAAGCGAUCAAGGACAAAAGGUUUUCCUAAGUGGCAUGUAUACAUCCAAAACUACUCUUUUUUUGUAAAAACAUUCAUCUGUGGAGAAAACCAAGGAACCCCUUUCUCUUCUUUAUUAAAAAGCAAAACAAAAACUCUUGUUAGAACCAAAA
2193   mRNA  unknown    Homo sapiens    ACUCGUGUGCGCGCUCGUCCGCCCGCCAGUCCUCUCAACGCGCGCUUGGCCGCCCGACGACGCGGGAGCCGCACGCGCCGGACGAGGCUCGCUGCGCUCCCUGUUGCCCAGCGCGGGCCCGUUGAGGCGGAGCCCUCAGUUCCCGGCCAGGACACGGUCUGGGCCGCCGAAUCUCCGGCCGAAGAGCGGCGGCGGCAGCGGCGGGAAAAAAAUGAAGAAUGAAAUUGCUGCCGUUGUCUUCUUUUUCACAAGGCUAGUUCGAAAACAUGAUAAGUUGAAAAAAGAGGCAGUUGAGAGGUUUGCUGAGAAAUUGACCCUAAUACUUCAAGAAAAAUAUAAAAAUCACUGGUAUCCAGAAAAACCAUCGAAAGGACAGGCCUACAGAUGUAUUCGUGUCAAUAAAUUUCAGAGAGUUGAUCCUGAUGUCCUGAAAGCCUGUGAAAACAGCUGCAUCUUGUAUAGUGACCUGGGCUUGCCAAAGGAGCUCACUCUCUGGGUGGACCCAUGUGAGGUGUGCUGUCGGUAUGGAGAGAAAAACAAUGCAUUCAUUGUUGCCAGCUUUGAAAAUAAAGAUGAGAACAAGGAUGAGAUCUCCAGGAAAGUUACCAGGGCCCUUGAUAAGGUUACCUCUGAUUAUCAUUCAGGAUCCUCUUCUUCAGAUGAAGAAACAAGUAAGGAAAUGGAAGUGAAACCCAGUUCGGUGACUGCAGCCGCAAGUCCUGUGUACCAGAUUUCAGAACUUAUAUUUCCACCUCUUCCAAUGUGGCACCCUUUGCCCAGAAAAAAGCCAGGAAUGUAUCGAGGGAAUGGCCAUCAGAAUCACUAUCCPCCUCCUGUUCCAUUUGGUUAUCCAAAUCAGGGAAGAAAAAAUAAACCAUAUCGCCCAAUUCCAGUGACAUGGGUACCUCCUCCUGGAAUGCAUUGUGACCGGAAUCACUGGAUUAAUCCUCACAUGUUAGCACCUCACUAЖCUUCGUUUUUGAUUGUGUUGGUGUCAUGUUGAGAAAAAGGUAGAAUAAACCUUACUACACAUUAAAAGUUAAAAGUUCUUACUAAUAGUAGUGAAGUUAGAUGGGCCAAACCAUCAAACUUAUUUUUAUAGAAGUUAUUGAGAAUAAUCUUUCUUAAAAAAUAUAUGCACUPUAGAUAUUGAUAUAGUUUGAGAAAUUUUAUUAAAGUUAGUCAAGUGCCUAAGUUUUUAAUAUUGGЖCUUGAGUAUUUAUAUAUUGUGCAUCAACUCUGUUGGAUACGAGAACACUGUAGAAGUGGACGAUPUGUUCUAGCACCUUUGAGAAUUUACUPUAUGGAGCGUAUGUAAGUUAUUUAUAUACAAGGAAAUCUAUUUUAUGUCGUUGUUUAAGAGAAUUGUGUGAAAUCAUGUAGUUGCAAAUAAAAAAUAGUUUGAGGCAUGA
2194   mRNA  unknown    Homo sapiens    ACUCUGGCUUCGACUCCGUCGCUCUCAAUUCGUCACCAGGAGGAAGACGGAGCUGGCUGCCCAGCCCAAAGGCCCAUGAGGGGAUGCAGUUAUGGGCUCUGUCGCCGUGGAUUGUUAUUUUGUGUCAGUAAGUAAUCCAUAAAGUGCCAACAUGGGAAAGAAACGGACAAAGGGAAAAACUGUUCCAAUCGAUGAUUCCUCUGAAACUPUAGAACCUGUGUGCAGACACAUUAGAAAAGGAUUGGAACAAGGUAAUUUGAAAAAGGCUPUAGUGAAUGUGGAAUGGAAUAUCUGCCAAGACUGUAAGACUGACAAUAAAGUGAAAGAUAAAGCUGAAGAAGAAACAGAAGAAAAGCCUUCAGUUUGGCUGUGUCUUAAAUGUGGCCAUCAGGGCUGUGGCAGAAAUUCUCAGGAGCAGCAUGCCUUGAAGCACUAUCUGACGCCAAGAUCUGAACCUCACUGUCUGGUUCUUAGUUUGGACAACUGGAGUGUAUGGUGUUACGUAUGUGAUAAUGAGGUCCAGUAUUGUAGUUCAAACCAGUUGGGUCAAGUGGUUGAUUAUGUCAGAAAACAAGCCAGCAUUACAACUCCAAAGCCAGCAGAGAAAGAUAAUGGAAAUAUUGAACUUGAAAAUAAAAAAUUAGAAAAAGAGAGUAAGAAUGAACAAGAGAGAGAAAAGAAGGAAAACAUGGCUAAAGAGAAUCCPCCCAUGAAUUCUCCUUGCCAAAUAACCGUGAAAGGACUCAGUAAUUUGGGAAACACAUGUUUCUUCAAUGCAGUUAUGCAGAACUUGUCACAAACACCAGUGCUUAGAGAACUACUAAAAGAAGUGAAAAUGUCUGGAACAAUUGUAAAAAUUGAЖCCACCUGAUUUGGCAUUAЖCAGAACCAUUAGAAAUAAACCUUGAGCCUCCAGGCCCUCUUACUPUAGCCAUGAGCCAGUUUCUUAAUGAGAUGCAAGAGACCAAAAAGGGGGUUGUGACACCGAAAGAACUCUUUUCUCAGGUCUGUAAAAAAGCAGUGCGGUUUAAAGGCUAUCAGCAGCAAGACAGCCAGGAGCUGCUUCGCUACUUAUUGGAUGGGAUGAGAGCAGAAGAACACCAAAGAGUGAGUAAAGGAAUACUUAAAGCAUUUGGUAAUUCUACUGAAAAGUUGGAUGAAGAACUAAAAAAUAAAGUUAAAGAUUAUGAGAAGAAAAAAUCAAUGCCAAGUUUUGUUGACCGCAUCUUUGGUGGUGAACUAACUAGUAUGAUCAUGUGUGAUCAAUGCAGAACUGUCUCCUUGGUUCAUGAAUCUUUCCUUGAUUUGUCCCUCCCAGUUUUAGAUGAUCAGAGUGGUAAGAAAAGUGUAAAUGAUAAAAAUCUGAAAAAGACAGUGGAGGAUGAAGAUCAAGAUAGUGAGGAAGAAAAAGAUAACGACAGUUACAUAAAAGAGAGAAGUGAUAUUCCUUCUGGAACAAGUAAGCACUUACAGAAAAAAGCAAAGAAACAAGCCAAAAAGCAAGCCAAGAACCAACGAAGACAACAAAAAAUUCAAGGAAAAGUUCUUCAUUUAAAUGAUAUUUGUACUAUUGACCAPCCUGAAGACAGUGAAUAUGAAGCUGAAAUGUCACUUCAAGGAGAAGUAAAUAUUAAAUCCAACCAUAUUUCACAAGAGGGUGUUAUGCAUAAAGAAUAUUGUGUCAACCAGAAAGAUUUGAAUGGCCAAGCAAAAAUGAUCGAAAGUGUAACUGACAAUCAAAAAUCCACAGAGGAAGUAGAUAUGAAAAAUAUCAACAUGGAUAAUGAUCUGGAGGUUUUAЖCAUCUUCUCCCACUAGGAAUUUAAAUGGUGCCUACCUAACGGAAGGGAGCAAUGGAGAAGUGGЖCAUUUCCAAUGGUUUCAAAAACCUAAAUUUGAAUGCUGCUCUUCAPCCUGAUGAAAUAAAUAUAGAGAUUCUGAAUGAUAGUCAUACUCCUGGAACAAAGGUGUAUGAGGUUGUAAAUGAAGAUCCAGAAЖCUGCUUUCUGUЖCUCUUGCAAACAGGGAAGUUUUCAAUACUGAUGAGUGUUCAAUCCAACAUUGUUUAUAUCAGUUCACCCGUAAUGAGAAACUUCGAGAUGCGAAUAAACUGCUUUGUGAAGUAUGCACACGGAGACAGUGUAAUGGACCAAAGGCAAAUAUAAAAGGUGAAAGGAAGCAUGUUUACACCAAUGCCAAAAAGCAGAUGCUAAUUUCUCUUGCUCCUCCUGUUCUUACUCUUCAUUUAAAGAGAUUUCAGCAGGCUGGUUUUAACCUACGCAAAGUUAACAAACACAUAAAGUUUCCGGAAAUCUUAGAUUUGGCUCCUUUUUGCACCCUUAAAUGUAAGAAUGUUGCAGAAGAAAAUACAAGGGUACUCUAUUCCUUAUAUGGAGUUGUUGAACACAGUGGUACUAUGAGGUCGGGGCAUUACACUGCCUAUGCCAAGGCAAGAACCGCAAAUAGUCAUCUCUCUAAUCUUGUUCUUCACGGUGAUAUUCCACAAGAUUUUGAAAUGGAAUCAAAAGGGCAGUGGUUUCACAUCAGCGACACACAUGUGCAAGCUGUGCCUACAACUAAAGUACUAAЖCUCACAAGCGUACCUCCUAUUUUAUGAGAGAAUACUGUAAUAAUAUCAAAAGCACUUUUUCUGGAAACACAUUUAUGGCUUUUAUAAUGGCUGAAAUAACGAUAAAAAAAGЖCUAAUUAAAAUCAUGUUCACUUAACAUUAAAUACAUGCCAGAAGAAAUCAUGUUUAUUUAAAUAUUGAAGGGAAAAAUACCUAAAAAUGUACAAAGGUUUUAUAUUGUCAUAGUGGUUUUUAUUCCUGCUUUGUUUCUGGAAAGGAAAUCCUGAAUUACUUAAGUACUUUGUGUUUAAUAUAUCUGGGUGAUGGAUCACAACACAUCAAUAAACUGACUUACCCUAAAA
2195   mRNA  unknown    Homo sapiens    ACUGCAGAUCACCAAUGUGGUAGAAGCCAACCAACCAGUGACCAUCCAGAACUGGUGCAAGCGGGGCCGCAAGCAGUGCAAGЖCCCAUCCCCACUUUGUGAUUCCCUACCGCUGCUUAGUUGGUGAGUUUGUAAGUGAUGCCCUUCUCGUUCCUGACAAGUGCAAAUUCUUACACCAGGAGAGGAUGGAUGUUUGCGAAACUCAUCUUCACUGGCACACCGUCGCCAAAGAGACAUGCAGUGAGAAGAGUACCAACUUGCAUGACUACGGCAUGUUGCUGCCCUGCGGAAUUGACAAGUUCCGAGGGGUAGAGUUUGUGUGUUGCCCACUGGCUGAAGAAAGUGACAAUGUGGAUUCUGCUGAUGCGGAGGAGGAUGACUCGGAUGUCUGGUGGGGCGGAGCAGACACAGACUAUGCAGAUGGGAGUGAAGACAAAGUAGUAGAAGUAGCAGAGGAGGAAGAAGUGGCUGAGGUGGAAGAAGAAGAAGCCGAUGAUGACGAGGACGAUGAGGAUGGUGAUGAGGUAGAGGAAGAGGCUGAGGAACCCUACGAAGAAGCCACAGAGAGAЖCCACCAGCAUUGCCACCACCACCACCACCACCACAGAGUCUGUGGAAGAGGUGGUUCGAGAGGUGUGCUCUGAACAAGCCGAGACGGGGCCGUGCCGAGCAAUGAUCUCCCGCUGGUACUUUGAUGUGACUGAAGGGAAGUGUGCCCCAUUCUUUPACGGCGGAUGUGGCGGCAACCGGAACAACUUUGACACAGAAGAGUACUGCAUGGCCGUGUGUGGCAGCGCCAUUCCUACAACAGCAGCCAGUЖCCCCUGAUGCCGUUGACAAGUAUCUCGAGACACCUGGGGAUGAGAAUGAACAUGCCCAUUUCCAGAAAGCCAAAGAGAGGCUUGAGGCCAAGCACCGAGAGAGAAUGUCCCAGGUCAUGAGAGAAUGGGAAGAGGCAGAACGUCAAGCAAAGAACUUGCCUAAAGCUGAUAAGAAGGCAGUUAUCCAGCAUUUCCAGGAGAAAGUGGAAUCUUUGGAACAGGAAGCAGCCAACGAGAGЖCAGCAGCUGGUGGAGACACACAUGGCCAGAGUGGAAGCCAUGCUCAAUGACCGCCGCCGCCUGGCCCUGGAGAACUACЖUCACCGCUCUGCAGGCUGUUCCPCCUCGGCCUCGUCACGUGUUCAAUAUGCUAAAGAAGUAUGUCCGCGCAGAACAGAAGGACAGACAGCACACCCUAAAGCAUUUCGAGCAUGUGCGCAUGGUGGAUCCCAAGAAAGCCGCUCAGAUCCGGUCCCAGGUUAUGACACACCPCCGUGUGAUUUAUGAGCGCAUGAAUCAGUCUCUCUCCCUGCUCUACAACGUGCCUGCAGUGGCCGAGGAGAUUCAGGAUGAAGUUGGUGCAGUGGCUCAUGCCUGUAAUUCCAGCAUUUUGGGAGGCCAAGGUGGGCAGAUGACUUGAGCCCAGAAGUUCAAGACCAGAAUGGGAAACAUGGCAAGACCACAUUUCUACAAAAAAAUUAUCCAGGCAUGAUAACAUCUAUUUGUAGUCCCAGCUACUCAGGAGGCUGUGGUGGGAGGAUCUCCUGAGCCUGGGGUGGCUGAGGCUGCAGUGAGCCUUGAUCACGCCACCUGGGCAAUAGAGCAAGACCCUGUCUCAAAAAAAGGAAGAAAAAGACUAUUAUUUCCCCCAUUGAAUGGUCUUGGCACUAUUACACAAAAUCAAUUGUCCAUAGAUAAUAUGGGUUUAUUUCUUAAUUCUUAGUUCUUUUCUUUGAUCUGUGUGCCUGUGCUUACUGUAGUACCACACUGUUUUGAUUAUUGUAGCUUUGUAGUAAAUUUUGAAAUCAGC
2196   mRNA  unknown    Homo sapiens    ACUGCCCCGAUGGCUCCCUACCCCUGUGGCUGCCACAUCCUGCUGCUGCUCUUCUGCUGCCUGGCGGCUGCCCGGGCCAACCUGCUGAACCUGAACUGGCUUUGGUUCAAUAAUGAGGACACCAGCCAUGCAGCUACCACGAUCCCUGAGCCCCAGGGGCCCCUGCCUGUGCAGCCCACAGCAGAUACCACCACACACGUGACCCCCCGGAAUGGUUCCACAGAGCCAGCGACAGCCCCUGGCAGCCCUGAGCCACCCUCAGAGCUGCUGGAAGAUGGCCAGGACACCCCCACUUCUGCCGAGAGCCCGGACGCGCCAGAGGAGAACAUUGCCGGUGUCGGAGCCGAGAUCCUGAACGUGGCCAAAGGCAUCCGGAGCUUCGUCCAGCUGUGGAAUGACACUGUCCCCACUGAGAGCUUGGCCAGGGCGGAAACCCUGGUCCUGGAGACUCCUGUGGGCCCCCUUGCCCUCGCUGGGCCUUCCAGCACCCCCCAGGAGAAUGGGACCACUCUCUGGCCCAGCCGUGGCAUUCCUAGCUCUCCGGGCGCCCACACAACCGAGGCUGGCACCUUGCCUGCACCCACCCCAUCGCCUCCCUCCCUGGGCAGGCCCUGGGCACCACUCACGGGGCCCUCAGUGCCACCACCAUCUUCAGAGCGCAUCAGCGAGGAGGUGGGGCUGCUGCAGCUCCUUGGGGACCCCCCGCCCCAGCAGGUCACCCAGACGGAUGACCCCGACGUCGGGCUGGCCUACGUCUUUGGGCCAGAUGCCAACAGUGGCCAAGUGGCCCGGUACCACUUCCCCAGCCUCUUCUUCCGUGACUUCUCACUGCUGUUCCACAUCCGGCCAGCCACAGAGGGCCCAGGGGUGCUGUUCGCCAUCACGGЖCUCGGCGCAGGCCAUGGUCUUGCUGGGCGUGAAGCUCUCUGGGGUGCAGGACGGGCACCAGGACAUCUCCCUGCUCUACACAGAACCAGGUGCAGGCCAGACCCACACAGCCGCCAGCUUCCGGCUCCCCGCCUUCGUCGGCCAGUGGACACACUUAGCCCUCAGUGUGGCAGGUGGCUUUGUGGCCCUCUACGUGGЖCUGUGAGGAGUUCCAGAGAAUGCCGCUUGCUCGGUCCUCACGGGGCCUGGAGCUGGAGCCUGGCGCCGGGCUCUUCGUGGCUCAGGCGGGGGGAGCGGACCCUGACAAGUUCCAGGGGGUGAUCGCUGAGCUGAAGGUGCGCAGGGACCCCCAGGUGAGCCCCAUGCACUGCCUGGACGAGGAAGGCGAUGACUCAGAUGGGGCAUCCGGAGACUCUGGCAGCGGGCUCGGGGACGCCCGGGAGCUUCUCAGGGAGGAGACGGGCGCGGCCCUAAAACCCAGGCUCCCCGCGCCACCCCCCGUCACCACGCCACCCUUGGCUGGAGGCAGCAGCACGGAAGAUUCCAGAAGUGAAGAAGUCGAGGAGCAGACCACGGUGGCUUCGUUAGGAGCUCAGACACUUCCUGGCUCAGAUUCUGUCUCCACGUGGGACGGGAGUGUCCGGACCCCUGGGGGCCGCGUGAAAGAGGGCGGCCUGAAGGGGCAGAAAGGGGAGCCAGGUGUUCCGGGCCCACCUGGCCGGGCAGGCCCCCCAGGAUCCCCAUGCCUACCUGGUCCCCCGGGUCUCCCGUGCCCAGUGAGUCCCCUGGGUCCUGCAGGCCCAGCGUUGCAAACUGUCCCCGGACCACAAGGACCCCCAGGGCCUCCGGGGAGGGACGGCACCCCUGGAAGGGACGGCGAGCCGGGCGACCCCGGUGAAGACGGAAAGCCGGGCGACACCGGGCCACAAGGCUUCCCCGGGACUCCAGGGGACGUAGGUCCCAAGGGCGACAAGGGAGACCCUGGGGUUGGAGAGAGAGGGCCCCCAGGACCCCAAGGGCCUCCAGGGCCCCCAGGACCCUCCUUCAGACACGACAAGCUGACCUUCAUUGACAUGGAGGGAUCUGGCUUCGGGGGCGAUCUGGAGGCCCUGCGGGGUCCUCGAGGCUUCCCUGGACCUCCCGGACCCCCCGGUGUCCCAGGCCUGCCCGGCGAGCCAGGCCGCUUUGGGGUGAACAGCUCCGACGUCCCAGGACCCGCCGGCCUUCCUGGUGUGCCUGGGCGCGAGGGUCCCCCCGGGUUUCCUGGCCUCCCGGGACCCCCAGGCCCUCCGGGAAGAGAGGGGCCCCCAGGAAGGACUGGGCAGAAAGGCAGCCUGGGUGAAGCAGGCGCCCCAGGACAUAAGGGGAGCAAGGGAGCCCCCGGUCCUGCUGGUGCUCGUGGGGAGAGCGGCCUGGCAGGAGCCCCCGGACCUGCUGGACCACCAGGCCCCCCUGGGCCCCCUGGGCCCCCAGGACCAGGACUCCCCGCUGGAUUUGAUGACAUGGAAGGCUCCGGGGGGCCCUUCUGGUCAACAGCCCGAAGCGCUGAUGGGCCACAGGGACCUCCCGGCCUGCCGGGACUUAAGGGGGAUCCUGGCGUGCCUGGGCUGCCGGGGGCGAAGGGAGAAGUUGGAGCAGAUGGAGUCCCCGGGUUCCCCGGCCUCCCUGGCAGAGAGGGCAUUGCUGGGCCCCAGGGGCCAAAGGGAGACAGAGGCAGCCGGGGAGAAAAGGGAGAUCCAGGGAAGGACGGAGUCGGGCAGCCGGGCCUCCCUGGCCCCCCCGGACCCCCGGGACCUGUGGUCUACGUGUCGGAGCAGGACGGAUCCGUCCUGAGCGUGCCGGGACCUGAGGGCCGGCCGGGUUUCGCAGGCUUUCCCGGACCUGCAGGACCCAAGGGCAACCUGGGCUCUAAGGGCGAACGAGGCUCCCCGGGACCCAAGGGUGAGAAGGGUGAACCGGGCAGCAUCUUCAGCCCCGACGGCGGUGCCCUGGGCCCUGCCCAGAAAGGAGCCAAGGGAGAGCCGGGCUUCCGAGGACCCCCGGGUCCAUACGGACGGCCGGGGUACAAGGGAGAGAUUGGCUUUCCUGGACGGCCGGGUCGCCCCGGGAUGAACGGAUUGAAAGGAGAGAAAGGGGAGCCGGGAGAUGCCAGCCUUGGAUUUGGCAUGAGGGGAAUGCCCGGCCCCCCAGGACCUCCAGGGCCCCCAGGCCCUCCAGGGACUCCUGUUUACGACAGCAAUGUGUUUGCUGAGUCCAGCCGCCCCGGGCCUCCAGGAUUGCCAGGGAAUCAGGGCCCUCCAGGACCCAAGGGCGCCAAAGGAGAAGUGGGCCCCCCCGGACCACCAGGGCAGUUUCCGUUUGACUUUCUUCAGUUGGAGGCUGAAAUGAAGGGGGAGAAGGGAGACCGAGGUGAUGCAGGACAGAAAGGCGAAAGGGGGGAGCCCGGGGGCGGCGGUUUCUUCGGCUCCAGCCUGCCCGGCCCCCCCGGCCCCCCAGGCCCCCCAGGCCCACGUGGCUACCCUGGGAUUCCAGGUCCCAAGGGAGAGAGCAUCCGGGGCCAGCCCGGCCCACCUGGACCUCAGGGACCCCCCGGCAUCGGCUACGAGGGGCGCCAGGGCCCUCCCGGCCCCCCAGGCCCCCCAGGGCCCCCUUCAUUUCCUGGCCCUCACAGGCAGACUAUCAGCGUUCCCGGCCCUCCGGGCCCCCCUGGGCCCCCUGGGCCCCCUGGAACCAUGGGCGCCUCCUCAGGGGUGAGGCUCUGGGCUACACGCCAGGCCAUGCUGGGCCAGGUGCACGAGGUUCCCGAGGGCUGGCUCAUCUUCGUGGCCGAGCAGGAGGAGCUCUACGUCCGCGUGCAGAACGGGUUCCGGAAGGUCCAGCUGGAGGCCCGGACACCACUCCCACGAGGGACGGACAAUGAAGUGGCCGCCUUGCAGCCCCCCGUGGUGCAGCUGCACGACAGCAACCCCUACCCGCGGCGGGAGCACCCCCACCCCACCGCGCGGCCCUGGCGGGCAGAUGACAPCCUGGCCAGCCCCCCUCGCCUGCCCGAGCCCCAGCCCUACCCCGGAGCCCCGCACCACAGCUCCUACGUGCACCUGCGGCCGGCGCGACCCACAAGCCCACCCGCCCACAGCCACCGCGACUUCCAGCCGGUGCUCCACCUGGUUGCGCUCAACAGCCCCCUGUCAGGCGGCAUGCGGGGCAPCCGCGGGGCCGACUUCCAGUGCUUCCAGCAGGCGCGGGCCGUGGGGCUGGCGGGCACCUUCCGCGCCUUCCUGUCCUCGCGCCUGCAGGACCUGUACAGCAUCGUGCGCCGUGCCGACCGCGCAGCCGUGCCCAUCGUCAACCUCAAGGACGAGCUGCUGUUUCCCAGCUGGGAGGCUCUGUUCUCAGGCUCUGAGGGUCCGCUGAAGCCCGGGGCACGCAUCUUCUCCUUUGACGGCAAGGACGUCCUGAGGCACCCCACCUGGCCCCAGAAGAGCGUGUGGCAUGGCUCGGACCCCAACGGGCGCAGGCUGACCGAGAGCUACUGUGAGACGUGGCGGACGGAGGCUCCCUCGGCCACGGGCCAGGCCUCCUCGCUGCUGGGGGGCAGGCUCCUGGGGCAGAGUGCCGCGAGCUGCCAUCACGCCUACAUCGUGCUCUGCAUUGAGAЖCAGCUUCAUGACUGCCUCCAAGUAGCCACCGCCUGGAUGCGGAUGGCCGGAGAGGACCGGCGGCUCGGAGGAAGCCCCCACCGUGGGCAGGGAGCGGCCGGCCAGCCCCUGGCCCCAGGACCUGGCUGCCAUACUUUCCUGUAUAGUUCACGUUUCAUGUAAUCCUCAAGAAAUAAAAGGAAGCCAAAGAGUGUAUUUUUUUAAAAGUUUAAAЖCAGAAGCCUGAUGCUGACAUUCACCUGCCCCAACUCUCCCCUGACCUGUGAGCCCAGCUGGGUCAGGCAGGGUGCAGUAUCAUGCCCUGUGCAACCUCUUGGCCUGAUCAGACCACGGCUCGAUUUCUCCAGGAUUUCCUGCUUUGGGAAGCCGUGCUCGCCCCAGCAGGUGCUGACUUCAUCUCCCACCUAGCAGCACCGUUCUGUGCACAAAACCCAGACCUGUUAGCAGACAGGCCCCGUGAGGCAAUGGGAGCUGAGGCCACACUCAGCACAAGGCCAUCUGGGCUCCUCCAGGGUGUGUGCUCGCCCUGCGGUAGAUGGGAGGGAGGCUCAGGUCCCUGGGGCUAGGGGGAGCCCCUUCUGCUCAGCUCUGGGCCAUUCUCCACAGCAACCCCAGGCUGAAGCAGGUUCCCAAGCUCAGAGGCGCACUGUGACCCCCAGCUCCGGCCUGUCCUCCAACACCAAGCACAGCAGCCUGGGGCUGGCCUCCCAAAUGAGCCAUGAGAUGAUACAPCCAAAGCAGACAGCUCCACCCUGGCCGAGUCCAAGCUGGGAGAUUCAAGGGЖCCCAUGAGUUGGGGUCUGGCAGCCUCCCAPCCAGGGCCCCCAUCUCAUGCCCCUGGCUGGGACGUGGCUCAGCCAGCACUUGUCCAGCUGAGCGCCAGGAUGGAACACGGCCACAUCAAAGAGGCUGAGGCUGGCACAGGЖCAUGCGGUAGCCAGCACACAGGGCAGUGAGGGAGGGCUGUCAUCUGUGCACUGCCCAUGGЖCAGGCUGGCUCCAGAUGCAGGGCAGUCAUUGGCUGUCUCCUAGGAAACCCAUAUCCUUACCCUCCUUGGGЖCUGAAGGGGAACCCCGGGGUGCCCACAGGCCGCCCUGCGGGUGAACAAAGCAGCCACGAGGUGCAACAAGGUCCUCUGUCAGUCACAGCCACCCCUGAGAUCCGGCAACAUCAACCCGAGUCAUUCGUUCUGUGGAGGGACAAGUGGЖCUCAGGGCAGCGCCAGGCUGACCACAGCACAGCCAACACGCACCUGCCUCAGGЖCUGCGACGAAACCGGUGGGGCUGGUUCUGUAAUUGUGUGUGAUGUGAAGCCAAUUCAGACAGGCAAAUAAAAGUGACCUUUUACACUGA
2197   mRNA  unknown    Homo sapiens    ACUGCGCCUGCGCGGGGCGCCGGGCCCUGGGCGGGGCCUUCCCGGCUGACGGCCUGCGUGCACUGCGCUUGCGCGGGUUGAGGGCGGUGGCUCAGGCUCCUGGAAAGGACCGUCCACCCCPCCGCGCUGGCGGUGUGGACGCGGAACUCAGCGGAGAAACGCGAUUGAGAAAUGGAAAAGAAAAUGAAAUAAAUCAGCAGUUAUGAGGCAGAGCCUAAGAGAЖCUAUGGCAACAUCAGGUGACUGUCCCAGAAGUGAAUCGCAGGGAGAAGAGCCUGCUGAGUGCAGUGAGGCCGGUCUCCUGCAGGAGGGAGUACAGCCAGAGGAGUUUGUGGCCAUCGCGGACUACGCUGCCACCGAUGAGЖCCCAGCUCAGUUUUUUGAGAGGAGAAAAAAUUCUUAUCCUGAGACAAACCACUGCAGAUUGGUGGUGGGGUGAGCGUGCGGGCUGCUGUGGGUACAUUCCGGCAAACCAUGUGGGGAAGCACGUGGAUGAGUACGACCCCGAGGACACGUGGCAGGAUGAAGAGUACUUCGGCAGCUAUGGAACUCUGAAACUCCACUUGGAGAUGUUGGCAGACCAGCCACGAACAACUAAAUACCACAGUGUCAPCCUGCAGAAUAAAGAAUCCCUGACGGAUAAAGUCAPCCUGGACGUGGGCUGUGGGACUGGGAUCAUCAGUCUCUUCUGUGCACACUAUGCGCGGCCUAGAGCGGUGUACGCGGUGGAGGCCAGUGAGAUGGCACAGCACACGGGGCAGCUGGUCCUGCAGAACGGCUUUGCUGACAUCAUCACCGUGUACCAGCAGAAGGUGGAGGAUGUGGUGCUGCCCGAGAAGGUGGACGUGCUGGUGUCUGAGUGGAUGGGGACCUGCCUGCUGCACCACACACUGGAAGCAGACGCUGUUCAUGAUGGACGACCCAGUCCCUGUCCAUACAGGAGACGUGGUCACGGGUUCAGUUGUGUUGCAGAGAAACCCAGUGUGGAGAAGGCACAUGUCUGUGGCUCUGAGCUGGGCUGUCACUUCCAGACAAGACCCCACAUCUCAAAAAGUUGGAGAAAAAGUCUUCCCCAUCUGGAGAUGACAGUUGAUGCUPUAUUUGGAAAGCAGUGUGCAUAUCUUGAGGGGUGAUGAACACAAGCAAЖCCAAGUUGCACCUGGCUUCUGCACACUCCUGCGAAAGUCGGUGAACAUUCACUCCACAUUGACCCCPCCCUAGCCUGGCAGGUGACGUCAGGGUCCUUCACAGACAAACACGCUUGGGCUCGGCAGGAGCUGCCGUGGCCACCCCCGCUGCCCAGUGUCUGCCCUCUAGAAGUAGGCUGUGUUUCCAGGUGUUCACCCGUGGUGCCCACAGUGCCGACCCGUGGCUGGGUCGGAGCUCCAUGUUCCUAAGCUAGGUCUAGGUCUACACUCCUAGGACGCACGCAUAUCAGCCCGUGUACCCUGUGACAGUGACUGUCCCCACCUCCUAUGUUAGUGGUGCCCUUACUGCCGUCGCUCAPCCACUCGUGUGGGACGUAGGAUUGCACAGGGCUGUGCCAGUGGCGUGUAGGGAACACUGCCCUGGCUCAGCGUGCGAGCUAAGGUGGUGAUGUAUGCGAUGGGЖCUCUGCAUGGGAUAGUACAGUUGUGUAGACGUCUUCCAAAUAAAUUAUGUGUUGGUCCAUCGCACAUGCUCAAUAAAUAUUUUUAAAUGAGUGAAUGUCAUUGUGUAUCCUGUUUUAUGCAUAUAUGUUAUUUUUUGUAAUUACAGGAUCAUACUAUAUGCAUUGCUUUAUAAGUUUUUCUCAAUAUUGUGAAAAAACUUCCACAUCAGUAGAUACAUGUCCAUAAUUUUUUUUUGUAUUGUUUUGAUUUUUAUUAAAUUUUAUUG
2198   mRNA  unknown    Homo sapiens    ACUGCGCCUGCGCGGGGCGCCGGGCCCUGGGCGGGGCCUUCCCGGCUGACGGCCUGCGUGCACUGCGCUUGCGCGGGUUGAGGGCGGUGGCUCAGGCUCCUGGAAAGGACCGUCCACCCCPCCGCGCUGGCGGUGUGGACGCGGAACUCAGCGGAGAAACGCGAUUGAGAAAUGGAAAAGAAAAUGAAAUAAAUCAGCAGUUAUGAGGCAGAGCCUAAGAGAЖCUAUGGCAACAUCAGGUGACUGUCCCAGAAGUGAAUCGCAGGGAGAAGAGCCUGCUGAGUGCAGUGAGGCCGGUCUCCUGCAGGAGGGAGUACAGCCAGAGGAGUUUGUGGCCAUCGCGGACUACGCUGCCACCGAUGAGЖCCCAGCUCAGUUUUUUGAGAGGAGAAAAAAUUCUUAUCCUGAGACAAACCACUGCAGAUUGGUGGUGGGGUGAGCGUGCGGGCUGCUGUGGGUACAUUCCGGCAAACCAUGUGGGGAAGCACGUGGAUGAGUACGACCCCGAGGACACGUGGCAGGAUGAAGAGUACUUCGGCAGCUAUGGAACUCUGAAACUCCACUUGGAGAUGUUGGCAGACCAGCCACGAACAACUAAAUACCACAGUGUCAPCCUGCAGAAUAAAGAAUCCCUGACGGAUAAAGUCAPCCUGGACGUGGGCUGUGGGACUGGGAUCAUCAGUCUCUUCUGUGCACACUAUGCGCGGCCUAGAGCGGUGUACGCGGUGGAGGCCAGUGAGAUGGCACAGCACACGGGGCAGCUGGUCCUGCAGAACGGCUUUGCUGACAUCAUCACCGUGUACCAGCAGAAGGUGGAGGAUGUGGUGCUGCCCGAGAAGGUGGACGUGCUGGUGUCUGAGUGGAUGGGGACCUGCCUGCUGUUUGAGUUCAUGAUCGAGUCCAPCCUGUAUGCCCGGGAUGCCUGGCUGAAGGAGGACGGGGUCAUUUGGCCCACCAUGGCUGCGUUGCACCUUGUGCCCUGCAGUGCUGAUAAGGAUUAUCGUAGCAAGGUGCUCUUCUGGGACAACGCGUACGAGUUCAACCUCAGCGCUCUGAAGUUGGAGAAAAAGUCUUCCCCAUCUGGAGAUGACAGUUGAUGCUPUAUUUGGAAAGCAGUGUGCAUAUCUUGAGGGGUGAUGAACACAAGCAAЖCCAAGUUGCACCUGGCUUCUGCACACUCCUGCGAAAGUCGGUGAACAUUCACUCCACAUUGACCCCPCCCUAGCCUGGCAGGUGACGUCAGGGUCCUUCACAGACAAACACGCUUGGGCUCGGCAGGAGCUGCCGUGGCCACCCCCGCUGCCCAGUGUCUGCCCUCUAGAAGUAGGCUGUGUUUCCAGGUGUUCACCCGUGGUGCCCACAGUGCCGACCCGUGGCUGGGUCGGAGCUCCAUGUUCCUAAGCUAGGUCUAGGUCUACACUCCUAGGACGCACGCAUAUCAGCCCGUGUACCCUGUGACAGUGACUGUCCCCACCUCCUAUGUUAGUGGUGCCCUUACUGCCGUCGCUCAPCCACUCGUGUGGGACGUAGGAUUGCACAGGGCUGUGCCAGUGGCGUGUAGGGAACACUGCCCUGGCUCAGCGUGCGAGCUAAGGUGGUGAUGUAUGCGAUGGGЖCUCUGCAUGGGAUAGUACAGUUGUGUAGACGUCUUCCAAAUAAAUUAUGUGUUGGUCCAUCGCACAUGCUCAAUAAAUAUUUUUAAAUGAGUGAAUGUCAUUGUGUAUCCUGUUUUAUGCAUAUAUGUUAUUUUUUGUAAUUACAGGAUCAUACUAUAUGCAUUGCUUUAUAAGUUUUUCUCAAUAUUGUGAAAAAACUUCCACAUCAGUAGAUACAUGUCCAUAAUUUUUUUUUGUAUUGUUUUGAUUUUUAUUAAAUUUUAUUG
2199   mRNA  unknown    Homo sapiens    ACUGGCCCCGCCCACCGUGCGAACCCAAAGAGGGUGAGCCAAAGAAAUGUAAGACAACAGAGUGACAAGCCGAAUGAGCCAAUCAGCAGGGGCUGUGUGGGGGCAGGAUUAGCACUCUCCCCCUCCUCCCCAUGUAGGCGUAACAGGAGAUUUAUGGUCUGAGGUUGCCUAUCGUGGUUUAUGGAGAUUUUGUUGCACGAUUUCGGUGCAUCUGCUCGUUGCCGUGAGAGACACUAGAUAGGAUGCACUUAAUUGACUUAAUUAUUGGAGGUUUUCAAGGAGAGAAUAAUGUGGAAAGGAAAAAGGCGAAGCACAACCCAAAGGGGUUGGCCGGGCCUAUGGUUGGAAUGAGGAAGGGUGUGGUCUUCGGCUAAAAUUUGCAUAAAACGGAACCCAUCCGGGCGAUUCCAACUUCGCCCAUUUAUUGGUAGUCCUUGGGGCGGGGCCUCGCCUCUUUCUCCGCCCCCGAGCGGAACAUGACGGGAGAUGUAGUUCCGAGACCGGUUGCCAUGGCGUUCUGGACAGCCUCGCGAGUCCGACCCCGCCCUUCAGGAGUGACGAGCGGCCUGACCAAUGGGAGCAGGGGGCGGGCUCUCUGACGAAGGACUGGAAGGUGGCGGUGGUGAAGGUGCAGGCCGUUGGGGCGGCUCAGAGGCAGGUGACUAUGAAAGGCUUAUAUUUCCAACAGAGUUCCACAGAUGAAGAAAUAACAUUUGUAUUUCAAGAAAAGGAAGAUCUUCCUGUUACAGAGGAUAACUUUGUGAAACUUCAAGUUAAAGCUUGUGCUCUGAGCCAGAUAAAUACAAAGCUUCUGGCAGAAAUGAAGAUGAAAAAGGAUUUAUUUCCUGUUGGGAGAGAAAUUGCUGGAAUUGUAUUAGAUGUUGGAAGCAAGGUAUCAUUCUUUCAACCAGAUGAUGAAGUAGUUGGAAUUUUGCCCCUGGACUCUGAAGЖCCCUGGACUUUGUGAAGUUGUUAGAGUACAUGAGCAUUACUUGGUUCAUAAACCAGAAAAGGUCACAUGGACGGAAGCAGCAGGAAGCAUUCGGGAUGGAGUGCGUGCCUAUACAGCUCUGCAUUAUCUUUCUCAUCUCUCUCCUGGAAAAUCAGUGCUGAUAAUGGAUGGAGCAAGUGCAUUUGGUACAAUAGCUAUUCAGUUAGCACAUCAUAGAGGAGCCAAAGUGAUUUCAACAGCAUGCAGCCUUGAAGAUAAGCAGUGCCUUGAAAGAUUCAGACCUCCCAUAGAGAACAGUACAAUUGCCUGAUUUCCUGUCCUUUACAGCCCGAGUGAUUGAUGUAUCUAAUGGGAAAGUUCAUGUUGCUGAAAGCUGUUUGGAAGAAACAGGUGGCCUGGGAGUAGAUAUUGUCCUAGAUGCUGGAGUGAGAUUAUAUAGUAAAGAUGAUGAACCAGCUGUAAAACUACAACUACUACCACAUAAЖCAUGAUAUCAUCACACUUCUUGGUGUUGGAGGCCACUGGGUAЖCAACAGAAGAAAACCUUCAGUUGGAUCCUCCAGAUAGCCACUGCCUUUUCCUCAAGGGAGCAACGUUAGCUUUCCUGAAUGAUGAAGUUUGGAAUUUGUCAAAUGUACAACAGGGAAAAUAUCUPUAGUAUUCCAAGUGCCUUGCAAGUAUUCAUUUAAACAUUAAAACAGCCUUUUGAGAUGUAAGUACUGUUAUCAUCCCCAUUUCACAGGUGAAGAAACAGAAGCACAGAGAUGUUGAUACAGACUCAAGGACGCAGCAAGUGGCGGAGCAAGAAUCACACUCAGGCAGUCUCUCUCCUUUCUGAACAGAGAUGAGCCCUAAGAUACCUGGAAGAUUUUGUUUUUAACCUCACAUUAAGGAAAGCACACAUCACCUUGAAAGGUUGCACACUUACUCCUAUGAUGGUGCCAUUGCACAGAAACAUUUCAGAAUACUUUUCUAAAUUAAAGAGUUUGUGGAGUGUUUUAUAAAUAUCAAUGCUAGGAAAUCUUUAUCAAAUGAAGAUAGGUUUGACUUUUUGAAACAAAAGUCAUUCAGAGAUAAGUCUGGUGUGAUUGAAGCCAAAUCAUUCCAGUUGAGUAAAAAUAAUAAAAAGUUUGGAAUAUACAAACAAUUUCAAAAAGAAAGGUGCAAACCUCUUUAGAGUAGGGUCAACUUAAGAAUUCCUUUUAUUUCUAAAAUGACUGGCUUAGAGGCAGCAGCACUUGGUAAAAGUUUUAAUGUAUUGGAUAAAAAAAAAGUUAUCAUUACUUGAUAGAGCAUAUGUGUGUGUCUGAAGAAAGAUUUACAUAGCCUUACACUUCUCUCUACUGAAUAUCAUACGUUACUUUUCUUAAAUGUGUCUAGUCAUAUAUGUGUGAUAUGUAUAAAGGCCAGUUCCCUCCAGGAGCAAUGACAGUCUUUAUUCGGAGCUUUAAGGUAGUUAUGUAGGCCGGGCAUGGUGGCACAUGCCUGUAAUCCCAGCUACUCAUGAGGCUGAGGCAGAAGAAUCGCUUGAACCUGGGAGGCAGAGGUUUCAGUGAGCCAAGAUUGCACUACUACACUCCAGCCUGGUGACAGAGUGAGACUCCAUCUC
2200   unknown  unknown    Homo sapiens    ACUUAGGACAGCAUUUUAAAUCAUUCAUUCCAGAGGAAAGCCACGGGGCCUGGCAGGCGGUGGCUUCCCGUGCUCGGUGGCGCGCCUCCCGGCUGGAGGUUUCUGAGCUCUGCAGAAGCGUCCAGCCACAGGCCUGUUGCCCCCGUGGGCCCCUGGCUCUGCCUCACGGCUGGACGAAGUGAUUCACACACAGGCUCCUCAGAAACCUGUCUUGUCUCUCUUGAGCCGUGAGCUCUUGUUUAGUUUUGCAUAAUGGUCACUUGGGGCGCGUAUGCAACUUUGAGUGCCCAUUUAUUUUUACAGGACAGUUAAUGAUUGGACGUCAUCCAAUGAGAAAGCAGUGAUGUCUPUACUGCACACGUUGGAGGAGCUGAAGUCUGACUUGAGCAGGCCCACCPCCUCCCAGAAAAAAAUGGCAGCAGAGCUGCAGUUCCAGUUUGUGGACGUCCUGCUGAAAGACAAUGUUUCCCUCACAAAAGCGCUCAGCACGGUGACCCAGGAGAAGCUGGAGCUGAGCAGAGCCGUGUCUAAGCUUGAGAAGUUGCUGAAGCACCAUCUGCAGAAGGGCUGCAGCCCAAGCAGGUCGGAAAGGUCUGCUUGGAAGCCAGACGAAACGGCUCCACAGAGUUCCCUGAGGCGCCCAGЖCCCCGGCCGGCUUCCACCAGCUGCCAGCGAGGAAGCACACACCAGCAAUGUCAAGAUGGAAAAAUUGUACCUGCAUUACUUGAGAGCAGAGAGCUPUAGAAAAGCUCUGAUUUAUCAAAAGAAGUAUCUUUUGCUGUUGAUUGGUGGAUUCCAGGAUUCUGAACAAGAAACACUCUCCAUGAUUGCCCAUUUGGGGGUAUUUCCUUCCAAAGCAGAACGGAAAAUCACAUCUCGUCCUUUCACCAGGUUCCGCACGGCCGUCAGGGUGGUCAUUGCAAUAUUAAGAUUACGUUUUUUGGUUAAGAAAUGGCAAGAAGUAGAUCGGAAAGGAGCUCUGGCACAAGGCAAAGCCCCUCGCCCAGGGCCCCGAGCACGACAGCCGCAGUCUCCACCCAGAACCAGAGAGUCCCCCCCAACCCGGGAUGUACCCUCUGGCCACACCAGGGACCCUGCCAGAGGCCGCAGACUGGCAGCAGCAGCCUCCCCACACAGUGGGGGAAGAGCCACUCCAPCCCCAAAUUCAAGAUUAGAAAGAUCCCUGACUGCUUCUCAAGAUCCAGAACAUUCCUUGACAGAGUAUAUUCACCAUUUAGAAGUGAUCCAGCAAAGAUUGGGAGGGGUACUACCAGAUUCUACUUCAAAGAAAUCCUGCCACCCGAUGAUUAAACAGUGAAUAAAAUGUCAUGGCUCUUUCCUGCGACAAUUCUAUUUGAGGAAAAGAUUUGUUUUUCCCUUUUCCCAAGGAAGCUCGUGGGACAGCAUGGGCACUACUCUUCAUGUGCGGUGACACCAGCCCCCAGAUGCCUUGAAUUAAGUGUCCUCACCUPUAUGCAUGACUGCAAAGCCAGCUGGAGCAUUUUCUAUGGAGCCUCCGUAUGUUUUAGGCCCAUGACCUUCGUGAGGUGACGGGCACUCACUCCCAUGAGCCCUGGCUGUGUGCUGUUGUGUGCCUAUCGGCAGAUCCAPCCUUCCUGCCUCCAAGGAGGAUACACAGAGAAUGGCUUCCUGUUGUUUUGUUUAUUUUCUUAACGUGUACAGAUGGAAACUUCAUUUAAAAAUAAAAACAAAACAACUCAAAAAGGAAUAAAAUUUAAUCA
2201   mRNA  unknown    Homo sapiens    ACUUCUCUUCUUCCGCGACCGGGAGAAGGCCGAGGGAUCGGCGGCACGAUCGACAUUGUACACCUUGAAGGUGGACGGAUGUGAAGCCGCGCGUUGUAGGGCUGAAGCUUACCAAAGAAAGGAAGAAUGCACUUUUCAGGAUUAGAAGAGGCUGUGUAUAGAAACAUACAAGCUUGCAAGGAGCUUGCCCAAACCACUCGUACAGCAUAUGGACCAAAUGGAAUGAACAAAAUGGUUAUCAACCACUUGGAGAAGUUGUUUGUGACAAACGAUGCAGCAACUAUUUUAAGAGAACUAGAAGUACAGCAPCCUGCUGCAAAAAUGAUUGUAAUGGCUUCUCAUAUGCAAGAGCAAGAAGUUGGAGAUGGCACAAACUUUGUUCUGGUAUUUGCUGGAGCUCUCCUGGAAUUAGCUGAAGAACUUCUGAGGAUUGGCCUGUCAGUUUCAGAGGUCAUAGAAGGUUAUGAAAUAGCCUGCAGAAAAGCUCAUGAGAUUCUUCCUAAUUUGGUAUGUUGUUCUGCAAAAAACCUUCGAGAUAUUGAUGAAGUCUCAUCUCUACUUCGUACCUCCAUAAUGAGUAAЖCAAUAUGGUAAUGAAGUAUUUCUGGCCAAGCUUAUUGCUCAGGCAUGCGUAUCUAUUUUUCCUGAUUCCGGCCAUUUCAAUGUUGAUAЖCAUCAGAGUUUGUAAAAUUCUGGGCUCUGGUAUCAGUUCCUCUUCAGUAUUGCAUGGCAUGGUUUUUAAGAAGGAAЖCCGAAGGUGAUGUAЖCAUCUGUCAAAGAUGCAAAAAUAGCAGUGUACUCUUGUCCUUUUGAUGGCAUGAUAACAGAAACUAAGGGAACAGUGUUGAUAAAGACUGCUGAAGAAUUGAUGAAUUUUAGUAAGGGAGAAGAAAACCUCAUGGAUGCACAAGUCAAAGCUAUUGCUGAUACUGGUGCAAAUGUCGUAGUAACAGGUGGCAAAGUGGCAGЖCAUGGCUCUUCAUUAUGCAAAUAAAUAUAAUAUCAUGUUAGUGAGGCUAAЖCUCAAAAUGGGAUCUCCGAAGACUUUGUAAAACUGUUGGUGCUACAGCUCUUCCUAGAUUGACACCUCCUGUCCUUGAAGAAAUGGGACACUGUGACAGUGUUUACCUCUCAGAAGUUGGAGAUACUCAGGUGGUGGUUUUUAAGCAUGAAAAGGAAGAUGGCGCCAUUUCUACCAUAGUACUUCGAGGCUCUACЖGACAAUCUGAUGGAUGACAUAGAAAGGGCAGUAGACGAUGGUGUUAAUACUUUCAAAGUUCUUACAAGGGAUAAACGUCUUGUACCCGGAGGUGGAGCAACAGAAAUUGAAUUAGCCAAЖCAGAUCACAUCAUAUGGAGAGACAUGUCCUGGACUUGAACAGUAUGCUAUUAAGAAGUUUGCUGAGGCAUUUGAAGCUAUUCCCCGCGCACUGGCAGAAAACUCUGGAGUUAAGGCCAAUGAAGUAʍUCUCUAAACUPUAUGCAGUACAUCAAGAAGGAAAUAAAAACGUUGGAUUAGAUAUUGAGGCUGAAGUCCCUGCUGUAAAGGACAUGCUGGAAGCUGGUAUUCUAGAUACUUACCUGGGAAAAUAUUGGGCUAUCAAACUCGCUACUAAUGCUGCAGUCACUGUACUUAGAGUGGAUCAGAUCAUCAUGGCAAAACCAGCUGGUGGGCCCAAGCCUCCAAGUGGGAAGAAAGACUGGGAUGAUGACCAAAAUGAUUGAAAUUGGCUUAAUUUUUACUGUAGGUGAAGGCUGUAUUUGUAGUAGUACUCAAGAAUCACCUGAUGUUUUCUUAUUCUCCUUAAAUUAAGAGUUAUUUUGUGUUUGUAUUCUUGGCUGGAUGUUAUAAUAAACAUAUUGUUACUGUC
2202   mRNA  unknown    Homo sapiens    AGAAAUAUUUUGAGCUCUGUAUUCAAAGCAGGAAGAUCUGGGACCAUAUGAAUGAUUUCGGAAUCAAGAAUAUGGACCAGGUAGCCCCUGUGGCUAЖCAGUUACЖGAGGGACACUCAAGCGCCAGCCAGCCUUUGACACCUUUGAUGGGUCCCUGUUUGCUGUUUUUCCUUCUCUAAAUGAAGAGCAAACACUGCAAGAAGUGCCAACAGGCUUGGAUUCCAUUUCUCAUGACUCCGCCAACUGUGAAUUGCCUUUGUUAACCCCGUGCAGCAAGGCUGUGAUGAGUCAAGCCUUAAAAGCUACCUUCAGUGGCUUCAAAAAGGAЖCAGCGGCGCCUGGGCAUUCCAAAGAACCCCUGGCUGUGGAGUGAGCAACAGGUAUGCCAGUGGCUUCUCUGGGCCACCAAUGAGUUCAGUCUGGUGAACGUGAAUCUGCAGAGGUUCGGCAUGAAUGGCCAGAUGCUGUGUAACCUUGGCAAGGAACGCUUUCUGGAGCUGGCACCUGACUUUGUGGGUGACAUUCUCUGGGAACAUCUGGAGCAAAUGAUCAAAGAAAACCAAGAAAAGACAGAAGAUCAAUAUGAAGAAAAUUCACACCUCACCPCCGUUCCUCAUUGGAUUAACAGCAAUACAUUAGGUUUUGGCACAGAGCAGGCGCCCUAUGGAAUGCAGACACAGAAUUACCCCAAAGGCGGCCUCCUGGACAGCAUGUGUCCGGCCUCCACACCCAGCGUACUCAGCUCUGAGCAGGAGUUUCAGAUGUUCCCCAAGUCUCGGCUCAGCUCCGUCAGCGUCACCUACUGCUCUGUCAGUCAGGACUUCCCAGGCAGCAACUUGAAUUUGCUCACCAACAAUUCUGGGACUCCCAAAGACCACGACUCCCCUGAGAACGGUGCGGACAGCUUCGAGAGCUCAGACUCCCUCCUCCAGUCCUGGAЖCAGCCAGUCGUCCUUGCUGGAUGUGCAACGGGUUCCUUCCUUCGAGAGCUUCGAAGAUGACUGCAGCCAGUCUCUCUGCCUCAAUAAGCCAACCAUGUCUUUCAAGGAUUACAPCCAAGAGAGGAGUGACCCAGUGGAGCAAGGCAAACCAGUUAUACCUGCAGCUGUGCUGGCCGGCUUCACAGGAAGUGGACCUAUUCAGCUGUGGCAGUUUCUCCUGGAGCUGCUAUCAGACAAAUCCUGCCAGUCAUUCAUCAGCUGGACUGGAGACGGAUGGGAGUUUAAGCUCGCCGACCCCGAUGAGGUGGCCCGCCGGUGGGGAAAGAGGAAAAAUAAGCCCAAGAUGAACUACGAGAAGCUGAGCCGGGGCUUACGCUACUAUUACGACAAGAACAUCAPCCACAAGACGUCGGGGAAGCGCUACGUGUACCGCUUCGUGUGCGACCUCCAGAACUUGCUGGGGUUCACGCCCGAGGAЖCUGCACGCCAUCCUGGGCGUCCAGCCCGACACGGAGGЖCUGAGGUCGCCGGGACCACCCUGAGCCGGCCCCAGGCUCGUGGЖCUGAGUGGGAAGCCCAPCCUGACCAGCUGCUCCGAGGACCCAGGAAAGGCAGGAUUGAAAAUGUCCAGGAAAGUGGCCAAGAAGCAGUGGCCUUAUUGCAUCCCAAACCACGCCUCUUGЖCCAGGCUGCCUCCCUUGUGGCAGCAACGGCACAGCUAAUUCUACUCACAGUGCUUUUAAGUGAAAAUGGUCGAGAAAGAGGCACCAGGAAGCCGUCCUGGCGCCUGGCAGUCCGUGGGACGGGAUGGUUCUGGCUGUUUGAGAUUCUCAAAGGAGCGAGCAUGUCGUGGЖCACACACAGЖCUAUUUUUAGAUUUUCUUUUGCCUUUUGCAACCAGGAACAGCAAAUGCAAAAЖCUCUUUGAGAGGGUAGGAGGGUGGGAAGGAAACAACCAUGUCAUUUCAGAAGUUAGUUUGUAUAUAUUAUUAUAAUCUUAUAAUUGUUCUCAGAAUCCCUUAЖCAGUUGUAUUUAACAGAAAUUGUAUAUUGUAAUUUAAAAUAAUUAUAUAACUGUAUUUGAAAUAAGAAUUCAGACAUCUGAGGUUUUAUUUCAUUUUUCAAUAGCACAUAUGGAAUUUUGCAAAGAUUUAAUCUGCCAAGGGCCGACUAAGAGAAGUUGUAAAGUAUGUAUUAUUUACЖUUUAAUAGЖCUUACAGGGAUAAGGCCUGUGGGGGGUAAUCCCUGCUUUUUGUGUUUUUUUGUUUGUUUGUUUGUUUGUUUUUGGGGGGUUUUCUUGCCUUGGUUGUCUGGCAAGGACUUUGUACAUUUGGGAGUUUUUAUGAGAAACUUAAAUGUUAUUAUCUGGGCUUAUAUCUGGCCUCUGCUUUCUCCUPUAAUUGUAAAGUAAAAGCUAUAAAGC
2203   unknown  unknown    Homo sapiens    AGAACAUAAAAACCUAAAAUUUAGUAACAAGGGGAAAAUAAAGCAUGAUUUGGAGAUAUGUUUCAAAUUUUUAAAAAAUGACCAUAAAGAUCAACAGUACAACUUAAUACUGUUUGCUAUAUGUACAUGGAUGCCCUUUAAUAAGAGGCAUUGAAUAUUUCUUAACCUGUAAAAAUAACUGUUGACCAUGCUAAUGUAUAUAUACUUGUGCAUCUUAGGACAUUAAGUGGUUUGCUGCUUUGAUGGAAAUUAUGGUUCAGUGGGUUGGAUACAAGAGAGAUGACUGUUCACAGAAUAACCUGUGAACUUUCACCCCUCUGUAUGGAAACUUGUUUCAGGGCCAAAUCCUUGUAGCUGUCUUCUUGCCCCGGUCAGUGCCAGCCGUACUAUUCACAACACUGCUGCUACCGAGGCCUAGGAUCAGUUCUUAAGAGCAGCCCCGGUAЖCUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCAPCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAAЖCAPCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCUPUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGGЖCCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCUPUAAUGUUGUAAAUAUUUGGCAAUUUAAGЖCAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUAЖCAPCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUAЖCACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGACAGAUAAUGGGCCAGUGUUAUUGAGGUGAUCAAGAUCUGUUCCACAGGGCUAAUGCCACCAUCUCCCCUCAAAAUUUUGUAGAGGUUCUAAAAAGAAAGUGGUAUGUUGUGUGAUGAUCAGCACUAAGUCCUGCAUUCCUGUUAAAGCCACUUGGGUCAPAAGAAGGGAGUAAAAAAUGAAGUCUGACUAGAAUUCUAUUGCAGAGGCCAGUACAUUUAGUAUGGCAUUGAGUUGUGAUAUAGUUUUACUUUGAUGUGCAUUUUGAAUUUCAGCUACACCUAGAUAGACGUAAAAUGAUAAUUAAAAUGCUGUAACCAACUUAUCUAAUAAAAUUGGCAACCAGCCACUAUUUUGUUGACUAUGAGAAAGUUAAAAGUUUAUGUUAAUUUUUAGGGUCUGAUAGAAUAUUUCAUGUGUAUUACAGUGGUAUUCAUAUGCUAUGUCUCUAAACUPUAUUUUCAAAAGCUUAAGGCCCAAAUACAAACUUCUCUGGAAUAAA
2204   mRNA  unknown    Homo sapiens    AGAACUUAGUCUGCGCGGCGGCAUUGACACUAGCUGGGCUCCUCGGGGCGCGCCCCAGGUGGUCCGAAGCCCGGUCCGCCCUCCACGCAGGUGCCCCGCGCUCCCCGCUCAGCCAUGUCGUCCUGCAGCCGCGUGGCGCUGGUGACCGGGGCCAACAGGGGCAUCGGCUUGGCCAUCGCGCGCGAACUGUGCCGACAGUUCUCUGGGGAUGUGGUGCUCACCGCGCGGGACGUGGCGCGGGGCCAGGCGGCCGUGCAGCAGCUGCAGGCGGAGGGCCUGAGCCCGCGCUUCCACCAACUGGACAUCGACGACUUGCAGAGCAUCCGCGCCCUGCGCGACUUCCUGCGCAAGGAGUACGGGGGGCUCAACGUACUGGUCAACAACGCGGCCGUCGCCUUCAAGAGUGAUGAUCCAAUGCCCUUUGACAUUAAAGCUGAGAUGACACUGAAGACAAAUUUUUUUGCCACUAGAAACAUGUGCAACGAGUUACUGCCGAUAAUGAAACCUCAUGGGAGAGUGGUGAAUAUCAGUAGUUUGCAGUGUUUAAGGGCUUUUGAAAACUGCAGUGAAGAUCUGCAGGAAAGGUUCCACAGUGAGACACUCACAGAAGGAGЖCCUGGUGGAUCUCAUGAAAAAGUUUGUGGAGGACACAAAAAAUGAGGUGCAUGAGAGGGAAGGCUGGCCCAACUCACCUUAUGGGGUGUCCAAGUUGGGGGUCACGGUCUUAUCGAGGAUCCUGGCCAGGCGUCUGGAUGAGAAGAGGAAAGCUGACAGGAUUCUGGUGAAUGCGUGCUGCCCAGGACCAGUGAAGACAGACAUGGAUGGGAAAGACAGCAUCAGGЖCUGUGGAGGAGGGGGCUGAGACCCCUGUCUACUUGGCCCUCUUGCCUCCAGAUGCCACUGAGCCACAAGGCCAGUUGGUCCAUGACAAAGUUGUGCAAAACUGGUAAACGUCUGCUUCGGAGCUUGCUGCUUAAUAAAUGUUGGUGGAAUGAAUGAA
2205   mRNA  unknown    Homo sapiens    AGAAGAGGCGGCGCGUGCGUAGAGGGGCGGUGAGAGCUAAGAGGGGCAGCGCGUGUGCAGAGGGGCGGUGUGACUUAGGACGGGGCGAUGGCGGCUGAGAGGAGCUGCGCGUGCGCGAACAUGUAACUGGUGGGAUCUGCGGCGGCUCCCAGAUGAUGGUCGUCCUCCUGGGCGCGACGACCCUAGUGCUCGUCGCCGUGGCGCCAUGGGUGUUGUCCGCAGCCGCAGGUGGAAAAAAUCUAAAAUCUCCUCAAAAAGUAGAGGUCGACAUCAUAGAUGACAACUUUAUCCUGAGGUGGAACAGGAGCGAUGAGUCUGUCGGGAAUGUGACUUUUUCAUUCGAUUAUCAAAAAACUGGGAUGGAUAAUUGGAUAAAAUUGUCUGGGUGUCAGAAUAUUACUAGUACCAAAUGCAACUUUUCUUCACUCAAGCUGAAUGUUUAUGAAGAAAUUAAAUUGCGUAUAAGAGCAGAAAAAGAAAACACUUCUUCAUGGUAUGAGGUUGACUCAUUUACACCAUUUCGCAAAGGAAAGGAUUGAAAAUAUUUAUUCCAGACAUAAAAUUUAUAAACUCUCACCAGAGACUACUUAUUGUCUAAAAGUUAAAGCAGCACUACUUACGUCAUGGAAAAUUGGUGUCUAUAGUCCAGUACAUUGUAUAAAGACCACAGUUGAAAAUGAACUACCUCCACCAGAAAAUAUAGAAGUCAGUGUCCAAAAUCAGAACUAUGUUCUUAAAUGGGAUUAUACAUAUGCAAACAUGACCUUUCAAGUUCAGUGGCUCCACGCCUUUUUAAAAAGGAAUCCUGGAAACCAUUUGUAUAAAUGGAAACAAAUACCUGACUGUGAAAAUGUCAAAACUACCCAGUGUGUCUUUCCUCAAAACGUUUUCCAAAAAGGAAUUUACCUUCUCCGCGUACAAGCAUCUGAUGGAAAUAACACAUCUUUUUGGUCUGAAGAGAUAAAGUUUGAUACUGAAAUACAAGCUUUCCUACUUCCUCCAGUCUUUAACAUUAGAUCCCUUAGUGAUUCAUUCCAUAUCUAUAUCGGUGCUCCAAAACAGUCUGGAAACACGCCUGUGAUCCAGGAUUAUCCACUGAUUUAUGAAAUUAUUUUUUGGGAAAACACUUCAAAUGCUGAGAGAAAAAUUAUCGAGAAAAAAACUGAUGUUACAGUUCCUAAUUUGAAACCACUGACUGUAUAUUGUGUGAAAGCCAGAGCACACACCAUGGAUGAAAAGCUGAAUAAAAGCAGUGUUUUUAGUGACGCUGUAUGUGAGAAAACAAAACCAGGAAAUACCUCUAAAAUUUGGCUUAUAGUUGGAAUUUGUAUUGCAUUAUUUGCUCUCCCGUUUGUCAUUUAUGCUGCGAAAGUCUUCUUGAGAUGCAUCAAUUAUGUCUUCUUUCCAUCACUUAAACCUUCUUCCAGUAUAGAUGAGUAUUUCUCUGAACAGCCAUUGAAGAAUCUUCUGCUUUCAACUUCUGAGGAACAAAUCGAAAAAUGUUUCAUAAUUGAAAAUAUAAGCACAAUUGCUACAGUAGAAGAAACUAAUCAAACUGAUGAAGAUCAUAAAAAAUACAGUUCCCAAACUAGCCAAGAUUCAGGAAAUUAUUCUAAUGAAGAUGAAAGCGAAAGUAAAACAAGUGAAGAACUACAGCAGGЖCUUUGUAUGACCAGAAAUGAЖCUGUGUCAAGUAUAAGGUUUUUCAGCAGGAGUUACACUGGGAGCCUGAGGUCCUCACCUUCCUCUCAGUAACUACAGAGAGGЖCGUUUCCCUGUUUAGGGAAAGAAAAAACAUCUUCAGAUCAUAGGUCCUAAAAAUACGGGCAAGCUCUUAACUAUUUAAAAAUGAAAUUACAGGCCCGGGCACGGUGGCUCACACCUGUAAUCCCAGCЖCUUUGGGAGGCUGAGGCAGGCAGAUCAUGAGGUCAAGAGAUCGAGЖCCAGCCUGGCCAACGUGGUGAAACCCCAUCUCUACUAAAAAUACAAAAAUUAGCCGGGUGUGGUGGCGCGCGCCUGUUGUCUUAGCUACUCAGGAGGCUGAGGCAGGAGAAUCGCUUGAAAACAGGAGGUGGAGGUUGCAGUGAGCCGAGAUCACGCCACUGCACUCCAGCCUGGUGACAGCGUGAGЖCUCUPUAAAAAAAGAAAUUAAAAGAGUUGAGACAAACGUUUCCUACAUUCUUUUCCAUGUGUAAAAUCAUGAAAAAGCCUGUCACCGGЖCUUGCAUUGGAUGAGAUGAGUCAGACCAAAACAGUGGCCACCCGUCUUCCUCCUGUGAGCCUAAGUGCAGCCGUGCUAGCUGCGCACCGUGGCUAAGGAUGACGUCUGUGUUCCUGUCCAUCACUGAUGCUGCUGGCUACUGCAUGUGCCACACCUGUCUGUUCGCCAUUCCUAACAUUCUGUUUCAUUCUUCCUCGGGAGAUAUUUCAAACAUUUGGUCUUUUCUUUUAACACUGAGGGUAGGCCCUUAGGAAAUUUAUUUAGGAAAGUCUGAACACGUUAUCACUUGGUUUUCUGGAAAGUAGCUUACCCUAGAAAACAGCUGCAAAUGCCAGAAAGAUGAUCCCUAAAAAUGUUGAGGGЖCUUCUGUUCAUUCAUCCCGAGAACAUUGGCUUCCACAUCACAGUAUCUACCCUUACAUGGUUUAGGAUUAAAGCCAGGCAAUCUUUUACUAUGCAUUAAGACCUCUGAUUCAAAACUUAUUAGAACAGUAGCUUCUGCUGGAAUUUGCAAUCACUGAAGUCAUAGAAAAUAGGUAACUAUCUAAUUAGAGAAAUAAUUGUUGUAUUUUAAGAUCUGAGAGUGUGUACAAGUUUUAGUAUACAUGCCAUGCCAGAAGAUAGUGUAUGCAAGAAGUCUUGGGACCAGAAAAUGGCAAUGAUAGGAGACUGACAUAGAAGAAGAAUGCUUCCCUAGGAAAAAGGUCGCUGGCUUUGGUGCAAGAGGAAGAAGAAUGUUCCACUGGAAGCCUGAGCACCUAAUCAGCUCUCAGUGAUCAACCCACUCUUGUUAUGGGUGGUCUCUGUCACUUUGAAUGCCAGGCUGGCUUCUCGUCUAGCAGUAUUCAGAUACCCCUUCUGCUCAGCCUGCUUGGCGUUAAAAUACAAAUCAUUGAЖCUGAGGGGGAAAAAUGUAACUAGGAAGAAAAACCCAAUUUAAGAAAUUACAUAAUGCUUUCCAAAGGCACCUACAACUUAGUUUUAAAUUACUUGCUACUGGGGAUUACCCAUGGAUAUCCUUAAUAGGCAGGAAGUCUGGGAAUUCUGGUGGCCUCUAGGGCAGUGUUCUCACAGCACCGUUCCGACAGGGACCAGUGAAAGAAAAGAGACAAAGUUAGAACGUGCUGGGGAGCGGCCAUUUCUAAGGCCAGUCUGGUUUAAGUAGUCAUUUCUGCUGAAAAAACAGAUGAUCCUGGUGGAAGAAAAGGUUGAAGGCAGCUGCCCUCGGGAGGGCUGUGAUGCUCGGCACAUCCUGCCUGGCACAUACACGUGUCUGCAGGCCACACCGUGCAUGUCCCCAGACCUGCCGCCUGGCUUCUGGAGUGCUUCAAGCAGAGCAUGGUGGGUCAUUGAGGAGACCCAGGAAUCUCAUCUGAGAACCCACUCUCUGCCGGAGAACCCCAUGGUGACACAUUUUCAUCUUUCUGACCAGAGGCUGUUUUUUUUUUUUUUUGAGACAGUCUCAUUCUGUUGCCCAGGCUGGAGUGCAGUGGCUUGAUCUCGGCUCACUGCAACCUCGCCUCCCGGGUUCAAGCAAUUCUCUGCCGCAGCCUCCAGAGUAGCUGGGAUAЖCAGGUGCCCACCACCACACCCCACUAAUUUUUGUAUUUGUAUUUUUAGUAGAGAUGGGGUUUCACCAUGUUGGUCAGGCUGGUCUUGGACUCCUGACCUCAUGCUCCACCCGCUUCGGCCUCCCAAAGUUCUGGGAUUACAGGUGUGAGCCACCGUGCACGGCCGGCCUGACCUUUGGAAAAGCCUUGUCACUUUGGЖCGUUUGCGUCUUUGAAGAGGCGAUGGGAGCAUAUCAUGЖCUGCCUGCCACCAUUGCUUUUCAGACUACCACAACUCAAUCAUGCUGUCCAGGЖCUUCUGGCCCUGUGUUCACCACUGGGAAAACGUACUUCAGЖCUGGAUAGCCUAAAAAGGAGCAAUGCCCUUGUAGGAUGUGGAGAAGGGAAAAUACGGЖCAUUAACAUUAAAAGЖCACCAGUGAAAUUGUUAGGUCUCUAGGAAGUUGGAGCACAAGGCUUCACGCUUUAAGACCAUCUGUGGUUUUCAGUGAACAAGCGCUGAGCACCAGCAGCAGAAAACAACAACAAAAAAACACCUCGUUUUUACCUUGUCUUCUAGACAUGAAAAGGCAGUUGCAUUCCACUCUGCAUUAUGUUCUACAUGUUGCUUUAUCAGUAUAUGCUUAGCUGUAAGUGACAAGUAUUUUUUCUGAACAGAAGUUUACUUAGAAAUACCAUGCACUUGGGGGUACCAAUUAACCGCCUGAAAAUUAGCAUAUUGAUAGUUCUUAGAGAGACCAGAUAUAAUCUAAGAAUUUAUAUGAAAGAUUUGUAUCAUUAGAGCCAGAAAUAAUUUUAUAUUAAUAUAUAAUACAGAUUAACAUUAUAUAUAAUAUGUACCUGUGUCACUUCUGACAUGAGCCUGUAAACAUAUAUUCAUAUAUGUACCUGCACAUGUACCCACCUGAUGUAGGUCUUAUUCCUUUAGUAUGGACUUAAAGUACUUAUUCAUAUACCUUGUAACUAAAAAUUAGAACAGCUCCCUAGAAUUGUGAACUUUUAAGAGUCUGACUAGAAAUUUGCAACUUAUAAAAAAGUUACUUUUAAAAAUAUAAGUUAGGGCUAGGCACAGUGGCUCAUGCCUAUAAUCUCAGCACUUUUGGGAGGCCAAGACAGGAGGAUCACUUCAGGCCAGGAGUUCAAGAUCAACCAACCUGGGUAACAUGGCCAGACCCCAUCUCUAUUUAUAUAUAUAUAUAUAAAACUUAGAGUUUUUAUCUUCCCCUAAAAGAGGCCGUGAUAUUUGCAGCAGCCUCAAAUUGCUCUUAAGGGGUUUAGGUGUGCAGAAGCUUUCCUUUCCCUACCCAGUAACCAUGUGACUACUAACGUGGUAUAUUGAUUUAUUUUGUUUGCUGUCUGUCUCCCCUGCCCCACUGCUGGAACAGAGGCUCCAAGAAAACAGGGACCUUAUUAUUCAUUACUGCAUCCCCAGUAAUGAAAGUACUUAGAAAAUAAUUAUUGAAUGAAUGAAAUCUAAACUGUGAACCUGAGGGUGUUUGUGGCAGUGUUUGUUUUACUGAAUUGUAGAAGGЖCAUAACCGUGUUUUCAGUGUUUCUAUGGAACAAACUUGUACAUUUUAUUUCACUUGUGUUUUGUCUUAAACCCUACUGCUGGAAACAAUUUUAUGUAAUAAGCAAUGGGCCCAAAAGUCUAGGAGUUUUUUUGUACUUAGUGAAUUUGUAUGCAACAGAGAUGCUGCAGCUGAUGCCUUUAAAAGGUAUUCAUCAUGGAAGAGCUGAGGCCUGUGCUUGGUGUUCCAGAGCCCAGGGUUGAGCAUCCUGAAGGAGCCACUGCAGCCGUCACUGUCCCCAGAGCCUGUGGAGAUAGAGCCUGUUUGCUGCUUUUUCUUCCCGCUCUUAAGЖCAUGGCUGGAGCUCAGUCUUCAUUGAAUGAAGUUUGCUGUGGUAUUGCAUAGCCUUGCUUUCUUGAACUAAACUGUUUGCCCUUCACAAGUAGUUCUUCUUUCAGGAUUAGUUCGUUCCAAGGAGGCUCUUCAGUCUCACAGAUAAGUAGAUCUCUCCUGCUGUCUGGACACAUUUCACUCGGAAAUUGAAUACAAUUUGUAUUCAGGCUGGGAACCUGAACACACACUUGUGUUUUUAAGCUUCCCUUUUUUACAGUGGACAAGGACACAAAUAA
2206   unknown  unknown    Homo sapiens    AGAAGAUGGCUGCCCCAGCAGUGUCCGGGCUCUCCCGGCAGGUGAGAGAAAGGUGGUCCUGAGAGCCAGUGGGAGGAUCCCUCCUGGGAUGACCGGUACCAAACCUCGAGCACCAGGGUGCGAUGCUUCGGCUGGGGAAGUCUGGCAGUCUUCAAGGUUAUGGGACCUGGCGAGUGGGAGCGACUCAGGACGACCCAGCGUUUGUCCCCCGGGAUGCCUACGGGGCAGUAGGCGCGGGGCUGCGCGUGCCGUAACCUUGGCGUCUUCCGAGCACAGCCCCUGGAAGCUGCUAGCCUGAGGGGCGCAGGAGAGGGGGUCUGCCCUUCGCUGAAUUCCGGGGAAGGGGCAUGGЖCUAGCCCCCAAAUCAGCUUCCUUUGCCAUUGUGGUAAAACCUGUCAGAGAUCACUUACUAGUAAUGCUAAGGAAUAUUUGUAAAACACAUUUCACAGUUUUAUAAAUAAAAUGAGGCCGAAAAGUUUAAAUGAGUCUUUGGCUGCUCAGUCAGUAAGUGGUAGAAUUGAGAUUUGAACCCACGGAAUCACCCAGAAGAUCGAGUUUGAAAAAAUGUUAUGCUGUUUGUGCUGCAUCUCACCAUGGUGCUUUACAUAUCAUGACCCCUUCCUGGCAUCUUAGGUAAUUUUUUCAUAAGCAUUAAAAAGUCUUAAUCCUCACAAGCAGUUUUGAUAAAACACGUUCCAUAGCUGGAGUAUUUGAAGGUGACCUGUGAUCUGUGACCUGUGCGCUUGCAGGUGAUUUUUAAACUGUGUAUUCCAGCUCUGUCUUUUGAUGGGCAGGAUAGUGUCUCUCAGAACUAAGGCUUCUUGUCAGAUCAAACUCUGCGGCAGUACUCAAAAAAUUCAUCUUUAUUUUCAGAUAGCAUUUGCAUUCCGAGGAGGGUACGUCUGUUGCAAAUGAUCUGCUCAAGGGUCUGUUAAUAGAAACGCCAAAAUUUUGGUUAAAUAUUUUUGAAACAUGCACUCCUUGGAAGUUAGUGUUUUUCUGUCUUACGGGUAUGCUAGCCUCGGUCCAUUCCUAGCAAACUAGGAGGUUCGUGGGAAGGUGAUUUCCCAAGCAACUUGGCAUAAUCCUCAUUGGGUAAGUUUACCCCUUAGUAAUAGUAAGUAGCUCACCCUCAUGUAAUAUGUGAAUAUACAAAGAGACAAAAGUAAUGAUUUUAAGGUUAUUUAAAAUUUUUUGUUGUUAUUGAGUUAAAUGCAGAAAUCCUUCAAGUAAUUUUGUUUGAUCUAUUUUCCUUUAUUGCUUUGAAGGUGCGAUGCUUCAGUACCUCUGUGGUCAGACCAUUUGCCAAGCUUGUGAGGCCUCCUGUUCAGGUAUACGGUAUUGAAGGUCGCUAUGCCACAGCUCUPUAUUCUGCUGCAUCAAAACAGAAUAAGCUGGAGCAAGUAGAAAAGGAGUUGUUGAGAGUAGCACAAAUCCUGAAGGAACCCAAAGUGGCUGCUUCUGUUUUGAAUCCCUAUGUGAAGCGUUCCAUUAAAGUGAAAAGCCUAAAUGACAUCACAGCAAAAGAGAGGUUCUCUCCCCUCACUACCAAUCUGAUCAAUUUGCUUGCUGAAAAUGGUCGAUUAAGCAAUACCCAAGGAGUCGUUUCUGCCUUUUCUACCAUGAUGAGUGUCCAUCGCGGAGAGGUACCUUGCACAGUGACCUCUGCAUCUGUAAGUAACGGGUUGUUGCUGCUGUGUUUGCCUUGAUAUUACAUGUGUCACCUUUUGCAGGAAGAAAAGGGAAAAACAGGGUAAAAUCAAGAAAUUGGGAAAGGUAACUUGUCACCUGGGAUGUUUGUUUCAUUUUUAUAUCAGCUUCUGUGACCCUUUGCUUUGGAAAAGCCAGCGUGUAUCUUAUUAGUGCUUCUGUAACCAGUGAUUAUUCAUAAGGCCUGGGUUAAAUGUAAAGUACAUCAAAAUGUGUUGGAAAAGAGUGGUUUAGACUCUAUUAUAUGUUUGAAUUAUUUUAUGAAUACCACUUGAAGUAGUUUCCUGAAACUAGAAUUCUAGAGUUUAUUUUUUUGAGACAGAGUCUCACUUUGUCACCCAGGCUAGAGUGCAGUGACACAGUCACACCUCUGUAGCCUCAACCUCCUGGGCUCAGGUGAUCCUCCUGCCUCAGCUUCCUGAGUAGCUGGGAUUACAGUGCACCCCCACCACACCCGGCUAAUUUUUGUGUGUUUUUUAUAGUGAUGGAGGUUUUACUGUGUUCUCCAGGCUUGUCUCGAACUUCUGGGCUCAAGUGACCCACCUGCCUUGGCCUCCUAAAGUGCUGGGAAUAAAGGUGUAAGCUACCACACCUGGCCUGAAACUAGAGUUACUAACCUUUCAUCUUUGGUGGUGGUGAGUGGGAAGGAGUAGAGCCGUUGGGCCUUUGUAUCUUUUUGACUUGAUAGUGGGCUAUAAUUGGCUACCGUUUAUUGAACCCUACUAUAUGCUGGGUGCUUUAUUAUGUUAUUCAGUAUCAAAAGAUUCAUGUGAGAUAGAAGUAUAAUUAACCUCAUUUUACAGAUGAGGAAACCGAAUGCAGGGAGAUGAAGUCGCUUGCCCAAAGUCAUACGAGCCUPUAGAAGAAGCCACACUCUCUGAAUUAAAAACUGUCCUCAAGAGCUUCCUAAGUCAAGGCCAAGUAUUGAAAUUGGAGGCUAAGACUGAUCCGUCAAUCUUGGGUGGAAUGAUUGUGCGCAUUGGCGAGAAAUAUGUUGACAUGUCUGUCAAGACCAAGAUUCAGAAGCUGGGCAGGGCUAUGCGGGAGAUUGUCUAAAAGUGUUGGUUUUCUGCCAUCAGUGAAAAUUCUUAAACUUGGAGCAACAAUAAAAAGCUUCCAGAACAGAUCA
2207   mRNA  unknown    Homo sapiens    AGAAGCCGGAAGUUGUGUCCCGGACGUGUCAACCGGGGUCUGAGUGCUCAGAGUACAGCUGCAACCGCGACCAUGGGCGGGAAGAACAAGCAGCGAACUAAAGGGAACCUGAGGCCUUCAAACAGUGGCCGAGCUGCAGAACUCCUUGCCAAAGAACAGGGAACAGUGCCUGGAUUUAUUGGUUUUGGAACAUCUCAGAGUGACCUAGGCUAUGUUCCUGCUAUUCAAGGAGCUGAAGAAAUUGACAGUCUUGUAGAUUCUGAUUUCCGAAUGGUGCUGCGGAAACUUUCAAAGAAAGAUGUCACCACAAAAUUAAAAGCUAUGCAGGAAUUUGGAACCAUGUGUACAGAGAGAGACACAGAAACUGUGAAAGGAGUUCUUCCAUAUUGGCCAAGAAUUUUUUGCAAAAUUUCACUUGAUCAUGACCGUCGCGUCCGAGAAGCCACACAACAAGCUUUUGAAAAACUUAUCCUUAAAGUAAAGAAACAGUUGGCUCCCUACUUAAAAAGUUUAAUGGGAUAUUGGCUAAUGGCUCAGUGUGAUACUUACACACCAGCUGCGUUUGCAGCAAAAGAUGCAUUUGAAGCGGCUUUUCCUCCAAGCAAGCAACCUGAAGCCAUAGCAUUUUGUAAGGAUGAAAUUACAAGUGUGCUGCAGGAUCAUCUUAUAAAAGAAACACCUGAUACACUCAGUGACCCGCAAACUGUUCCAGAGGAAGAAAGAGAAGCUAAAUUCUACCGGGUUGUAACUUGUUCCUUAUUGGCAUUAAAGAGAUUACUUUGCCUUUUACCUGAUAAUGAGCUUGAUUCUCUGGAGGAGAAAUUUAAGUCUCUUUUAUCACAGAAUAAGUUUUGGAAGUAUGGAAAACACAGUGUACCUCAGAUUCGCUCAGCUUAUUUUGAGUUAGUCUCUGCAUUGUGCCAGCGCAUUCCACAGUUGAUGAAAGAGGAAGCAUCCAAAGUGAGCCCAUCAGUUCUACUUAGCAUUGAUGACAGUGACCCAAUUGUCUGCCCAGCUCUCUGGGAAGCUGUACUCUAUACACUUACAACUAUUGAGGACUGUUGGCUUCAUGUAAAUGCAAAAAAGAGUGUGUUUCCCAAGCUAUCAACUGUGAUUCGUGAAGGUGGUCGGGGUCUAGCUACUGUCAUAUAUCCUUACCUUCUGCCAUUCAUCAGCAAGCUCCCUCAGUCCAUCACAAAUCCAAAGUUGGAUUUCUUCAAAAAUUUCCUCACGUCUCUAGUUGCUGGGCUGUCAACAGAGAGAACUAAAACCAGCUCUUUAGAGUCCUCGGCAGUAAUAUCUGCUUUUUUUGAAUGCUUACGUUUUAUAAUGCAGCAAAACUUAGGUGAGGAAGAGAUUGAACAGAUGCUCGUCAAUGAUCAGUUGAUCCCUUUUAUUGAUGCAGUUCUCAAAGACCCAGGAUUGCAACAUGGGCAGCUAUUUAACCAUUUAGCAGAAACUCUAAGUUCCUGGGAAGCCAAAGCAGACACGGAAAAAGAUGAAAAAACAGCUCACAACUUGGAGAACGUЖCUGAUACAUUUCUGGGAAAGЖCUGUCAGAGAUCUGUGUUGCGAAAAUCAGUGAGCCAGAAGCUGAUGUUGAGUCCGUUUUGGGUGUAUCUAACCUAUUACAGGUGCUUCAGAAGCCGAAGAGCUCAUUGAAGUCAAGUAAAAAAAAAAAUGGUAAGGUUAGAUUUGCUGAUGAGAUACUUGAAAGCAAUAAAGAGAAUGAAAAAUGUGUAUCUUCAGAAGGAGAGAAGAUUGAAGGCUGGGAAUUAACAACUGAACCUUCUCUCACUCAUAAUUCUUCAGGCCUUUUGUCUCCUCUAAGGAAAAAACCUUUGGAAGЖCUUAGUCUGUAAACUCGCAGAUAUAAGUAUUAAUUAUGUCAAUGAACGAAAGUCAGAGCAACAUCUAAGGUUUCUUUCUACUCUGCUUGACUCCUUUUCUUCAAGCCGAGUAUUUAAAAUGCUACUUGGUGAUGAAAAACAGAGUAUUGUCCAAGCCAAACCUCUUGAAAUAGCCAAGCUUGUACAAAAAAAUCCUGCGGUGCAGUUUUUAUACCAGAAЖCUGAUAGGUUGGCUAAAUGAAGAUCAAAGGAAGGAUUUUGGUUUCCUGGUGGЖCAUUUUGUACAGUGCUCUCCGGUGCUGUGACAAUGAUAUGGAAAGAAAAAAAGUCUUGGAUGAUCUAACCAAGGUGGACUUGAAAUGGAAUUCUCUUCUUAAGAUUAUUGAAAAGGCAUGUCCUAGUUCAGAUAAACAUGCUUUAGUAACUCCUUGGCUCAAAGGCGAUAUCCUUGGUGAGAAAUUGGUCAACUUGGCAGAUUGUCUUUGUAAUGAGGACUUGGAAUCCAGGGUAUCUUCAGAAUCUCACUUCUCAGAAAGAUGGACUCUUCUAAGCUUGGUAUUAUCCCAACAUGUUAAAAAUGAUUACUUGAUUGGAGACGUAUAUGUUGAAAGAAUCAUUGUUAGACUUCAUGAAACUUUAUUCAAAACAAAGAAAUUAUCAGAAGCUGAAAGCAGUGACUCAUCAGUGUCUUUUAUCUGUGAUGUGGCCUAUAACUAUUUCAGCUCAGCGAAAGGAUGCUUGCUAAUGCCAUCAUCUGAAGAUUUAUUAUUAACUCUCUUUCAGUUAUGUGCUCAGAGCAAAGAAAAAACACAUUUGCCAGAUUUUCUUAUCUGUAAACUGAAAAAUACUUGGCUCUCUGGUGUAAAUUUAUUGGUUCAUCAAACUGACAGUUCAUAUAAAGAGAGUACCUUCCUACAUUUGUCUGCUCUGUGGCUGAAGAACCAAGUUCAGGCUUCAUCUUUGGAUAUCAACAGUCUCCAAGUCCUCUUGUCUGCUGUUGAUGAUUUGCUAAAUACACUUCUAGAGAGUGAAGAUUCUUAUCUUAUGGGAGUUUAUAUUGGAAGUGUAAUGCCGAACGACAGUGAAUGGGAAAAGAUGAGGCAGUCUCUUCCUAUGCAGUGGUUACAUAGACCUCUUUUAGAGGGAAGAUUGAGUUUGAAUUAUGAAUGUUUCAAAACAGAUUUUAAGGAACAGGACAUAAAGACACUUCCCAGCCAUUUGUGUACUUCAGCAUUAUUGAGCAAAAUGGUCUUAAUUGCACUGAGAAAGGAAACAGUCUUAGAAAAUAAUGAGCUUGAGAAAAUAAUUGCAGAACUGCUUUAUUCACUGCAGUGGUGUGAAGAAUUAGAUAACCCACCUAUUUUUCUAAUUGGAUUUUGUGAAAUACUUCAAAAAAUGAAUAUUACGUAUGAUAACUUACGUGUACUUGGUAAUACGUCGGGCCUUUUGCAGCUGUUAUUUAACAGGUCCAGAGAACAUGGCACACUGUGGUCUCUUAUUAUUGCUAAGUUGAUCCUUUCCCGAAGCAUUUCAUCUGAUGAAGUAAAACCACAUUAUAAGAGAAAAGAAAGUUUUUUUCCACUAACUGAAGGCAAUUUGCAUACCAUUCAAAGUCUAUGUCCAUUUUUGUCAAAAGAAGAAAAGAAAGAAUUUAGUGCUCAAUGUAUACCUGCUCUUUUGGGCUGGACUAAGAAAGAUCUUUGCAGCACUAAUGGAGGUUUUGGACAUCUUGCCAUUUUCAAUUCUUGUCUGCAAACCAAAAGUAUAGAUGAUGGAGAGCUAUUACAUGGAAUAUUAAAAAUCAUAAUAUCCUGGAAGAAAGAGCAUGAAGAUAUUUUUCUUUUCAGUUGUAAUCUAUCAGAAGCAAGUCCAGAGGUACUGGGUGUAAAUAUAGAAAUAAUCCGGUUUCUUUCCCUAUUUCUGAAAUACUGCUCAUCCCCUUUGGCAGAGAGUGAGUGGGACUUCAUCAUGUGCUCCAUGUUGGCUUGGUUGGAGACAACAAGUGAGAAUCAGGCAUUGUAUUCUAUUCCACUUGUGCAACUGUUUGCCUGUGUCAGCUGUGAUUUGGCCUGUGACCUCAGUGCUUUCUUUGAUUCCACAACUCUGGAUACCAUUGGCAAUCUUCCUGUAAAUCUAAUCAGUGAAUGGAAAGAAUUUUUUUCCCAAGGCAUCCACAGUUUGCUUUUACCUAUUUUGGUGACUGUUACAGGAGAAAACAAAGAUGUGUCUGAAACAUCCUUUCAGAAUGCAAUGCUGAAACCCAUGUGUGAAACAUUAACGUAUAUCUCAAAGGAACAGCUAUUGAGUCACAAACUUCCUGCAAGAUUAGUUGCUGACCAAAAAACAAACUUACCAGAAUAUCUCCAGACUUUGUUAAAUACAUUGGCCCCAUUACUCCUCUUCAGAGCUAGGCCUGUGCAAAUUGCUGUUUAUCAUAUGCUAUACAAAUUGAUGCCUGAAUUACCACAGUAUGAUCAGGAUAAUCUAAAGUCAUACGGAGAUGAAGAAGAAGAGCCAGCCUUGUCACCACCAGCAGCACUGAUGUCUCUUCUUAGCAUUCAAGAGGACUUACUAGAAAAUGUUUUGGGGUGUAUUCCUGUUGGACAGAUAGUUACUAUUAAACCACUGAGUGAAGACUUCUGUUAUGUUCUGGGAUACCUUCUCACUUGGAAAUUAAUACUAACUUUCUUCAAAGCUGCAUCAUCACAGCUUCGGGCUUUGUAUUCCAUGUAUCUUCGGAAAACAAAGAGUUUGAAUAAAUUGCUCUAUCACCUGUUCAGGCUUAUGCCAGAAAAUCCAACCUAUGCAGAGACAGCAGUUGAGGUCCCAAAUAAGGACCCUAAAACAUUCUUUACUGAGGAGCUCCAGCUGAGUAUUAGAGAAACAACAAUGCUUCCAUACCACAUUCCACACUUGGCUUGUUCAGUCUAUCAUAUGACAUUAAAAGACUUGCCUGCCAUGGUUAGGUUGUGGUGGAAUAGCAGUGAGAAGCGUGUUUUCAAUAUUGUGGAUAGAUUUACAAGCAAGUAUGUCAGCAGUGUUCUUUCUUUUCAAGAAAUAUCUUCUGUACAAACAAGUACACAACUAUUUAAUGGCAUGACGGUUAAAGCUCGAGCUACUACUCGAGAGGUAAUGGCUACUUAUACUAUUGAGGACAUAGUUAUUGAACUUAUAAUACAACUGCCUUCAAAUUAUCCACUGGGUUCAAUAAUAGUAGAAAGUGGGAAAAGAGUAGGAGUAGCUGUUCAGCAGUGGCGGAACUGGAUGCUGCAGUUAAGCACUUACCUCACCCAUCAGAAUGGAAGUAUUAUGGAAGGCUUAGCUUUAUGGAAAAAUAACGUAGACAAACGUUUUGAGGGUGUUGAAGAUUGCAUGAUCUGUUUCUCAGUCAUUCACGGUUUCAACUAUUCCCUUCCCAAAAAAGCCUGUAGAACAUGCAAGAAAAAAUUCCAUUCAGCCUGCUUGUACAAAUGGUUUACAUCUAGCAACAAAUCCACUUGUCCACUGUGUCGUGAGACGUUUUUCUGAGAUUUUUUUCACUGGAAGGGAUCCCUGAAGUACAUCAAACAAAGGCAUUGGAUUUGGAUCCGUCUGAAAGUGUGGAUGUGGGGAAGCCAGUGAGCAUUACUUUUAAAUAGGACCUUCUCUGGAAAAUUAUUUUGGUUAAUGUAAUAAUCCUAAAAUCAGGUUUACUUAACUUUAGAUUGCUUUGUAAAUGUUUGGAAACUUUCUUUUACAAAAGAAUAUUACAUAUUUGAGAGAAAAUAUUUCUAUUAAUGGUUUAAUUUCUUUGUAUAUUUAAAAAUAAAUAUGAAAAACCCCUAAAUUACAGAAUUGGAAUUUGUGAAAAGAUUGCACAACUAUAUUAUUGAUAAACCCAUUCCGUUUGUUGAUCUGUGUUUUAGAAUAGUCCAAGUGAAGCAAAACGAACUGAGAGAGCUGAUUUACAUCUAUAGAUAUUUUAAGCCUUAUUUAUUAGUUAUGACAAUAAAUUAGUAUUCUGAUAUUUGUAGAUUAUUUUAAUGAUAAAAAUGACACUAAGCUAUUAAUACGGCUUGUCUUAAGAUAUCUGGAGGCAUGCUCUGAAAUCCUAUAUAAAAGAGUUUAAACUGAACUUUAAGGUGCCUCCAUUUAUCAAGGGUUAUGAAACUCAGAAAAUUAAAUUCUUGAUGCUGACCUUUUUGCUUGUGGGAGAAUUAUUUCUAUAUAUUAGUGAAAUUUGAAUUGUAAACUUGUCAGUGAAUUUAUCACUCUGAGCGAGUCUCUAGAGGGUGAGAAUUUGAGAGAAAUAGUAAUUUGAUUAUUUCAUUCAUGAAGCGGAGUGGUAGUUAUCCUUCUAUUGAGAGGGAAGAAAUAAAUGAGUAUUACUGAAACUUAAAGAUCAGUGGAAAAAAAAAACAUUUAAAAAUGUUGUAGGAGACUUUCAAUUUUGGAAGCAAACUGAGCUAUUCUUACCAGCCAAAGUUAUACUAAAUAAGAGACUUGGGGGAGCAAAUGUUUUUCAGCCUUCAGAAAUGAAAGUUAAGGAUUUUAGCACUAGGUAAAAUUCAGUAUAAUAGGCUGAAGUGGAGUAAGUGAAAACCUGCCUUUUGCCACUCUUAAAAAUUGUGCCCAAAAUAUAAAAGUGUGGAACUUUAGAACUUGGAAUAAUUUUAUUGCAGUCUUCCAUUACAUGGAAAUAGCAUAUCUAAUAUCUAGGUUACUUGAGAGACCAGCUAAUCAUCUCUGUUGCACAUGUUUAAUUGGCAAAAAGCAAUUCAUGAUAAAUAAAAUUACUGCUUUCCAUCUACUGGGUAAAAUGACUAUUGAAAUAGUAUGAAUGUGGUCAGAGGAUUAUAGUUGAGAGUGAAGUACUAUGUGUGAGUUAUAGAUCUCUCGAAUUAUAUUUAUAGAUGCAGUGUCCUGCCCAGUUUUGUUUGCCUCCUACAUUUUACUGUAAAAUAUUUAUUGUCUUCUAGCCUUGAGCCUCUGAGGGUCAGUAAGUGAAGUACAGAUAGCAAAAUUUUACUACCUCGUUAACCCUUUUCUUAAAAUAUUCUCUAUCUUUCUAUGUCUCUUUCUGACAUAGUAAUCCCAAAGGAUUGUGUUACUCCCCGUGAAAGUUAUUACUUUUCCUPUAAAAAUGGUUUUAUAAUAAGACUGUUUAAAACCUUUCCAGUAUUGGUACAUCUUGGCUUCUGGCCCAAACCCCAAGCAGAAAAGAAAAUGGAAUAAUGGAGCAUUGUUUUUCCACAUUAGUAUUAGGGCAUCAGAUUCUUGGUGAAACACUAUAAUUAAGUAGUUAUAAUUAAAUAACUGUUCUUCAUACUUAGGACUCUUAAUACAUUUCUPUAAGACUUGUAAGUAUAAUUGUAAAGCUUGUUAACUGUUUAUAUACUAAAGAAAAAGCUPUACAAGAUAAGACUGAAAUUCAGAAUACCACAUCUGUACAGCGUUGACAACUCUAACUAAAAGGAUUACAGCCCUUAAAAUUUUAGCUUAAGGACAUUUUAAAAUUGCAUGAGAUUAGCAAAAUUAUUAAUUUAAAACCCCAAAGUAAAUUGCAAAUUUUAAAAUUUAUUUUUGACUCUUUUAUCACAUGCUCCAAUGUAUGUACAUAAGUGUCUGUGGCUUAAAUAAUAUGUUGUUAUUUGAUACAUUUUUGUGGUGCAAGUAAUUAAUGUUAUUAUUUGAUUGUUAUACCAUAUGUGCCCAUUAAAAUUCUUUUUAAUUAAAAAUAUUUCAAAUAUGCAGAAAAAUAAUAAUAUAAAUGCCCUUGUACCCUUCACAUACUAUUUUGCCAUAUUUGCUUCUGAUUUUUAAAUAAAUAAAAUGUUACUCUUUUGUACUUCU
2208   mRNA  unknown    Homo sapiens    AGAAGGCAGCCUCGGUCUCUGGGCGGCGGCGGCGGCCCACUCUGCCCUGGCCGCGCUGUGUGGUGACCGCAGGCCCCAGACAUGAGGGCGGCCCGUGCUCUGCUGCCCCUGCUGCUGCAGGCCUGCUGGACAGCCGCGCAGGAUGAGCCGGAGACCCCGAGGGCCGUGGCCUUCCAGGACUGCCCCGUGGACCUGUUCUUUGUGCUGGACACCUCUGAGAGCGUGGCCCUGAGGCUGAAGCCCUACGGGGCCCUCGUGGACAAAGUCAAGUCCUUCACCAAGCGCUUCAUCGACAACCUGAGGGACAGGUACUACCGCUGUGACCGAAACCUGGUGUGGAACGCAGGCGCGCUGCACUACAGUGACGAGGUGGAGAUCAUCCAAGGCCUCACGCGCAUGCCUGGCGGCCGCGACGCACUCAAAAGCAGCGUGGACGCGGUCAAGUACUUUGGGAAGGGCACCUACACCGACUGCGCUAUCAAGAAGGGGCUGGAGCAGCUCCUCGUGGGGGGCUCCCACCUGAAGGAGAAUAAGUACCUGAUUGUGGUGACCGACGGGCACCCCCUGGAGGGCUACAAGGAACCCUGUGGGGGGCUGGAGGAUGCUGUGAACGAGGCCAAGCACCUGGGCGUCAAAGUCUUCUCGGUGGCCAUCACACCCGACCACCUGGAGCCGCGUCUGAGCAUCAUCGCCACGGACCACACGUACCGGCGCAACUUCACGGCGGCUGACUGGGGCCAGAGCCGCGACGCAGAGGAGGCCAUCAGCCAGACCAUCGACACCAUCGUGGACAUGAUCAAAAAUAACGUGGAGCAAGUGUGCUGCUCCUUCGAAUGCCAGCCUGCAAGAGGACCUCCGGGGCUCCGGGGCGACCCCGGCUUUGAGGGAGAACGAGGCAAGCCGGGGCUCCCAGGAGAGAAGGGAGAAGCCGGAGAUCCUGGAAGACCCGGGGACCUCGGACCUGUUGGGUACCAGGGAAUGAAGGGAGAAAAAGGGAGCCGUGGGGAGAAGGGCUCCAGGGGACCCAAGGGCUACAAGGGAGAGAAGGGCAAGCGUGGCAUCGACGGGGUGGACGGCGUGAAGGGGGAGAUGGGGUACCCAGGCCUGCCAGGCUGCAAGGGCUCGCCCGGGUUUGACGGCAUUCAAGGACCCCCUGGCCCCAAGGGAGACCCCGGUGCCUUUGGACUGAAAGGAGAAAAGGGCGAGCCUGGAGCUGACGGGGAGGCGGGGAGACCAGGGAGCUCGGGACCAUCUGGAGACGAGGGCCAGCCGGGAGAGCCUGGGCCCCCCGGAGAGAAAGGAGAGGCGGGCGACGAGGGGAACCCAGGACCUGACGGUGCCCCCGGGGAGCGGGGUGGCCCUGGAGAGAGAGGACCACGGGGGACCCCAGGCACGCGGGGACCAAGAGGAGACCCUGGUGAAGCUGGCCCGCAGGGUGAUCAGGGAAGAGAAGGCCCCGUUGGUGUCCCUGGAGACCCGGGCGAGGCUGGCCCUAUCGGACCUAAAGGCUACCGAGGCGAUGAGGGUCCCCCAGGGUCCGAGGGUGCCAGAGGAGCCCCAGGACCUGCCGGACCCCCUGGAGACCCGGGGCUGAUGGGUGAAAGGGGAGAAGACGGCCCCGCUGGAAAUGGCACCGAGGGCUUCCCCGGCUUCCCCGGGUAUCCGGGCAACAGGGGCGCUCCCGGGAUAAACGGCACGAAGGGCUACCCCGGCCUCAAGGGGGACGAGGGAGAAGCCGGGGACCCCGGAGACGAUAACAACGACAUUGCACCCCGAGGAGUCAAAGGAGCAAAGGGGUACCGGGGUCCCGAGGGCCCCCAGGGACCCCCAGGACACCAAGGACCGCCUGGGCCGGACGAAUGCGAGAUUUUGGACAUCAUCAUGAAAAUGUGCUCUUGCUGUGAAUGCAAGUGCGGCCCCAUCGACCUCCUGUUCGUGCUGGACAGCUCAGAGAGCAUUGGCCUGCAGAACUUCGAGAUUGCCAAGGACUUCGUCGUCAAGGUCAUCGACCGGCUGAGCCGGGACGAGCUGGUCAAGUUCGAGCCAGGGCAGUCGUACGCGGGUGUGGUGCAGUACAGCCACAGCCAGAUGCAGGAGCACGUGAGCCUGCGCAGCCCCAGCAUCCGGAACGUGCAGGAGCUCAAGGAAGCCAUCAAGAGCCUGCAGUGGAUGGCGGGCGGCACCUUCACGGGGGAGGCCCUGCAGUACACGCGGGACCAGCUGCUGCCGCCCAGCCCGAACAACCGCAUCGCCCUGGUCAUCACUGACGGGCGCUCAGACACUCAGAGGGACACCACACCGCUCAACGUGCUCUGCAGCCCCGGCAUCCAGGUGGUCUCCGUGGGCAUCAAAGACGUGUUUGACUUCAUCCCAGGCUCAGACCAGCUCAAUGUCAUUUCUUGCCAAGGCCUGGCACCAUCCCAGGGCCGGCCCGGCCUCUCGCUGGUCAAGGAGAACUAUGCAGAGCUGCUGGAGGAUGCCUUCCUGAAGAAUGUCACCGCCCAGAUCUGCAUAGACAAGAAGUGUCCAGAUUACACCUGCCCCAUCACGUUCUCCUCCCCGGCUGACAUCACCAUCCUGCUGGACGGCUCCGCCAGCGUGGGCAGCCACAACUUUGACACCACCAAGCGCUUCGCCAAGCGCCUGGCCGAGCGCUUCCUCACAGCGGGCAGGACGGACCCCGCCCACGACGUGCGGGUGGCGGUGGUGCAGUACAGCGGCACGGGCCAGCAGCGCCCAGAGCGGGCGUCGCUGCAGUUCCUGCAGAACUACACGGCCCUGGCCAGUGCCGUCGAUGCCAUGGЖCUPUAUCAACGACGCCACCGACGUCAACGAUGCCCUGGGCUAUGUGACCCGCUUCUACCGCGAGGCCUCGUCCGGCGCUGCCAAGAAGAGGCUGCUGCUCUUCUCAGAUGGCAACUCGCAGGGCGCCACGCCCGCUGCCAUCGAGAAGGCCGUGCAGGAAGCCCAGCGGGCAGGCAUCGAGAUCUUCGUGGUGGUCGUGGGCCGCCAGGUGAAUGAGCCCCACAPCCGCGUCCUGGUCACCGGCAAGACGGCCGAGUACGACGUGGCCUACGGCGAGAGCCACCUGUUCCGUGUCCCCAGCUACCAGGCCCUGCUCCGCGGUGUCUUCCACCAGACAGUCUCCAGGAAGGUGGCGCUGGGCUAGCCCACCCUGCACGCCGGCACCAAACCCUGUCCUCCCACCCCUCCCCACUCAUCACUAAACAGAGUAAAAUGUGAUGCGAAUUUUCCCGACCAACCUGAUUCGCUAGAUUUUUUUUAAGGAAAAGCUUGGAAAGCCAGGЖCACAACGCUGCUGCCUGCUUUGUGCAGGGUCCUCCGGGGCUCAGCCCUGAGUUGGCAUCACCUGCGCAGGGCCCUCUGGGGCUCAGCCCUGAGCUAGUGUCACCUGCACAGGGCCCUCUGAGGCUCAGCCCUGAGCUGGCGUCACCUGUGCAGGGCCCUCUGGGGCUCAGCCCUGAGCUGGCCUCACCUGGGUUCCCCACCCCGGGCUCUCCUGCCCUGCCCUCCUGCCCGCCCUCCCUCCUGCCUGCGCAGCUCCUUCCCUAGGCACCUCUGUGCUGCAUCCCACCAGCCUGAGCAAGACGCCCUCUCGGGGCCUGUGCCGCACUAGCCUCCCUCUCCUCUGUCCCCAUAGCUGGUUUUUCCCACCAAUCCUCACCUAЖCAGUUACUPUACAAUUAAACUCAAAGCAAGCUCUUCUCCUCAGCUUGGGGCAGCCAUUGGCCUCUGUCUCGUUUUGGGAAЖCCAAGGUCAGGAGGCCGUUGCAGACAPAAAUCUCGGCGACUCGGCCCCGUCUCCUGAGGGUCCUGCUGGUGACCGGCCUGGACCUUGGCCCUACAGCCCUGGAGGCCGCUGCUGACCAGCACUGACCCCGACCUCAGAGAGUACUCGCAGGGGCGCUGGCUGCACUCAAGACCCUCGAGAUUAACGGUGCUAACCCCGUCUGCUCCUCCCUCCCGCAGAGЖCUGGGGCCUGGЖCUGGЖCAUGAGAGCCCCUUGGUGCCACAGAGGGCUGUGUCUUACUAGAAACAACGCAAACCUCUCCUUCCUCAGAAUAGUGAUGUGUUCGACGUUUUAUCAAAGGCCCCCUUUCUAUGUUCAUGUUAGUUUUGCUCCUUCUGUGUUUUUUUCUGAЖCCAUAUCCAUGUUGCUGACUUUUCCAAAUAAAGGUUUUCACUCCUC
2209   mRNA  unknown    Homo sapiens    AGAAUCAGCUGUCCUCUCAGACUGUGUGGGUGGUUUCCCCGGCCGCAGCUCCGUACGGGCUUGGAUUGCUGGGCCUCGGUGCACCCCAGCCUCCCCCACUCGGGUUCUGAGCUUGAGCUGGCGGCUCUPUAACUCUGCUUCACUGUUGCUCUUGGCAACAPCCACUUCCGGGAGCGAGUGCCGUUUCCCCCGCUCACCGCGGGCUAGGGAGCGUGGGAUUCCGGACUGUGAGCGGCUGUUAGUGCGUCGCAGCUGCUGGCGAUCCGGCGACCCUCGGCCGGCAGGACCCGCGGGCCACGCAGCCGGGGCCUUCUCAACGCCUCAGUACCUCGGCGGGACCGCCAUGGUUCUGCUGCACGUGAAGCGGGGCGACGAGAGCCAGUUCCUGCUGCAGGCGCCUGGGAGUACCGAGCUGGAGGAGCUCACGGUGCAGGUGGCCCGGGUCUAUAAUGGGCGGCUCAAGGUGCAGCGCCUCUGCUCAGAAAUGGAAGAAUUAGCCGAACAUGGCAUAUUUCUCCCUCCUAAUAUGCAAGGACUGACCGAUGAUCAGAUUGAAGAAUUGAAAUUGAAGGAUGAAUGGGGUGAAAAAUGCGUACCCAGCGGAGGUGCAGUGUUUAAAAAGGAUGAUAUUGGACGAAGGAAUGGGCAAGCUCCAAAUGAGAAGAUGAAGCAAGUGUUAAAGAAGACUAUAGAAGAAGCCAAAGCAAUAAUAUCUAAGAAACAAGUGGAAGCCGGUGUCUGUGUUACCAUGGAGAUGGUGAAAGAUGCCUUGGACCAGCUUCGAGGCGCGGUGAUGAUUGUUUACCCCAUGGGGUUGCCACCGUAUGAUCCCAPCCGCAUGGAGUUUGAAAAUAAGGAAGACUUGUCGGGAACACAGGCAGGGCUCAACGUCAUUAAAGAGGCAGAGGCGCAGCUGUGGUGGGCAGCCAAGGAGCUGAGAAGAACGAAGAAGCUUUCAGACUACGUGGGGAAGAAUGAAAAAACCAAAAUUAUCGCCAAGAUUCAGCAAGUAAGUACUUUUUGCUUUAAUGUGUCAGUAGUUUUUGUUAUUUCCCUUCAAACUGAUAAAAAUGUACAGUGAAUCCGAAAGAUUUAAACUACUGGUACAAAUAUUUUAAUCUUAUUGGCUCGGGUUUAAACUAAAAAUAUCCUCUUCCUGCACACCAACAAAAACUGGAAGAAAAUAUGGAUUGAGUACCAAUAUCUAGAGUUUGUUUUAAUAUGUGGGGGAGAGGAAAUAUACUAUGUUAAUUUCAAGCGUAAAAAUAGGGCUGCAAGUAAACAGAUAUGUUCCUUGAAAUGUAAAAUUUCGCCCGUCACUGAUUUCAGGCUUUUUCAAACUGCUGAUGCUGUGUACAGGAGGGGGAGGAGGAAAGGUUCGAGACCUUUGAAGGACAUCGUGUAGCGCUGUAACCUGAGGGGCCGCCUUGGUUUUGUGGGUGCUCCUACGUCACUAGGCUGUGAUUUUGGGGAAAUGGGGCCCUCCACCUUAUGUAGAUCCAGAGUCCGUGGCUCUGAGCAUCCUCCCUUUCCCACUGGACCUGCCUGCAGUGUCUGCCUUGGGAAUGGUCAAGACAGAGAUGGUAUCGUGCAGCCUCUGGUCUCCACACAGUGAGAGUCCAGGGCUCAGGGCUGCUCAAGACCAAGGCUUCCCUUGAUGCUUCACUUCGGGUGAUCAGACAUGGGGGACCUGUUUAUCUUUAGUAGCCGGCAAAGGCAAUCGUAAAACAUUUGUUGUAACUUCAGGAUUGUCACUCUAAGAACACCUUAAUCCACAAUUUGCUCUGCUCUCCUCUUUGCAGAGGGGACAGGGAGCUCCAGCCCGAGAGCCUAUUAUUAGCAGUGAGGAGCAGAAGCAGCUGAUGCUGUACUAUCACAGAAGACAAGAGGAGCUCAAGGUAGCAGGGGACAGAUGGGCUUUCUGCAGUGCUGGCGCCCACACAUAGCCUGUGUGCCUUACCUGGGGCUGCUGGGGAGCAGUGAGCUCUGCAGAAUGCCGGGGAGGGGUCUUUCUAGAGCUUCUGUCUGCAGGUCUGUCGGGGUCCUGCCAGGUGUCCCCUGGUGUUAGACAUGGCAGUAUCCUGCUCCUAGAGGGCAGGGAGAGGGGGAGGUCAGUCAUGGACUCUUUCUUCAGUCUCUUUAUGUGCAAAACACUUUCCUGAAAUGCCUGCCUGAAUAAAACAUACUUAUUUCCAGAGAUUGGAAGAAAAUGAUGAUGAUGCCUAUUUAAACUCACCAUGGGCGGAUAЖCACUGCUUUGAAAAGACAUUUUCAUGGAGUGAAAGACAUAAAGUGGAGЖCCAAGAUGAAGUUCACCAGCUGAUGACACUUCCAAAGAGAUUAGCUCACCUUUCUCCUAGGCAAUUAUAAUUUAAAAAAAAAAAAAAGGCCACUUACUGCCCUCUGUAAAAGAUGUUAЖCAUUUCUAGUUUUCUUUUAGUGUGAAUUUUUAAAAUAGCAGUUAUUCAAGGUUUUAGAACUUAAUAAAUACCUAGUCAGAAGAAAA
2210   mRNA  unknown    Homo sapiens    AGACAUUGCAGCAGAGCCCCGAACUCGGGAGGCGGCGGCGGAGGAGGCGGCGGCGAGGCGCAGGGACGACCCGGCCCCACGCCCGCCCGCCACCCGCGCGCGCCCGUCCGCCCGUGGCCUCGCGUCCGCCGCUGCGCCGUGAGCGCCGCUGGUCGGAGGGAAGAGCUCGCCGGGGCGCCGGGCCAGGACGGGGCGGCAGGCGCCUUCGCGGACCGAGCCUGACGGAGCCGGAGGCUGGGAGCCGCGGCGGCCUGGGGAAGUGUUUGGAUUGUGAGCUAUUUCAGAACUGUUCUCAGGACUCAUUAUUUUAACAUUUGGGAGAAACACAGCCAGAAGAUGCACACUUGACUGAAGGAGGЖCAGGGAAUCUGAAGACUCCGGAUGACAUCAGAGCUACUUUUCAACAGCCUUCUCAAUUUUCUUUCUCAGAAAGCAGAGGCUCAGAGCUUGGAGACAGACGAACACUGAUAUUUGCAUUUAAUGGGGAACAAAAGAUGAAGAAGGAAAAGGAAUAUAUUCACUAAGGAUUCUAUCUGCUUACUGCUACAGACCUAUGUGUUAAGGAAUUCUUCUCCUCCUCCUUGCGUAGAAGUUGAUCAGCACUGUGGUCAGЖCUGCAUUUAUCUUGUCAUUGCCAGAAGAAAUCUUGGЖCAGAAUGUAACAGUACGUCUCUCUCUGAUUGCGAUGGAAGGUGAUAAЖCUGAUACUCCUUUAUUAAAGUUACAUCGCACUCACCACAGAAAACCAUUCUUUAAAGUGAAUAGAAACCAAGCCCUUGUGAЖCACUUCUAUUGAACAUGЖCUCAUGGAGAAGAGCUUGGCUCUGAUGUGCACCAGGAUUCUAUUGUUUUAACUUACCUAGAAGGAUUACUAAUGCAUCAGGCAGCAGGGGGAUCAGGUACUGCCGUUGACAAAAAGUCUGCUGGGCAUAAUGAAGAGGAUCAGAЖCUUUAACAUUUCUGGCAGUGCAUUUCCCACCUGUCAAAGUAAUGGUCCAGUUCUCAAUACACAUACAUAUCAGGGGUCUGGCAUGCUGCACCUCAAAAAAGCCAGЖCUGUUGCAGUCUUCUGAGGЖCUGGAAUGCAGCAAAGCGGAAGAGGCUGUCUGAUUCUAUCAUGAAUUUAAACGUAAAGAAGGAAGCUUUGCUAGCUGGCAUGGUUGACAGUGUGCCUAAAGGCAAACAGGAUAGCACAUUACUGGCCUCUUUGCUUCAGUCAUUCAGCUCUAGGCUGCAGЖCUGUUGCUCUGUCACAACAAAUCAGGCAGAGCCUCAAGGAGCAAGGAUAUGCCCUCAGUCAUGAUUCUUUAAAAGUGGAGAAGGAUUUAAGGUGCUAUGGUGUUGCAUCAAGUCACUUAAAAACUUUGUUGAAGAAAAGUAAAGUUAAAGAUCAAAAGCCUGAUACGAAUCUUCCUGAUGUGACUAAAAACCUCAUCAGAGAUAGGUUUGCAGAGUCUCCUCAUCAUGUUGGACAAAGUGGAACAAAGGUCAUGAGUGAACCGUUGUCAUGUGCUGCAAGAUUACAGGCUGUUGCAAGCAUGGUGGAAAAAAGGGCUAGUCCUGCCACCUCACCUAAACCUAGUGUUGCUUGUAGCCAGUUAGCAUUACUUCUGUCAAGCGAAGCCCAUUUGCAGCAGUAUUCUCGAGAACACGCUUUAAAAACGCAAAAUGCAAAUCAAGCAGCAAGUGAAAGACUUGCUGCUAUGGCCAGAUUGCAAGAAAAUGGCCAGAAGGAUGUUGGCAGUUACCAGCUCCCAAAAGGAAUGUCAAGCCAUCUUAAUGGUCAGGCAAGAACAUCAUCAAGCAAACUGAUGGCUAGCAAAAGUAGUGCUACAGUGUUUCAAAAUCCAAUGGGUAUCAUUCCUUCUUCCCCUAAAAAUGCAGGUUAUAAGAЖCUCACUGGAAAGAAACAAUAUAAAACAAGCUGCUAACAAUAGUUUGCUUUUACAUCUUCUUAAAAGCCAGACUAUACCUAAGCCAAUGAAUGGЖCACAGUCACAGUGAGAGAGGAAGCAUUUUUGAGGAAAGUAGUACACCUACAACUAUUGAUGAAUAUUCAGAUAACAAUCCUAGUUUUACAGAUGACAGCAGUGGUGAUGAAAGUUCUUAUUCCAACUGUGUUCCCAUAGЖCUUGUCUUGCAAACACCGAЖCUGAAAAAUCAGAAUCUGACCAACCUGUUUCCCUGGAUAACUUCACUCAAUCCUUGCUAAACACUUGGGAUCCAAAAGUCCCAGAUGUAGAUAUCAAAGAAGAUCAAGAUACCUCAAAGAAUUCUAAGCUAAACUCACACCAGAAAGUAACACUUCUUCAAUUGCUACUUGGCCAUAAGAAUGAAGAAAAUGUAGAAAAAAACACCAGCCCUCAGGGAGUACACAAUGAUGUGAGCAAGUUCAAUACACAAAAUUAUGCAAGGЖCUUCUGUGAUAGAAAGCCCCAGUACAAAUCGGЖCUACUCCAGUGAGCACUCCACCUUUACUUACAUCAAGCAAAGCAGGGUCUCCCAUCAAUCUCUCUCAACACUCUCUGGUCAUCAAAUGGAAUUCCCCACCAUAUGUCUGCAGUACUCAGUCUGAAAAGCUAACAAAUACUGCAUCUAACCACUCAAUGGЖCCUUACAAAAAGCAAAGACCCACCAGGAGAGAAACCAGCCCAAAAUGAAGGUGCACAGAЖCUCUGCAACGUUUAGUGCCAGUAAGCUGUUACAAAAUUUAGCACAAUGUGGAAUGCAGUCAUCCAUGUCAGUGGAAGAGCAGAGACCCAGCAAACAGCUGUUAACUGGAAACACAGAUAAACCGAUAGGUAUGAUUGAUAGAUUAAAUAGCCCUUUGCUCUCAAAUAAAACAAAUGCAGUUGAAGAAAAUAAAGCAUUUAGUAGUCAACCAACAGGUCCUGAACCAGGGCUUUCUGGUUCUGAAAUAGAAAAUCUGCUUGAAAGACGUACUGUCCUCCAGUUGCUCCUGGGGAACCCCAACAAAGGGAAGAGUGAAAAAAAAGAGAAAACUCCCUUAAGAGAUGAAAGUACUCAGGAACACUCAGAGAGAGCUUUAAGUGAACAAAUACUGAUGGUGAAAAUAAAAUCUGAGCCUUGUGAUGЖCUUACAAAUUCCUAACACAAAUGUGCACUUGAGCCAUGAUGCUAAGAGUGCCCCAUUCUUGGGUAUGGCUCCUGCUGUGCAGAGAAGCGCACCUGCCUUACCAGUGUCCGAAGЖCUUUAAAUCGGAGCCUGUUUCACCUCAGGAUUUUUCUUUCUCCAAGAAUGGUCUGCUAAGUCGAUUGCUAAGACAAAAUCAAGAUAGUUACCUGGCAGAUGAUUCAGACAGGAGUCACAGAAAUAAUGAAAUGGCACUUCUAGAAUCAAAGAAUCUUUGCAUGGUCCCUAAGAAAAGGAAGCUUUAUACUGAGCCAUUAGAAAAUCCAUUUAAAAAGAUGAAAAACAACAUUGUUGAUGCUGCAAACAAUCACAGUGCCCCAGAAGUЖCUGUAUGGGUCCUUGCUUAACCAGGAAGAGCUGAAAUUUAGCAGAAAUGAUCUUGAAUUUAAAUAUCCUGCUGGUCAUGGCUCAGCCAGCGAAAGUGAACACAGGAGUUGGGCCAGAGAGAGCAAAAGCUUUAAUGUUCUGAAACAGCUGCUUCUCUCAGAAAЖCUGUGUGCGAGAUUUGUCCCCGCACAGAAGUAЖCUCUGUGGCUGACAGUAAAAAGAAAGGЖCACAAAAAUAAUGUGACCAACAGCAAACCUGAAUUUAGCAUUUCUUCUUUAAAUGGЖCUGAUGUACAGUUCCACUCAGCCCAGCAGUUGCAUGGAUAACAGGЖCAUUUUCAUACCCAGGUGUAGUAAAAЖCUCCUGUGAGUCCUACUUUCCCUGAGCACUUGGGCUGUGCAGGGUCUAGACCAGAAUCUGGGCUUUUGAAUGGGUGUUCCAUGCCCAGUGAGAAAGGЖCCCAUUAAGUGGGUUAUCACUGAUGCGGAGAAGAAUGAGUAUGAAAAAGЖCUCUCCAAGAUUGACCAAAACCAACCCAAUACUAUAUUACAUGCUUCAAAAAGGAGGCAAUUCUGUUACCAGUCGAGAAACACAAGACAAGGЖCAUUUGGAGGGAGGCUUCAUCUGCUGAAAGUGUCUCACAGGUCACAGCCAAAGAAGAGUUACUUCCUACUGCAGAAACGAAAGCUUCUUUCUUUAAUUUAAGAAGCCCUUACAAUAGCCAUAUGGGAAAUAAUGCUUCUCGCCCACACAGCGCAAAUGGAGAAGUUUAUGGЖCUUCUGGGAAGCGUGCUAACGAUAAAGAAAGAAUCAGAAUAAAAUGUACCUGCCAUCCAGUUUUGGAUCUUUUUAAAACUAAUGAGUAUGAЖCUUGAGAUCUGUAUAAAUAAGAGCAUGAUUUGAAAAAAAGCAUGGUAUAAUUGAAACUUUUUUCAUUUUGAAAAGUAUUGGUUACUGGUGAUGUUGAAAUAUGCAUACUAAUUUUUGCUUAACAUUAGAUGUCAUGAGGAAACUACUGAACUAGCAAUUGGUUGUUUAACACUUCUGUAUGCAUCAGAUAACAACUGUGAGUAGCCUAUGAAUGAAAUUCUUUUAUAAAUAUUAGGCAUAAAUUAAAAUGUAAAACUCCAUUCAUAGUGGAUUAAUGCAUUUUGCUGCCUUUAUUAGGGUACUUUAUUUUGCUUUUCAGAAGUCAGCCUACAUAACACAUUUUUAAAGUCUAAACUGUUAAACAACUCUUUAAAGGAUAAUUAUCCAAUAAAAAAAAACCUAGUGCUGAUUCACAGCUUAUUAUCCAAUUCAAAAAUAAAUUAGAAAAAUAUAUGCUUACAUUUUUCACUUUUGCUAAAAAGAAAAAAAAAAGGUGUUUAUUUUUAACUCUUGGAAGAGGUUUUGUGGUUCCCAAUGUGUCUGUCCCACCCUGAUCCUUUUCAAUAUAUAUUUCUUUAAACCUUGUGCUACUUAGUAAAAAUUGAUUACAAUUGAGGGAAGUUUGAUAGAUCCUUUAAAAAAAAGGCAGAUUUCCAUUUUUUGUAUUUUAACUACUUUACUAAAUUAAUACUCCUCCUUUUACAGAAUUAGAAAAGUUAACAUUUAUCUUUAGGUGGUUUCCUGAAAAGUUGAAUAUUUAAGAAAUUGUUUUUAACAGAAGCAAAAUGGCUUUUCUUUGGЖCAGUUUUCACCAUCUCUUGUAAAAGUUAAUUCUCACCAUUCCUGUGGUACCUGCGAGUGUUAUGACCAGGAUUCCUUAAACCUGAЖCUCAGACCACUUGCAUUAGAACCAUCUGGAGCACUUGUUUUAAAAUGCAGAUUCAUAGGCAGCAUCUCAGAUCUACAGAACAAGAAUCUCUGCUAAGUGGACCUGGAAUCUUCCAUCUGCAUCUUAACAUGCUCUCUAGGUGUUUCUUGUGUUUGAGAACCAUGACUUAUGACUUUCCUCAGAACAUGAGЖCUGUAAAACAAAAACAAAAAACUAUGUGAUGCCUCUAUUUUCCCCAAUACAGUCACACAUCAGCUCAAAAUUUGCAAUAUUGUAGUUCAUAUAUUACCGUUAUGUCUUUGGAAAUCGGGUUCAGAACACUUUUUAUGACAAAAAUUGGGUGGAGGGGAUAACUUUCAUAUCUGGCUCAACAUCUCAGGAAAAUCUGUGAUUAUUUGUGUGUUCUAAUGAGUAACAUCUACUUAGUUAGCCUUAGGGAUGGAAAAACAGGGCCACUUACCAAACUCAGGUGAUUCCAGGAUGGUUUGGAAACUUCUCCUGAAUGCAUCCUUAACCUUUAUUAAAACCAUUGUCCUAAGAACAAUGCCAACAAAGCUUACAACAUUUAGUUUAAACCCAAGAAGGGCACUAAACUCAGAUUGACUAAAUAAAAAGUACAAAGGGCACAUAUACGUGACAGAAUUGUACACAAUCACUCCAUUGGAUCUUUUACUUUAAAGUAGUGAUGAAAAGUACAUGUUGAUACUGUCUUAGAAGAAAUUAAUAUAUUAGUGAAGCCACAUGGGGUUUCAGUUGCGAAACAGGUCUGUUUUUAUGUUCAGUUUGUACAAUCCACAAUUCAUUCACCAGAUAUUUUGUUCUUAAUUGUGAACCAGGUUAGCAAAUGACCUAUCAAAAAUUAUUCUAUAAUCACUACUAGUUAGGAUAUUGAUUUAAAAUUGUUCUACUUGAAGUGGUUUCUAAGAUUUUUAUAUUAAAAAUAGGUGUGAUUUCCUAAUAUGAUCUAAAACCCUAAAUGGUUAUUUUUCCUCAGAAUGAUUUGUAAAUAGCUACUGGAAAUAUUAUACAGUAAUAGGAGUGGGUAUUAUGCAACAUCAUGGAGAAGUGAAGGCAUAGGCUUAUUCUGACAUAAAAUUCCACUGGCCAGUUGAAUAUAUUCUAUUCCAUGUCCAUACUAUGACAAUCUUAUUGUCAACACUAUAUAAAUAAGCUUUUAAЖCAAGUCAUUUUUCUUGAUCGUUGUGGAAGGUUUGGAGCCUUAGAGGUAUGUCAGAAAAAAUAUGUUGGUAUUCUCCCUUGGGUAGGGGGAAAUGACCUUUUUACAAGAGAGUGAAAUUUAGGUCAGGGAAAAGACCAAGGGCCAGCAUUGCUACUUUUGUGUGUGUGUGUGUGGGUUUUGUUUUGUUUUUUUGGUUGGCUGGUUGUUUUCGUUGUUGUUAACAAAGGAAUGAGAAUAUGUAAUACUUAAAUAAACAUGACCACGAAGAAUGCUGUUCUGAUUUACUAGAGAAUGUUCCCAAUUUGAAUUUAGGGUGAUUUUAAAGAACAGUGAGAAAGGGCAUACAUCCACAGAUUCACUUUGUUUAUGCAUAUGUAGAUACAAGGAUGCACAUAUACACAUUUUCAAGGACUAUUUUAGAUAUCUAGACAAUUUCUUCUAAUAAAGUCAUUUGUGAAAGGGUACUACAGCUUAUUGACAUCAGUAAGGUAGCAUUCAUUACCUGUUUAUUCUCUGCUGCAUCUUACAGAAGAGUAAACUGGUGAGAGUAUAUAUUUUAUAUAUAUAUAUAUAUAUAUAUAUAUAAUAUGUAUAUAUAUAUAUAUUGACUUGUUACAUGAAGAUGUUAAAAUCGGUUUUUAAAGGUGAUGUAAAUAGUGAUUUCCUUAAUGAAAAAUACAUAUUUUGUAUUGUUCUAAUGCAACAGAAAAGCCUUUUAAUCUCUUUGGUUCCUGUAUAUUCCAUGUAUAAGUGUAAAUAUAAUCAGACAGGUUUAAAAGUUGUGCAUGUAUGUAUACAGUUGCAAGUCUGGACAAAUGUAUAGAAUAAACCUUUUAUUUAAGUUGUGAUUACCUGCUGCAUGAAAAGUGCAUGGGGGACCCUGUGCAUCUGUGCAUUUGGCAAAAUGUCUUAACAAAUCAGAUCAGAUGUUCAPCCUAACAUGACAGUAUUCCAUUUCUGGACAUGACGUCUGUGGUUUAAGCUUUGUGAAAGAAUGUGCUUUGAUUCGAAGGGUCUUAAAGAAUUUUUUUAAUCGUCAACCACUUUUAAACAUAAAGAAUUCACACAACUACUUUCAUGAAUUUUUUAAUCCCAUUGCAAACAUUAUUCCAAGAGUAUCCCAGUAUUAGCAAUACUGGAAUAUAGGCACAUUACCAUUCAUAGUAAGAAUUCUGGUGUUUACACAACCAAAUUUGAUGCGAUCUGCUCAGUAAUAUAAUUUGCCAUUUUUAUUAGAAAUUUAAUUUCUUCAUGUGAUGUCAUGAAACUGUACAUACUGCAGUGUGAAUUUUUUUGUUUUGUUUUUUAAUCUUUUAGUGUUUACUUCCUGCAGUGAAUUUGAAUAAAUGAGAAAAAAUGCAUUGUC
2211   unknown  unknown    Homo sapiens    AGACCAGCCCUUACCUAGUCAUACCGCAGUACAGCGUGGGAAGUGAUGCAAGCCUAGGGCUCCCUGCAGCCUGCCCACCUUCCUAUCCUGGGCUCUCCCUAACCACCAAAGCAAGAGGGCAGACUGCUCUCAUGUGUGGGUACUGCGAUGUUUUGGUUUGGUUUUUAUUAUUUUAACUAGAUGGAUUUUCAAUGGCCUAGGAAGGUUUUAAUUGGAUACUCUAUGAAGGUAAAAAAUGUAAUUUCUCAGGAUCCCUUUCAUUUGCUCUUAUGGUCAAUGGUCCCCCCGGGAAAGGCUGAUGCUGUAAGCUUUGUUACAUUUGGACAAGUCAGUGAAGUUACCCCAUACCCGUCAUUCACUAGGGACACUUGGAAUUGGGAAAGGCACCAGCAAGCUGGUUGGAAUGCAGAGACUGCAUUAGCCAAGCGUCCGGGGUCCAGCCAUGGAGGGUGUCACCGAGGGCUUGUGAUCCCUUGCCUUGCCUUGGUUGAGAAAUCCACAAAGCUUUUUUAAGUCUGUAAUUCCUGUGUCAGCAGCGCUCAGGUUUGGGUGGGAGAAACGGUGAGGAACGAUGAUGAUGAGGCAGAAAUUGGGAGGGGUGCUGCUCUUAGGCCCCUGGGGCAGAGUCUUGAGCGCCUGGGGAAGCUAACAGUGUGUCACUCUGGCAUCUAGGAAGCAGUAUAUCUCAACUCAGUUUUGCGGAGGACAUUUCUGCUGAUGAAGAUGACCAAAUCCUCAGUCAAGGAAAGCAUAAGAAGAAAGGAAAUAAACUUUUAGAGAAAACUAЖCUUGGAAAAGGAGAAAGGAAGCAGAGUCUUUUGUGUAGAGGAAGAGGACAGUGAAAGCAGUCUUCAAAAGAGAAGAAGGAAGAAGAAGAAGAAGCACCACCUGCAGCCUGAAAAUCCAGGCCCAGGGGGUGCAGCCCCAUCCCUGGAЖCAGAACCGGGGCAGGGAGCCCGAGGCCUCUGGGCUGAAAGCCCUGAAGGCACGUGUGGCCGAGCCAGGUGCAGAGGCCACGUCCAGCACUGGGGAGGAGAGUGGCUCCGAGCAUCCUCCAGCCGUCCCCAUGCACAAUAAAAGGAAACGGCCACGGAAGAAGAGCCCGAGGGCCCACAGGGAAAUGUUGGAAUCAGCAGUGUUGCCCCCAGAGGЖCAUGUCUCAGAGUGGCCCGAGUGGCAGUCAUCCUCAGGGЖCCUAGAGGGUCCCCGACAGGUGGAGCCCAACUCCUAЖAAAGGAAGCGGAAACUUGGAGUUGUGCCCGUCAAUGGCAGUGGCCUGUCCACGCCGGCCUGGCCUCCAUUGCAGCAGGAAGGCCCUCCCACAGGCCCCGCAGAGGGGGCGAЖCAGCCACACCACGCUGCCCCAGCGCAGGAGGCUGCAGAAAAAGAAGGCAGGGCCCGGCAGCCUGGAGCUCUGUGGCCUGCCCAGCCAGAAAACAGCAAGUUUGAAAAAGAGGAAGAAAAUGAGAGUGAUGUCAAACUUGGUGGAGCACAACGGGGUGCUGGAGUCCGAAGCUGGGCAACCCCAGGCUCUGGGAAGCAGUGGGACUUGCAGUUCCCUGAAGAAGCAGAAGCUGAGGGCAGAGAGCGACUUUGUGAAGUUUGACACCCCCUUCUUACCAAAGCCCCUGUUCUUCAGAAGAGCCAAGAGCAGCACUGCCACCCACCCPCCAGGCCCUGCCGUCCAGCUAAACAAGACACCAUCCAGCUCCAAGAAAGUCACCUUUGGGCUGAACAGAAACAUGACUGCCGAAUUCAAGAAGACAGACAAGAGUAUCUUGGUCAGUCCCACGGGCCCUUCUCGAGUGGCCUUCGACCCUGAACAGAAGCCCCUCCACGGGGUGCUGAAGACCCCCACCAGCUCACCUGCCAGCUCACCCCUGGUGGCCAAGAAGCCCCUGACCACCACACCAAGGAGAAGGCCCAGGGCUAUGGAUUUCUUCUGAGGAGCAGCAGAGUCCCUUGUAAAAGЖCUGCUUUUGUACAGAAUGCGCUAUAAAUUAUACCUPUAAGAAUGUGGGGCCUUUUUUAUGAUUUUGUAAGUUCCCAUAAGUUGUGUGCACGAGGUUCUGAGAGUGCCCGCAGGCUGCUGCGUCCUGGCCCCUCUGUAGUGGCUGCGGGCGUCUUGGUUGAAUCUUUUGCUACAAACCAUGUUUGCGUUUGAGCUCUCCAGGAUUUUACAUUUUUGGGUAACCUCAGUGAUUCCCAUUGGUGUAGGAAAUGAGACCCUCUCUGAAGCUGAGGAGAGCACGUUGAUCUGAЖCUPUAAAUCAAUCAGUGCUGCUGGCACAAUGAAAGGUGGAЖCUGCACUUCUGUUGAGCUCUCAGUUCUGCGGAAUUUGGUACUCAUUACCGUAUUCGCCGUACUAAGUUGGUUUCUGUUAGUCUUAACAGUCUGUUUUCUUUUAAAAGCAUGUAGGGCUUCAUUGCCAUGUUCUGUGGGUGUUUGGCAGGUUACCGAUGGGGAAGAUUCUUGUCACAGAAUCAGCAAUACCAUAGUUUUUCUACAUGUGCUCAGCUGGGGGUGUGGACAGGUAGGGGUGGGGAAAGAAGAGGCUCUGCGUUCUGGGGGCUUUUUCUUCUCCUCCCCCUACCCGGUUUCCCUCCCUGUUUUCCUACCUCUACGGCAAGCCCAAAGUGUCUUCCCGGGAGCCCAGCGCAGCCCCCGGCUCUUACCCAGGACCCCGCCCCGUGCUGAGCCUUCUGCUGAGGUCCUUGCGUGGAGCACACUCAUUCCUCCAAGCCCUUGCGCUCCCGUUUCUCUCUCUCUCCGUCCACGUUCCAGCCGAGUCACUGCCUGЖCCGGCUCCAUGGCAGCUCCCCAUCUUCCCUAGAGGCUGCCUGCGCAUCUGGAGCCUGCGCUCCGGCUCAGCGACCUUUCCUCUCAAAUGCGGAAGCGUGCACUUACAGUUCAGACCGUUCUCCUGUAAGUUCAUUACAAACACGGGCGGAAGGCACUCAGGCUUUCGUUGGAGAAACAGAAAUAAGGCCUUCUUUUGAGCAGCGAUUGCUGGAUCAUUGAUCUGUUUGAGGAAGUGUCUGACCUGGGCCUGAGAGCUGGAGAAGGUGCAGAUUCAAAGUGAGCGGCUCCUGAGGAGAGCCGCCAAGGCUGCUCGCCUUCUCCGUGGCUUCCGCAGCUACCGUCUGCACGGUGAGAGGGCACGGGCACACGGUUCGGGCUGGCGUGCAGCUCUCCCAGCCAGCCACGCUCUGCUCAGGCCUGGAAGUGAAAGCCGCCUCCUUCCCGUUAUGCCCCCCAUACAGGAGCCUCGGUUUUUCAGCAAAACGCGGCCAGUCCCCUUCUCCACUGCUGCCUCCCAGCAGAGGGCCCCAGGAUCUCCAAGGUCCCAGCUAUGGCUUUGGЖCAACGUGGCUUCGGCCCCUGGGGUUGCAGAGCUUGCAUUGGGUUUACCUCGGUCUCAUUCAUUCAUGGAGCCAAGGGUGGGGUUUCACCUGCGAACAUCAGЖCUGACUUGCUGGCGUCAAGAGCAGUUGACUCACUGAUGAAGGCCCUGGUGAGGAGAAAGCACUCUGUUCUUCGCCUACUCUGUAAUCGUUUUGUCAUAAUGAGCCAUGAAAAAAGUAAUGAЖCUUGUGCUGUUAAUCGUCACUGUAAUGAGAAGUCUUACGUACAACAUAGCUGUGGUGGCUUAAUGGCUGCAUUAGAUAGGAUCCUCACAPCCCAUUCAGAACCAAAACUGAUACAGUGAAACAAUUAAGGUGAGCAAAUAGUUUUAACUUUUCUUUUUUUUUUUUAAGUUUCAUUCUUCCUAGAAUAUUUUUCUAACAAUUUUUAUUUCAGCUPUAAAGAUGGGUCAUAUAGCCAAACGGGCCAUAUAAUCCAACAUUGUUGAGAUGUCUUAGGACAUCUAAGGCAAAACUGGCACAUUUGUUCUGCAGACUAUUGCAGGAAUGUUUUUUCCUAGCAUUUCUAUAUUAUCUGUCCAUUCUGAGGAACCAGUGAAUGUCCUAUAAAUGCACCUCCUGUCAAAACCAUGCCUGAGAGGUCCCGGCUGGGAGUGACAGGGUGCUUCUUAGAUUCUAUUGGUCCUUCUCUCAUUCUCCGAACUUACUCCUUUUUAUGGGUAAGUCAACUAGGUUUACAGUCCCUUAUUUUUAAUGCCUAAGUUUUGACAGCAGGAAGAAAACAAUUUUUUAAAAAUUCUCAUUACAUAGACGCACAAGAAUAUGUCACAUAAAGAAAAUGUGUUUAGAAUACUGGUUUUCUAUUUACGCAUGAUAUUUUCCUAAGUAAAAUUGCCAAGUGGACUU#GAAGUCCAGAAAGGAAAAUAAUUUAAAUUAAUGCUGGUGAUCUUAACAAUAUUUUGUAAAAUGAUGCUUCCCCCUUCUCCAUGGUCUAGUCAAUUUUGUACAAUUAGGUAUCUGACUPUACAAGUUUGUUAUCCUUUCUAAUUUUUACUGAACUGAAAGCACAAAGAAGACUACACAGAAAAUCUGGAAACAGUUGCAGGUGUUGGGAGGAAGAUGAAAUCGAGCUGUCUUUUAЖCUUUUGUAUGUGUUUUAUCAGAAUUUGCUGGЖCUAUGCUGGCAAGGЖCUUUGUUUACGAUCAAAUUGUACUAGUGUCUGCAGGGUUUGUCAGUACUCGUCAAAGCCAAGUCCAAUUAAAAAAAAAAGUCUUUGCCCPCC
ID RNA_source_id SO term RNA Type RNA Subtype RNA Feature Organism Cellular localization Sequence (MODOMICS CODE)
1211 LC530716.1  tRNA  Gly  UCC  Homo sapiens  mitochondrion  ACUCUUUU2000001551A2000002551GUAUAAAUAGUACCG2000009551UUAACUUCCAA2000009551U2000009551UAACUAGUUUUGACAACAUUCAAAAAAGAGUACCA
1212 LC530717.1  tRNA  His  QPG  Homo sapiens  Mitochondrion  GGUAAAUAU2000001551A2000002551GUUUAACCAAAACA2000009551UCAGAUU2000042551G2000009551UGAA2000009551UCUGACAA2000005551CAGAGGCUUACGACCCCUUAUUUACCCCA
1213 LC530718.1  tRNA  Met  >AU  Homo sapiens  Mitochondrion  AGUAAGGUCAGCUAAAUAAGCUA2000009551UCGGGCC2000071551CAUACCCCGAAAAUG2000009551UUGGUUAUACCCUUCCCGUACUACCA
1214 LC530719.1  tRNA  Asn  QUU  Homo sapiens  Mitochondrion  UAGAUUGA2000001551A2000002551GCCAGUUGA2000008551UUAGGGUGC2000009551UUAGCU2000042551GUU2000062551AAC2000009551UAAGUGUUUGUGGG2000005551U2000009551UUAAGUCCCAUUGGUCUAGCCA
1215 LC530720.1  tRNA  Pro  UGG  Homo sapiens  mitochondrion  CAGAGAAU2000001551AGUUUAAAUUAGAAUC2000009551UUAGC2000009551UUUGG2000001551G2000009551UGCUAAUGGUGGAG2000005551U2000009551UAAAGACUUU2000009551U2000009551UCUCUGACCA
1216 LC530721.1  tRNA  Gln  ƕUG  Homo sapiens  Mitochondrion  UAGGAUGG2000001551GGUGUGAUAGG2000008551UGGCACGGAGAAU2000009551U2000254551UUG2000001551GA2000009551U2000009551UCUCAGGGAUGGG2000005551U2000009551UCGAUUCUCAUAGUCCUAGCCA
1217 LC530722.1  tRNA  Arg  UCG  Homo sapiens  mitochondrion  UGGUAUAU2000001551A2000002551GUUUAA2000001551ACAAAAC2000002551GAAUGA2000009551UUUCGAC2000009551UCAUUAAAUUAUGAUAAUCAUAUUUACCAACCA
1218 LC530723.1  tRNA  Thr  UGU  Homo sapiens  Mitochondrion  GUCCUUGU2000001551A2000002551GUAUAAACUAAUACACCAGU2000003551CUUGU2000062551AAACCGGAGAUGAAAACCUUUUUCCAAGGACACCA
1219 LC530724.1  tRNA  Val  UAC  Homo sapiens  Mitochondrion  CAGAGUGU2000001551A2000002551GCUUAACACAAAGCACCCAACUUACAC2000009551UUAGGAGAUUUCAACUUAACUUGACCGCUCUGACCA
1220 LC530725.1  tRNA  Trp  ʭC*  Homo sapiens  Mitochondrion  AGAAAUUU2000001551A2000002551GGUUAAAUACAGACCAAGAGCCU2000054551UC2002161551AAAGCCCUCAGUAAGUUGCAAUACUUAAUUUCUGCCA
1221 LC530726.1  tRNA  Tyr  QUA  Homo sapiens  Mitochondrion  GGUAAAAU2000001551G2000002551GCUGAGUGAAGCA2000009551U2000009551UGGACU2000042551GUA2002161551AA2000009551UCUAAAGA2000005551CAGGGGUUAGGCCUCUUUUUACCACCA
1222 KY962518.1  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAU2000090551AUGCUUG2000009551UC2000009551UCAAAGAUUAAGCCAUGCAUGUCUAAG2000009551UACGCACGGCCGGUACAGUGAAACUGCGAA2000009551UGGCUC2000090551A2000009551UUAAA2000009551UCAG2000009551UUAUGGU2000090551UCC2000009551UU2000090551UGGUCGCUCGCUCCUCUCCUACUUGGAUAACUGUGGUA2000090551AUUCUAG2000090551AGC2000090551UAA2000090551UA2000090551CAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGA2000009551UGCGUGCA2000009551UUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUC2000009551UAGA2000009551UAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCUAACGUC2000090551UGCCCUAUCAAC2000009551UUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGG2000009551UGACGGGGAAUCAGGGUUCGAU2000090551UCCGGAGA2000090551GGGAGCCUGAGAAACGGCUACCACAU2000090551CCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCACUCCCGACCCGGGGA2000090551GGU2000090551AG2000009551UGA2000090551CGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAA2000009551UUGGAAUGAGUCCACU2000009551UUAA2000090551AUCCUUUAACGAGG2000090551AUCCAUUGGAG2000090551GGCAAGUC2000009551UGGUGCCAGCAG2000090551CCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUA2000009551UA2000009551UUAAAGUUGCUGCAGU2000009551U2000090551AAAAAGCUCGUAG2000009551UU2000090551GGA2000009551UCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUC2000009551U2000009551UAGCUGAGUGUCCCGCGGGGCCCGAAG2000090551CG2000090551UU2000009551UAC2000009551UUUGAAAAAA2000009551U2000009551UAGAGUG2000009551UUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAA2000009551UAA2000009551U2000090551GGAAUAGGACCGCGGUUCUAUUUUGUUGGU2000009551UUUCGGAACUGAGGCCAUGAU2000009551UAAGAGGGACGGCCGGGGGCAUUCCGUAUUGCGCGCUAGAGGUGAAAU2000009551UCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAU2000009551UUGCCAAGAAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUCGGAGG2000009551U2000009551UCGAAGACGA2000009551UCAGA2000009551UACCGUCGUAGUUCCGACCA2000009551UAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGC2000009551UUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUA2000009551UGG2000009551UUGCAAAGC2000009551UGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCC2000009551UGCGGC2000009551UUAAUU2000009551UGAC2001309551UCAACACGGGAAACCUCACCCGGC2000090551CCGGACACGGACAGGA2000090551UUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGG2000090551UG2000090551GUGCAUGGC2000042551CGUUCUUAGU2000009551UGGUGGAGCGAUU2000009551UGUCUGG2000009551UUAAUUCCGAUAACGA2000090551ACGAGACU2000090551CUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAA2000090551CU2000090551UCU2000009551UA2000090551GAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAU2000009551UCGUGAUGGGGAUCGGGGAUUGCAAUUAU2000009551UCCCCAUGAACGAG2000007551GAAU2000009551UCCCAGUAAGUGCGGGUCAUAAGCU2000090551UGCGUUGAUU2000090551AAGUCCCUGCCCUU2000009551UGUACACACCG2000090551CCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACU2000090551UGACUAUCUAGAGGAAGUAAAAGUCGUA2000006551ACAAGGU2000009551UUC2000042551CGUAGGUG2000066551A2000066551ACCUGCGGAAGGAUCAUUA
1223 7BHP_L5  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAGAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAG2000090551AG2000090551AGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGCGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCC2000090551GUCUUG2000001551A2000090551AAC2000090551ACGGACCAAGGAGU2000090551CUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC2000090551GA2000090551AAGAUGGUGA2000090551AC2000009551UAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCG2000009551UAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCC2000009551UCAGGA2000009551UAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAA2000009551UGAUUAGAGGUCUUGG2000090551GGCCGAAACGAUC2000090551UCAACC2000009551UA2000009551U2000009551UCUCAAACUU2000009551UAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCAC2000009551UU2000009551UUGGUAAGC2000090551AGAACUGGCG2000090551CUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGCGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551G2000090551CAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGG2000090551AGAAGGGUUCCAUG2000090551UGAACAG2000090551CA2000090551GUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGA2000009551UCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUU2000009551UUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCC2000090551AUAUCCGCAGCAGGUCU2000090551CCAAGGUGAAC2000090551AGCCUCUGG2000090551CAUGUUGGAACAA2000090551UG2000009551UAGG2000009551UAAGGGAAGUCGGCAAGC2000090551CGGAUCCGUAACUUC2000090551GGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCCGCGCGCGCCGCUCGCUCCCUCCCCGCCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGGCGGCGGCCCGCCGCGGGGCCCCGGCGGCGGGGGCACGGUCCCCCGCGAGGGGGGCCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGGCGCCGGCGCGCCCCCCCCCCCACCCCACGUCUCGUCGCGCGCGCGUCCGCUGGGGGCGGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG2000090551GGAAUCCGAC2000009551UG2000009551UUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUU2000009551UCUGCC2000090551CAGUGCUCUGAAUG2000009551UCA2000090551AAGUGA2000090551AGAAAU2000009551UCAA2000009551UGAAGCGCGG2000090551GUAAACGGCGGGAG2000009551UA2000090551AC2000009551UA2000009551UGAC2000009551UC2000009551UCUUAAGGUAGC2000005551CAA2000090551AUGCCUC2000090551GUCAUCUAAUUAGUGA2000090551CGCGCAUGAA2000909551UGGA2000009551UGA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCC2000009551UACCUAC2000009551UA2000009551UCCAGCGAAACCAC2000090551AG2000090551CCAAGGGAACGGGCU2000009551UGG2000090551CGGAAUCAGCGG2000090551GGAAAGAAGACCCUGUUGAGC2000009551UUGAC2000090551UCUAGUCUGGCACGGUGAA2000090551GAGACAUGAGAGGUG2000009551UAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCCGGCCCUGCGGGCCGCC2000090551GGUGAAAUACCA2000090551CUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGGCCGCGCGCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG2000090551GGGCGGUACACCUGUCAAACGGUA2000006551ACGCAGG2000090551U2000090551GUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGA2000009551UCU2000009551UGA2000009551UUUUCAG2000090551UACGAA2000009551UACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUU2000009551UUGGGUUU2000009551UAAGCAGGA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGC2000009551UUGUGGCGGCCAAGCGU2000009551UCA2000009551UAGCGACG2000009551UCGCUUUUUGA2000009551UCCUU2000005551CGAUGUCGG2000090551C2000009551UCUUCCUAUCAUUG2000009551UGAAGCAGAAUUCACCAAGCGU2000009551U2000090551GGAU2000090551U2000090551G2000009551UUCACCCACUAAUAGGGAACG2000009551UG2000090551AGCUGGG2000003551UU2000009551UAGA2000090551CCGUCGUGAGACAGGU2000009551UAGUUUUACCCUACUGAUG2000090551AUGUG2000009551UUG2000009551UUGCCAUGGUA2000090551AUCCUGCUCAGUACGAGAGGAACCGCAG2000090551GU2000090551UCA2000090551GACAU2000009551UUGGUGUA2000009551U2000090551GUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCA2000009551UCUGUGGGAUUAUGAC2000009551UGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCCUCCACGCGCCCCGCGCGCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCA2000009551U2000009551UCGUAGACGACCUGCUUCUGGGUCGGGG2000009551UUUCGUACG2000009551UAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1224 KY962518.1  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGG2000090551UGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGC2000009551UGCGAGAAUUAAUG2000009551UGAAUU2000090551GCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1225 7O7Y_39  rRNA  LSU-L  28S  Oryctolagus cuniculus  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGUGGGGCGCGGGAAAUGUGGCGUACGGAAGACCCACUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAG2000090551AG2000090551AGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGUGGUCCGGCCGUGCCGGCGGUCUCGGCGGAUCUUUCCCGCUCCCCGUUCCUCCCGACCCCUCCACCCGCUCCCCCUCCCCCGCCGGUCUUCUCCCUUCACGGGGGGUGGGUCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGCCCCCCGGCCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCCGGCGGGGAAGGUGGCCCGGGGGGACGCCUCGCCGCCGUCGUCCGCGGCGGCGGCGGGCGCGACCCCUCCCCGGGUGUUACAGCCCCGCCCCGGCAGCAGCAGCUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCUGUGUCGCCGCGCUCUCCCCCCUCCCGGCGCUCCCCCCCGCGGGGGUCCCCCGCGAGGGGGCUCCCCCCGCGGGGGCGCGCCGGUGUCGCCGCCCUCGCGGGCGCGGCACGGGGGGGCCGGGCCGCCCCUCCCACGGCGCGACCGCUCUCCCGGCCCCCGCCGCCGCCUCUUCGGGCGUGCGGCGGGGGUGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGUGUCACGCCGUCGGGCUCGGGGGAGAAGUCGGCCACGGCGCGUCGCGCGCCUCCGCGUCCCCCCCUCGCCGUCUCCGGGCGGCGGGGGGGGGUUUCGGCGCGGUGUUCUCGGCGCGCGCGCGCGAGCGAGCGCACGGGGUCGGCGGCGAUGUCGGCUACCCACCCGACCC2000090551GUCUUG2000001551AAAC2000090551ACGGACCAAGGAGU2000090551CUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGGCGGCUUCCCGCCGUCGUCGGCCGAGGUGGGAUCCCGAGGCCCUUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC2000090551GA2000090551AAGAUGGUGA2000090551AC2000009551UAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCG2000009551UAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCC2000009551UCAGGA2000009551UAGCUGGCGCUCUCGCAACCCCGCAGUUUUAUCCGGUAAAGCGAA2000009551UGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACC2000009551UA2000009551U2000009551UCUCAAACUU2000009551UAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCAC2000009551UU2000009551UUGGUAAGC2000090551AGAACUGGCG2000090551CUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCUGGCAGUCGGCAGAGCGAGAAAGAGAGUGGAGCGCGCCGCGGGACUCCCCCCGCGGGGGUCCCCGGCCACCCCCCCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551G2000090551CAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGG2000090551AGAAGGGUUCCAUG2000090551UGAACAG2000090551CA2000090551GUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCAGCCGA2000009551UCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUU2000009551UUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCC2000090551AUAUCCGCAGCAGGUCU2000090551CCAAGGUGAAC2000090551AGCCUCUGG2000090551CAUGUUGGAACAA2000090551UGUAGGUAAGGGAAGUCGGCAAGC2000090551CGGAUCCGUAACUUC2000090551GGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCGCCCUCCCCCGGCCGGGUCCGCUCCCUCGCGCGCGCGUGCGCCGUGGCGCGCGCCGCGCGCGCGGCCGAGCCCCGUCUCCCUCCCCCCCUCUCCCCUCCCGGGGCGGGGUGCGGGGAGGGGCGGGCGGGGCCGUCGCUCGCCGCGCGUGCGCGUCGCUGCGCGUGCGCCGCGCGGGGGGUCCGGCGGGCCUCCGGACGGGGGCUCCGGGCACCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCUCGGGGAGCCCGGCGGGCGCCGCGUGCGCGCGCGUGCGCGCCCGGGGUCGGGGGGGUGCGAGGCAGGGGAGGCCCUCUCUCCUCCUCCCCCACCCCGGCGCCGCGGCGCCGCGCGUGCGCGCGCGGUCUCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG2000090551GGAAUCCGAC2000009551UG2000009551UUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUU2000009551UCUGCC2000090551CAGUGCUCUGAAUG2000009551UCA2000090551AAGUGA2000090551AGAAAU2000009551UCAA2000009551UGAAGCGCGG2000090551GUAAACGGCGGGAG2000009551UA2000090551AC2000009551UA2000009551UGAC2000009551UC2000009551UCUUAAGGUAGC2000005551CAA2000090551AUGCCUC2000090551GUCAUCUAAUUAGUGA2000090551CGCGCAUGAA2000909551UGGA2000009551UGA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCC2000009551UACCUAC2000009551UA2000009551UCCAGCGAAACCAC2000090551AG2000090551CCAAGGGAACGGGCU2000009551UGG2000090551CGGAAUCAGCGG2000090551GGAAAGAAGACCCUGUUGAGC2000009551UUGAC2000090551UCUAGUCUGGCACGGUGAA2000090551GAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCUCCCGCCCCCGCGAGGGGGCGGGGCGGGGUCCGCCGGCCUUGCGGGCCGCCGGUGAAAUACCACUACUCUUAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCGGGCCCCGUCGGUCCGCGCGGGCCGGCGGCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG2000090551GGGCGGUACACCUGUCAAACGGUA2000006551ACGCAGG2000090551U2000090551GUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGA2000009551UCU2000009551UGA2000009551UUUUCAG2000090551UACGAA2000009551UACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGAGCUU2000009551UUGGGUUU2000009551UAAGCAGGA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGC2000009551UUGUGGCGGCCAAGCGU2000009551UCA2000009551UAGCGACG2000009551UCGCUUUUUGA2000009551UCCUU2000005551CGAUGUCGG2000090551C2000009551UCUUCCUAUCAUUG2000009551UGAAGCAGAAUUCACCAAGCGUU2000090551GGAU2000090551U2000090551G2000009551UUCACCCACUAAUAGGGAACG2000009551UG2000090551AGCUGGG2000003551UU2000009551UAGA2000090551CCGUCGUGAGACAGGU2000009551UAGUUUUACCCUACUGAUG2000090551AUGUG2000009551UUG2000009551UUGCCAUGGUA2000090551AUCCUGCUCAGUACGAGAGGAACCGCAG2000090551GU2000090551UCA2000090551GACAU2000009551UUGGUGUA2000009551U2000090551GUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCA2000009551UCUGUGGGAUUAUGAC2000009551UGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCGAAGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCGUCCCCGCCGGCGGCCCGCGUCGUGCGUCCGCCUCGGCGGCGUGCGGCGCGCCCCCCGCCGCGCGUCGGGACCGGGGUCCGGUGCGGAGAGCCCUUCGUCCCGGGAAAUGGGGCGCGGCCGGAAAGGGGGCCGCCCUCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCA2000009551UUCGUAGACGACCUGCUUCUGGGUCGGGG2000009551UUUCGUACG2000009551UAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGU
1226 7O7Y_1  rRNA  SSU  18S  Oryctolagus cuniculus  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAU2000090551AUGCUUG2000009551UC2000009551UCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAA2000009551UGGCUC2000090551AUUAAA2000009551UCAG2000009551UUAUGGU2000090551UCC2000009551UU2000090551UGGUCGCUCGCUCCUCUCCUACUUGGAUAACUGUGGUA2000090551AUUCUAG2000090551AGCUAA2000090551UA2000090551CAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGA2000009551UGCGUGCA2000009551UUUAUCAGAUCAAAACCAACCCGGUCAGCCUCCCCCCGGCCCCGGCCGGGGGGGUGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCUCCGUGGCGGCGACGACCCAUUCGAACGUC2000090551UGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGG2000009551UGACGGGGAAUCAGGGUUCGAU2000090551UCCGGAGA2000090551GGGAGCCUGAGAAACGGCUACCACAU2000090551CCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCACUCCCGACCCGGGGA2000090551GGU2000090551AGUGA2000090551CGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACU2000009551UUAA2000090551AUCCUUUAACGAGG2000090551AUCCAUUGGAG2000090551GGCAAGUC2000009551UGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUA2000009551UA2000009551UUAAAGUUGCUGCAGUU2000090551AAAAAGCUCGUAG2000009551UU2000090551GGA2000009551UCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUU2000009551UACUUUGAAAAAA2000009551U2000009551UAGAGUG2000009551UUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAA2000009551UAA2000009551U2000090551GGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAU2000009551UCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUU2000009551UGCCAAGAAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUCGGAGG2000009551U2000009551UCGAAGACGA2000009551UCAGAUACCGUCGUAGUUCCGACCA2000009551UAAACGAUGCCGACUGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUA2000009551UGG2000009551UUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCC2000009551UGCGGC2000009551UUAAUU2000009551UGACCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGA2000090551UUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGG2000090551UG2000090551GUGCAUGGC2000042551CGUUCUUAGU2000009551UGGUGGAGCGAUUUGUCUGG2000009551UUAAUUCCGAUAACGA2000090551ACGAGACU2000090551CUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACU2000090551UCU2000009551UA2000090551GAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAU2000009551UCCCCAUGAACGAG2000007551GAAU2000009551UCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUU2000090551AAGUCCCUGCCCUU2000009551UGUACACACCG2000090551CCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACU2000090551UGACUAUCUAGAGGAAGUAAAAGUCGUA2000006551ACAAGGUUUC2000042551CGUAGGUG2000066551A2000066551ACCUGCGGAAGGAUCAUUA
1227 7O7Y_41  rRNA  LSU-S  5.8S  Oryctolagus cuniculus  Cytoplasm  CGACUCUUAGCGGUGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGC2000009551UGCGAGAAUUAAUG2000009551UGAAUU2000090551GCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUUG
1228 7QIZ_43  rRNA  LSU-L  25S  Solanum lycopersicum  Cytoplasm  GCGACCCCAGGUCAGGCGGGAUUACCCGCUGAGU2000009551UUAAGCAUA2000090551UCAA2000090551UAAGCGGAGGAAAAGAAACU2000009551UACAAGGAUUCCCCUAGUAACGGCGAGCGAACCGGGAACAGCCCAGCCUUAGAAUCGGGCGGCUCCGUCGUCCGAA2000090551UUGUAGUCUGGAGAAGCGUCCUCAGCGGCGGACCGGGCCCAAGUCCCCUGGAAGGGGGCGCCGGAGAGGGUGAGAGCCCCGUCGUGCCCGGACCCUGUCGCACCACGAGGCGCUGUCUACGAGUCGGGUUGUUUGGGAAUGCAGCCCAAAUCGGGCGGUGAAUUCCGUCCAAGGCUAAAUACUGGCGAGAGACCGAUAGCGAACAAGUACCGCGAGGGAAAGAUG2000090551AAAAGGACU2000009551UUGAAAAGAGAGUCAAAGAGU2000090551GCUUGAAAUUGUCGGGAGGGAAGCGGAUGGGGGCCGGCGAUGCGCCCCGGUCGGAUGUGGAACGGCGACGAGCCGGUCCGCCGAUCGACUCGGGGCGUGGACCAGCGUGGAUUGGGGGGGCGGCCAAAGCCCGGGCUCUCGAUACGCCCGUGGAACGCCGUCUCCCCGAUUGUGGAAGGCAGCGCGCGCCUCCGGCGUGCUUCGGCAUCUGCGCGCUCCGGACGCUGGCCUGUGGGCUCCCCAUUCGACCCGUCUUG2000001551AAAC2000090551ACGGACCAAGGAGU2000090551C2000090551UGACAUGUGUGCGAGUCAACGGGCGAGUAAACCCGUAAGGCGUAAGGAAGCUGAUUGGUGGGAUCCCCCUGAGGGGUGCACCGCCGACCGACCUUGAUCUUCUGAGAAGGGUUCGAGUGUGAGCAUACC2000090551UGUCGGGACCC2000090551GA2000090551AAGAUGGUGA2000090551AC2000009551UAUGCCUGAGCGGGGCGAAGCCAGAGGAAACUCUGGUGGAGGCCCGCAGCGAUACUG2000090551ACGUGCAAA2000009551UCGUUCGUCUGACUUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCGUCUAGU2000090551AGCUGGUUCCCUCCGAAGUUUCCC2000009551UCAGGAUAGCUGGAGCUCGCGUGCGAGUUCUA2000009551UCGGGUAAAGCCAA2000009551UGAUUAGAGGCCUCGGGGGCGCAACGCCCUCGACCUAU2000009551UCUCAAACUU2000009551UAAA2000090551UAGGUAGGACGGCGCGGCUGCUUUGUUGAGCCGCGCCACGGAAUCAAGAGCUCCAAGUGGGCCAU2000009551U2000009551U2000009551UUGGUAAGC2000090551AGAACUGGCGAUGCGGGAUGAACCGGAAGCCGGGUUACGGUGCCAAACUGCGCGCUAACCUAGAUCCCACAAAGGGUGUUGGUCGA2000009551UUAAGACAGCAGGACGGUGGUCAUGGAAGUCGAAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCCGAAAAUGGAUGGCGCUUAAGCGCGCGACCUACACCCGGCCGUCGGGGCAAGUGCCAGGCCCCGAUG2000090551AGUAGGAGGGCGCGGCGGUCGCUGCAAAACCUUGGGCGCGAGCCUGGGCGGAGCGGCCGUCGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551GCAAAUAUUCAAA2000009551UGAGAA2000090551CU2000009551UUGAAGGCCGAAGAGGGGAAAGGUUCCAUGUGAACGGCACUUGCACAUGGGUUAG2000090551UCGAUCCUAAGGGUCGGGGGAACCCCGACAGAUAGCGCGUUUCGCGCGUACUCCGAAAGGGAAUCGGGUUAAAAUUCCUGAACCGGGACGUGGCGGUUGACGGCAACGUUAGGAAGUCCGGAGACGUCGGCGGGAGCCUCGGGAAGAGUUAUCUUUUCUGUUUAACAGCCUGCCCACCCUGGAAUCGGCUCAGCCGGAGGUAGGGUCCAGCGGCUGGAAGAGCACCGCACGUCGCGUGGUGUCCGGUGCGCUCCCGGCGGCCCUUGAAAAUCCGGAGGACCGAAUGCCGUCCACGCCCGGUCGUACUCAUAA2000090551CCG2000090551CAUCA2000090551GGUCU2000090551CCAAGGUGAACAGCCUCUGGUCGAUGGAACAA2000090551UGUAGGCAAGGGAAG2000009551UCGGCAAAAUGGAUCCGUAACUUCGGGAAAAGGAUUGGCUCUGAGGGCUGGGCACGGGGGUCCCAGUCCCGAACCCGUCGGCUGUCGGUGGACUGCUCGAGCUGCUCCCGCGGCGAGAGCGGGUCGCCGCGUGCCGGCCGGGGGACGGACUGGGAACGGUUCCUUCGGGGGCCUUCCCCGGGCGUCGAACAGCCAACUCAGAACUGG2000090551UACGGACAAG2000090551G2000090551GG2000090551AAUCCGAC2000009551UG2000009551UUUAAUUAAAACAAAGCAUUGCGAUGGUCCCAACGGAUGUUUACGCAAUGUGAUU2000009551UCUGCC2000090551CAGUGCUCUGAAUG2000009551UCAAAGUGA2000090551AGAAA2000009551UUCAACCAAGC2000090551GCGGGUAAACGGCGGGAG2000009551UA2000090551AC2000009551UA2000009551UGAC2000009551UC2000009551UCUUAAGGUAGC2000005551CAA2000090551AUGCCUC2000090551GUCAU2000090551CUAAUUAGUGACGCGCAUGAA2000009551UGGA2000009551UUA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCCUGUCUAC2000090551UA2000009551UCCAGCGAAACCACAG2000090551CCAAGGGAACGGGCUUGGCAGAAUCA2000090551GCGG2000090551GGAAAGAAGACCCU2000090551G2000090551UUGAGC2000009551UUGAC2000090551UCUAGUCCGAC2000009551UUUGUGAAAUGACUUGAGAGGUGUAGUAUAAGUGGGAGCCGAAAGGCGAAAGUGAAAUACCACUACUUUUAACGUUAUUUUACUUA2000009551UUCCGUGAAUCGGAAGCGGGGCACUGCCCCUCUUUUUGGACCCAAGGCUCGCUUCGCGGGCCGAUCCGGGCGGAAGACAUUGUCAGGUGGGGAGUU2000009551UGGCUG2000090551GGGCGGCACAUCUGUUAAAAG2000090551AUAACGCAGG2000090551U2000090551GUCCUAAGAUGAGCUCAACGAGAACAGAAAU2000090551CUCGUGUGGAACAGAAGGGUAAAAGCUCGU2000009551UUGAU2000090551UCUGAUUUCCAG2000090551UACGAA2000090551UACGAACCG2000009551UGAAAGCGUGGCCUAACGAUCCUUUAGACCUUCGGAAUUCGAAGCUA2000090551GA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGC2000009551UUGUGGCAGC2000090551CAAGCGU2000009551UCAUAGCGACG2000009551UUGCUUUUUGA2000009551UCCUU2000005551CGAUGUCGG2000090551C2000009551UCU2000090551UCCUAUCAUUG2000009551UGAAGCAGAAUUCACCA2000090551AGUGUU2000090551GGAU2000090551U2000090551G2000009551UUCACCCACCAAUAGGGAACG2000009551UG2000090551AG2000090551CUGGG2000003551UU2000009551UAGA2000090551CCGUCGUGAGACAGGU2000009551UAGUUUUACCCUACUGA2000009551UGACAGUGUCGCAAUAGUAAUUCAACCUAGUACGAGAGGAACCGUUGAUUCACACAAUUGGCCAUCGCGCUUGGUUGAAAAGCCAGUGGCGCGAAGCUACCGUGUGCUGGAUUAUGAC2000009551UGAACGCCUCUAAGUCAGAAUCCGGGCUAGAAGCGACGCAUGCGCCCGCCGUCCGCUUGCCGACCCGCAGUAGGGGCCUUUGGCCCCCAAGGGCACGUGUCGUUGGCUAAGUCGCCGCGACGGAAGCGUCGCGGUGACCGCCUUGAAGUACAAUUUCCAUCGAGCGGCGGGUAGAAUCCUUUGCAGACGAC2000090551UUAAAUACGCGACGGGGUAUUGUAAGUGGCAGAGUGGCCUUGCUGCCACGAUCCACUGAGAUUCAGCCCUUUGUCGCUCCGAUUCGU
1229 7QIZ_46  rRNA  SSU  18S  Solanum lycopersicum  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGUCAU2000090551AUGCUUGUCU2000090551CAAAGAUUAAGCCAUGCAUGUGUAAGUAUGAACAAAUUCAGACUGUGAAACUGCGAAUGGCUCAU2000009551UAAAUCAG2000009551UUAUAGUUUG2000009551UU2000090551UGAUGGUAUCUACUACU2000090551CGGAUAACCGUAGUAAUUCUAG2000090551AGCUAAUACGUGCAACAAACCCCGACUUCUGGAAGGGAUGCAUUUA2000009551UUAGAUAAAAGGUCGACGCGGGCUCUGCCCGUUGCUGC2000090551GAUGAUUCA2000009551UGA2000009551UAACUCGACGGAUCGCACGGCCAUCGUGCCGGCGACGCAUCA2000009551UUCAAA2000009551UUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUGGUGACGGG2000009551UGACGGAGAAUUAGGGUUCGA2000009551UUCCGGAGA2000090551GGGAGCCUGAGAAACGGCUACCACAU2000090551CCAAGGAAGGCAGCAGGCGCGC2000090551AAAUUACCCAA2000009551UCCUGACACGGGGAGGU2000090551AGUGA2000090551CAAUAAAUAACAAUACCGGGCUCUAUGAGUCUGGUAAUUGGAAUGAGUACAAUCUAAAUCCCUUAACGAGG2000090551AUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGG2000090551UAA2000009551UUCCAGCUCCAAUA2000090551GCGUA2000909551UA2000009551UUUAAGUUG2000090551UUGCAGUU2000090551AAAAAGCUCGUAG2000009551UUGGACUUUGGGAUGGGCCGGCCGGUCCGCCCUAGGUGUGCACCGGUCGUCUCGUCCCUUCUGUCGGCGAUGCGCUCCUGGCCUUAAUUGGCCGGGUCGUGCCUCCGGCGCUGUUACU2000009551UUGAAGAAA2000009551UUAGAGUGCUCAAAGCAAGCCUACGCUCUGUAUACAUU2000090551AGCAUGGGA2000009551UAACAUUAUAGGAUUUCGGUCCUAUUACGUUGGCCUUCGGGAUCGGAGUAAUGAUUAACAGGGACAGUCGGGGGCAUUCGUAUUUCAUAGUCAGAGGUGAAAU2000009551UCUUGGAUUUAUGAAAGACGAACAACUGCGAAAGCAU2000009551U2000009551UGCCAAGGAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUUGGGGGCUCGAAGACGA2000009551UCAGAUACCG2000090551UCCUAGUCUCAACCA2000009551UAAACGAUGCCGACCAGGGAUCGGCGGAUGUUGCUUUUAGGACUCCGCCGGCACCUUAUGAGAAAUCAAAGUUUUUGGG2000009551UUCCGGGGGGAGUA2000009551UGGUCGCAAGGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCC2000009551UGCGGC2000009551UUAAUU2000009551UGAC2000000999UCAACACGGGGAAACU2000009551UACCAGG2000009551U2000090551CCAGACAUAGUAAGGAUUGACAGACUGAGAGCUCUUUCUUGAUUC2000090551UA2000090551UGGGUGG2000090551UG2000090551GUGCAUGGC2000042551CGUUCUUAGU2000009551UGGUGGAGCGA2000009551UUUG2000009551UCUGG2000009551UUAAUUCCGUUAACGA2000090551ACGAGACCUCAGCCUGCUAACUAGCUAUGCGGAGGUAUCCCUUCGCGGCCAGCU2000090551UCUUAGAGGGACUACGGCCUUUUAGGCCGCGGAAGUUUGAGGCAAUAACA2000090551GGUCUGUGAUGCCC2000090551UUAGAUGUUCUGGGCCGCACGCGCGCUACACUGAUGUA2000009551UUCAACGAGCUUAUAGCCUUGGCCGACAGGCCCGGGUAAUCUUUGAAAUU2000009551UCA2000009551UCGUGAUGGGGAUAGAUCAUUGCAAUUGU2000009551UGGUCUUCAACG2000090551AG2000007551GAAUUCCUAGUAAGCGCGAGUCAUCAGCUCGCGUUGACUACGUCCCUGCCCUU2000009551UGUACACACCG2000090551CCCGUCGCUCCUACCGAUUGAAUGAUCCGGUGAAAUGUUCGGAUCGCGGCGACGUGGGCGGUUCGCUGCCCGCGACGUCGCGAGAAGUCCAUUGAACCUUAUCAUUUAGAGGA2000090551AGGAGAAGUCGUA2000006551ACAAGGUUUC2000042551CGUAGGUG2000066551A2000066551ACCUGCGGAAGGAUCAUUG
1230 7QIZ_45  rRNA  LSU-S  5.8S  Solanum lycopersicum  Cytoplasm  ACAAACGACUCUCGGCAACGGA2000009551UAUCUCGGCUCUCGCAUCGAUGAAG2000090551AACGUAGCGAAAUGCGAUACUUGGUGUGAAU2000009551U2000090551GCAGAAUCCCGUGAACCAUCGAGUCUUUGAACGCAAGUUGCGCCCGAAGCCAUUUGGCCGAGGGCACGUCUGCCUGGGCGUCACGC
1231 7PZY_1  rRNA  LSU-L  25S  Candida albicans  Cytoplasm  UGACCUCAAAUCAGGUAGGACUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACCAACAGGGAUUGCCUCAGUAGCGGCGAGUGAAGCGGCAAAAGCUCAAAUUUGAAAUCUGGCGUCUUUGGCGUCCGAGUUGUAAUUUGAAGAAGGUAUCUUUGGGCCCGGCUCUUGUCUAUGUUCCUUGGAACAGGACGUCACAGAGGGUGAGAAUCCCGUGCGAUGAGAUGACCCGGGUCUGUGUAAAGUUCCUUCGACGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGGGUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUGAUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGGGAAGGGCUUGAGAUCAGACUUGGUAUUUUGCAUGCUGCUCUCUCGGGGGCGGCCGCUGCGGUUUACCGGGCCAGCAUCGGUUUGGAGCGGCAGGAUAAUGGCGGAGGAAUGUGGCACGGCUUCUGCUGUGUGUUAUAGCCUCUGACGAUACUGCCAGCCUAGACCGAGGACUGCGGUUUUUACCUAGGAUGUUGGCAUAAUGAUCUUAAGUCGCCCGUCUUGAAACACGGACCAAGGAGUCUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCGUACGCGUAAUGAAAGUGAACGAAGGUGGGGGCCCAUUAGGGUGCACCAUCGACCGAUCCUGAUGUGUUCGGAUGGAUUUGAGUAAGAGCAUAGCUGUUGGGACCCGAAAGAUGGUGAACUAUGCCUGAAUAGGGUGAAGCCAGAGGAAACUCUGGUGGAGGCUCGUAGCGGUUCUGACGUGCAAAUCGAUCGUCGAAUUUGGGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUUUCCCUCAGGAUAGCAGAAGCUCGUAUCAGUUUUAUGAGGUAAAGCGAAUGAUUAGAAGUCUUGGGGUUGAAAUGACCUUAACUUAUUCUCAAACUUUAAAUAUGUAAGAAGUCCUUGUUGCUUAAUUGAACGUGGACAAUUGAAUGAAGAGCUUUUAGUGGGCCAUUUUUGGUAAGCAGAACUGGCGAUGCGGGAUGAACCGAACGUGAAGUUAAAGUGCCGGAAUGCACGCUCAUCAGACACCACAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGCGUGCUACUUAUACUUCACCGUGAUUGCUGUUUUGACGCUUUCACGAGUAGGCAGGCGUGGAGGUCAGUGACGAAGCCUUUGCUGUAAAGCUGGGUCGAACGGCCUCUAGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCAUGUCAACAGCAGUUGGACAUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAACGUGCUUGAUUUUUCAGGCCAACCAUCGAAAGGGAAUCCGGUUAAAAUUCCGGAACUUGGAUAUGGAUUCUUCACGGCAACGUAACUGAAUGUGGAGACGUCGGCGUGAGCCCUGGGAGGAGUUAUCUUUUCUUCUUAACAGCUUAUCACCCUGGAAUUGGUUUAUCCGGAGAUGGGGUCUUAUGGCUGGAAGAGCGCGGUAAUUUUGCCGCGUCCGGUGCGCUUACGACGGUCCUUGAAAAUCCACAGGAAGGAAUAGUUUUCAUGCCAAGUCGUACUCAUAACCGCAGCAGGUCUCCAAGGUUAACAGCCUCUAGUUGAUAGAAUAAUGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGAUCGGGUGUCUUGGGCCUUGUGUAGACGCGGCGGUGACUGUUGGCGGGCUGUUUUACGACGGACUGCUGGUGGAUGCUGCUGUAGACACGCUUGGUAGGUCUUUAUGGCCGUCCGGGGCACGUUUAACGAUCAACUUAGAACUGGUACGGACAAGGGGAAUCUGACUGUCUAAUUAAAACAUAGCAUUGUGAUGGUCAGAAAGUGAUGUUGACACAAUGUGAUUUCUGCCCAGUGCUCUGAAUGUCAAAGUGAAGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUAACUAUGACUCUCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGAUUAACGAGAUUCCCACUGUCCCUAUCUACUAUCUAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCUUGACUCUAGUUUGACAUUGUGAAAAGACAUGGAGGGUGUAGAAUAAGUGGGAGCUUCGGCGCCGGUGAAAUACCACUACCUCUAUAGUUUUUUUACUUAUUCAAUGAAGCGGAGCUGGAGGUCAAACUCCACGUUCUAGCAUUAAGCCCUCUGGGCGAUCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUGGGGCGGCACAUCUGUUAAACGAUAACGCAGGUGUCCUAAGGGGGACUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGGUAAAAGUCCCCUUGAUUUUGAUUUUCAGUGUGAAUACAAACCAUGAAAGUGUGGCCUAUCGAUCCUUUAGUCCCUCGGAAUUUGAGGCUAGA2000090551GGUGCCAGAAAAGUUACCACAGGGAUAACUGGCUUGUGGCAGU2000090551CAAGCGUUCAUAGCGACAUUGCUUUUUGAUUCUUCGAUGUCGGCUCUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAUUGUUCACCCACUAAUAGGGAACGUGAGCUGGGUUUAGACCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGAAUGUUAUCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACCGUUCAUUCAGAUAAUUGGUUUUUGCGGCUGUCUGAUCAGGCAACGCCGCGAAGCUACCAUCUGCUGGAUUAUGGCUGAACGCCUCUAAGUCAGAAUCCAUGCUAGAACGCGAUGAUUUUUGCCCUGCACAUUUUAGAUGGAUACGAAUAAGACUUUUUAGUCGCUGGACCAUAGCAGGCUGGCAACGGUGCGCUUAGCGGAAAGGCUUUGUGCGCUUGCCGGCGGAUAGCAAUGUCAACAUGCGCGGGGAUAAAUCCUUUGCAUACGACUUAGAUGUACAACGGAGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUACGAUCUGCUGAGAUUAAGCUCUUGUUGUCUGAUUUGU
1232 7K00_22  rRNA  LSU  23S  Escherichia coli  Prokaryotic Cytosol  GGUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCAUCCCGACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000002551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000002551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCUU
1233 7K00_1  rRNA  SSU  16S  Escherichia coli  Prokaryotic Cytosol  AAAUUGAAGAGUUUGAUCAUGGCUCAGAUUGAACGCUGGCGGCAGGCCUAACACAUGCAAGUCGAACGGUAACAGGAAGAAGCUUGCUUCUUUGCUGACGAGUGGCGGACGGGUGAGUAAUGUCUGGGAAACUGCCUGAUGGAGGGGGAUAACUACUGGAAACGGUAGCUAAUACCGCAUAACGUCGCAAGACCAAAGAGGGGGACCUUCGGGCCUCUUGCCAUCGGAUGUGCCCAGAUGGGAUUAGCUAGUAGGUGGGGUAACGGCUCACCUAGGCGACGAUCCCUAGCUGGUCUGAGAGGAUGACCAGCCACACUGGAACUGAGACACGGUCCAGACUCCUACGGGAGGCAGCAGUGGGGAAUAUUGCACAAUGGGCGCAAGCCUGAUGCAGCCAUGCCGCGUGUAUGAAGAAGGCCUUCGGGUUGUAAAGUACUUUCAGCGGGGAGGAAGGGAGUAAAGUUAAUACCUUUGCUCAUUGACGUUACCCGCAGAAGAAGCACCGGCUAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGUGCAAGCGUUAAUCGGAAUUACUGGGCGUAAAGCGCACGCAGGCGGUUUGUUAAGUCAGAUGUGAAAUCCCCGGGCUCAACCUGGGAACUGCAUCUGAUACUGGCAAGCUUGAGUCUCGUAGAGGGGGGUAGAAUUCCAGGUGUAGCGGUGAAAUGCGUAGAGAUCUGGAGGAAUACCGGUGGCGAAGGCGGCCCCCUGGACGAAGACUGACGCUCAGGUGCGAAAGCGUGGGGAGCAAACAGGAUUAGAUACCCUGGUAGUCCACGCCGUAAACGAUGUCGACUUGGAGGUUGUGCCCUUGAGGCGUGGCUUCCGGAGCUAACGCGUUAAGUCGACCGCCUGGGGAGUACGGCCGCAAGGUUAAAACUCAAAUGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAU2000002551G2000005551CAACGCGAAGAACCUUACCUGGUCUUGACAUCCACGGAAGUUUUCAGAGAUGAGAAUGUGCCUUCGGGAACCGUGAGACAGGUGCUGCAUGGCUGUCGUCAGCUCGUGUUGUGAAAUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCUUAUCCUUUGUUGCCAGCGGUCCGGCCGGGAACUCAAAGGAGACUGCCAGUGAUAAACUGGAGGAAGGUGGGGAUGACGUCAAGUCAUCAUG2000002551GCCCUUACGACCAGGGCUACACACGUGCUACAAUGGCGCAUACAAAGAGAAGCGACCUCGCGAGAGCAAGCGGACCUCAUAAAGUGCGUCGUAGUCCGGAUUGGAGUCUGCAACUCGACUCCAUGAAGUCGGAAUCGCUAGUAAUCGUGGAUCAGAAUGCCACGGUGAAUACGUUCCCGGGCCUUGUACACACCG2000904551CCCGU2000005551CACACCAUGGGAGUGGGUUGCAAAAGAAGUAGGUAGCUUAACCUUCGGGAGGGCGCUUACCACUUUGUGAUUCAUGACUGGGGUGAAGUCG2000003551UAACAAGGUAACCGUAGG2000002551GG2000066551A2000066551ACCUGCGGUUGGAUCACCUCCUUA
1234 RIBOMAP_EC23S  rRNA  LSU  23S  Escherichia coli  Prokaryotic Cytosol  GGUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000007551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCAUCCCGACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000002551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAAC2000039551UA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000002551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCAC2000090551CUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCUU
1235 RIBOMAP_EC16S  rRNA  SSU  16S  Escherichia coli  Prokaryotic Cytosol  AAAUUGAAGAGUUUGAUCAUGGCUCAGAUUGAACGCUGGCGGCAGGCCUAACACAUGCAAGUCGAACGGUAACAGGAAGAAGCUUGCUUCUUUGCUGACGAGUGGCGGACGGGUGAGUAAUGUCUGGGAAACUGCCUGAUGGAGGGGGAUAACUACUGGAAACGGUAGCUAAUACCGCAUAACGUCGCAAGACCAAAGAGGGGGACCUUCGGGCCUCUUGCCAUCGGAUGUGCCCAGAUGGGAUUAGCUAGUAGGUGGGGUAACGGCUCACCUAGGCGACGAUCCCUAGCUGGUCUGAGAGGAUGACCAGCCACACUGGAACUGAGACACGGUCCAGACUCCUACGGGAGGCAGCAGUGGGGAAUAUUGCACAAUGGGCGCAAGCCUGAUGCAGCCAUGCCGCGUGUAUGAAGAAGGCCUUCGGGUUGUAAAGUACUUUCAGCGGGGAGGAAGGGAGUAAAGUUAAUACCUUUGCUCAUUGACGUUACCCGCAGAAGAAGCACCGGCUAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGUGCAAGCGUUAAUCGGAAUUACUGGGCGUAAAGCGCACGCAGGCGGUUUGUUAAGUCAGAUGUGAAAUCCCCGGGCUCAACCUGGGAACUGCAUCUGAUACUGGCAAGCUUGAGUCUCGUAGAGGGGGGUAGAAUUCCAGGUGUAGCGGUGAAAUGCGUAGAGAUCUGGAGGAAUACCGGUGGCGAAGGCGGCCCCCUGGACGAAGACUGACGCUCAGGUGCGAAAGCGUGGGGAGCAAACAGGAUUAGAUACCCUGGUAGUCCACGCCGUAAACGAUGUCGACUUGGAGGUUGUGCCCUUGAGGCGUGGCUUCCGGAGCUAACGCGUUAAGUCGACCGCCUGGGGAGUACGGCCGCAAGGUUAAAACUCAAAUGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAU2000002551G2000005551CAACGCGAAGAACCUUACCUGGUCUUGACAUCCACGGAAGUUUUCAGAGAUGAGAAUGUGCCUUCGGGAACCGUGAGACAGGUGCUGCAUGGCUGUCGUCAGCUCGUGUUGUGAAAUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCUUAUCCUUUGUUGCCAGCGGUCCGGCCGGGAACUCAAAGGAGACUGCCAGUGAUAAACUGGAGGAAGGUGGGGAUGACGUCAAGUCAUCAUG2000002551GCCCUUACGACCAGGGCUACACACGUGCUACAAUGGCGCAUACAAAGAGAAGCGACCUCGCGAGAGCAAGCGGACCUCAUAAAGUGCGUCGUAGUCCGGAUUGGAGUCUGCAACUCGACUCCAUGAAGUCGGAAUCGCUAGUAAUCGUGGAUCAGAAUGCCACGGUGAAUACGUUCCCGGGCCUUGUACACACCG2000904551CCCGU2000005551CACACCAUGGGAGUGGGUUGCAAAAGAAGUAGGUAGCUUAACCUUCGGGAGGGCGCUUACCACUUUGUGAUUCAUGACUGGGGUGAAGUCG2000003551UAACAAGGUAACCGUAGG2000002551GG2000066551A2000066551ACCUGCGGUUGGAUCACCUCCUUA
1236 RIBOMAP_TT16S  rRNA  SSU  16S  Thermus thermophilus  prokaryotic cytosol  UUUGUUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCGCGAGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000002551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCACCUCC2000009551U2000009551UUCU
1237 RIBOMAP_TT23S  rRNA  LSU  23S  Thermus thermophilus  Prokaryotic Cytosol  GGUCAAGAUGGUAAGGGCCCACGGUGGAUGCCUCGGCACCCGAGCCGAUGAAGGACGUGGCUACCUGCGAUAAGCCAGGGGGAGCCGGUAGCGGGCGUGGAUCCCUGGAUGUCCGAAUGGGGGAACCCGGCCGGCGGGAACGCCGGUCACCGCGCUUUUGCGCGGGGGGAACCUGGGGAACUGAAACAUCUCAGUACCCAGAGGAGAGGAAAGAGAAAUCGACUCCCUGAGUAGCGGCGAGCGAAAGGGGACCAGCCUAAACCGUCCGGCUUGUCCGGGCGGGGUCGUGGGGCCCUCGGACACCGAAUCCCCAGCCUAGCCGAAGCUGUUGGGAAGCAGCGCCAGAGAGGGUGAAAGCCCCGUAGGCGAAAGGUGGGGGGAUAGGUGAGGGUACCCGAGUACCCCGUGGUUCGUGGAGCCAUGGGGGAAUCUGGGCGGACCACCGCCUAAGGCUAAGUACUCCGGGUGACCGAUAGCGCACCAGUACCGUGAGGGAAAGGUGAAAAGAACCCCGGGAGGGGAGUGAAAUAGAGCCUGAAACCGUGGGCUUACAAGCAGUCACGGCCCCGCAAGGGGUUGUGGCGUGCCUAUUGAAGCAUGAGCCGGCGACUCACGGUCGUGGGCGAGCUUAAGCCGUUGAGGCGGAGGCGUAGGGAAACCGAGUCCGAACAGGGCGCAAGCGGGCCGCACGCGGCCCGCAAAGUCCGCGGCCGUGGACCCGAAACCGGGCGAGCUAGCCCUGGCCAGGGUGAAGCUGGGGUGAGACCCAGUGGAGGCCCGAACCGGUGGGGGAUGCAAACCCCUCGGAUGAGCUGGGGCUAGGAGUGAAAAGCUAACCGAGCCCGGAGAUAGCUGGUUCUCCCCGAAAUGACUUUAGGGUCAGCCUCAGGCGCUGACUGGGGCCUGUAGAGCACUGAUAGGGCUAGGGGGCCCACCAGCCUACCAAACCCUGUCAAACUCCGAAGGGUCCCAGGUGGAGCCUGGGAGUGAGGGCGCGAGCGAUAACGUCCGCGUCCGAGCGCGGGAACAACCGAGACCGCCAGCUAAGGCCCCCAAGUCUGGGCUAAGUGGUAAAGGAUGUGGCGCCGCGAAGACAGCCAGGAGGUUGGCUUAGAAGCAGCCAUCCUUUAAAGAGUGCGUAAUAGCUCACUGGUCGAGUGGCGCCGCGCCGAAAAUGAUCGGGGCUUAAGCCCAGCGCCGAAGCUGCGGGUCUGGGGGAUGACCCCAGGCGGUAGGGGAGCGUUCCCGAUGCCGAUGAAGGCCGACCCGCGAGGCGGCUGGAGGUAAGGGAAGUGCGAAUGCCGGCAUGAGUAACGAUAAAGAGGGUGAGAAUCCCUCUCGCCGUAAGCCCAAGGGUUCCUACGCAAUGGUCGUCAGCGUAGGGUUAGGCGGGACCUAAGGUGAAGCCGAAAGGCGUAGCCGAAGGGCAGCCGGUUAAUAUUCCGGCCCUUCCCGCAGGUGCGAUGGGGGGACGCUCUAGGCUAGGGGGACCGGAGCCAUGGACGAGCCCGGCCAGAAGCGCAGGGUGGGAGGUAGGCAAAUCCGCCUCCCAACAAGCUCUGCGUGGUGGGGAAGCCCGUACGGGUGACAACCCCCCGAAGCCAGGGAGCCAAGAAAAGCCUCUAAGCACAACCUGCGGGAACCCGUACCGCAAACCGACACAGGUGGGCGGGUGCAAGAGCACUCAGGCGCGCGGGAGAACCCUCGCCAAGGAACUCUGCAAGUUGGCCCCGUAACUUCGGGAGAAGGGGUGCUCCCUGGGGUGAUGAGCCCCGGGGAGCCGCAGUGAACAGGCUCUGGCGACUGUUUACCAAAAACACAGCUCUCUGCGAACUCGUAAGAGGAGGUAUAGGGAGCGACGCUUGCCCGGUGCCGGAAGGUCAAGGGGAGGGGUGCAAGCCCCGAACCGAAGCCCCGGUGAACGGCGGCCG2000009551UAAC2000000999UA2000009551UAA2000090551CGGUCCUAAGGUAGCGAAA2000000999UUC2000000999CUUGUCGGGUAAGUUCCGAC2000000999CUGCACGAAAAGCGUAACGACCGGAGCGCUGUCUCGGCGAGGGACCCGGUGAAAUUGAACUGGCCGUGAAGAUGCGGCCUACCCGUGGCAGGACGAAAAGACCCCGUGGAGCUUUACUGCAGCCUGGUGUUGGCUCUUGGUCGCGCCUGCGUAGGAUAGGUGGGAGCCUGUGAACCCCCGCCUCCGGGUGGGGGGGAGGCGCCGGUGAAAUACCACCCUGGCGCGGCUGGGGGCCUAACCCUCGGAUGGGGGGACAGCGCUUGGCGGGCAGUUUGACUG2000090551GGGCGGUCGCCUCCUAAAAGGUAACGGAGGCGCCCAAAGGUCCCCUCAGGCGGGACGGAAAUCCGCCGGAGAGCGCAAGGGUAGAAGGGGGCCUGACUGCGAGGCCUGCAAGCCGAGCAGGGGCGAAAGCCGGGCCUAGUGAACCGGUGGUCCCGUGUGGAAGGGCCAUCGAUCAACGGAUAAAAGUUACCCCGGGGAUAACAGGCUGAUCUCCCCCGAGCGUCCACAGCGGCGGGGAGGUUUGGCACCUCG2000000999AUGUCGGCUCGUCGCAUCCUGGGGCUGAAGAAGGUCCCAAGGGUUGGGC2000090551UGUUCGCCCAUUAAAGCGGCACGCGAGCUGGGUUCAGAACGUCGUGAGACAGUUCGGUCUCUA2000009551UCCGCCACGGGCGCAGGAGGCUUGAGGGGGGCUCUUCCUAGUACGAGAGGACCGGAAGGGACGCACCUCUGGUUUCCCAGCUGUCCCUCCAGGGGCAUAAGCUGGGUAGCCAUGUGCGGAAGGGAUAACCGCUGAAAGCAUCUAAGCGGGAAGCCCGCCCCAAGAUGAGGCCUCCCACGGCGUCAAGCCGGUAAGGACCCGGGAAGACCACCCGGUGGAUGGGCCGGGGGUGUAAGCGCCGCGAGGCGUUGAGCCGACCGGUCCCAAUCGUCCGAGGUCUUGACCCC
1238 RIBOMAP_HC23S  rRNA  LSU  23S  Haloarcula marismortui  Prokaryotic Cytosol  AACCCCGAGAACUGAAACAUCUCAGUAUCGGGAGGAACAGAAAACGCAAUGUGAUGUCGUUAGUAACCGCGAGUGAACGCGAUACAGCCCAAACCGAAGCCCUCACGGGCAAUGUGGUGUCAGGGCUACCUCUCAUCAGCCGACCGUCUCGACGAAGUCUCUUGGAACAGAGCGUGAUACAGGGUGACAACCCCGUACUCGAGACCAGUACGACGUGCGGUAGUGCCAGAGUAGCGGGGGUUGGAUAUCCCUCGCGAAUAACGCAGGCAUCGACUGCGAAGGCUAAACACAACCUGAGACCGAUAGUGAACAAGUAGUGUGAACGAACGCUGCAAAGUACCCUCAGAAGGGAGGCGAAAUAGAGCAUGAAAUCAGUUGGCGAUCGAGCGACAGGGCAUACAAGGUCCCUCGACGAAUGACCGACGCGCGAGCGUCCAGUAAGACUCACGGGAAGCCGAUGUUCUGUCGUACGUUUUG2000001551AAAAACGAGCCAGGGAGUGUGUCUGCAUGGCAAGUCUAACCGGAGUAUCCGGGGAGGCACAGGGAAACCGACAUGGCCGCAGGGCUUUGCCCGAGGGCCGCCGUCUUCAAGGGCGGGGAGCCAUGUGGACACGACCCGAAUCCGGACGAUCUACGCAUGGACAAGAUGAAGCGUGCCGAAAGGCACGUGGAAGUCUGUUAGAGUUGGUGUCCUACAAUACCCUCUCGUGAUCUAUGUGUAGGGGUGAAAGGCCCAUCGAGUCCGGCAACAGCUGGUUCCAAUCGAAACAUGUCGAAGCAUGACCUCCGCCGAGGUAGUCUGUGAGGUAGAGCGACCGAUUGGUGUGUCCGCCUCCGAGAGGAGUCGGCACACCUGUCAAACUCCAAACUUACAGACGCCGUUUGACGCGGGGAUUCCGGUGCGCGGGGUAAGCCUGUGUACCAGGAGGGGAACAACCCAGAGAUAGGUUAAGGUCCCCAAGUGUGGAUUAAGUGUAAUCCUCUGAAGGUGGUCUCGAGCCCUAGACAGCCGGGAGGUGAGCUUAGAAGCAGCUACCCUCUAAGAAAAGCGUAACAGCUUACCGGCCGAGGUUUGAGGCGCCCAAAAUGAUCGGGACUCAAAUCCACCACCGAGACCUGUCCGUACCACUCAUACUGGUAAUCGAGUAGAUUGGCGCUCUAAUUGGAUGGAAGUAGGGGUGAAAACUCCUAUGGACCGAUUAGUGACGAAAAUCCUGGCCAUAGUAGCAGCGAUAGUCGGGUGAGAACCCCGACGGCCUAAUGGAUAAGGGUUCCUCAGCACUGCUGAUCAGCUGAGGGUUAGCCGGUCCUAAGUCAUACCGCAACUCGACUAUGACGAAAUGGGAAACGGGUUAAUAUUCCCGUGCCACUAUGCAGUGAAAGUUGACGCCCUGGGGUCGAUCACGCUGGGCAUUCGCCCAGUCGAACCGUCCAACUCCGUGGAAGCCGUAAUGGCAGGAAGCGGACGAACGGCGGCAUAGGGAAACGUGAUUCAACCUGGGGCCCAUGAAAAGACGAGCAUAGUGUCCGUACCGAGAACCGACACAGGUGUCCAUGGCGGCGAAAGCCAAGGCCUGUCGGGAGCAACCAACGUUAGGGAAUUCGGCAAGUUAGUCCCGUACCUUCGGAAGAAGGGAUGCCUGCUCCGGAACGGAGCAGGUCGCAGUGACUCGGAAGCUCGGACUGUCUAGUAACAACAUAGGUGACCGCAAAUCCGCAAGGACUCGUACGGUCACUGAAUCCUGCCCAGUGCAGGUAUCUGAACACCUCGUACAAGAGGACGAAGGACCUGUCAACGGCGGG2000090551GGUAAC2000009551UA2000009551UGACCCUCUUAAGGUAGCGUAGUACCUUGCCGCAUCAGUAGCGGCUUGCAUGAAUGGAUUAACCAGAGCUUCACUGUCCCAACGUUGGGCCCGGUGAACUGUACAUUCCAGUGCGGAGUCUGGAGACACCCAGGGGGAAGCGAAGACCCUAUGGAGCUUUACUGCAGGCUGUCGCUGAGACGUGGUCGCCGAUGUGCAGCAUAGGUAGGAGACACUACACAGGUACCCGCGCUAGCGGGCCACCGAGUCAACAGUGAAAUACUACCCGUCGGUGACUGCGACUCUCACUCCGGGAGGAGGACACCGAUAGCCGGGCAGUUUGACUGGGGCGGUACGCGCUCGAAAAGAUAUCGAGCGCGCCCUAUGGCUAUCUCAGCCGGGACAGAGACCCGGCGAAGAGUGCAAGAGCAAAAGAUAGCUUGACAGUGUUCUUCCCAACGAGGAACGCUGACGCGAAAGCGUGGUCUAGCGAACCAAUUAGCCUGCUUGAUGCGGGCAAUUGAUGACAGAAAAGCUACCCUAGGGAUAACAGAGUCGUCACUCGCAAGAGCACAUAUCGACCGAGUGGCUUGCUACCUCGAUGUCGGUUCCCUCCAUCCUGCCCGUGCAGAAGCGGGCAAGGGUGAGGU2000090551U2000090551GUUCGCCUAUUAAAGGAGGUCGUGAGCUGGG2000003551UU2000009551UAGACCGUCGUGAGACAGGUCGGCUGCUAUCUACUGGGUGUGUAAUGGUGUCUGACAAGAACGACCGUAUAGUACGAGAGGAACUACGGUUGGUGGCCACUGGUGUACCGGUUGUUCGAGAGAGCACGUGCCGGGUAGCCACGCCACACGGGGUAAGAGCUGAACGCAUCUAAGCUCGAAACCCACUUGGAAAAGAGACACCGCCGAGGUCCCGCGUACAAGACGCGGUCGAUAGACUCGGGGUGUGCGCGUCGAGGUAACGAGACGUUAAGCCCACGAGCACUAACAGACCAAAGCCAUCA
1239 RIBOMAP_SC25S  rRNA  LSU-L  25S  Saccharomyces cerevisiae  Cytoplasm  GUUUGACCUCAAAUCAGGUAGGAGUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACCAACCGGGAUUGCCUUAGUAACGGCGAGUGAAGCGGCAAAAGCUCAAAUUUGAAAUCUGGUACCUUCGGUGCCCGAGUUGUAAUUUGGAGAGGGCAACUUUGGGGCCGUUCCUUGUCUAUGUUCCUUGGAACAGGACGUCAUAGAGGGUGAGAAUCCCGUGUGGCGAGGAGUGCGGUUCUUUGUAAAGUGCCUUCGAAGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGGGUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUGAUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGGGAAGGGCAUUUGAUCAGACAUGGUGUUUUGUGCCCUCUGCUCCUUGUGGGUAGGGGAAUCUCGCAUUUCACUGGGCCAGCAUCAGUUUUGGUGGCAGGAUAAAUCCAUAGGAAUGUAGCUUGCCUCGGUAAGUAUUAUAGCCUGUGGGAAUACUGCCAGCUGGGACUGAGGACUGCGACGUAAGUCAAGGAUGCUGGCAUAAUGGUUAUAUGCCGCCCGUCUUG2000001551AAAC2000090551A2000090551CGGACCAAGGAGU2000090551CUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCAUACGCGUAAUGAAAGUGAACGUAGGUUGGGGCCUCGCAAGAGGUGCACAAUCGACCGAUCCUGAUGUCUUCGGAUGGA2000009551UUUGAGUAAGAGCAUAGCUGUUGGGACCC2000090551GA2000090551AAGAUGGUGA2000090551ACUAUGCCUGAAUAGGGUGAAGCCAGAGGAAACUCUGGUGGAGGCUCGUA2000090551GCGGUUCUG2000090551ACGUGCAAAUCGAUCGUCGAAU2000090551UUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUU2000005551UCCC2000009551UCAGGA2000009551UAGCAGAAGCUCGUAUCAGU2000009551UUUA2000009551UGAGGUAAAGCGAA2000009551UGAUUAGAGGUUCCGGGGUCGAAAUGACCUUGACCUAU2000009551UCUCAAACUU2000009551UAAA2000009551UAUGUAAGAAGUCCUUGUUACUUAAUUGAACGUGGACAUUUGAAUGAAGAGCUU2000009551UUAGUGGGCCAUUU2000009551UUGGUAAGC2000090551AGAACUGGCGAUGCGGGAUGAACCGAACGUAGAGUUAAGGUGCCGGAAUACACGCUCAUCAGACACCACAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGCGUGUUACCUAUACUCUACCGUCAGGGUUGAUAUGAUGCCCUGACGAGUAGGCAGGCGUGGAGGUCAGUGACGAAGCCUAGACCGUAAGGUCGGGUCGAACGGCCUCUAGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551GCAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCACGUCAACAGCAGUUGGACGUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAAAGGCCUGAUUUUAUGCAGGCCACCAUCGAAAGGGAAUCCGGUUAAGAUUCCGGAACCUGGAUAUGGAUUCUUCACGGUAACGUAACUGAAUGUGGAGACGUCGGCGCGAGCCCUGGGAGGAGUUAUCUUUUCUUCUUAACAGCUUAUCACCCCGGAAUUGGUUUAUCCGGAGAUGGGGUCUUAUGGCUGGAAGAGGCCAGCACCUUUGCUGGCUCCGGUGCGCUUGUGACGGCCCGUGAAAAUCCACAGGAAGGAAUAGUUUUCAUGCCAGGUCGUACUGAUAACCGCAGCAGGUCUCCAAGGUGAACAGCCUCUAGUUGAUAGAAUAA2000090551UGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGUCGGGUAGUGAGGGCCUUGGUCAGACGCAGCGGGCGUGCUUGUGGACUGCUUGGUGGGGCUUGCUCUGCUAGGCGGACUACUUGCGUGCCUUGUUGUAGACGGCCUUGGUAGGUCUCUUGUAGACCGUCGCUUGCUACAAUUAACGAUCAACUUAGAACUGGUACGGACAAGGGGAAUC2000009551UGAC2000009551UGUCUAAUU2000001551AAAACAUAGCAUUGCGAUGGUCAGAAAGUGAUGUUGACGCAAUGUGAUU2000009551UCUGCC2000090551CAGUGCUCUGAAUGUCAAAGUGA2000090551AGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUA2000090551AC2000009551UA2000009551UGAC2000009551UC2000009551UCUUAAGGUAGC2000005551CA2000090551A2000090551AUGCCUC2000090551GUCAUCUAAUUAGUGACGCGCAUGAA2000009551UGGAUUAACGAGAUUCCCACUGU2000090551CCC2000009551UAUCUAC2000090551UA2000009551UC2000009551UAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGUUGAGC2000009551U2000090551UGAC2000090551UCUAGUUUGACAUUGUGAAGAGACAUAGAGGGUGUAGAAUAAGUGGGAGCUUCGGCGCCAGUGAAAUACCACUACCUUUAUAGUUUCUUUACUUAUUCAAUGAAGCGGAGCUGGAAUUCAUUUUCCACGUUCUAGCAUUCAAGGUCCCAUUCGGGGCUGAUCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUG2000090551GGGCGGCACAUCUGU2000003551UAAACG2000090551AUAACGCAGAUGUCCUAAGGGGGGCUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGGUAAAAGCCCCCUUGAUUUUGAUU2000090551UUCAG2000090551UGUGAA2000009551UACAAACCAUGAAAGUGUGGCCUAUCGAUCCUUUAGUCCCUCGGAAUUUGAGGCUA2000090551GA2000090551GGUGCCAGAAAAGUUACCACAG2000090551GGAUAACUGGC2000009551UUGUGGCAGUCAAGCGU2000003551UCAUAGCGACAUUGCUUUUUGA2000009551UUCUUCGAUGUCGGC2000009551UCUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAU2000090551U2000090551G2000009551U2000005551UCACCCACUAAUAGGGAACG2000009551UG2000090551AG2000090551CUGGGUUUAGA2000090551CCGUCGUGAGACAGGU2000009551UAGUUUUACCCUACUGAUGAAUGUUACCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACAGUUCAUUCGGAUAAUUGGUUUUUGCGGCUGUCUGAUCAGGCAUUGCCGCGAAGCUACCAUCCGCUGGAUUAUGGCUGAACGCCUCUAAGUCAGAAUCCAUGCUAGAACGCGGUGAUUUCUUUGCUCCACACAAUAUAGAUGGAUACGAAUAAGGCGUCCUUGUGGCGUCGCUGAACCAUAGCAGGCUAGCAACGGUGCACUUGGCGGAAAGGCCUUGGGUGCUUGCUGGCGAAUUGCAAUGUCAUUUUGCGUGGGGAUAAAUCAUUUGUAUACGACUUAGAUGUACAACGGGGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUACGAUCUGCUGAGAUUAAGCCUUUGUUGUCUGAUUUGU
1240 RIBOMAP_SC18S  rRNA  SSU  18S  Saccharomyces cerevisiae  Cytoplasm  UAUCUGGUUGAUCCUGCCAGUAGUCAU2000090551AUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUAUAAGCAAUUUAUACAGUGAAACUGCGAAUGGCUC2000090551AUUAAA2000009551UCAGUUAUCGUUUA2000009551UUUGAUAGUUCCUUUACUACAUGGUAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCUUAAAAUCUCGACCCUUUGGAAGAGAUGUAUUUA2000009551UUAGAUAAAAAAUCAAUGUCUUCGGACUCUUUGAUGAUUCAUAAUAACUUUUCGAAUCGCAUGGCCUUGUGCUGGCGAUGGUUCAUUCAAA2000009551UUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUUUCAACGGGUAACGGGGAAUAAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAU2000090551CCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCAAUCCUAAUUCAGGGAGGUAG2000009551UGACAAUAAAUAACGAUACAGGGCCCAUUCGGGUCUUGUAAUUGGAAUGAGUACAAUGUAAAUACCUUAACGAGG2000090551AACAAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUAGCGUAUAUUAAAGUUGUUGCAGUU2000090551AAAAAGCUCGUAG2000009551UUGAACUUUGGGCCCGGUUGGCCGGUCCGAUUUUUUCGUGUACUGGAUUUCCAACGGGGCCUUUCCUUCUGGCUAACCUUGAGUCCUUGUGGCUCUUGGCGAACCAGGACUUUUACUUUGAAAAAAU2000009551UAGAGUG2000009551UUCAAAGCAGGCGUAUUGCUCGAAUAUAUU2000090551AGCAUGGAAUAAUAGAAUAGGACGUUUGGUUCUAUUUUGUUGGUUUCUAGGACCAUCGUAAUGAUUAAUAGGGACGGUCGGGGGCAUCAGUAUUCAAUUGUCAGAGGUGAAAUUCUUGGAUUUAUUGAAGACUAACUACUGCGAAAGCAUUUGCCAAGGACGUUUUCAUUAAUCAAGA2000090551ACGAAAGUUAGGGGAUCGAAGAUGA2000009551UCAGAUAC2000090551CGUCGUAGUCUUAACCAUAAACUAUGCCGACUAGGGAUCGGGUGGUGUUUUUUUAAUGACCCACUCGGCACCUUACGAGAAAUCAAAGUCUUUGGGUUCUGGGGGGAGUAUGGUCGCAA2000090551GGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGC2000009551UUAAUU2000009551UGAC2001309551UCAACACGGGGAAACUCACCAGGUCCAGACACAAUAAGGAUUGACAGAUUGAGAGCUCUUUCUUGAUUUUGUGGGUGG2000090551UG2000090551GUGCAUGGCCGUUCUUAGU2000009551UGGUGGAGUGAUUUGUCUGCUUAAUUGCGAUAACGAACGAGACCUUAACCUACUAAAUAGUGGUGCUAGCAUUUGCUGGUUAUCCACUUCUUAGAGGGACUAUCGGUUUCAAGCCGAUGGAAGUU2000009551UGAGGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGACGUUCUGGGCCGCACGCGCGCUACACUGACGGAGCCAGCGAGUCUAACCUUGGCCGAGAGGUCUUGGUAAUCUUGUGAAACUCCGUCGUGCUGGGGAUAGAGCAUUGUAAUUAUUGCUCUUCAAC2000090551GAG2000007551GAAUUCCUAGUAAGCGCAAGUCAUCAGCUUGCGUUGAUUACGUCCCUGCCCUUUGUACACACCG2000090551CCCGUCGCUAGUACCGAUUGAAUGGCUUAGUGAGGCCUCAGGAUCUGCUUAGAGAAGGGGGCAACUCCAUCUCAGAGCGGAGAAUUUGGACAAACUUGGUCAUUUAGAGGAACUAAAAGUCGUAACAAGGUUUCCGUAGGUG2000066551A2000066551ACCUGCGGAAGGAUCAUUA
1241 RIBOMAP_SC58S  rRNA  LSU-S  5.8S  Saccharomyces cerevisiae  Cytoplasm  AAACUUUCAACAACGGAUCUCUUGGUUCUCGCAUCGAUGAAGAACGCAGCGAAAUGCGAUACGUAAUGUGAA2000009551UUGCAGAAUUCCGUGAAUCAUCGAAUCUUUGAACGCACAUUGCGCCCCUUGGUAUUCCAGGGGGCAUGCCUGUUUGAGCGUCAUUU
1242 RIBOMAP_SC5S  rRNA  LSU  5S  Saccharomyces cerevisiae  Mitochondrion  GGUUGCGGCCAUAUCUACCAGAAAGCACCGUUUCCCGUCCGAUCAACUG2000009551UAGUUAAGCUGGUAAGAGCCUGACCGAGUAGUGUAGUGGGUGACCAUACGCGAAACUCAGGUGCUGCAAUCU
1243 RIBOMAP_AT25S  rRNA  LSU-L  25S  Arabidopsis thaliana  Cytoplasm  GCGACCCCAGGUCAGGCGGGAUUACCCGCUGAGUUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACUAACAAGGAUUCCCUUAGUAACGGCGAGCGAACCGGGAAGAGCCCAGCUUGAAAAUCGGACGUCUUCGGCGUUCGAAUUGUAGUCUGGAGAAGCGUCCUCAGCGACGGACCGGGCCUAAGUUCCCUGGAAAGGGGCGCCAGAGAGGGUGAGAGCCCGUCGUGCCCGGACCCUGUCGCACCACGAGGCGCUGUCUACGAGUCGGGUUGUUUGGGAAUGCAGCCCCAAUCGGGCGGUAAAUUCCGUCCAAGGCUAAAUACGGGCGAGAGACCGAUAGCGAACAAGUACCGCGAGGUAAAGAUGAAAAGGACUUUGAAAAGAGAGUCAAAGAGUGCUUGAAAUUGUCGGGAGGGAAGCGGAUGGGGGCCGGCGAUGCGUCCUGGUCGGAUGCGGAACGGAGCAAUCCGGUCCGCCGAUCGAUUCGGGGCGUGGACCGACGCGGAUUACGGUGGCGGCCUAAGCCCGGGCUUUUGAUACGCUUGUGGAGACGUCGCUGCCGUGAUCGUGGUCUGCAGCACGCGCCUAACGGCGUGCCUCGGCAUCAGCGUGCUCCGGGCGUCGGCCUGUGGGCUCCCCAUUCGACCCGUCUUGAAAC2000090551ACGGACCAAGGAGU2000090551CUGACAUGUGUGCGAGUCAACGGGUGAGUAAACCCGUAAGGCGCAAGGAAGCUGAUUGGCGGGAUCCUCGCGGGUGCACCGCCGACCGACCUUGAUCUUCUGAGAAGGG2000009551U2000090551UCGAGUGUGAGCAUGCCUGUCGGGACCC2000090551GA2000090551AAGAUGGUGA2000090551AC2000009551UAUGCCUGAGCGGGGUAAAGCCAGAGGAAACUCUGGUGGAAGCCCGCAGCGAUACUG2000090551ACGUGCAAAUCGUUCGUCUGACUUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGAGCUCGGACGCGAGUUCUA2000009551UCGGGUAAAGCCAA2000009551UGAUUAGAGGCAUUGGGGGCGCAACGCCUCGACCUAUUCUCAAACUUUAAAUAGGUAGGACGUGUCGGCUGCUUUGUUGAGCCGUCACACGGAAUCGAGAGCUCCAAGUGGGCCAUUUUUGGUAAGC2000090551AGAACUGGCGAUGCGGGAUGAACCGGAAGCCGGGUUACGGUGCCCAACUGCGCGCUAACCUAGAACCCACAAAGGGUGUUGGUCGAUUAAGACAGCAGGACGGUGGUCAUGGAAGUCGAA2000090551AUCCGCUAAGGAGUG2000090551UGUAACAACUCACCUGCCGAAUCAACUAGCCCCGAAAAUGGAUGGCGCUUAAGCGCGACCUAUACCCGGCCGUCGGGGCAAGAGCCAGGCCUCGAUGAGUAGGAGGGCGCGGCGGUCGCUGCAAAACCUAGGGCGCGAGGCGCGGAGCGGCCGUCGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551GCAAAUAUUCAAAUGAGAACUUUGAAGGCCGAAGAGGGGAAAGGUUCCAUGUGAACGG2000090551CACUUGCACAUGGGUUAGUCGAUCCUAAGAGUCGGGGGAAACCCGUCUGAUAGCGCUUAAGCGAACUUCGAAAGGGGAUCCGGUUAAAAUUCCGGAACCGGGACGUGGCGGUUGACGGCAACGU2000090551UAGGGAGUCCGGAGACGUCGGCGGGGGCCUCGGGAAGAGUUAUCUUUUCUGUUUAACAGCCUGCCCACCCUGGAAACGGCUCAGCCGGAGGUAGGGUCCAGCGGCUGGAAGAGCACCGCACGUCGCGUGGUGUCCGGUGCGCCCCCGGGCGCCCUUGAAAAUCCGGAGGACCGAGUGCCGCUCACGCCCGGUCGUACUCAUAACCG2000090551CAUCA2000090551GGUCU2000090551CCAAGGUGAAC2000090551AGCCUCUGGUCGAUGGAACAA2000090551UGUAGGCAAGGGAAGUCGGCAAAAUGGAUCCGUAAC2000090551UUCGGGAAAAGGAUUGGCUCUGAGGGCUGGGCUCGGGGGUCCCAGUUCCGAACCCGUCGGCUGUCAGCGGACUGCUCGAGCUGCUUCCGCGGCGAGAGCGGGUCGCCGGCUGCCGGCCGGGGGACGACUGGGAACGGCUCUCUCGGGAGCUUUCCCCGGGCGUCGAACAGUCAGCUCAGAACUGGUACGGACAAGG2000090551GG2000090551AAUCCGACUG2000009551UUUAAUUAAAACAAAGCAUUGCGAUGGUCCCUGCGGAUGCUAACGCAAUGUGAUUUCUGCCCAGUGCUCUGAAUG2000009551UCA2000090551AAGUGA2000090551AGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAG2000009551UAAC2000009551UA2000009551UGACUCUCUUAAGGUAGCCAA2000090551AUGCCUC2000090551GUCAUCUAAUUAGUGACGCGCAUGAA2000009551UGGAUUA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCCUGUCUACUA2000009551UCCAGCGAAACCACAG2000090551CCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUG2000090551UUGA2000090551GCUUGAC2000090551UCUAGUCCGACUUUGUGAAAUGACUUGAGAGGUGUAGGAUAAGUGGGAGCUUCGGCGCAAGUGAAAUACCACUACUUUUAACGUUAUUUUACUUACUCCGUGAAUCGGAGGCCGGGGUACAACCCCUGUUUUUGGUCCCAAGGCUCGCUUCGGCGGGUCGAUCCGGGCGGAGGACAUUGUCAGGUGGGGAGUUUGGCUG2000090551GGGCGGCACAUCUGUUAAAAG2000090551AUAACGCAGG2000090551U2000090551GUCCUAAGAUGAGCUCAACGAGAACAGAAAUCUCGUGUGGAACAAAAGGGUAAAAGCUCGUUUGA2000009551UUCUGAUUUUCAGUACGAAUACGAACCGUGAAAGCGUGGCCUAUCGAUCCUUUAGACUUCGGAAUU2000009551UGAAGCUA2000090551GA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGC2000009551UUGUGGCAGC2000090551CAAGCGUUCAUAGCGACGUUG2000090551CUUUUUGAU2000090551CCUUCGAUGUCGG2000090551C2000009551UCU2000090551UCCUAUCAUUGUGAAGCAGAAUUCACCAAGUGUU2000090551GGAUUG2000009551UUCACCCACCAAUAGGGAACGUGG2000090551CUGG2000090551G2000090551UUUAGA2000090551CCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGCCCGCGUCGCGAUAGUAAUUCAACCUAGUACGAGAGGAACCGUUGAUUCGCACAAUUGGUCAUCGCGCUUGGUUGAAAAGCCAGUGGCGCGAAGCUACCGUGCGCUGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCGGGCUAGAAGCGACGCAUGCGCCCGCCGCCCGAUUGCCGACCCUCAGUAGGAGCUUAGGCUCCAAAGGCACGUGUCGUUGGCUAAGUCCGUUCGGCGGAACGGUCGUUCGGACCGCCUUGAAUUAUAAUUACCACCGAGCGGCGGGUAGAAUCCUUUGCAGACGACUUAAAUACGCGACGGGGUAUUGUAAGUGGCAGAGUGGCCUUGCUGCCACGAUCCACUGAGAUUCAGCCCUUUGUCGCUAAGAUUCGA
1244 RIBOMAP_AT18S  rRNA  SSU  18S  Arabidopsis thaliana  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGUCAU2000090551AUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUGUAAGUAUGAACGAAUUCAGACUGUGAAACUGCGAAUGGCUCAUUAAAUCAG2000009551UUAUAGUUUGUUUGAUGGUAACUACUACUCGGAUAACCGUAGUAAUUCUAG2000090551AGCUAAUACGUGCAACAAACCCCGACUUAUGGAAGGGACGCAUUUAUUAGAUAAAAGGUCGACGCGGGCUCUGGCUUGCUCUGAUGAUUCAUGAUAACUCGACGGAUCGCAUGGCCUCUGUGCUGGCGACGCAUCAUUCAAAUUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUGGUAACGGG2000009551UGACGGAGAAUUAGGGUUCGAUUCCGGAGA2000090551G2000090551GGAGCCUGAGAAACGGCUACCACAU2000090551CCAAGGAAGGCAGCAGGCGCGC2000090551AAAUUACCCAAUCCUGACACGGGGAGGU2000090551AGUGA2000090551CAAUAAAUAACAAUACCGGGCUCUUUCGAGUCUGGUAAUUGGAAUGAGUACAAUCUAAAUCCCUUAACGAGG2000090551AUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUAUA2000009551UUUAA2000090551GUUGUUGCAGUU2000090551AAAAAGCUCGUAG2000009551UUGAACCUUGGGAUGGGUCGGCCGGUCCGCCUUUGGUGUGCAUUGGUCGGCUUGUCCCUUCGGUCGGCGAUACGCUCCUGGUCUUAAUUGGCCGGGUCGUGCCUCCGGCGCUGUUACUUUGAAGAAA2000009551UUAGAGUGCUCAAAGCAAGCCUACGCUCUGGAUACAUU2000090551AGCAUGGGAUAACAUCAUAGGAUUUCGAUCCUAUUGUGUUGGCUUCGGGAUCGGAGUAAUGAUUAACAGGGACAGUCGGGGGCAUUCGUAUUUCAUAGUCAGAGGUGAAAUUCUUGGAUUUAUGAAAGACGAACAACUGCGAAAGCAUU2000009551UGCCAAGGAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUUGGGGGCUCGAAGACGA2000009551UCAGAUACCG2000090551U2000090551CCUAGUCUCAACCAUAAACGAUGCCGACCAGGGAUCAGCGGAUGUUGCUUAUAGGACUCCGCUGGCACCUUAUGAGAAAUCAAAGUUUUUGGGUUCCGGG2000090551GGGAGUA2000009551UGGUCGCAAGGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGGAAACUUACCAGGUCCAGACAUAGUAAGGA2000090551UUGACAGACUGAGAGCUCUUUCUUGAUUCUA2000090551UGGGUGG2000090551U2000090551G2000090551GUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGUUAACGA2000090551ACGAGACCUCAGCCUGCUAACUAGCUACGUGGAGGCAUCCCUUCACGGCCGGCU2000090551UCUUAGAGGGACUAUGGCCGUUUAGGCCAAGGAAGUUUGAGGCAAUAACA2000090551GGUCUGUGAUGCCC2000090551UUAGAUGUUCUGGGCCGCACGCGCGCUACACUGAUGUAUUCAACGAGUUCACACCUUGCCGACAGGCCCGGGUAAUCUUUGAAAUUUCAUCGUGAUGGGGAUAGAUCAUUGCAAUUGUUGGUCUUCAACGAGGAAUUCCUAGUAAGCGCGAGUCAUCAGCUCGCGUUGACUACGUCCCUGC2000090551CCUUUGUACACACCG2000090551CCCGUCGCUCCUACCGAUUGAAUGAUCCGGUGAAGUGUUCGGAUCGCGGCGACGUGGGUGGUUCGCCGCCCGCGACGUCGCGAGAAGUCCACUAAACCUUAUCAUUUAGAGGA2000090551AGGAGAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUG
1245 RIBOMAP_AT58S  rRNA  LSU-S  5.8S  Arabidopsis thaliana  Cytoplasm  AAAACGACUCUCGGCAACGGAUAUCUCGGCUCUCGCAUCGAUGAAG2000090551AACGUAGCGAAAUGCGAUACUUGGUGUGAAUU2000090551GCAGAAUCCCGUGAACCAUCGAGUCUUUGAACGCAAGUUGCGCCCCAAGCCUUCUGGCCGAGGGCACGUCUGCCUGGGUGUCACAA
1246 RIBOMAP_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUUG2000001551AAAC2000090551ACGGACCAAGGAGU2000090551CUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC2000090551GA2000090551AAGAUGGUGA2000090551AC2000009551UAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCG2000009551UAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCC2000009551UCAGGA2000009551UAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAA2000009551UGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACC2000009551UAU2000009551UCUCAAACUU2000009551UAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCAC2000009551UU2000009551UUGGUAAGC2000090551AGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551G2000090551CAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGAGAAGGGUUCCAUG2000090551UGAACAG2000090551CA2000090551GUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGA2000009551UCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCC2000090551AUAUCCGCAGCAGGUCU2000090551CCAAGGUGAAC2000090551AGCCUCUGG2000090551CAUGUUGGAACAA2000090551UGUAGGUAAGGGAAGUCGGCAAGC2000090551CGGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGAC2000009551UG2000009551UUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUU2000009551UCUGCC2000090551CAGUGCUCUGAAUG2000009551UCA2000090551AAGUGA2000090551AGAAAU2000009551UCAA2000009551UGAAGCGCGG2000090551GUAAACGGCGGGAG2000009551UA2000090551AC2000009551UA2000009551UGAC2000009551UC2000009551UCUUAAGGUAGC2000005551CAA2000090551AUGCCUCGUCAUCUAAUUAGUGA2000090551CGCGCAUGAA2000909551UGGA2000009551UGA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCC2000009551UACCUAC2000009551UA2000009551UCCAGCGAAACCACAG2000090551CCAAGGGAACGGGCU2000009551UGG2000090551CGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGC2000009551UUGAC2000090551UCUAGUCUGGCACGGUGAA2000090551GAGACAUGAGAGGUG2000009551UAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCC2000090551GGUGAAAUACCA2000090551CUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG2000090551GGGCGGUACACCUGUCAAACGGU2000006551AACGCAGG2000090551U2000090551GUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGA2000009551UCU2000009551UGA2000009551UUUUCAG2000090551UACGAA2000009551UACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUU2000009551UUGGGUUU2000009551UAAGCAGGA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGC2000009551UUGUGGCGGCCAAGCGU2000009551UCA2000009551UAGCGACG2000009551UCGCUUUUUGA2000009551U2000005551CCUUCGAUGUCGG2000090551C2000009551UCUUCCUAUCAUUG2000009551UGAAGCAGAAUUCGCCAAGCGUU2000090551GGAU2000090551U2000090551G2000009551UUCACCCACUAAUAGGGAACG2000009551UG2000090551AGCUGGG2000003551U2000009551UUAGA2000090551CCGUCGUGAGACAGGU2000009551UAGUUUUACCCUACUGAUG2000090551AUGUG2000009551UUG2000009551UUGCCAUGGUA2000090551AUCCUGCUCAGUACGAGAGGAACCGCAG2000090551GU2000090551UCA2000090551GACAU2000009551UUGGUGUA2000009551U2000090551GUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCA2000009551UCUGUGGGAUUAUGAC2000009551UGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCA2000009551UUCGUAGACGACCUGCUUCUGGGUCGGGG2000009551UUUCGUACG2000009551UAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1247 RIBOMAP_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAU2000090551AUGCUUG2000009551UC2000009551UCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAA2000009551UGGCUC2000090551AUUAAA2000009551UCAG2000009551UUAUGGU2000090551UCC2000009551UU2000090551UGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUA2000090551AUUCUAG2000090551AGCUAA2000090551UA2000090551CAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGA2000009551UGCGUGCA2000009551UUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGG2000009551UGACGGGGAAUCAGGGUUCGAU2000090551UCCGGAGA2000090551GGGAGCCUGAGAAACGGCUACCACAU2000090551CCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCACUCCCGACCCGGGGA2000090551GGU2000090551AGUGA2000090551CGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACU2000009551UUAA2000090551AUCCUUUAACGAGG2000090551AUCCAUUGGAG2000090551GGCAAGUC2000009551UGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUA2000009551UA2000009551UUAAAGUUGCUGCAGUU2000090551AAAAAGCUCGUAG2000009551UU2000090551GGA2000009551UCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAG2000090551CG2000090551UU2000009551UACUUUGAAAAAA2000009551U2000009551UAGAGUG2000009551UUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAA2000009551UAA2000009551U2000090551GGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAU2000009551UAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAU2000009551UCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUU2000009551UGCCAAGAAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUCGGAGGUUCGAAGACGA2000009551UCAGAUACCGUCGUAGUUCCGACCA2000009551UAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUA2000009551UGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGC2000009551UUAAUU2000009551UGAC2001309551UCAACACGGGAAACCUCACCCGGC2000090551CCGGACACGGACAGGA2000090551UUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGG2000909551UG2000090551GUGCAUGGCCGUUCUUAGU2000009551UGGUGGAGCGAUUUGUCUGG2000009551UUAAUUCCGAUAACGA2000090551ACGAGACU2000090551CUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACU2000090551UCU2000009551UAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAU2000009551UCCCCAUGAACGAG2000007551GAAU2000009551UCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUU2000090551AAGUCCCUGCCCUU2000009551UGUACACACCG2000090551CCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACU2000090551UGACUAUCUAGAGGAAGUAAAAGUCGUA2000006551ACAAGGUUUCCGUAGGUG2000066551A2000066551ACCUGCGGAAGGAUCAUUA
1248 RIBOMAP_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGG2000090551UGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGC2000009551UGCGAGAAUUAAUG2000009551UGAAUU2000090551GCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1249 KROGH_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAG2000090551AG2000090551AGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCC2000090551GUCUUGA2000090551AAC2000090551ACGGACCAAGGAGU2000090551CUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC2000090551GA2000090551AAGAUGGUGA2000090551ACUAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAUGAUUAGAGGUCUUGG2000090551GGCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACUUUUGGUAAGC2000090551AGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551G2000090551CAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGG2000090551AGAAGGGUUCCAUG2000090551UGAACAG2000090551CA2000090551GUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCC2000090551AUAUCCGCAGCAGGUCU2000090551CCAAGGUGAAC2000090551AGCCUCUGG2000090551CAUGUUGGAACAA2000090551UGUAGGUAAGGGAAGUCGGCAAGC2000090551CGGAUCCGUAACUUC2000090551GGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG2000090551GGAAUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCC2000090551CAGUGCUCUGAAUGUCA2000090551AAGUGA2000090551AGAAAUUCAAUGAAGCGCGG2000090551GUAAACGGCGGGAGUA2000090551ACUAUGACUCUCUUAAGGUAGCCAA2000090551AUGCCUC2000090551GUCAUCUAAUUAGUGA2000090551CGCGCAUGAA2000090551UGGAUGA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCCUACCUACUAUCCAGCGAAACCAC2000090551AGCCAAGGGAACGGGCUUGG2000090551CGGAAUCAGCGG2000090551GGAAAGAAGACCCUGUUGAGCUUGAC2000090551UCUAGUCUGGCACGGUGAA2000090551GAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCC2000090551GGUGAAAUACCA2000090551CUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG2000090551GGGCGGUACACCUGUCAAACGGUACGCAGG2000090551U2000090551GUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAG2000090551UACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGG2000090551CUCUUCCUAUCAUUGUGAAGCAGAAUUCGCCAAGCGUU2000090551GGAU2000090551U2000090551GUUCACCCACUAAUAGGGAACGUG2000090551AGCUGGGUUUAGA2000090551CCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUG2000090551AUGUGUUGUUGCCAUGGUA2000090551AUCCUGCUCAGUACGAGAGGAACCGCAG2000090551GU2000090551UCA2000090551GACAUUUGGUGUAU2000090551GUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1250 MOTORIN_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAG2000090551AG2000090551AGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCC2000090551GUCUUGA2000090551AAC2000090551ACGGACCAAGGAGU2000090551CUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCC2000090551GA2000090551AAGAUGGUGA2000090551ACUAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAG2000090551GGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAUGAUUAGAGGUCUUGG2000090551GGCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACUUUUGGUAAGC2000090551AGAACUGGCG2000090551CUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAU2000090551CUUGGUGGUAGU2000090551A2000090551G2000090551CAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGG2000090551AGAAGGGUUCCAUG2000090551UGAACAG2000090551CA2000090551GUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCC2000090551AUAUCCGCAGCAGGUCU2000090551CCAAGGUGAAC2000090551AGCCUCUGG2000090551CAUGUUGGAACAA2000090551UGUAGGUAAGGGAAGUCGGCAAGC2000090551CGGAUCCGUAACUUC2000090551GGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGG2000090551GGAAUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCC2000090551CAGUGCUCUGAAUGUCA2000090551AAGUGA2000090551AGAAAUUCAAUGAAGCGCGG2000090551GUAAACGGCGGGAGUA2000090551ACUAUGACUCUCUUAAGGUAGCCAA2000090551AUGCCUC2000090551GUCAUCUAAUUAGUGA2000090551CGCGCAUGAA2000090551UGGAUGA2000090551ACGAG2000090551AUUCCCACUGU2000090551CCCUACCUACUAUCCAGCGAAACCAC2000090551AGCCAAGGGAACGGGCUUGG2000090551CGGAAUCAGCGG2000090551GGAAAGAAGACCCUGUUGAGCUUGAC2000090551UCUAGUCUGGCACGGUGAA2000090551GAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCC2000090551GGUGAAAUACCA2000090551CUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUG2000090551GGGCGGUACACCUGUCAAACGGUACGCAGG2000090551U2000090551GUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAG2000090551UACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGA2000090551GGUGUCAGAAAAGUUACCACAG2000090551GGAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGG2000090551CUCUUCCUAUCAUUGUGAAGCAGAAUUCGCCAAGCGUU2000090551GGAU2000090551U2000090551GUUCACCCACUAAUAGGGAACGUG2000090551AGCUGGGUUUAGA2000090551CCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUG2000090551AUGUGUUGUUGCCAUGGUA2000090551AUCCUGCUCAGUACGAGAGGAACCGCAG2000090551GU2000090551UCA2000090551GACAUUUGGUGUAU2000090551GUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1251 MARCHAND_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUUGAAACACGGACCAAGGAGUCUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCGAAAGAUGGUGAAC2000009551UAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCG2000009551UAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCC2000009551UCAGGA2000009551UAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAA2000009551UGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACC2000009551UA2000009551U2000009551UCUCAAACUU2000009551UAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCAC2000009551UU2000009551UUGGUAAGCAGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGAGAAGGGUUCCAUGUGAACAGCAGUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGA2000009551UCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUU2000009551UUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCAUAUCCGCAGCAGGUCUCCAAGGUGAACAGCCUCUGGCAUGUUGGAACAAUG2000009551UAGGUAAGGGAAGUCGGCAAGCCGGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGAC2000009551UG2000009551UUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUU2000009551UCUGCCCAGUGCUCUGAAUG2000009551UCAAAGUGAAGAAAU2000009551UCAA2000009551UGAAGCGCGGGUAAACGGCGGGAG2000009551UAAC2000009551UA2000009551UGAC2000009551UC2000009551UCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGA2000009551UGAACGAGAUUCCCACUGUCCC2000009551UACCUAC2000009551UA2000009551UCCAGCGAAACCACAGCCAAGGGAACGGGCU2000009551UGGCGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGC2000009551UUGACUCUAGUCUGGCACGGUGAAGAGACAUGAGAGGUG2000009551UAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCCGGUGAAAUACCACUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGGGGCGGUACACCUGUCAAACGGUACGCAGGUGUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGA2000009551UCU2000009551UGA2000009551UUUUCAGUACGAA2000009551UACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUU2000009551UUGGGUUU2000009551UAAGCAGGAGGUGUCAGAAAAGUUACCACAGGGAUAACUGGC2000009551UUGUGGCGGCCAAGCGU2000009551UCA2000009551UAGCGACG2000009551UCGCUUUUUGA2000009551UCCUUCGAUGUCGGC2000009551UCUUCCUAUCAUUG2000009551UGAAGCAGAAUUCGCCAAGCGU2000009551UGGAUUG2000009551UUCACCCACUAAUAGGGAACG2000009551UGAGCUGGGUU2000009551UAGACCGUCGUGAGACAGGU2000009551UAGUUUUACCCUACUGAUGAUGUG2000009551UUG2000009551UUGCCAUGGUAAUCCUGCUCAGUACGAGAGGAACCGCAGGUUCAGACAU2000009551UUGGUGUA2000009551UGUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCA2000009551UCUGUGGGAUUAUGAC2000009551UGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCA2000009551UUCGUAGACGACCUGCUUCUGGGUCGGGG2000009551UUUCGUACG2000009551UAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1252 INCARNATO_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAU2000090551AUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUC2000090551AUUAAAUCAGUUAUGGU2000090551UCCUU2000090551UGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUA2000090551AUUCUAGAGCUAA2000090551UA2000090551CAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCACUCCCGACCCGGGGA2000090551GGU2000090551AGUGA2000090551CGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAA2000090551AUCCUUUAACGAGG2000090551AUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUAUAUUAAAGUUGCUGCAGUU2000090551AAAAAGCUCGUAGUU2000090551GGAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAG2000090551CG2000090551UUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAU2000090551GGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGA2000090551UUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGG2000090551UGGUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGA2000090551ACGAGACU2000090551CUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACU2000090551UCUUA2000090551GAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUU2000090551AAGUCCCUGCCCUUUGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACU2000090551UGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1253 KROGH_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAU2000090551AUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUC2000090551AUUAAAUCAGUUAUGGU2000090551UCCUU2000090551UGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUA2000090551AUUCUAG2000090551AGCUAA2000090551UA2000090551CAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUC2000090551UGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAU2000090551UCCGGAGA2000090551UGGAGCCUGAGAAACGGCUACCACAU2000090551GCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCACUCCCGACCCGGGGA2000090551GGU2000090551AGUGA2000090551CGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAA2000090551AUCCUUUAACGAGG2000090551AUCCAUUGGAG2000090551GGCAAGUCUGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUAUAUUAAAGUUGCUGCAGUU2000090551AAAAAGCUCGUAGUU2000090551GGAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAG2000090551CG2000090551UUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAU2000090551GGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGC2000090551CCGGACACGGACAGGA2000090551UUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGG2000090551UG2000090551GUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGA2000090551ACGAGACU2000090551CUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAA2000090551CU2000090551UCUUA2000090551GAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUU2000090551AAGUCCCUGCCCUUUGUACACACCG2000090551CCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACU2000090551UGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1254 MOTORIN_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAU2000090551AUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUC2000090551AUUAAAUCAGUUAUGGU2000090551UCCUU2000090551UGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUA2000090551AUUCUAG2000090551AGCUAA2000090551UA2000090551CAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUC2000090551UGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAU2000090551UCCGGAGA2000090551UGGAGCCUGAGAAACGGCUACCACAU2000090551GCAAGG2000090551AAGGCAGCAGGCGCGC2000090551AAAUUACCCACUCCCGACCCGGGGA2000090551GGU2000090551AGUGA2000090551CGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAA2000090551AUCCUUUAACGAGG2000090551AUCCAUUGGAG2000090551GGCAAGUCUGGUGCCAGCAGCCGCGG2000090551UAAUUCCAGCUCCAAUA2000090551GCGUAUAUUAAAGUUGCUGCAGUU2000090551AAAAAGCUCGUAGUU2000090551GGAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAG2000090551CG2000090551UUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAU2000090551GGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGA2000090551ACGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGC2000090551CCGGACACGGACAGGA2000090551UUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGG2000090551UG2000090551GUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGA2000090551ACGAGACU2000090551CUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAA2000090551CU2000090551UCUUA2000090551GAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACA2000090551GGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUU2000090551AAGUCCCUGCCCUUUGUACACACCG2000090551CCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACU2000090551UGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1255 MARCHAND_HS18S  rRNA  SSU  18S  Homo sapiens  eukaryotic cytosol  UACCUGGUUGAUCCUGCCAGUAGCAUAUGCUUG2000009551UC2000009551UCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAA2000009551UGGCUCAUUAAA2000009551UCAG2000009551UUAUGGUUCC2000009551UUUGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGA2000009551UGCGUGCA2000009551UUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUC2000009551UAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGG2000009551UGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGAAGGCAGCAGGCGCGCAAAUUACCCACUCCCGACCCGGGGAGGUAGUGACGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACU2000009551UUAAAUCCUUUAACGAGGAUCCAUUGGAGGGCAAGUC2000009551UGGUGCCAGCAGCCGCGGUAAUUCCAGCUCCAAUAGCGUA2000009551UA2000009551UUAAAGUUGCUGCAGUUAAAAAGCUCGUAG2000009551UUGGA2000009551UCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUU2000009551UACUUUGAAAAAA2000009551U2000009551UAGAGUG2000009551UUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAA2000009551UAA2000009551UGGAAUAGGACCGCGGUUCUAUUUUGUUGGU2000009551UUUCGGAACUGAGGCCAUGAU2000009551UAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAU2000009551UCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUU2000009551UGCCAAGAAUGUUUUCAUUAAUCAAGAACGAAAGUCGGAGG2000009551U2000009551UCGAAGACGA2000009551UCAGAUACCGUCGUAGUUCCGACCA2000009551UAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGC2000009551UUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUA2000009551UGG2000009551UUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCC2000009551UGCGGC2000009551UUAAUU2000009551UGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAUUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGUGGUGCAUGGCCGUUCUUAGU2000009551UGGUGGAGCGAUUUGUCUGG2000009551UUAAUUCCGAUAACGAACGAGACUCUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUUCU2000009551UAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACAGGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAU2000009551UCCCCAUGAACGAGGAAU2000009551UCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUAAGUCCCUGCCCUU2000009551UGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUUGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1256 CARLILE_HS18S  rRNA  SSU  18S  Homo sapiens  eukaryotic cytosol   UACCUGGUUGAUCCUGCCAGUAGCAUAUGCUUG2000009551UC2000009551UCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCAUUAAAUCAG2000009551UUAUGGUUCC2000009551UUUGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGA2000009551UGCGUGCA2000009551UUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUC2000009551UAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGG2000009551UGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGAAGGCAGCAGGCGCGCAAAUUACCCACUCCCGACCCGGGGAGGUAGUGACGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACU2000009551UUAAAUCCUUUAACGAGGAUCCAUUGGAGGGCAAGUC2000009551UGGUGCCAGCAGCCGCGGUAAUUCCAGCUCCAAUAGCGUAUAUUAAAGUUGCUGCAGUUAAAAAGCUCGUAGUUGGA2000009551UCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUUACUUUGAAAAAAU2000009551UAGAGUG2000009551UUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAA2000009551UAA2000009551UGGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAU2000009551UAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAU2000009551UCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUU2000009551UGCCAAGAAUGUUUUCAUUAAUCAAGAACGAAAGUCGGAGGU2000009551UCGAAGACGA2000009551UCAGAUACCGUCGUAGUUCCGACCA2000009551UAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUA2000009551UGG2000009551UUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAUUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGUGGUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGAACGAGACUCUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUUCU2000009551UAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACAGGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAU2000009551UCCCCAUGAACGAGGAAU2000009551UCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUAAGUCCCUGCCCUU2000009551UGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUUGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1257 INCARNATO_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGG2000090551UGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUU2000090551GCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1258 KROGH_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGG2000090551UGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUU2000090551GCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1259 MOTORIN_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGG2000090551UGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUU2000090551GCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1260 1ASZ_A  tRNA  Asp  QUC  Saccharomyces cerevisiae  Cytoplasm  UCCGUGAUAGUU2000009551UAA2000008551UGG2000008551UCAGAAUGGGCGC2000009551UUGUC2000001551GCGUGCCAGAU2000005551CGGGG2000005551U2000009551UCAAUUCCCCGUCGCGGAGCCA
1261 1ASZ_B  tRNA  Asp  QUC  Saccharomyces cerevisiae  Cytoplasm  UCCGUGAUAGUU2000009551UAA2000008551UGG2000008551UCAGAAUGGGCGC2000009551UUGUC2000001551GCGUGCCAGAU2000005551CGGGG2000005551U2000009551UCAAUUCCCCGUCGCGGAGCCA
1262 1B23_A  tRNA  Cys  GCA  Escherichia coli  Cytoplasm  GCGCGU2000074551UAACAAAGCGG2000008551U2000008551UAUGUAGCGGA2000009551UUGCA2002161551AA2000009551UCCGUCUAGUCCGG2000005551U2000009551UCGACUCCGGAACGCGCCUCCA
1263 1C0A_A  tRNA  Asp  QUC  Escherichia coli  Cytoplasm  GAGCGG2000074551UAGUUCAG2000008551UCGG2000008551U2000008551UAGAAUACCUGCCU2000000999GUCACGCAGGGG2000007551GUCGCGGG2000005551U2000009551UCGAGUCCCG2000009551UCCGUUCCGCCA
1264 1F7U_A  tRNA  Arg  ICG  Escherichia coli  Cytoplasm  UCCUCGU2000001551G2000022551GCCCAA2000008551UGG2000008551UCACGGC2000022551G2000009551UCUGGCU2000009551ACGAACCAGAAGA2000008551UU2000005551CCAGG2000005551U2000009551UCA2000001551AGUCCUGGCGGGGAAGCCA
1265 1F7V_A  tRNA  Arg  ICG  Escherichia coli  Cytoplasm  UCCUCGU2000001551G2000022551GCCCAA2000008551UGG2000008551UCACGGC2000022551G2000009551UCUGGCU2000009551ACGAACCAGAAGA2000008551UU2000005551CCAGG2000005551U2000009551UCA2000001551AGUCCUGGCGGGGAAG
1266 1OB2_B  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  CGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2003483551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUGU2000009551UCG2000001551AUCCACAGAAUUCGCACC
1267 1OB5_B  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  CGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2003483551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGCAC
1268 1OB5_D  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  GCGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2003483551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGCAC
1269 1OB5_F  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  GCGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2003483551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGCAC
1270 1QF6_A  tRNA  Thr  CGU  Escherichia coli  Cytoplasm  CCGAUAUAGCUCAG2000008551U2000008551UGG2000008551UAGAGCAGCGCAUUCGU2000662551AAUGCGAAG2000007551GUCGUAGG2000005551U2000009551UCGACUCCUAUUAUCGGCACCA
1271 1TTT_A  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  CGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2034831551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGCACCA
1272 1TTT_B  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  GCGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2034831551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGCACCA
1273 1TTT_C  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  GCGGAUUUA2000022551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2034831551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGCACCA
1274 3B0V_A  tRNA  Phe  #AA  Thermus thermophilus  Cytoplasm  CCGAGGUAGCUCAGUUGG2000008551UAGAGCAUGCGACUGAAAAUCGCAGUGUCGGCGGUUCGAUUCCGCCCCUCGGCA
1275 3B0V_B  tRNA  Phe  #AA  Thermus thermophilus  Cytoplasm  GCCGAGGUAGCUCAGUUGG2000008551UAGAGCAUGCGACUGAAAAUCGCAGUGUCGGCGGUUCGAUUCCGCCCCUCGGCA
1276 3V11_D  tRNA  Sec  UCA  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGG2000008551UAGCUCGUCGGG2000090551CUCAUAACCCGAAGAUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1277 4DR1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1278 4DR2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1279 4DR3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1280 4DUY_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUCUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1281 4DUZ_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUCUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1282 4DV0_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCGGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1283 4DV1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCGGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1284 4DV2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUAAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1285 4DV3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUAAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1286 4DV4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAGAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1287 4DV5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAGAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1288 4DV6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAGGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1289 4DV7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAGGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1290 4JI0_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1291 4JI1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1292 4JI2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1293 4JI3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC2000009551U2000009551UUCU
1294 4JI4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGUGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1295 4JI5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1296 4JI6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1297 4JI7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1298 4JI8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1299 4JYZ_B  tRNA  Gln  㑆UG  Escherichia coli  Cytoplasm  GGGUA2000074551UCGCCAAGC2000090551GG2000008551UAAGGCACCGGU2000090551UUUG2000002551A2000009551UACCGGCACGCAGG2000005551U2000009551UCGAAUCCUGCUACCCCAGCCA
1300 4KVB_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCAC2000009551U2000009551UUCU
1301 4LF4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCAC2000009551U2000009551UUCU
1302 4LF5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCAC2000009551U2000009551UUCU
1303 4LF6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCAUCU
1304 4LF7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUC2000009551UUCU
1305 4LF8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUC2000009551UUCU
1306 4LF9_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1307 4LFA_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1308 4LFB_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1309 4LFC_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1310 4NXM_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCCGCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1311 4NXN_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCCGCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1312 4P5J_A  tRNA  Ser  CGA  White bream virus  Cytoplasm  GCUCGCCAGUUAGCGAGGUCUGUCUCGACACGACAGAUAAUCGGGUGCAACUCCCGCCCCUCUUCCGAGGGUCAUCGGAACC2000003377A
1313 4WPO_FB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1314 4WPO_MD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1315 4WQF_DB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1316 4WQF_EB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1317 4WQF_JD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1318 4WQF_KD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1319 4WQU_DB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1320 4WQU_EB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1321 4WQU_KD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1322 4WQU_LD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1323 4WQY_DB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1324 4WQY_ID  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1325 4WRA_ZB  tRNA  Tyr  GUA  Escherichia coli  Cytoplasm  GUGGGGUUCCCGAGCGGCCAAAGGGAGCAGACUGUA2002161551AA2000009551UCUGCCGUCAUCGACUUCGAAGGUUCGAAUCCUUCCCCCACCACCA
1326 4WSD_AC  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAAAAUCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1327 4WZO_YB  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCCGGUAGCUCGUCGGG2000090551CUCAUAACCCGAAG2000007551GUCGUCGGU2000009551UCAAAUCCGGCCCCCGCAACCA
1328 4Y4O_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1329 4Y4O_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1330 4Y4P_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1331 4Y4P_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1332 4YBB_VB  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1333 4Z3S_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1334 4Z3S_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1335 4Z8C_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1336 4Z8C_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1337 5BR8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1338 5CCX_C  tRNA  Lys  !UU  Homo sapiens  Cytoplasm  GCCCGGAUAGCUCAGUCGGUAGAGCAUCAGACUUUUAAUCUGAGGGUCCAGGGUUCA2000001551AGUCCCUGUUCGGGCGCCA
1339 5DFE_LA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1340 5DFE_GB  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1341 5DOX_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1342 5DOX_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1343 5DOY_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1344 5DOY_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1345 5E7K_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGUUGGUAGAGCAGUUGACUUUUAA2000009551UCAAUUGGUCGCAGG2000005551U2000009551UCGAAUCCUGCACGACCCACCA
1346 5EL4_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGGGUAGAGCAGUUGACUUUUAA2000009551UCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1347 5EL5_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGUUGGUAGAGCAGUUGACUUUUAA2000009551UCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1348 5EL7_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCCAGUUGGUAGAGCAGUUGACUUUU2000062551AA2000009551UCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1349 5F8K_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1350 5F8K_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1351 5FDU_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1352 5FDU_HC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1353 5FDV_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1354 5FDV_IC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1355 5HCP_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1356 5HCP_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1357 5HCQ_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1358 5HCQ_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1359 5HCR_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1360 5HCR_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1361 5HD1_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1362 5HD1_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1363 5IB8_YB  tRNA  Lys  !UU  Thermus thermophilus  Cytoplasm  GGUCGUUAGCUCAUGGAGCAGUUGACUUUUAAUCAAUUGCGCAGG2000005551U2000009551UCGAAUCCUGCACGACCCA
1364 5IBB_YB  tRNA  Lys  !UU  Thermus thermophilus  Cytoplasm  GGUGAUUAGCUCAUGGAGCACCUCCCUUACAAGGAGGGGCGGCGG2000005551U2000009551UCGAUCCCGUCAUCACCCACCA
1365 5IT8_JB  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1366 5J4B_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1367 5J4B_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1368 5J4C_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1369 5J4C_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1370 5J5B_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1371 5J7L_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1372 5J88_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1373 5J8A_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1374 5J8B_FB  tRNA  Phe  GAA  Thermus thermophilus  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGUGUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1375 5J91_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1376 5JC9_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAU2000001551G2000009551U2000005551UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGG2000009551UGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACAC2000006551AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCU2000022551GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCG2000009551UAACA2000009551UAACGGUCCUAAGGUAGCGAAA2000005551UUCCUUGUCGGGUAAGUUCCGAC2000005551CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUG2000006551AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGU2000007551GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUG2000090551GGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCG2000022551GGGA2000008551UAACAGGC2000009551UGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCA2000090551CCUCG2000002551A2000009551UGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGC2000090551UGUUCGCCAUUUAAAGUGGUACGCGAGC2000009551UGGGUUUAGAACGUCGUGAGACAG2000009551U2000009551UCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1377 5L4O_A  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGG2000008551UAGCUCGUCGGG2000090551CUCAUAACCCGAAGAUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCUACC
1378 5V8I_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1379 5V8I_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1380 5VPP_ZC  tRNA  Glu  UUC  Escherichia coli  Cytoplasm  GGUGAUUGGCGCAGCCUGGUAGCGCACUUCGUUCGG2000001551GGACGAAGGGGUCGGAGGUUCGAAUCCUCUAUCACCGACCA
1381 5VPP_BD  tRNA  Glu  UUC  Escherichia coli  Cytoplasm  CGGUGAUUGGCGCAGCCUGGUAGCGCACUUCGUUCGG2000001551GGACGAAGGGGUCGGAGGUUCGAAUCCUCUAUCACCGACCA
1382 5W4K_JC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAU
1383 5WIS_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1384 5WIS_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1385 5WIT_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1386 5WIT_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1387 5WNQ_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1388 5WNR_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1389 5WNS_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUCC2000009551U2000009551UUCU
1390 6CAE_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1391 6CAE_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1392 6CFJ_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1393 6CFJ_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1394 6CFK_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1395 6CFK_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1396 6CFL_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1397 6CFL_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1398 6CZR_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1399 6CZR_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1400 6FKR_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1401 6FKR_HC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1402 6GSJ_ZB  tRNA  Thr  GGU  Escherichia coli  Cytoplasm  CUGAUAUAGCUCAGUAGAGCGCACCCUUGGUAAGGGUGAGGUCGGCAG2000005551U2000009551UCGAAUCUGCCUAUCAGCACCA
1403 6N9E_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1404 6N9E_FD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1405 6N9F_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1406 6N9F_FD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1407 6ND5_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1408 6ND5_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1409 6ND6_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1410 6ND6_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1411 6O97_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1412 6O97_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1413 6OF1_DB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1414 6OF1_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1415 6QNQ_AC  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000090551CUCAUAACCCGAAG2000007551GUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1416 6QNR_CC  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAG2000008551UCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551G2000000000XCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1417 6UO1_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1418 6UO1_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1419 6XHV_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1420 6XHV_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1421 6XHW_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1422 6XHW_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1423 6XHX_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1424 6XHX_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1425 6XHY_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1426 6XHY_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1427 6XQD_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1428 6XQD_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1429 6XQE_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1430 6XQE_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1431 7AZO_ZB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAUAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGUGUCCUUGG2000005551UUCGAUUCCGAGUCCGGGCACCA
1432 7AZS_ZB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAUAGCUCAGUCGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGUGUCCUUGG2000005551UUCGAUUCCGAGUCCGGGCACCA
1433 7JQL_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1434 7JQL_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1435 7JQM_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1436 7JQM_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1437 7MD7_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1438 7MD7_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1439 7RQ8_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1440 7RQ8_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1441 7RQ9_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1442 7RQ9_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1443 7U2H_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCG2000074551UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGG2000005551U2000009551UCGAUUCCCUUCGCCCGCUCCA
1444 7U2H_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCG2000074551UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGG2000005551U2000009551UCGAUUCCCUUCGCCCGCUCCA
1445 7U2I_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCG2000074551UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGG2000005551U2000009551UCGAUUCCCUUCGCCCGCUCCA
1446 7U2I_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCG2000074551UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGG2000005551U2000009551UCGAUUCCCUUCGCCCGCUCCA
1447 7U2J_EB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCG2000074551UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGG2000005551U2000009551UCGAUUCCCUUCGCCCGCUCCA
1448 7U2J_JD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCG2000074551UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGG2000005551U2000009551UCGAUUCCCUUCGCCCGCUCCA
1449 7VNV_A7  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGCC2000074551UACG2000074551UC2000022551GUC2000009551UA2000103551GC2000090551CUGGUUAGGAC2000022551GCCGCC2000090551CU2000090551UACAAGGCGGAGG2000000000X2000005551C2000005551CUGGG2000002551U2000009551U2000090551C2000019551A2000001551AGUCCCAGCGGGCCCACCA
1450 7VNV_B  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGGCC2000074551UACG2000074551UC2000022551GUC2000009551UA2000103551GC2000090551CUGGUUAGGAC2000022551GCCGCC2000090551CU2000090551UACAAGGCGGAGG2000000000X2000005551C2000005551CUGGG2000002551U2000009551U2000090551C2000019551A2000001551AGUCCCAGCGGGCCCACCA
1451 7VNW_A  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGCC2000074551UACGUC2000022551GUC2000009551UA2000103551GC2000090551CUGGUUAGGAC2000022551GCCGCC2000090551CU2000090551UACAAGGCGGAGGU2000005551C2000005551CUGGGU2000009551U2000090551C2000019551A2000001551AGUCCCAGCGGGCCCACCA
1452 7VNW_B  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGGCC2000074551UACGUC2000022551GUC2000009551UA2000103551GC2000090551CUGGUUAGGAC2000022551GCCGCC2000090551CU2000090551UACAAGGCGGAGGU2000005551C2000005551CUGGGU2000009551U2000090551C2000019551A2000001551AGUCCCAGCGGGCCCACCA
1453 8CVJ_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1454 8CVJ_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1455 8CVK_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1456 8CVK_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1457 8CVL_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGA2000074551UAGCUCAGGGUAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1458 8CVL_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGA2000074551UAGCUCAGGGAGAGCAGGGGA2000009551UUGAA2002161551AA2000009551UCCCCGU2000007551GUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
1459 8EKB_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1460 8EKB_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1461 8EV6_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1462 8EV6_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1463 8EV7_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1464 8EV7_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1465 8FC1_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1466 8FC1_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1467 8FC2_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1468 8FC2_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1469 8FC3_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1470 8FC3_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1471 8FC4_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1472 8FC4_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1473 8FC5_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1474 8FC5_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1475 8FC6_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1477 8FC6_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCG2000009551UGCCAGCAGCC2000007551GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAA2000022551G2000005551CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUG2000022551GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACAC2000005551CG2000904551CC2000005551CGU2000005551CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCG2000003551UAACAAGGUAGCUGUACCGG2000066551A2000066551AGGUGCGGCUGGAUC
1478 8JOZ_B  tRNA  Ser  NGA  Escherichia coli  Cytoplasm  GAAGUG2000074551UGGCCGAGC2000090551GG2000008551U2000008551UGAAGGCACCGGU2000090551CU2000000000XGA2000909551U2000090551U2002511551UAACCGGCGACCCGAAAGGGUUCCAGAG2000005551U2000009551UCGAAUCUCUGCGCUUCCGCCA
1479 1D4R_C  other      synthetic construct    2000000552GGUGACCUCCCGGGAGCGGGGGACCACUA
1480 1DUH_A  other      synthetic construct    UCUGUUUACCAGGUCAGGUCCGGAAGGAAGCAGCCAAGGCAGA2000033551G
1481 1DUL_A  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGC2000000000X
1482 1F1T_A  other      synthetic construct    GACCCGACGGCGAGAGCCAGGAACGAAGGACC
1483 1HQ1_A  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGC2000000000X
1484 1I7J_A  other      synthetic construct    2000090551G2000090551C2000090551G2000090551C2000090551G
1485 1I7J_B  other      synthetic construct    2000090551C2000090551G2000090551C2000090551G2000090551C2000090551G
1486 1JBS_A  other      synthetic construct    2000090551G2000090551C2000090551U2000090551C2000090551CUCAGUACGAUAGGAACC2000090551G2000090551G2000090551A2000090551G2000090551C2000090551G
1487 1JBS_B  other      synthetic construct    2000090551C2000090551G2000090551C2000090551U2000090551C2000090551CUCAGUACGAUAGGAACC2000090551G2000090551G2000090551A2000090551G2000090551C2000090551G
1488 1JID_A  other      synthetic construct    GGACCCCCGGGAGCGGGGGACCACU2000003377A
1489 1JZV_B  other      synthetic construct    AGUACGC
1490 1JZV_D  other      synthetic construct    CAGUACGC
1491 1K8W_A  other      synthetic construct    GCAACGGUCGAUCCCGUUGC
1492 1KFO_A  other      synthetic construct    AAUGCCUGCGAGCACCC
1493 1L9A_A  other      synthetic construct    ACACUAAGUUCGGCAUCAAUAUGGUGACCUCCCGGGAGCGGGGGACCACCAGGUUGCCUAGAGGGGUGAACCGGCCCAGGUCGGAAACGGAGCAGGUCAAAACUCCCGUGCUGAUCAGUAGUGU2000000000X
1494 1LNT_B  other      synthetic construct    GGAAGCAGGC
1495 1MFQ_A  other      synthetic construct    ACACUAAGUUCGGCAUCAAUAUGGUGACCUCCCGGGAGCGGGGGACCACCAGGUUGCCUAAGGAGGGGUGAACCGGCCCAGGUCGGAAACGGAGCAGGUCAAAACUCCCGUGCUGAUCAGUAGUGU2000000000X
1496 1NJM_B  other      synthetic construct    GGGCUAAGCCGCUUAGCUCCACC
1497 1NJP_B  other      synthetic construct    GGGCUAAGCCGCUUAGCUCCACC
1498 1QBP_A  other      synthetic construct    GAGUUCGCUGGC
1499 1QBP_B  other      synthetic construct    UGAGUUCGCUGGC
1500 1QBP_C  other      synthetic construct    UGAGUUCGCUGGC
1501 1QBP_D  other      synthetic construct    UGAGUUCGCUGGC
1502 1QBP_E  other      synthetic construct    UGAGUUCGCUGGC
1503 1QBP_F  other      synthetic construct    UGAGUUCGCUGGC
1504 1QZW_A  other      synthetic construct    GCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGU2000000000X
1505 1QZW_B  other      synthetic construct    G2000005551U2000009551UGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGU2000000000X
1506 1QZW_C  other      synthetic construct    G2000005551U2000009551UGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGU2000000000X
1507 1QZW_D  other      synthetic construct    G2000005551U2000009551UGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGU2000000000X
1508 1RLG_A  other      synthetic construct    CCGACCGAAAGGCGUGAGAGC
1509 1RLG_B  other      synthetic construct    GCCGACCGAAAGGCGUGAGAGC
1510 1S77_C  other      synthetic construct    CACGGCGA
1511 1VQ4_C  other      synthetic construct    C2000002551U2000019551A2000009551U2000009551U2000019551A2000002551U2000008551UACC
1512 1VQ5_C  other      synthetic construct    2000008551UC2000002551U2000019551A2000009551U2000009551U2000019551A2000002551UACC
1513 1VQ7_C  other      synthetic construct    C2000002551U2000019551A2000009551U2000009551UA2000662551AACC
1514 1VQL_C  other      synthetic construct    C2000005551U2002511551U2000662551A2000008551UACC
1515 1VQM_C  other      synthetic construct    C2000009551U2000019551A2000002551U2000008551UACC
1516 1VQP_C  other      synthetic construct    2000008551UC2000000999A2000025551UA2000009551U2000019551A2000002551UACC
1517 1XMO_C  other      synthetic construct    ACU2000511551UUU2000062551AAUC
1518 1XMQ_C  other      synthetic construct    ACUUUU2000062551AAUC
1519 1Y27_A  other      synthetic construct    GAUCAUAUAAUCGCGUGGAUAUGGCACGCAAGUUUCUACCGGGCACCGUAAAUGUCCGACUAUGGU2000000000X
1520 1Y3O_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1521 1Y3O_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1522 1Y3S_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1523 1Y3S_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1524 1Y90_A  other      synthetic construct    UGCUGAGGUGCACACAGCAAG
1525 1Y90_B  other      synthetic construct    CUGCUGAGGUGCACACAGCAAG
1526 1YVP_B  other      synthetic construct    GACAGCC
1527 1YVP_D  other      synthetic construct    GACAGCC
1528 1YXP_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1529 1YXP_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1530 1YY0_B  other      synthetic construct    CAGAUUAAAUCUGC
1531 1YZD_A  other      synthetic construct    CAGAUUAAGUCUGC
1532 1YZD_B  other      synthetic construct    GCAGAUUAAGUCUGC
1533 1YZD_C  other      synthetic construct    GCAGAUUAAGUCUGC
1534 1Z79_A  other      synthetic construct    CAGAUUAAAUCUGC
1535 1Z79_B  other      synthetic construct    GCAGAUUAAAUCUGC
1536 1Z79_C  other      synthetic construct    GCAGAUUAAAUCUGC
1537 1ZCI_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1538 1ZCI_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1539 1ZCI_C  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1540 1ZCI_D  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1541 1ZE2_A  other      synthetic construct    GCCACGGUCGAAUCCGUGGC
1542 1ZE2_B  other      synthetic construct    GGCCACGGUCGAAUCCGUGGC
1543 1ZL3_A  other      synthetic construct    GCAACGGU2000000999UCGAUCCCGUUGC
1544 2A0P_A  other      synthetic construct    CCGGGG
1545 2A0P_B  other      synthetic construct    CCCGGGG
1546 2AB4_A  other      synthetic construct    CACGGUCGAAUCCGUGGC
1547 2ANR_A  other      synthetic construct    CGCGGAUCAGUCACCCAAGCGAG
1548 2AO5_A  other      synthetic construct    GCGGCGCU
1549 2AO5_B  other      synthetic construct    GGCGGCGCU
1550 2AO5_C  other      synthetic construct    GGCGGCGCU
1551 2AO5_D  other      synthetic construct    GGCGGCGCU
1552 2AZ0_A  other      synthetic construct    CAGGACGCGCCAGC
1553 2AZ0_B  other      synthetic construct    GCAGGACGCGCCAGC
1554 2AZ2_A  other      synthetic construct    CAGGACGCGCCAGC
1555 2AZ2_B  other      synthetic construct    GCAGGACGCGCCAGC
1556 2B3J_A  other      synthetic construct    UGACUCGGAUCAA
1557 2B3J_B  other      synthetic construct    UUGACUCGGAUCAA
1558 2B3J_C  other      synthetic construct    GACUCGG
1559 2B3J_D  other      synthetic construct    UUUGACUCGGAUCAA
1560 2B63_A  other      synthetic construct    AGCACUGAUGCGGCGAGGUAGCGAUG
1561 2BU1_D  other      synthetic construct    AUGAGGAUACCCAUG
1562 2BU1_E  other      synthetic construct    CAUGAGGAUACCCAUG
1563 2C4Q_D  other      synthetic construct    AUGAGGAUACCCAUG
1564 2C4Q_E  other      synthetic construct    CAUGAGGAUACCCAUG
1565 2C4Y_D  other      synthetic construct    AUGAGGAU2000002551UACCCAUG
1566 2C4Y_E  other      synthetic construct    UGAGGAU2000002551UACCCA
1567 2C4Z_D  other      synthetic construct    AUGAGGA2000002551U2000002551UACCCAUG
1568 2C4Z_E  other      synthetic construct    UGAGGA2000002551U2000002551UACCCA
1569 2CZJ_E  other      synthetic construct    GGGGUGAAACGGUCUCGACAGGGGUUCGCCUUUGGACGUGGG2000005551U2000009551UCGACUCCCACCACCUCC
1570 2CZJ_G  other      synthetic construct    GGGGGUGAAACGGUCUCGACAGGGGUUCGCCUUUGGACGUGGG2000005551U2000009551UCGACUCCCACCACCUCC
1571 2DLC_A  other      synthetic construct    UCUCGGUA2000002551GCCAAGU2000090551GGGAAGGC2000022551GCAAGAUG2000009551UA2000061551AA2000009551UCUUGAGGU2000005551CGGGCG2000005551U2000009551UCG2000001551ACUCGCCCCCGGGAGACCA
1572 2E9T_B  other      synthetic construct    GGCCC2000000999U
1573 2E9T_D  other      synthetic construct    GGGCCC2000000999U
1574 2FCX_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1575 2FCX_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1576 2FCY_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1577 2FCY_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1578 2FCZ_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1579 2FCZ_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1580 2FCZ_C  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1581 2FCZ_D  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1582 2FD0_A  other      synthetic construct    UGCUGAAGUGCACACAGCAAG
1583 2FD0_B  other      synthetic construct    CUGCUGAAGUGCACACAGCAAG
1584 2FMT_A  other      synthetic construct    GCGGGG2000074551UGGAGCAGCCUGG2000008551UAGCUCGUCGGG2000090551CUCAUAACCCGAAGAUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1585 2FMT_B  other      synthetic construct    CGCGGGG2000074551UGGAGCAGCCUGG2000008551UAGCUCGUCGGG2000090551CUCAUAACCCGAAGAUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1586 2GCS_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1587 2GCV_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1588 2GDI_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
1589 2GDI_B  other      synthetic construct    G2000005551U2000009551UGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
1590 2H0S_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1591 2H0W_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1592 2H0X_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1593 2HO6_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1594 2HO7_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1595 2HOJ_A  other      synthetic construct    CGACUCGGGGUGCCCUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
1596 2IZ9_D  other      synthetic construct    UGAGGAUACCCAU
1597 2IZ9_E  other      synthetic construct    AUGAGGAUACCCAU
1598 2JLT_B  other      synthetic construct    GAGCCUGGGAGCCC
1599 2OEU_B  other      synthetic construct    GCGU2000090551CCUGGAUCCAAUC2000008551UC
1600 2PN3_B  other      synthetic construct    CGGUCGUGCAGCCCCGG
1601 2PN4_B  other      synthetic construct    CGGUCGUGCAGCCCCGG
1602 2PN4_D  other      synthetic construct    GCGGUCGUGCAGCCCCGG
1603 2R1S_A  other      synthetic construct    CGUUGAAACGC
1604 2R1S_B  other      synthetic construct    GCGUUGAAACGC
1605 2R20_A  other      synthetic construct    CGUUGAAACGC
1606 2R20_B  other      synthetic construct    GCGUUGAAACGC
1607 2R21_A  other      synthetic construct    CGUUGAAACGC
1608 2R21_B  other      synthetic construct    GCGUUGAAACGC
1609 2X2Q_B  other      synthetic construct   
1610 2X2Q_D  other      synthetic construct   
1611 2XD0_D  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1612 2XD0_E  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1613 2XD0_F  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1614 2XD0_G  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1615 2XD0_H  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1616 2XD0_I  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1617 2XDB_B  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1618 2XDD_D  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1619 2XDD_E  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1620 2XDD_F  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGA2000003377A
1621 310D_A  other      synthetic construct    2000090551G2000090551C2000090551G2000090551C2000090551G
1622 310D_B  other      synthetic construct    2000090551C2000090551G2000090551C2000090551G2000090551C2000090551G
1623 3B4A_B  other      synthetic construct    GCUUUAAGUUGACGAGAGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGA2000003377A
1624 3B5F_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1625 3B5S_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1626 3B91_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1627 3BBI_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1628 3BNO_A  other      synthetic construct    CGUCACCCGAACAAGUCGC
1629 3BNO_B  other      synthetic construct    GCGUCACCCGAACAAGUCGC
1630 3BNO_C  other      synthetic construct    GCGUCACCCGAACAAGUCGC
1631 3BNO_D  other      synthetic construct    GCGUCACCCGAACAAGUCGC
1632 3BNQ_D  other      synthetic construct    CGUCACCCGAGCAAGUCGC
1633 3BNR_D  other      synthetic construct    CGUCACCCGAGCAAGUCGC
1634 3BNS_D  other      synthetic construct    CGUCACCCGAGCAAGUCGC
1635 3BNT_A  other      synthetic construct    GCGUCACCCGAGCAAGUCGC
1636 3BO4_A  other      synthetic construct    GCCGUGUGCCUUGCGCCGGGAAACCACGCAAGGGAUGGUGUCAAAUUCGGCGAAACCUAAGCGCCCGCCCGGGCGUAUGGCAACGCCGAGCCAAGCUUCGCAGCCAUUGCACUCCGGCUGCGAUGAAGGUGUAGAGACUAGACGGCACCCACCUAAGGCAAACGCUAUGGUGAAGGCAUAGUCCAGGGAGUGGCG2000003377A
1637 3BSN_C  other      synthetic construct    GCCCGGG
1638 3BT7_C  other      synthetic construct    CUGUG2000005551UUCGAUCCACAGC
1639 3BT7_D  other      synthetic construct    GCUGUG2000005551UUCGAUCCACAGC
1640 3CJZ_A  other      synthetic construct    GACG2000022551GACGUCCU
1641 3CJZ_B  other      synthetic construct    GGACG2000022551GACGUCCU
1642 3DH3_B  other      synthetic construct    GAACGUCGUGAGACAGUCGG
1643 3DH3_D  other      synthetic construct    AGAACGUCGUGAGACAGUCGG
1644 3DH3_F  other      synthetic construct    AGAACGUCGUGAGACAGUCGG
1645 3DH3_H  other      synthetic construct    AGAACGUCGUGAGACAGUCGG
1646 3DIG_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1647 3DIL_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1648 3DIM_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1649 3DIO_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1650 3DIQ_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1651 3DIR_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1652 3DIS_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1653 3DIX_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1654 3DIY_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1655 3DIZ_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1656 3DJ0_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1657 3DJ2_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGU2000000000X
1658 3DVV_A  other      synthetic construct    U2000090551UGCUGAAGUGCACACAGCAAG
1659 3DVV_B  other      synthetic construct    CU2000090551UGCUGAAGUGCACACAGCAAG
1660 3DW4_A  other      synthetic construct    GC2000090551UCCUAGUACGAGAGGACCGGAGUG
1661 3DW5_A  other      synthetic construct    GCUCCUAG2000090551UACGAGAGGACCGGAGUG
1662 3F2Q_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUU2000000000X
1663 3F2T_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUU2000000000X
1664 3F2W_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUU2000000000X
1665 3F2X_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUU2000000000X
1666 3F2Y_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUU2000000000X
1667 3F30_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUU2000000000X
1668 3HAX_E  other      synthetic construct    UAAUUGACUCAA
1669 3HAY_F  other      synthetic construct    UAAUUGACUCAA
1670 3HGA_A  other      synthetic construct    CGCG
1671 3HHN_B  other      synthetic construct    CCAGUAGGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGCUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUG2000003377A
1672 3HHN_D  other      synthetic construct    UCCAGUAGGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGCUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUG2000003377A
1673 3HJW_E  other      synthetic construct    AGCGGCGGUUU
1674 3I5Y_B  other      synthetic construct    UUUUUUUU
1675 3IBK_B  other      synthetic construct    AGGGUUAGGGU
1676 3IIN_B  other      synthetic construct    GCCGUGUGCCUUGCGCCGGGAAACCACGCAAGGGAUGGUGUCAAAUUCGGCGAAACCUAAGCGCCCGCCCGGGCGUAUGGCAACGCCGAGCCAAGCUUCGCAGCCAUUGCACUCCGGCUGCGAUGAAGGUGUAGAGACUAGACGGCACCCACCUAAGGCAAACGCUAUGGUGAAGGCAUAGUCCAGGGAGUGGCG2000003377A
1677 3LOA_B  other      synthetic construct    GGGGUGAAGUCGUAACGCGGC
1678 3LQX_B  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGC2000000000X
1679 3LWO_E  other      synthetic construct    AGCGGCGGUUU
1680 3LWQ_E  other      synthetic construct    AGCG2000003551UGCGGUUU
1681 3MEI_A  other      synthetic construct    CGCCGCGCCAGCCUGUGGCGG
1682 3MEI_B  other      synthetic construct    CCGCCGCGCCAGCCUGUGGCGG
1683 3MJ0_B  other      synthetic construct    GUUACGC2000090551U
1684 3NCU_D  other      synthetic construct    2000000552GACGCUAGCGUC
1685 3O6E_B  other      synthetic construct    CGAAUAUUCGCU2000090551U
1686 3O7V_B  other      synthetic construct    CGAAUAUUCGCU2000090551U
1687 3O8C_B  other      synthetic construct    UUUU
1688 3O8R_B  other      synthetic construct    UUUU
1689 3OWI_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1690 3OWW_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1691 3OWZ_B  other      synthetic construct    GCUCUGGAGAGAACCGUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1692 3OX0_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1693 3OXB_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCCCAGGCAAAAGGACAGAGU2000000000X
1694 3OXD_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAACGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUGAGGCAAAAGGACAGAGU2000000000X
1695 3OXE_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1696 3OXJ_A  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1697 3OXJ_B  other      synthetic construct    2000000552GGCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1698 3OXM_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGU2000000000X
1699 3R1D_A  other      synthetic construct    CGCGGCGGC
1700 3R1D_B  other      synthetic construct    GCGCGGCGGC
1701 3R1D_C  other      synthetic construct    GCGCGGCGGC
1702 3R1D_D  other      synthetic construct    GCGCGGCGGC
1703 3R1D_E  other      synthetic construct    GCGCGGCGGC
1704 3R1E_A  other      synthetic construct    CGCGGC
1705 3R1E_B  other      synthetic construct    GCGCGGC
1706 3R1H_C  other      synthetic construct    GAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUG2000003377A
1707 3R1H_F  other      synthetic construct    G2000005551U2000009551UGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUG2000003377A
1708 3R1L_C  other      synthetic construct    GAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUG2000003377A
1709 3R1L_F  other      synthetic construct    G2000005551U2000009551UGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUG2000003377A
1710 3RW6_B  other      synthetic construct    GCACUAACCUAAGACAGGAGGGCCGGGAAACCUGCCUAAUCCAAUGACGGGUAAUAGUGU2000000000X
1711 3RW6_C  other      synthetic construct    G2000005551U2000009551UGCACUAACCUAAGACAGGAGGGCCGGGAAACCUGCCUAAUCCAAUGACGGGUAAUAGUGU2000000000X
1712 3S49_A  other      synthetic construct    UAUA2000000000XAC
1713 3S49_B  other      synthetic construct    GUAUA2000000000XAC
1714 3S49_C  other      synthetic construct    GUAUA2000000000XAC
1715 3S49_D  other      synthetic construct    GUAUA2000000000XAC
1716 3S49_E  other      synthetic construct    GUAUA2000000000XAC
1717 3S49_F  other      synthetic construct    GUAUA2000000000XAC
1718 3S49_G  other      synthetic construct    GUAUA2000000000XAC
1719 3SKI_B  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1720 3SKL_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1721 3SKL_B  other      synthetic construct    G2000005551U2000009551UGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1722 3SKR_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1723 3SKR_B  other      synthetic construct    G2000005551U2000009551UGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1724 3SKT_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1725 3SKT_B  other      synthetic construct    G2000005551U2000009551UGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1726 3SKW_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1727 3SKW_B  other      synthetic construct    G2000005551U2000009551UGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGU2000000000X
1728 3SKZ_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1729 3SKZ_B  other      synthetic construct    G2000005551U2000009551UGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1730 3SLM_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1731 3SLM_B  other      synthetic construct    G2000005551U2000009551UGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1732 3SLQ_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1733 3SLQ_B  other      synthetic construct    G2000005551U2000009551UGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGU2000000000X
1734 3SUH_A  other      synthetic construct    GACAGAGUAGGUAAACGUGCGUAAAGUGCCUGAGGGACGGGGAGUUGUCCUCAGGACGAACACCGAAAGGUGGCGGUACGUUUACCGCAUCUCGCUGUU2000000000X
1735 3SUX_A  other      synthetic construct    GACAGAGUAGGUAAACGUGCGUAAAGUGCCUGAGGGACGGGGAGUUGUCCUCAGGACGAACACCGAAAGGUGGCGGUACGUUUACCGCAUCUCGCUGUU2000000000X
1736 3T1H_W  other      synthetic construct    ACU2000000999UUU2000000999AA2000009551UC
1737 3T1Y_W  other      synthetic construct    ACU2000000999UUU2000000999AA2000009551UC
1738 3T3N_B  other      synthetic construct    2000090551U2000090551C2000090551C2000090551G2000090551U
1739 3T4B_A  other      synthetic construct    CUCCCGGGAGAGCCGCUAAGGGGGAAACUCUAUGCGGUACUGCCUGAUAGGGUGCUUGCGAGUGCCCCGGGAGGUCUCGUAG2000003377A
1740 3TD0_A  other      synthetic construct    CGUCGCGCGACGAAGUCGC
1741 3TD0_B  other      synthetic construct    UUGCGUCGCGCGACGAAGUCGC
1742 3TD1_A  other      synthetic construct    GCGUCGCGCGACGAAGUCGC
1743 3TD1_B  other      synthetic construct    UUGCGUCGCGCGACGAAGUCGC
1744 3ZD4_B  other      synthetic construct    GCGU2000090551CCUGGUAUCCAAUC2000008551UC
1745 3ZD5_B  other      synthetic construct    GCGU2000090551CCUGGAUCCAAC2000008551UC
1746 3ZP8_B  other      synthetic construct    GCGU2000090551CCUGGUAUCCAAUC2000008551UC
1747 406D_A  other      synthetic construct    ACCGGAUGGUCGGUG
1748 406D_B  other      synthetic construct    CACCGGAUGGUCGGUG
1749 430D_A  other      synthetic construct    GGUGCUCAGUACGAGAGGAACCGCACC
1750 464D_B  other      synthetic construct    GGGCA
1751 464D_D  other      synthetic construct    GGGGCA
1752 4ATO_B  other      synthetic construct    AAUUGGUGUAACCUUACCGUAGUAGGUGCUAA2000003377A
1753 4E58_A  other      synthetic construct    CCCCGC
1754 4E58_B  other      synthetic construct    GCCCCGC
1755 4E58_C  other      synthetic construct    GCCCCGC
1756 4E78_B  other      synthetic construct    ACCG
1757 4G6P_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1758 4G6S_C  other      synthetic construct    CGUGGUCAUUACCUGCC
1759 4GKJ_W  other      synthetic construct    CC2000071551CAUACC
1760 4GXY_A  other      synthetic construct    GCGGCAGGUGCUCCCGACGUCGGGAGUUAAAAGGGAAGCCGGUGCAAGUCCGGCACGGUCCCGCCACUGUGACGGGGAGUCGCCCCUCGGGAUGUGCCACUGGCCCGGCCGGGAAGGCGGAGGGGCGGCGAGGAUCCGGAGUCAGGAAACCUGCCUGCCGU2000000000X
1761 4JAH_A  other      synthetic construct    UGUA2000000000XAC
1762 4JAH_B  other      synthetic construct    GUGUA2000000000XAC
1763 4JAH_C  other      synthetic construct    GUGUA2000000000XAC
1764 4JAH_D  other      synthetic construct    GUGUA2000000000XAC
1765 4JAH_E  other      synthetic construct    GUGUA2000000000XAC
1766 4JAH_F  other      synthetic construct    GUGUA2000000000XAC
1767 4LGT_B  other      synthetic construct    GAACGUCGUGAGACAGUCG
1768 4LGT_D  other      synthetic construct    GAACGUCGUGAGACAGUCG
1769 4NFP_A  other      synthetic construct    CAGCUUAAGUCUGC
1770 4NFP_B  other      synthetic construct    GCAGCUUAAGUCUGC
1771 4NFP_C  other      synthetic construct    GCAGCUUAAGUCUGC
1772 4NFQ_A  other      synthetic construct    CAGCUUAAGUCUGC
1773 4NFQ_B  other      synthetic construct    GCAGCUUAAGUCUGC
1774 4NFQ_C  other      synthetic construct    GCAGCUUAAGUCUGC
1775 4NYA_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
1776 4NYA_B  other      synthetic construct    G2000005551U2000009551UGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
1777 4NYB_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
1778 4NYC_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
1779 4NYD_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
1780 4NYG_A  other      synthetic construct    CGACUCGGGGUGCCCUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
1781 4P3S_A  other      synthetic construct    CGUCCCGCGACGAAGUCGC
1782 4P3S_B  other      synthetic construct    UGCGUCCCGCGACGAAGUCGC
1783 4P3T_A  other      synthetic construct    UGCGUCCCGCGACGAAGUCGC
1784 4P3T_B  other      synthetic construct    UUGCGUCCCGCGACGAAGUCGC
1785 4P3U_A  other      synthetic construct    CGUCUCGCGACGAAGUCGC
1786 4P3U_B  other      synthetic construct    UGCGUCUCGCGACGAAGUCGC
1787 4P3U_C  other      synthetic construct    UGCGUCUCGCGACGAAGUCGC
1788 4P3U_D  other      synthetic construct    GCGUCUCGCGACGAAGUCGC
1789 4PCJ_A  other      synthetic construct    UGC2000009551UGGCUAAGGCAUGAAAGUGCUAUGCCUGCUG
1790 4PLX_A  other      synthetic construct    GAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUCUUAAAAAAAAAAAAAGCAAA2000003377A
1791 4PLX_B  other      synthetic construct    G2000005551U2000009551UGAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUCAAAAAAAAAAAAGCAAA2000003377A
1792 4PLX_C  other      synthetic construct    G2000005551U2000009551UGAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUAAAAAAAAAAAGCAAA2000003377A
1793 4RMO_B  other      synthetic construct    AGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1794 4RMO_D  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1795 4RMO_F  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1796 4RMO_H  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1797 4RMO_J  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1798 4RMO_L  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1799 4RMO_N  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1800 4RMO_P  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUG2000003377A
1801 4TS0_B  other      synthetic construct    CAGCCGGCUUGUUGAGUAGAGUGUGAGCUCCGUAACUGGUCGCGU2000000000X
1802 4TS2_B  other      synthetic construct    CAGCCGGCUUGUUGAGUAGAGUGUGAGCUCCGUAACUGGUCGCGU2000000000X
1803 4UYJ_E  other      synthetic construct    GGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGUAAGGGUUCCCACCCUCGGGCGUGCCU2000000000X
1804 4UYJ_F  other      synthetic construct    GGGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGUAAGGGUUCCCACCCUCGGGCGUGCCU2000000000X
1805 4UYK_C  other      synthetic construct    GGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGAAGCCGCCUCUGUAAGGAGGCGGUGGAGGGUUCCCACCCUCGGGCGUGCCU2000000000X
1806 4V8X_EC  other      synthetic construct    AAAUG2000090551U2000090551A2000090551AA
1807 4WFL_A  other      synthetic construct    GCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUUCGGUAACGAAUCGACAGAAGGUGCACGGU2000000000X
1808 4WFM_A  other      synthetic construct    GCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUGGUAACAUCGACAGAAGGUGCACGGU2000000000X
1809 4WFM_B  other      synthetic construct    G2000005551U2000009551UGCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUGGUAACAUCGACAGAAGGUGCACGGU2000000000X
1810 4X62_W  other      synthetic construct    ACU2000000999UUU2000000999AA2000009551UC
1811 4X64_W  other      synthetic construct    ACU2000000999UUU2000000999AA2000009551UC
1812 4X65_W  other      synthetic construct    ACU2000000999UUU2000000999AA2000009551UC
1813 4X66_W  other      synthetic construct    ACU2000000999UUU2000000999AA2000009551UC
1814 4XW0_A  other      synthetic construct    CCUCCUGC
1815 4XW0_B  other      synthetic construct    GCCUCCUGC
1816 4XW1_A  other      synthetic construct    CCUCCUG
1817 4Y27_A  other      synthetic construct    GCUCCUAGUACGA2000090551GGGACCGGAGUG
1818 4Z4F_C  other      synthetic construct    AAUGUGAA
1819 5AOX_F  other      synthetic construct    2000000552GGCCGGGCGCGGUGGCUCACGCCUGUAAUCCCAGCACUUUGGGAGGCCGAGGCGGGAGGAUCGCGAACACGCGAGACCCCGUCUCUA
1820 5BJO_A  other      synthetic construct    GCGCGAGGAAGGAGGCUGAGGAGGUCACUGCGCC
1821 5BJO_B  other      synthetic construct    GGCGCGAGGAAGGAGGCUGAGGAGGUCACUGCGCC
1822 5BTE_B  other      synthetic construct    UUU
1823 5BTE_C  other      synthetic construct    UUUU
1824 5D8T_B  other      synthetic construct    GAAU2000501551U2000042551CUCG
1825 5DGV_GF  other      synthetic construct    C2000009551U2000022551G2000019551A2000009551U2000022551G2000019551A
1826 5DGV_HF  other      synthetic construct    CC2000009551U2000022551G2000019551A2000009551U2000022551G2000019551A
1827 5DHB_A  other      synthetic construct    UACA
1828 5DHB_B  other      synthetic construct    2000002551GCCUACA
1829 5DHB_C  other      synthetic construct    2000002551GCCUACA
1830 5DHB_D  other      synthetic construct    2000002551GCCUACA
1831 5DHC_A  other      synthetic construct    2000002551GCCACUUAAGUCU
1832 5DHC_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1833 5DHC_C  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1834 5DHC_D  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1835 5DO5_A  other      synthetic construct    GCGAAUUA2000025551U2000002551UCG
1836 5DUN_A  other      synthetic construct    UUU2000090551UAAUGAAGCCACAGGCUGUGAGGGUCCUAAGCCCCUAAUUCAGAAGGGAA
1837 5GUH_B  other      synthetic construct    AUUUUU2000090551U
1838 5HAU_EB  other      synthetic construct    CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1839 5HAU_KD  other      synthetic construct    GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1840 5HBW_A  other      synthetic construct    UACA
1841 5HBW_B  other      synthetic construct    2000002551GCCUACA
1842 5HBX_A  other      synthetic construct    2000002551GCCACUUAAGUCU
1843 5HBX_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1844 5HBX_C  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1845 5HBX_D  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1846 5HBY_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUC
1847 5HN2_A  other      synthetic construct    UA2000071551CGUAC
1848 5HN2_B  other      synthetic construct    GUA2000071551CGUAC
1849 5HN2_C  other      synthetic construct    GUA2000071551CGUAC
1850 5HN2_D  other      synthetic construct    GUA2000071551CGUAC
1851 5HN2_E  other      synthetic construct    GUA2000071551CGUAC
1852 5HN2_F  other      synthetic construct    GUA2000071551CGUAC
1853 5HNJ_A  other      synthetic construct    UA2000071551CGUAC
1854 5HNJ_B  other      synthetic construct    GUA2000071551CGUAC
1855 5HNJ_C  other      synthetic construct    GUA2000071551CGUAC
1856 5HNJ_D  other      synthetic construct    GUA2000071551CGUAC
1857 5HNJ_E  other      synthetic construct    GUA2000071551CGUAC
1858 5HNJ_F  other      synthetic construct    GUA2000071551CGUAC
1859 5HNQ_A  other      synthetic construct    UA2000071551CGUAC
1860 5HNQ_B  other      synthetic construct    GUA2000071551CGUAC
1861 5HNQ_C  other      synthetic construct    GUA2000071551CGUAC
1862 5HNQ_D  other      synthetic construct    GUA2000071551CGUAC
1863 5HNQ_E  other      synthetic construct    GUA2000071551CGUAC
1864 5HNQ_F  other      synthetic construct    GUA2000071551CGUAC
1865 5HNQ_G  other      synthetic construct    GUA2000071551CGUAC
1866 5HNQ_H  other      synthetic construct    GUA2000071551CGUAC
1867 5HNQ_I  other      synthetic construct    GUA2000071551CGUAC
1868 5HNQ_J  other      synthetic construct    GUA2000071551CGUAC
1869 5HNQ_K  other      synthetic construct    GUA2000071551CGUAC
1870 5HNQ_L  other      synthetic construct    GUA2000071551CGUAC
1871 5HNQ_M  other      synthetic construct    GUA2000071551CGUAC
1872 5J4D_HA  other      synthetic construct    AAAUG2000009551UAAAA
1873 5J4D_LC  other      synthetic construct    AAAAUG2000009551UAAAA
1874 5KRG_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCGG
1875 5KRG_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1876 5KRG_C  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1877 5KRG_D  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1878 5L00_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCGG
1879 5L00_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1880 5L00_C  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1881 5L00_D  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1882 5LQO_A  other      synthetic construct    CGGACGGC
1883 5LQO_B  other      synthetic construct    GCGGACGGC
1884 5LQT_A  other      synthetic construct    CGG2000006551ACGGC
1885 5LQT_B  other      synthetic construct    GCGG2000006551ACGGC
1886 5LR3_A  other      synthetic construct    CGGAUGGC
1887 5LR3_B  other      synthetic construct    GCGGAUGGC
1888 5LR4_A  other      synthetic construct    CGG2000006551AUGGC
1889 5LR4_B  other      synthetic construct    GCGG2000006551AUGGC
1890 5LR4_C  other      synthetic construct    GCGG2000006551AUGGC
1891 5LR4_D  other      synthetic construct    GCGG2000006551AUGGC
1892 5LR5_A  other      synthetic construct    G2000006551ACUAGUC
1893 5LR5_B  other      synthetic construct    GG2000006551ACUAGUC
1894 5LR5_C  other      synthetic construct    GG2000006551ACUAGUC
1895 5LR5_D  other      synthetic construct    GG2000006551ACUAGUC
1896 5LYS_A  other      synthetic construct    GGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCC2000000000X
1897 5LYS_B  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCC2000000000X
1898 5LYU_A  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCC2000000000X
1899 5LYU_B  other      synthetic construct    GGGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCC2000000000X
1900 5LYV_A  other      synthetic construct    GGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCC2000000000X
1901 5LYV_B  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCC2000000000X
1902 5MRX_A  other      synthetic construct    GCU2000051551CCUAGUACGAGAGGACCGGAGUG
1903 5NDH_A  other      synthetic construct    GGGGACGACCCCGC
1904 5NDH_B  other      synthetic construct    GGGGGACGACCCCGC
1905 5NDH_C  other      synthetic construct    GGGGGACGACCCCGC
1906 5NDH_D  other      synthetic construct    GGGGGACGACCCCGC
1907 5NDI_A  other      synthetic construct    UUGCAGGACGACCUGAAA
1908 5NDI_B  other      synthetic construct    UUUGCAGGACGACCUGAAA
1909 5NDI_C  other      synthetic construct    UUUGCAGGACGACCUGAAA
1910 5NDI_D  other      synthetic construct    UUUGCAGGACGACCUGAAA
1911 5NEF_A  other      synthetic construct    GUGGGGACGACCCCAC
1912 5NEO_A  other      synthetic construct    GUGGGGACGACCCCAC
1913 5NEP_A  other      synthetic construct    GUGGGGACGACCCCAC
1914 5NEQ_A  other      synthetic construct    GUGGGGACGACCCCAC
1915 5NEX_A  other      synthetic construct    GUGGGGACGACCCCAC
1916 5NOM_A  other      synthetic construct    GUGGGGACGACCCCAC
1917 5NQI_A  other      synthetic construct    GCU2000051551CCUAGUACGAGAGGACCGGAGUG
1918 5NWQ_A  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1919 5NWQ_B  other      synthetic construct    CCGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1920 5NY8_A  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1921 5NY8_B  other      synthetic construct    CCGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1922 5NZ3_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1923 5NZ3_B  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1924 5NZ6_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCACGACAAGACGGGC
1925 5NZD_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1926 5NZD_B  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1927 5O62_A  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGGC
1928 5O62_B  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGAGACGGGC
1929 5O69_B  other      synthetic construct    GGACGAGGUGCGCCGUACCCGGAGCAAGACGGGC
1930 5T16_G  other      synthetic construct    CAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1931 5T16_H  other      synthetic construct    GCAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1932 5T16_O  other      synthetic construct    GCAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1933 5T16_P  other      synthetic construct    GCAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1934 5T3K_B  other      synthetic construct    AGCG2000000999UCACACCACCC
1935 5T3K_D  other      synthetic construct    CAGCG2000000999UCACACCACCC
1936 5UZ6_D  other      synthetic construct    2000000999GCACCUCA
1937 5UZ6_F  other      synthetic construct    2000000999GCACCUCA
1938 5UZA_A  other      synthetic construct    GGAAGAUAUAAUCCAAGAUAUGGUUUGGGAGUUUCUACCAAGAGCCUUAAACUCUUGAUUAUCUUCCC
1939 5V0H_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCGG
1940 5V0H_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1941 5V0J_A  other      synthetic construct    2000002551GCCACUUAAGUCU
1942 5V0J_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCU
1943 5V0K_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUC
1944 5V1K_A  other      synthetic construct    GCGAA2000106551G2000022551G2000090551UAGCG
1945 5V1K_B  other      synthetic construct    CGCGAA2000106551G2000022551G2000090551UAGCG
1946 5V2H_B  other      synthetic construct    GAA2000909551U2000005551U2000000999AUCG
1947 5V2H_C  other      synthetic construct    GAA2000909551U2000005551U2000000999AUCG
1948 5V2H_D  other      synthetic construct    GAA2000909551U2000005551U2000000999AUCG
1949 5VJB_A  other      synthetic construct    CGGGGACGACCCGC
1950 5VJB_B  other      synthetic construct    GCGGGGACGACCCGC
1951 5VJB_C  other      synthetic construct    GCGGGGACGACCCGC
1952 5VJB_D  other      synthetic construct    GCGGGGACGACCCGC
1953 5VP2_CB  other      synthetic construct    CGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1954 5VP2_GD  other      synthetic construct    GCGGGG2000074551UGGAGCAGCCUGGUAGCUCGUCGGG2000005551CUCAUAACCCGAAGGUCGUCGG2000005551U2000009551UCAAAUCCGGCCCCCGCAACCA
1955 5VPO_CD  other      synthetic construct    UUCGUUCGG2000001551GGACGAAG
1956 5VPO_DD  other      synthetic construct    CUUCGUUCGG2000001551GGACGAAG
1957 5VSU_I  other      synthetic construct    AUUUGAAACAAUACAGAGAUGAUCAGCGGUUCCCCUGCAUAAGGAGAACCGUUUUACAAAGAGAUUUGUUU2000000999U
1958 5WNP_W  other      synthetic construct    AGACU2000000999UUU2000000999AA2000009551UCUA
1959 5WNT_W  other      synthetic construct    AGACU2000000999UUU2000000999AA2000009551UCUA
1960 5WNU_W  other      synthetic construct    2000000999UUU2000000999AA
1961 5WNV_W  other      synthetic construct    AGACU2000000999UUU2000000999AA2000009551UCUA
1962 5XWG_A  other      synthetic construct    GCUCGAAAAAGUC
1963 5ZEG_A  other      synthetic construct    UGCGUC2000001551ACGUCGACGAAGUCGC
1964 5ZEG_B  other      synthetic construct    UUGCGUC2000001551ACGUCGACGAAGUCGC
1965 5ZEG_C  other      synthetic construct    UUGCGUC2000001551ACGUCGACGAAGUCGC
1966 5ZEI_B  other      synthetic construct    CGUC2000001551ACGUCGACGAAGUCGC
1967 5ZEJ_A  other      synthetic construct    GCGUC2000001551ACGUCGACGAAGUCGC
1968 5ZEJ_B  other      synthetic construct    UGCGUC2000001551ACGUCGACGAAGUCGC
1969 5ZEM_A  other      synthetic construct    GCGUC2000001551ACGUCGACGAAGUCGC
1970 5ZEM_B  other      synthetic construct    GCGUC2000001551ACGUCGACGAAGUCGC
1971 6A6J_D  other      synthetic construct    CAU2000005551CU
1972 6ASO_I  other      synthetic construct    AAUUUGAAACAAUACAGAGAUGAUCAGCGGUUCCCCUGCAUAAGGGGAACCGUUUUACAAAGAGUUUU2000000999U
1973 6C8D_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1974 6C8D_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1975 6C8E_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1976 6C8E_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1977 6C8I_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1978 6C8I_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1979 6C8J_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1980 6C8J_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1981 6C8K_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1982 6C8K_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1983 6C8L_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1984 6C8L_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1985 6C8M_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1986 6C8N_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCGG
1987 6C8N_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1988 6C8O_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCGG
1989 6C8O_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCGG
1990 6CAB_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
1991 6CAB_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
1992 6CY0_B  other      synthetic construct    GAAU2000025551U2000090551CUCG
1993 6CY0_C  other      synthetic construct    GAAU2000025551U2000090551CUCG
1994 6CY0_D  other      synthetic construct    GAAU2000025551U2000090551CUCG
1995 6CY0_E  other      synthetic construct    GAAU2000025551U2000090551CUCG
1996 6CY0_F  other      synthetic construct    GAAU2000025551U2000090551CUCG
1997 6CY0_G  other      synthetic construct    GAAU2000025551U2000090551CUCG
1998 6CY0_H  other      synthetic construct    GAAU2000025551U2000090551CUCG
1999 6CY2_B  other      synthetic construct    GAAU2000019551AAUCG
2000 6CY4_B  other      synthetic construct    GAAU2000019551A2000090551CUCG
2001 6CY4_C  other      synthetic construct    GAAU2000019551A2000090551CUCG
2002 6CY4_D  other      synthetic construct    GAAU2000019551A2000090551CUCG
2003 6CY4_E  other      synthetic construct    GAAU2000019551A2000090551CUCG
2004 6CY4_F  other      synthetic construct    GAAU2000019551A2000090551CUCG
2005 6CY4_G  other      synthetic construct    GAAU2000019551A2000090551CUCG
2006 6CY4_H  other      synthetic construct    GAAU2000019551A2000090551CUCG
2007 6DLQ_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUU2000000000X
2008 6DLR_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUU2000000000X
2009 6DLS_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUU2000000000X
2010 6DLT_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUU2000000000X
2011 6DMC_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUU2000000000X
2012 6DMC_B  other      synthetic construct    G2000005551U2000009551UGAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUU2000000000X
2013 6DMD_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUU2000000000X
2014 6DMD_B  other      synthetic construct    G2000005551U2000009551UGAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUU2000000000X
2015 6DME_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUU2000000000X
2016 6DNR_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUU2000000000X
2017 6FZ0_A  other      synthetic construct    GGGCAUUUGAACUGUAUUGUACGCCUUGCAGCAAAAGUACUAAAAA
2018 6HBT_A  other      synthetic construct    GUGGGGACGACCCCAC
2019 6HBX_A  other      synthetic construct    GUGGGGACGACCCCAC
2020 6HC5_A  other      synthetic construct    GUGGGGACGACCCCAC
2021 6LVR_C  other      synthetic construct    CGGAUUUA2000002551GCUCAG2000008551U2000008551UGGGAGAGC2000022551GCCAGA2000090551CU2000090551GAA2003483551GA2000009551U2000005551CUGGAG2000007551GUC2000005551CUGUG2000005551U2000009551UCG2000001551AUCCACAGAAUUCGC
2022 6N1D_GB  other      synthetic construct    GUGGGGUUCCCGAGCGGCCAAAGGGAGCAGACU2000042551GUA2002161551AA2000009551UCUGCCGUCAUCGACUUCGAAGG2000005551U2000009551UCGAAUCCUUCCCCCACCACCA
2023 6Q8U_A  other      synthetic construct    GGCGAAG2000006551AACCGGGGAGCCG
2024 6Q8U_B  other      synthetic construct    CGGCGAAG2000006551AACCGGGGAGCCG
2025 6Q8V_A  other      synthetic construct    GCGAAG2000006551AACCGGGGAGCC
2026 6TF0_A  other      synthetic construct    GUUCAACAACCCCGUAGGUUGGGCCGAAAGGCAGCGAAUCUACUGGAGCC
2027 6TFH_A  other      synthetic construct    GUUCAACAACCCCGUAGGUUGGGCCGAAAGGCAGCGAAUCUACUGGAGCC
2028 6TQA_B  other      synthetic construct    GUGCCUAAUAUUUAGGCAC2000000000X
2029 6TQA_D  other      synthetic construct    GGUGCCUAAUAUUUAGGCAC2000000000X
2030 6TQA_F  other      synthetic construct    GGUGCCUAAUAUUUAGGCAC2000000000X
2031 6TQA_H  other      synthetic construct    GGUGCCUAAUAUUUAGGCAC2000000000X
2032 6U6J_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000000552G
2033 6U6J_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG2000000552G
2034 6U89_A  other      synthetic construct    UACA
2035 6U89_B  other      synthetic construct    2000002551GCCUACA
2036 6U8U_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2037 6U8U_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
2038 6UFG_B  other      synthetic construct    GCAUCGAUCCGGCGAUCACCGGGGAGCCUUCGGAAGAACGGCCAGGCCCAGUAGAACCGAACGGGUUGGCCCGUCACAGCCUCAAGUCGAGCGGCCGCGCGAAAGCGUGGCAAGCGGGGUGGCACCGCGGCGUUCGCGCGAAAGCGUGGCGUCGUCCCCG2000000000X
2039 6UFH_B  other      synthetic construct    GCAUCGAUCCGGCGAUCACCGGGGAGCCUUCGGAAGAACGGCCGGAAACGGCCCAGUAGAACCGAACGGGUUGGCCCGUCACAGCCUCAAGUCGAGCGGCCGCGCGAAAGCGUGGCAAGCGGGGUGGCACCGCGGCGUUCGCGCGAAAGCGUGGCGUCGUCCCCG2000000000X
2040 6WY2_A  other      synthetic construct    CGG2000004551CGCCGG
2041 6WY2_B  other      synthetic construct    CCGG2000004551CGCCGG
2042 6WY2_C  other      synthetic construct    CCGG2000004551CGCCGG
2043 6WY2_D  other      synthetic construct    CCGG2000004551CGCCGG
2044 6WY2_E  other      synthetic construct    CCGG2000004551CGCCGG
2045 6WY3_A  other      synthetic construct    CGG2000044551CGCCGG
2046 6WY3_B  other      synthetic construct    CCGG2000044551CGCCGG
2047 6WY3_C  other      synthetic construct    CCGG2000044551CGCCGG
2048 6WY3_D  other      synthetic construct    CCGG2000044551CGCCGG
2049 6XUR_A  other      synthetic construct    GCGAUUAGCG
2050 6XUS_A  other      synthetic construct    GCGAUUAGCG
2051 6Y3G_A  other      synthetic construct    CCCGGA2000074551UAGCUCAG2000008551UCGG2000008551UAGAGCAGGGGA2000009551UUGAAAA2000009551UCCCCGUG2000000999UCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACC
2052 6Y4B_A  other      synthetic construct    CCCGGA2000074551UAGCUCAG2000008551UCGG2000008551UAGAGCAGGGGA2000009551UUGAAAA2000009551UCCCCGUGUCCUUGG2000005551U2000009551UCGAUUCCGAGUCCGGGCACCA
2053 6YL5_A  other      synthetic construct    GUACAACGGCUUCCUGGCGUGACC
2054 6YL5_C  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2055 6YL5_E  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2056 6YL5_G  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2057 6YL5_I  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2058 6YL5_K  other      synthetic construct    GGUACAACGGCUUCCUGGCGUGACC
2059 6Z18_A  other      synthetic construct    CGG2000044551CGCCGG
2060 6Z18_B  other      synthetic construct    CCGG2000044551CGCCGG
2061 7BAI_D  other      synthetic construct    2000000552GACGCUAGCGUC
2062 7BAI_F  other      synthetic construct    2000000552GACGCUAGCGUC
2063 7BPF_A  other      synthetic construct    CUGCG
2064 7BPF_B  other      synthetic construct    GCUGCG
2065 7BPG_A  other      synthetic construct    CUGCGC
2066 7BPG_B  other      synthetic construct    GCUGCGC
2067 7BPG_C  other      synthetic construct    GCUGCGC
2068 7BPG_D  other      synthetic construct    GCUGCG
2069 7EDT_A  other      synthetic construct    GACUCCGGCC
2070 7EDT_B  other      synthetic construct    GGACUCCGGCC
2071 7F3I_D  other      synthetic construct    GU2000005551CU2000005551C
2072 7F3J_D  other      synthetic construct    UCAU2000005551C
2073 7F3J_F  other      synthetic construct    UCAU2000005551C
2074 7F3J_H  other      synthetic construct    UCAU2000005551C
2075 7F3K_B  other      synthetic construct    CAU2000005551CU
2076 7JJD_A  other      synthetic construct    GCUCCUAGUACGA2000000999GAGGACCGGAGUG
2077 7JJE_A  other      synthetic construct    GCUCCUAGUACGAAGGACCGGAGUG
2078 7JJU_A  other      synthetic construct    GAACUAGCUCAGCAUACACGAGUUGCAAGCAUGGGAAGUUCAAGCCUCG2003377551U
2079 7JJU_B  other      synthetic construct    G2000005551U2000009551UGAACUAGCUCAGCAUACACGAGUUGCAAGCAUGGGAAGUUCAAGCCUCG2003377551U
2080 7JNH_B  other      synthetic construct    GGCUGAGUUUUUACAUGACAAAGUUUUUAACGAGGCAGCGGCGAAAGUCGCUGUACUCUUUUCUUUGUCAUGGUUUUCUCAGCC2000000000X
2081 7JZ0_F  other      synthetic construct    2000042551C2000007551GG2000090551AUUA
2082 7KUK_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2083 7KUK_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUCG
2084 7KUM_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUC
2085 7KUM_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUC
2086 7KUN_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000025551U2000002551U
2087 7KUN_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUCG2000025551U2000002551U
2088 7KUO_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000025551U2000002551G
2089 7KUO_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUCG2000025551U2000002551G
2090 7KUP_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUC2000090551G
2091 7KUP_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUC2000090551G
2092 7L6R_C  other      synthetic construct    2000090551AUUAA
2093 7LO9_A  other      synthetic construct    GCG2000000999AAUAGCG
2094 7LO9_B  other      synthetic construct    CGCG2000000999AAUAGCG
2095 7LO9_C  other      synthetic construct    CGCG2000000999AAUAGCG
2096 7LO9_D  other      synthetic construct    CGCG2000000999AAUAGCG
2097 7TDA_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
2098 7TDB_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
2099 7TDC_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGC2000003377A
2100 7TZR_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
2101 7TZR_B  other      synthetic construct    G2000005551U2000009551UGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
2102 7TZS_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
2103 7TZS_B  other      synthetic construct    G2000005551U2000009551UGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUU2000000000X
2104 7U87_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUC2000000999G2000000999G
2105 7U87_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUC2000000999G2000000999G
2106 7U88_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUC2000000999G2000000999G
2107 7U88_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUC2000000999G2000000999G
2108 7U89_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000000999G
2109 7U89_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUCG2000000999G
2110 7U8A_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000000999G
2111 7U8A_B  other      synthetic construct    2000002551G2000001551GC2000002551GCC2000002551GCCACUUAAGUCG2000000999G
2112 7U8B_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000000999G
2113 7U8B_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG2000000999G
2114 7V9E_A  other      synthetic construct    GGGCUGACCGACCCCCCGAGUUCGCUCGGGGACAACUAGACAUACAGUAUGAAAAUACUG2000001551AGCCCGC
2115 7VNV_A  other      synthetic construct    GGCC2000074551UACG2000074551UC2000002551GUC2000009551UA2000103551GC2000090551CUGGUUAGGAC2000022551GCCGCC2000090551CU2000090551UACAAGGCGGAGG2000000999U2000005551C2000005551CUGGG2000002551U2000009551U2000090551C2000019551A2000001551AGUCCCAGCGGGCCCACCA
2116 7WL0_B  other      synthetic construct    GG2000006551ACUGC
2117 7WL0_D  other      synthetic construct    UGG2000006551AC
2118 7WL0_F  other      synthetic construct    UGG2000006551ACUGC
2119 8CLM_B  other      synthetic construct    2000090551U2000090551A2000090551G2000090551G2000090551A2000090551G2000090551A2000090551C
2120 8CLM_D  other      synthetic construct    U2000909551U2000002551G2000090551U2000090551A2000090551G2000090551G2000090551A2000090551G2000090551A2000090551C
2121 8CLM_F  other      synthetic construct    U2000909551U2000002551G2000090551U2000090551A2000090551G2000090551G2000090551A2000090551G2000090551A2000090551C
2122 8DZK_H  other      synthetic construct    2000000999GUGUU
2123 8SWG_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2124 8SWG_B  other      synthetic construct    2000002551GCC2000002551GCC2000002551GCCACUUAAGUCG
2125 8SWO_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2126 8SWO_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2127 8SX5_A  other      synthetic construct    2000002551GCCACUUAAGUCG
2128 8SX5_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2129 8SX6_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2130 8SX6_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2131 8SXL_A  other      synthetic construct    ACUUAAGUCU
2132 8SXL_B  other      synthetic construct    ACUUAAGUCU
2133 8SY1_A  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2134 8SY1_B  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2135 8SY1_C  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2136 8SY1_D  other      synthetic construct    2000002551GCC2000002551GCCACUUAAGUCG
2137 tdbR00000643  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGG2000000999CAUAGCUCAG2000000999UGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCAAAUCCAGGUGCCCCCUCCA
2138 tdbR00000644  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAG2000000999GGGUAGAGCACUUGACUGCAGAUCAAG2000000999AAGUCCUUGGUUCAAAUCCAGGUGCCCCCUCCA
2139 tdbR00000646  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGG2000000999UGUAGCUCAGUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUC2000000999AAAUCCAGGUGCCCCCUCCA
2140 tdbR00000650  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGGGGUAGAGCAUUUGACUGCAGAUCAA2000000999GAGGUCCCUGGUUCAAAUCCAGGUGCCCCCCCCA
2141 tdbR00000652  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGG2000000999UAUAGCUCAGGGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCCGGUUCA2000000999AAUCCGGGUGCCCCCUCCA
2142 tdbR00000660  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCA2000000999AAUCCGGGUGCCCCCUCCA
2143 tdbR00000662  SO:0000257 tRNA  Asp  GUC  Homo sapiens  Cytoplasm  UCCUCGUU2000000999AGUAUAGUGGUUAGUAUCCCCGCCUGUCACGCGGGAGACCGGGG2000000999UUC2000000999A2000000999AUUCCCCGACGGGGAGCCA
2144 tdbR00000665  SO:0000257 tRNA  Asp  GUC  Homo sapiens  Cytoplasm  UCCUCGUUAGUAUAGUGGUGAGU2000000999GUCCCCG2000000999UCUGUCACGCGGGAGACCGGGGUUC2000000999G2000000999AUUCCCCGACGGGGAGCCA
2145 tdbR00000692  SO:0000263 tRNA  Ile  IAU  Homo sapiens  Cytoplasm  GGCCGGUUAGCUCAGUCGGCUAGAGC2000000999GUGGUGCU2000009551AAUAACGCCAAGGUCGCGGGUUCGA2000000999UCCCCGUAC2000000999GGGCCACCA
2146 tdbR00000693  SO:0000263 tRNA  Ile  IAU  Homo sapiens  Cytoplasm  GGCCGGUUAGCUCAGUUGGUUAGAGC2000000999GUGGUGCU2000009551AAUAACGCCAAGGUCGCGGGUUCG2000000999A2000000999UCCCCGUAC2000000999GGGCCACCA
2147 tdbR00000739  SO:0000268 tRNA  Pro  ѴGG  Homo sapiens  Cytoplasm  GGCUCGUUGGUCUAGGGG2000000999UAUGAUUCUCGCUU2000000999CGGGUG2000000999UGAGAGGUCCCGGGUUCAAAUCCCGGACGAGCCCCCA
2148 tdbR00000820  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAACGGUAGCGCGUCUGACUCCAGAUCAGAAGGUUGCGUGUUCAAAUCACGUCGGGG2000000999UCACCA
2149 tdbR00000822  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAACGGUAGCGCGUCUGACUCCAGAUCAGAAGGCUGCGUGUUCGAAUCACGUCGGGG2000000999UCACCA
2150 tdbR00000824  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAAUGGUAGCGCGUCUGACUCCAGAUCAGAAGGUUGCGUGUUCA2000000999AGUCACGUCGGGG2000000999UCACCA
2151   mRNA  unknown    Homo sapiens    AAAAAAGAAAAAAGCCAAAUGUGGUUGCUCACACCUGUGAUCUGAGCACUUUGGGAGGCCAAGGUGAGAGGAUCGCUUAAGCCUAGGAGUUCAAAACCAGCCUCGGCAACAUGGUGAGAACCCAUCUGUACAAAUCAUUUAAAAGCUAGCUGGGUGUGCUGCUGCAUGCCUGUGGUCUCAGCCACUUGGGAGGGUGAGGCAGGAGGAUCGCCCGAGCCUGGAAGAUCGAGGUUGCAGUGAACCAUGAUUGCACCACUGCACUCCAGCCUGGACAACAGAGCAAGACCCUGUCUUAAAAAAAGAAGAAAGAAAUGUGGAGGGUUUCUUACUCGUCAGCUGUAGCCUUUGCUGAUAAGAUGCCCUUGUGUCUCUGCAGUGUGUGAUCCAGUCUUGGGUGACAAGUGGGACGGCGAAGGCUCGAUGUACGUCCCGGAGGACCUCCUUCCCGUCUACAAAGAAAAAGUGGUGCCGCUUGCA2000000090GACAUUAUCACGCCCAACCAGUUUGAGGCCGAGUUACUGAGUGGCCGGAAGAUCCACAGCCAGGAGGAAGCCUUGCGGGUGAUGGACAUGCUGCACUCUAUGGGCCCCGACACCGUGGUCAUCACCAGCUCCGACCUGCCCUCCCCGCAGGGCAGCAACUACCUGAUUGUGCUGGGGAGUCAGAGGAGGAGGAAUCCCGCUGGCUCCGUGGUGAUGGAACGCA2000000009UCCGGAUGGACAUUCGCAAAGUGGACGCCGUCUUUGUGGGCACUGGGGACCUGUUUGCUGCCAUGCUCCUGGCGUGGACACACAAGC2000000006ACCCCAAUAACCUCAAGGUGGCCUGUGAGAAGACCGUGUCUACCUUGCACCACGUUCUGCAGAGGACCAUCCAGUGUGCAAAAGCCCAGGCCGGGGAAGGAGUGAGGCCCAGCCCCAUGCAGCUGGAGCUGCGGAUGGUGCAGAGCAAAAGGGACAUCGAGGACCCAGAGAUCGUCGUCCAGGCCACGGUGCUGUGAGGGCCCCGCCGCUUGCCCGUGACACGCAGCGCGUUGGUGUCUCCGUGUUUGUCCCUGUGAAAACAUGUAACGUCUGCCUUAGAGCCAUGACCGAA2000000006ACUUGAUAUUUUUUU
2152   mRNA  unknown    Homo sapiens    AAAAAGUUCGCGCUGCUGGUCCCGCGCGGGCGGCCCCUGGGCUUUGUGUCCACCAGGACAGCGGGCCGGGCUCCCUGCAGGCGCGGGCGGCGCCGAACGGUGCUCAGCAACCACCCGGACAGGGCCAGGCCGUUUUCUCCCGCUCAGGCAUUAGUCGUUGGCUGUGGGCCGCCGCGGGAAGUUGAGGCCUACCACGGAGGAGGCUGCUGAGGUGGAUCUCAGGGGAUCCGCAAGGGCUCCCUCACCCUUGCCGGGACCCUGGGAACCCGAAACAAAAUCCUACGCCACCAGCCCGCCGAAUGCGCCCCCUCGGCCGGGGGUCCUGGGUCUUCAGAGAAGAACUCGGCCGAAUGCGGUCAGAAAGCCCGCGAACCGCCUGGACCUGCAGGCCCCGCCGCUUGGAGCUCCCGCCUUUCCCGACCGAGCCCGUGUCUGCUCGUGUGUCUCACUGAUGUCUUAGGUCUCAAAAAAAAAAGAAAAGAAAAGGUUUUUAGUAGACAGAAGAGAAAUGGGGCCGUGGGUUCGUGGUCCCAGGGGGAAACUGACGUCGCAUGAGGUCGUCGUCCCUCAGCUUGAGCUCAGCGGAACAUAAGCUUGCAGAGGUGGAAACCACGGAAGGUUUGGGUGUCUUGGAGCUCUCUGGACACCGAAGCCCGG2000000006ACACAGUCCCGGGGUCCGCACCGCCUGUGACCUGUGGCGGG2000000006ACCGCCGGGGUGGGCGUUUUCUCAGCUGGCGCGCGCGUAGGUGGA2000000006ACUUGGGAAACUA2000000006ACUGGAGCGAAGUGGCAAAAAACCAAGACAGGGCCGGUGACCUCGCGCAGGCCGUCCUUA2000000006ACUGUGGAGUAUUCCUUCAGCUAACCCCUUUAUUUCAUGUGUCCAAGUCUGGUUUCUGGGUUUCUUUGUAGUCCUCCGGGCCUGUUCGUGCGCCUUCACUUGCAAAAGGUUCGUCGUGGAGGGCCGUGUGCUUGUUUGCAGCAGUAACGAUGCCCUUCCCGAGCGUGCUGGAGUGGCUCCUCGCUGACGCAAGCUCACCUUGCAGCCUCCUCAGCAACUGCAACUUAAACGCGCCCUCAGGAAGCCCUGGAAUCUCGCUCAGAAUUUUUUUUCUUUUUUUGAG2000000006ACAGUCUCGCUGCGACGCCCAGGCUAUAGCGCAAUGGCGCGAUCUCGGCUCCCUGCAACCUCCCUCAGGAAGCCGUGGAAGCUCGACCGCCAGAA2000000006ACUUCCUUCUCCUGACUCAGGCCACAGUCUUCUGUGUGGCUGGUCUCCAGGAGGUAAGGCCCGCCCUGCAGGCAACACCGGUGCUUGGGCUCCUGCUGAGCAGUUCUUUCCUGCGAGUAACAGAACCAGGGAGGGAGGUGGGCUGUGGCCUCCCCUGCCCCUACAGUCGUCUCCUGCAGCUCCCACCAUGCUGGACUCAUCAGCAGCAGAGCAAGUGACCCGACUGACGCUGAAGCUCUUGGGACAGAAGCUGGAGCAAGAACGGCAGAACGUGGAAGGGGGACCUGAGGGCCUCCACCUCGAGCCAGGAAAUGAGGACCGGCCGGACGAUGCCCUGCAGACUGCUCUGAAGAGAAGGAGGGACCUUCUGCAGAGACUCCGGGAACAACACCUCCUGGACGAGCUCUCUCGGGCCCAGGCCUGGAGCGGGCCAAGCAGAGGAGCCCUCGGGUCAGCCCUGCCCCCAGAGCUGCCCCCCACGGGCAUCCUACCCACUGCCUCCCCAUCCCCGCUGGCCCCAGACCCGCCAAGGAUCAUCCUGCCUACGGUCCCCCAGCCUCCUGCCACCAUCAUUCAGCAGCUCCCUCAGCAGCCACUCAUAGCACAGAUUCCUCCUCCCCAGGCCUUCCCUACUCAACGGUCAGGAAGUAUUAAGGAAGACAUGGUGGAGCUGCUGCUGCUGCAGAACGCACAGGUGCACCAGUUGGUCCUGCAGAACUGGAUGCUCAAGGCCCUGCCCCCAGCCCUGCAGGACCCGCCACAUGUGCCCCCGAGGGUCCCACGAGCUGCCAGGCCAAGGCUGCCUGCCGUGCACCACCACCACCACCACCACCAUGCUGUGUGGCCACCUGGGGCUGCCACUGUCCUCCAGCCCGCCCCCAGCCUGUGGACGCCUGGCCCACCCUGAGUGUGAGUCACAGAGACCCUGGCCGGGGCACCCUCCACCCCCAGGCUUCCUCAGGGCUGUGGGCUGUGGCGGGACUAUGGAAGGGAGCAGGGAGAGACCCUGCCACCACCCGGAGUGGCUACGCGAGUGUGGACUGCAGGCUCCUCCUGGGGAAGCUGGGCAGGCUCGCUUUCUGGUCACGGGGCCAUUCCAGGGGGCAUCCCUUGCUCCGGGUCCCCUGCAGUGAGGGGCCUGUGAACCCCACCAGGGCAACAGCCCCUCCCAGGGACCCCUCCUUUCCUGUAGGGCGGCGCCGGCCCACCUGGGAGCCUCAGAUCCCCCUCUUCCAUCACGGAGGUAAAGUUGAGGCCGUGGACGCCACCAGCCUGAUGAAAUAAAGAUUUCAUCCAGAAAGAGUUUAAGAAAAUCUCAGCUCAGGAGCCAGAACAGAAAAGAUCAAUAGCUUUAGCCACAUGGAAGUGUGAACAUCCUGAUGGGGAAAAUACCACAAAGUCUAAUUUAAUAACUAGGGACACCUGUGUCCACAGCUGUGGCACAGACUCCCACUAAAGAAGUAGGGGUGCAUGGCUCAUGCCUGUAAUCCCAGCACUUUAAGAGGCUGAGGCAGGAGGAUCACUUGAGCUCAGGAAUUCGAGACCAGCCUGGGUCACAUAGCAAGACCCCGUCUCUACAAAAAAUAAAUUUAAAAAACUAGCCAGGUGUGGUGAUAUGCGCCUGUUAUCUCAGCAGCUCUGGGGGCUGAGGUGGGAGGAUUGCUUGAGCCCAGGAGUUAGAAGCUGCAGUGAGCUCUGAUGGAACCACUGCACUAUAGCCUGGACCACAGAGCAGGCCCCUGUCUCAAAAAUAAAAUAAAAAAGUGAAAGAAGCAA
2153   mRNA  unknown    Homo sapiens    AAAAAUAACUCAUAUUGUCUCUGAGGUUCUUUUCCAGUGAAGUGUUUAGUAUUGCUGCUAUUUGGAGUACAAAGUUGGAGCUUUUAAAGAACCUGGGAGUUCAAAAGUAUAAGGAGAAAUAAAUGAAAAGCAGAAAUAUUUUGAGGCAAUAAGUAUAGACUCAAAUCUAUAUUAUGACCCACUUGUAGCACCACUUGGAAUUCUACCAAUAAGAGAUUUAUUUGGGCAAACUAUAAUGGUUGUUGGAAAUUGCAAAUCUUAGUGUGAAUUAUUUUAGUCCAGUUGGUUUCUUUCUUUCUCUUACCUGAAAUGAACUAUACUGAGGCAAUAGGAGCUUUGUAUAGUAAUUUAGGAGUGUAAAACAACUUAGGGAAAAGGAUUAUUAAGCAGGAUGAUUGGGAUGACAUCAUGUGAAAUUUAGGAAUUGGAGGCAUUGGGAAUUGAGAGGGUGCUAACAAAGGAAAACAGCUUAUUUUAGAAUUUGUCUGGAGGAUGUAGAAUUGAAGAAGUUUUGGUAUUUCUUCUGCAGCGGCCCCAGUGCCCUUGACCAGGAACAUCUCUUGGAGUCAGUAGUUUUCAUGAGGCUGACCUAGGAACUUGGCCAACAUAUGCAACAUUGUUCUAUUUAAAAUAUUCCUUGAAUUAAAUUCGAUAGUAUCAAUUUAAAACAUAAAGUUUUCACUCAACUCCUUUAGAAGUUAGAUUUUAGCUUGUACUUGUCUUUACCUCUUCUGCUGAUUAUCAGUUGACAACACUGAGAUUACUUUCAUUUUCCUGUAAGUCAUUAUGAAUUUUUCUGGUCAACCAUGAGUUAUCAGUGGAAGCAAUAAGUAGGAAGUACUGUAAAAGAAUUACAAUAAAAUAAGAGAAACCACUUGGAGAGCAAGAGGGCUUGUGGACUUGGGGGAGCGGUUGUGAGAAAUGUCUCAGAACUUAAUUUACAAAUAACAUUGGUAGAUUGACAUGUUGUCUUUCCUAUAAAGUAACUUUACCUCUGUCUUAAUAGUAAACUACUAUGAAAGUGAAUUCGUGUUCCUCUUGAUUUGUGAACUGAUGAAAAUUACAAAAUGUGGAGUUUUUUCCCCAGAUAAAGUAAAUGGUGGAAUAUUCAGGUUUAUUUGAUACCUAGAAAAUACCUGAAAUUUUCCGUGGUAAUAGGCACAUUUUGAAACUGUUUUUUUUUUCUCUGACAAUUGAAUAUAUUUUAUAUAUAGUUGAUUUUGAUUAUUGAAGACUAAGGAAAAUUUAAGUUUGAAUGUUAGAAAAUGAAUUUUGCAAAUUUGAAGUAAUUUUAUUCUUUAUGUUUUGGGAUUGUAGUUAUGUUAGAUAUUCCUCAGUUGGGGUAAUUGUCUUGCAUCAUUAUCUCUUAUCAUAAUCUGUUUUUCUUCACACAGUGUUAUAGUUUUGCCGCUGGACUCUUCCCUCCCUUCCCCCACCCCAUCAGGAUGAUAUGAGACUUGAAAGAAGACGAUGCAUACAGGAGGAGAGACUUCAGCAUGCAAACCUUCAUCUGUUCGGCUUGCACCGUCAUUUUCAUUCCAUGCUGCUGGCCUUCAGAUGGCUGGACAGAUGCCCCAUUCACAUCAGUACAGUGACCGUCGCCAGCCAAACAUAAGUGACCAACAGGUUUCUGCCUUAUCAUAUUCUGACCAGAUUCAGCAACCUCUAACUAACCAGAGGCGGAUGCCCCAAACCUUCCGUGACCCAGCAACUGCUCCCCUGAGAAAACUUUCUGUUGACUUGAUCAAAACAUACAAGCAUAUUAAUGAGGUUUACUAUGCAAAAAAGAAGCGAAGACACCAACAGGGCCAGGGAGACGAUUCUAGUCAUAAGAAGGAACGGAAGGUUUACAAUGAUGGUUAUGAUGAUGAUAACUAUGAUUAUAUUGUAAAAAACGGAGAAAAGUGGAUGGAUCGUUACGAAAUUGACUCCUUGAUAGGCAAAGGUUCCUUUGGACAGGUUGUAAAGGCAUAUGAUCGUGUGGAGCAAGAAUGGGUUGCCAUUAAAAUAAUAAAGAACAAGAAGGCUUUUCUGAAUCAAGCACAGAUAGAAGUGCGACUUCUUGAGCUCAUGAACAAACAUGACACUGAAAUGAAAUACUACAUAGUGCAUUUGAAACGCCACUUUAUGUUUCGAAACCAUCUCUGUUUAGUUUUUGAAAUGCUGUCCUACAACCUCUAUGACUUGCUGAGAAACACCAAUUUCCGAGGGGUCUCUUUGAACCUAACACGAAAGUUUGCGCAACAGAUGUGCACUGCACUGCUUUUCCUUGCGACUCCAGAACUUAGUAUCAUUCACUGUGAUCUAAAACCUGAAAAUAUCCUUCUUUGUAACCCCAAACGCAGUGCAAUCAAGAUAGUUGACUUUGGCAGUUCUUGUCAGUUGGGGCAGAGGAUAUACCAGUAUAUUCAGAGUCGCUUUUAUCGGUCUCCAGAGGUGCUACUGGGAAUGCCUUAUGACCUUGCCAUUGAUAUGUGGUCCCUCGGGUGUAUUUUGGUUGAAAUGCACACUGGAGAACCUCUGUUCAGUGGUGCCAAUGAGGUAGAUCAGAUGAAUAAAAUAGUGGAAGUUCUGGGUAUUCCACCUGCUCAUAUUCUUGACCAAGCACCAAAAGCAAGAAAGUUCUUUGAGAAGUUGCCAGAUGGCACUUGGAACUUAAAGAAGACCAAAGAUGGAAAACGGGAGUACAAACCACCAGGAACCCGUAAACUUCAUAACAUUCUUGGAGUGGAAACAGGAGGACCUGGUGGGCGACGUGCUGGGGAGUCAGGUCAUACGGUCGCUGACUACUUGAAGUUCAAAGACCUCAUUUUAAGGAUGCUUGAUUAUGACCCCAAAACUCGAAUUCAACCUUAUUAUGCUCUGCAGCACAGUUUCUUCAAGAAAACAGCUGAUGAAGGUACAAAUACAAGUAAUAGUGUAUCUACAAGCCCCGCCAUGGAGCAGUCUCAGUCUUCGGGCACCACCUCCAGUACAUCGUCAAGCUCAGGUGGCUCAUCGGGGACAAGCAACAGUGGGAGAGCCCGGUCGGAUCCGACGCACCAGCAUCGGCACAGUGGUGGGCACUUCACAGCUGCCGUGCAGGCCAUGGACUGCGAGACACACAGUCCCCAGGUGCGUCAGCAAUUUCCUGCUCCUCUUGGUUGGUCAGGCACUGAAGCUCCUACACAGGUCACUGUUGAAACUCAUCCUGUUCAAGAAACAACCUUUCAUGUAGCCCCUCAACAGAAUGCAUUGCAUCAUCACCAUGGUAACAGUUCCCAUCACCAUCACCACCACCACCACCAUCACCACCACCAUGG2000000006ACAACAAGCCUUGGGUAACCGGACCAGGCCAAGGGUCUACAAUUCUCCAACGAAUAGCUCCUCUACCCAAGAUUCUAUGGAGGUUGGCCACAGUCACCACUCCAUGACAUCCCUGUCUUCCUCAACGACUUCUUCCUCGACAUCUUCCUCCUCUACUGGUAACCAAGGCAAUCAGGCCUACCAGAAUCGCCCAGUGGCUGCUAAUACCUUGG2000000006ACUUUGG2000000006ACAGAAUGGAGCUAUGG2000000006ACGUUAAUUUGACCGUCUACUCCAAUCCCCGCCAAGAG2000000006ACUGGCAUAGCUGG2000000006ACAUCCAACAUACCAAUUUUCUGCUAAUACAGGUCCUGCACAUUACAUG2000000006ACUGAAGG2000000006ACAUCUGACAAUGAGGCAAGGGGCUGAUAGAGAAGAGUCCCCCAUGACAGGAGUUUGUGUGCAACAGAGUCCUGUAGCUAGCUCGUGACUACAUUGAAACUUGAGUUUGUUUCUUGUGUGUUUUUAUAGAAGUGGUGUUUUUUUUCCAAAAACAAAGUGCAAAGCUGCUUGAAUCAGGAGGAGAUUAACACACUGAACCGCUACAAGAGGGCAAAGCUGAUUUUUUUUUUAACUUGAAAAGAUUGCAAAGGG2000000006ACAUUGAAGUGUUUAAAAGAGCCAUGUCCAAACCCAUCUUCAUGGAUAGCUCAGAGGUAUCCUCUUUUUGCUCCCCCAUUUUAACUUGCCACAUCCCAGUCACAGUGGGGUUUUUUUGUCUUUCUAUUCAGCAAAAGUUAAUAUUCAGAUGUUGGUCUUGGUCAUUUGCCAACUAAUUUUAAAGUAAAAGGCACUGCACAUAAUUUGCAUAAAGGGCCCCAUGAGGGUGUUUUUUUUUUUUCUUUUUGUCCCCCCCAUCCCCCUUUUUUUUUGUUUUGUUCUGUUUUGUUUUGGGUGGGAGGGUGGGAAAUUUGGGUUUUUAAGUCCUCUAAACACACUUGGGCACGGAAAUGCAGUACUGUAAGGAAGAGGGACCUCCAGCUUCCACAAACACCAUCUUCAGCUGUAUGAAAGGG2000000006ACGGUUGUGGUGAAGUUUGUCAGGCACAGUAAGCAUGCUGAGUGGCGGGGAUCAGA2000000006ACUCUCCUAUCUGAACCUACUGAGGAGCAAAGCAGCAAUUACAUGGGAUCCUGUGGCUCUCCCGUUGCAGAGGCCACAGGAAGAUAGGAUGGAACGUG2000000006ACUGGUCUCCUAACCAAGGUGCACUGAGAAGCAAUCAACGGGUCGGUCGUGGCCAGUCCUGGGGAGGUCUGAGUGGUGGUCUUUGGGAUAACCUUUGGCCUUAUGG2000000006AUUUGG2000000006ACUCGAAAUUAGAAGAGCCUACCAUUUCAGAUGCAAUCACUUUUGG2000000006ACAUGCUUUUGCAG2000000006ACAGUCCUUAAUGCUGAAAACACAGAGAAUGGGUAAUUCAAGAGGCCUUUCUUUUAAAAUAG2000000006ACUUUUGUGACCCACUAAUUGUAAGGUAUUGCAAGGUCACUUUGCGUGUGUCAUAAAGUUGACUUCCUUAUUGGUUGAAGGUCACAGAAGUAGUGGUUUGCUUUGAUGGAAAUAGCUACAGCUGUGU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CAACCUGCUUUCCUGCUGCUGUUAUCACAUCCUUCCAGGGCUAUCGGCUGUUCAGGAACAGGAGAGCUCUGGAAGAGCAGGGACGACUUUGGCUUCUGUUUCCUGCCCAUUGCAGAUUAGGCAUCAGCAAGGUACCCUCCUGUUUUUGUAUGGCUCACCAAACUAAGGGUGAUUUUCACAUUUUACAUGGCUGAAAAACAUCAAAUGAUAUUUCAGGACAUAGGGAAAUUAUAUGACAUUUGAAUUUCAGUGUCCAUAAAUGAAGUUUUAUUGGAACAUAACCACAUUCAUUUGCAAGUUGUCCACGGCCACUUUGGUGCUACUGUGGCAGAAUUGAGUAGUUGCUGCAGAGACCGUAUGAUGAGAAUAUGUGGCAUUCUCAUCAUUUUGCCCUGCCGCUCUGUGCAAUGUAAAUUGCAGUGACACAGUUAUAACUCAGCAGCAUUUUGAAUGCCACUUGUAUUCCCAUGCUACAACAUUUUAUUUUUUAUUACCAAUAUAUACAAGAAAAGUGGAUUUCAAAUAUCAUUGUGCUUUUAAGGUACAAUGGAGUAUGAAUUGUUACUGAAUUAGGCAGCAAAGUGCAAUGACAUGGUAGCUGUCCUAAGGAACACAAUACAACCAGGUGCAGUGGCUCAUGCCUGUAAUCCCAACGAUUUGGGUGGCUGAGGUGGGAGAAUCACUUGAACCCAGGAUUUGGAGACCAGCUUGGGUGGUAUAGUGAGACCCCCCAUCUCCACAAAAAGUAAAAAAAAACCAAAAUACAUGUUGUUACUUCCCAUCUUAGCACUCAUCAAGAUAUUUCUAAUUCACAAGAAAGCAAUGGUCAGAAAAAUUAGAAAAUUUAAAAUUGAAUAUCUCAUCACAGAAUUUAUUCACAAAAAUAAAAAAUGAAAAUGAAGCUACAACCAAAGUAAGUUUCAGAUGGCUCAUUUGUUAGCCAAGCAAGGAAAGUCACUUAUGGUGAAUUAAUUAAAUCAUGCUUGAUUACUGCAGCUGAAGAAACAUGCUCAGAGAAAGUAAACUUGUUUAUUGGCCUUUCCACGACAACAGUUGCUCAAAGAGUUGACAUUAGGAAUGACAUCAGUAGUCGACUAAAAAGGCAAAUGGUUUUGAGUGGUUUCCCCUGACUCUCAUGACAGGGGUCACCAUAUGUUAUGCACACUGCUCCGCUAUUGCUCUUUAUUUGAGGAGCCAGUACCAAGUUGGAAGUAACUGAAGAAUUGGCCUCUAUCAAUAGUCUUAUGUGGAACAACUACUGGCAAAAGUAUUUUCAAAGCUGAGAAAACUGGUCAGGUGUGGCGGCUCAUGCCUAUAGUCCCAACACUUUGGGAGGCCAAGGUGGGCAGAUCACCUGAGGUCAGGAGUUUGAGACCUGCCUGGCCAACAUGGUGAAACUACAUCUCUACUAAAAGUACAAAAAUUAGCCGGGCAUGAUGGCAUGCACUGGUAAUUCCAGCUACUCAGGAGGCUGAGGCAGGAGAAUCGCUUGAACCCAGGAGGUGGAGGUUGCAGUGAGCUGAGAUUGCACCACUGUACUCCAGCCUGGAUGACAGAGUGAGAACAUUGUCUCAAAACAAAAAGUUGAGAAAACGAAUUCAGUACACCCUGAAGUGGAAUCUGCUAAGAUGUGUUAUGACUGUUGGUAGUGGAAAUAUAUGUGUGUAUUAGUCCAUUUUCAUACUGCUAUAAAGAAAAGCCUGAGACUGGGUAAUUUAUAAAGAAAAAGAGGUUUAAUGGACUCACAGUCCCGCAUGGUUGGGGAGGCCUCACAAUCGUUGUGGAAGGUAAAGGAGAAGCCAAGGCAAGUCUUAGGUGGCGGCAAGCAAGAGAGUGUGUGCAGGGGAACUGCCCUUUAUAAAACCAUCAGAUCUCAUGAGACUUACUCACUAUUAUGAGAACAGCAUGGUAAAAUCCUGCCUCCAUGAUUCAGUUACCUCCCACUGGGUCCUACCCAUGACACGUGGGGAUUAUGGGGGCUACAAUUCAAUGAGAUUUGGGUGGGGACACAGCUAACUCAUAUCAGUGUGGAAUAGAAAAUGGCUCAGUUGGACAACUUACAAAGCUUGUAAUAAUAUAAGGUGUUAAAGCCUAUAGAUUAUUCAUUGUAUUAUUUAAGUCAACAGAUACUUUGUGAGAAAUAUUUGAAUCUAUCAUGCAUUAUUGAACCAGUAUUGUCAAUAGUGAACUUCCUUUAGCUCUUGUGGACUUCACUAUCAACAGCUCUCAUGAAUUUUUGUCAGAAAUAUUAGCUGAAUAUCCCGACAUGGCCUGUAAUACAGCAGUUCAAUGGUUUAGUAGUGGUAAAGUUUCAUUUAAGUUUUGAGCUCAGGACAAAGAUUGAAAUUUUUCUGAAUGAGAACUGCCCCGAACCACCGUUACUAAACACUGAAUAGUUUUGGAAAUUCACUUUUGCUGCAGACUUGAUAGUGUUUCUUAAGGAAUUCAGCCUAAACCACAAGAUAAAAACAGUGUUUAUGUGAAACUCCUACUGUGUUAAGUGAUUUCAAGAAGAACUAUUGUUUGAAUCACAACUAAUGUUACUGCUUUAAGCUCUUCCCAUGUUGUUAAAAGUUAAAAAAAGAAGAGCUCCAUUCCCACACACAUUUGCCACAGAUACAUUAUCUGAGCCCAAACUACAGUUUGAGCAGUGUGUUAGGGACCUCAAUGCAAACCCAAAAGAAAUUUUUAUAUUUCAGAAUCCAUUGAUCUGCAUUUGAGAAGUGAUUAAUGUGUUGAAAGGCAACUAUCUAAAGAAAAAUUUAAUAGAGUCUAAUAGAAUCUUAUAAAAAUGUAUAAAUGUGUUUUAUGUAAUAAAUAUGCUAAGCUAAA
2154   unknown  unknown    Homo sapiens    AAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCCAAGAUCUUAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCGUGCGCAAUCACUAACACACAGCCAUUCUCAUAAAACACUAGAGCACGCUGCGCAAUCACUAACAUGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCAGUAACACGAGGCAUUCUCAUAAAACACUAGAGCACGCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGUGCAAUCACUAACACAAGGCAUUCUCAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCAGUAACACGAGGCAUUCUCAUAAAACACUAGGGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCCAAGAUCUUAUAAAACACUAGAGCACCCUGCACAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCACAAUCACUAACACAAGGCGUUCUCAUAAAACUCUAGAGCAGCCUGCGCAAUCACUAACACAAGGCCAAGAUCUUAGAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAAGCAUUGUUAUAAAACACUAAAGCACCCUGCGCAAUGCCAAUACAAGGCCAUUCUCAUAAAACCCUUCUGUAUGGGCGAGUGUUUUUGUGCUUGUGGAGAGAAAAUUGAGACAUCAGAAUUGAGAGGUUGUCCCUGAGUGGUGGAGUUGUGUCUCAGCGUGAAGUUCCCUGGCGUGAGCCUGUUCAGUGCCCCCUGGGGGCCCCUCAACUGCACGUUGGGUCCUGCCUUUAUCCAGCCCACGUCACCUGCCUACCUUCCUCCCCUGCUCCCCAGAGUGGCGCGGGUUGCCACACGGGUCUGCUUUGGGUUGGCCGGGCGUGCCAGCCUCCUCUGCCCCUGGACUGCAGAAGUGUACUGUCCAUCUCUUUCCUGGGGAAUCUCUGUCCAGUAUAUGCUUUACCAUUUUUGGGAUACUCUUGCUCCCCAAGACUGGGCCACAUGCCCUCAUCUGGGUUCUCAGAACACCCCACACUCUGCCUGCCGCCCACCAACUCGCUGGGCUGUGGUGGCCUCUGUCCCAUGCUCCACAGUGAGCCCUCAGGACUGAGUUAAGUGCCUUUAAAAAUUACUUGUCUUGUUCCCAUUUUGAGGGGCAACCUUUGUUUAAAGGGCAUUCAUAGGGUCCACCUCCCCAUCAGUUUUUGGGGUGAAACAGACCGUGGACUCUAUUCUUGCUUGCCCCUGACCCCCCAGAGCCCCCCAGACGUGAGCUGAUGUGAGCACUUGCACCAGGAGGAAGCUGGUCCCCCUUUGGCCUCCUCCCUGUCUCCCUCUCUGUGGACCACAUACAUAAUUACGUGCCACACGUUUCCCUUCGCUCCGGGGAACACGGGUCCUGUGCCGCCUGGUGGGGCGCUGACAGCCGUCAGAGCAAGGUGUCUGGGCUGGUGAAACAAACACACUCCCCAGUUCUCCCCUGGCGAUCAUCCCCCACAGUGGCCGUUCCCUAGGGCAGUGGCUGUUCCCAAGGCGGUGGCCGUUCCUCAGGGCAGUGGCCCACAGCUUGUCUUAUUUCUCUAAGCAUUUUGGGGUCCUUUAGCUUCUGAGGAAUGUCCUCUCAACUUUCCUCACGUGGCCGUCUGUUGGGGAUGCUUGCUCUUGGAUGUCCUGAAUCAUCUGAGAGGCUUUGUCUAAAGACCAGGCUUGGGUUUUCUUUCCCAGACUCUCUCAAUCAGAGUCGCUAAGGGCCGGCCUUUUCGUCUUCACCCUCUCAAGUUCCACAGACUGUCCUGGGAGAUUCAGCCUCCUCAUACAUAAAAUAACAGAUUUUAACAGGAUUAUCUGUACGCCUCCCCCCGGGCUCUAAUUAAACCUGUUUCCACCACAAGGCCACCUACCGUGCACCUCCUGAUCCUGGGAAUGUCACGAUGAUGGCUAUGCUGGUUCUUUUUCCCUAGUAAUCAGGGAACUGGUUAUUUUGUUCAUGCACUUUGUGGAAAUUUGUUGAGCCCGCACUCACUUACAAUUUGUGUUUUUCUGUCUAUGAGUUUGAUGUCAAUCAAAAGUGUCCUUAAAAUAAGCAACAAAACAGUGACACUUCCUGGUCUUGUCCCUGGACCUGGGGAGGGACCCUCCCUACUCUGGGAGGCUCUGGGGGGUUAAGGCCCCUCCCUUGGAAGGUGGAGUCUUAGAAUCCGUGGGCACGAGUGGCCGUGCGGGAGCAAUUGCCACCUCUGGUGUUGGUCUAUUAAAGCAUCCGCUUCUGGCUCCCGUGAGGCCAAUCCAUGAGCCAGGACUGACUGAGUACUUAUCAAAUAUUUUAAAAAGUCAAGGCCGGUCGCAGUGGCUCACGCUUGUAAUCCCAGCACUUUGGGAGGCCGAGGCGGGCGGAUCACGAGGUCAGGAGAUCGAGACCACGGUGAAAGCCCGUCUCUACUAAAAAUACAAAAAAUUAGCUGGGCGUGGUGGCGGGUGCCUGUAGUCCCAGCUACUCAGAGAGGCUGAGGCAGGAGAAUGGCCUGAACCCGGGAAGCGGAGCUUGCAGUGAGCCGAGAUCGCGCCGCUGCACUCCAACCUGGGCAACAGAGUGAGACGCUGUCUCAAAAAAAAAAAAAAAAAAAAAGUCAGGUAAGCUCUAAUUUACCUUUCUGUUGUUAGAGAUGGGGUCUCUCUGUUGCUCAUGCUGGAGUGCAGUGAUGUGAUCACAGCUCAUUGCGGCCUUGAAGUCCUGGGCUCAAGUGAUCCUCCCACCUCAGCUUCUCGAGUAGCUGGGACUACAGGCACACACCAUCAUGCCCGGCUGGUUAUUUUAUUUUAUUUUAUUUUAUUUUAUUUUUGUAGAGACAGGGUCUCGCCAUGUUGCCCAGGCUGGUCUUGAACUCCUGGACUCGAGCGAUCUUCCUUCGGCCUCCCAAAGUGCUGGGAUCACAGGCAUGAGCCACCGUGCCUGGCAUCAGCUCUCAUUUGAAUUAGUCAAGUUUUGAAGAAUCACACUCAUUUUGUCCGAGCACGGCAGUUCUGUUGUCUUUUACGCUUGGCUCGUCUGUGUCCUCCUUGCCAUUGGUCCUGAUUUCAGUUACCAUUUCCUCUCUCAUUGUAAUAUCACAUGUGCUGCCUAAGAGCUUCCUGGACUAAGGGAGGUGUGGAUACAUUAAUGCUUUAAAGAAAUUCCUAUCGUUUUUCUGCUUGUCCACAUGUGGGUUCCACUUUCUGUCUGUGUUUUCAGACAGCCUUUCCCACAUCUCAUGUUUUUUUGAUAUGAAAUGUCACUAUGGAAGCAUAAACUUUCCAAGCCACACUUUGCUGGCCGAGGCUGGGGAUGAGCGUUCAUUGUCUGCUGUCUUCUUGCAAUUCACCUUCUCCUGAAGGCCCUACAGUGCCUGGAACGUGUCAGGGAGAAGACAUGCCCUGAUGUGGACUUACAACACUCAUUAAACGUAGGAAGUUAUGUGCGCCUUUCUCUGCAGGGAUUAAAGAUUUCAUGUGUGAAUUGUGUGGGAAGACAUUCAGCGAGAGGAACACCAUGGAGACCCACAAGCUCAUCCACACAGGUGAGCGGCGCAGCCUGAAGGAGCCUUCGGGGCGCACGCGGCAGGCUGCCGGGGCUGUCUGAGUGCCUGCUGGGGUGGAAACGACUAUUCUAUUAUCUAGACGGUUCCAGCACAUUUAGUGUUGUCUUGGCUUCAUGGUGGCCCCUUGGCCUCUGAAGGUCAACCCGCCACAGCUUUCAAGUAUCCCUUCUUGAAUUUUCUCAUAUUGGUUCCGUGAUGCAGCUGCUGCUGGCAGUGCUCCCCAAGGGACAGAGGCUCUGUGCUCAUGUGUGCUCGGGGACCAGCACCGGCCCUCUCAGGAUGGGCGGGGCGUGACAGGCUUCUUGCCUCGUCCAGCAGGCCAGGGUCAUUGGGAUGGCUGCACUAGUGACCUGCGUGUCUCUUCCUUUCCACGCGCAUGUGUGUCUGCGUGUGUGUGAAAAGUGGGCAAGCAGUGGACGUGCUCCGUGUGCGACAAGAAGUACGUGACCGAGUACAUGCUGCAGAAGCACGUUCAGCUCACACACGACAAGGUGGAGGCGCAGAGCUGCCAGCUGUGCGGGACCAAGGUGUCCACCAGGGCCUCCAUGAGCCGACACAUGCGGCGCAAGCACCCCGAGGUGCUCGCGGUGAGGAUCGAUGACCUGGACCACCUCCCGGAGACCACCACCAUCGACGCCUCCUCCAUUGGCAUCGUCCAGCCUGAGCUGACUCUGGAGCAGGAGGAUUUGGCCGAAGGGAAGCACGGGAAAGCUGCCAAGCGAAGUCACAAGAGAAAGCAGAAGCCAGAAGAGGAGGCGGGUGCUCCGGUGCCCGAGGACGCCACCUUCAGCGAAUACUCAGAGAAAGAGACGGAGUUCACAGGCAGUGUAGGCGACGAGACCAAUUCCGCAGUACAGAGCAUUCAGCAGGUAGUGGUGACCCUGGGUGACCCAAAUGUGACCACACCAUCGAGCUCAGUCGGCUUAACCAACAUCACCGUGACCCCCAUCACCACUGCGGCCGCGACUCAGUUUACCAAUCUCCAGCCGGUGGCCGUGGGGCACCUUACCACCCCUGAACGCCAGUUACAGCUGG2000000006ACAACUCAAUCCUGACCGUGACCUUUGAUACCGUCAGCGGCUCUGCCAUGUUGCACAACCGCCAAAAUGACGUCCAGAUCCACCCCCAGCCGGAAGCCUCGAACCCACAGUCUGUGGCCCAUUUCAUCAACCUGACGACCCUGGUCAACUCCAUCACGCCCCUGGGGAGCCAGCUUAGUGACCAGCACCCGCUCACGUGGCGGGCAGUGCCCCAG2000000006ACUGACGUCUUGCCACCCUCGCAGCCGCAGGCACCCCCACAGCAGGCGGCCCAGCCCCAGGUGCAGGCGGAGCAGCAGCAGCAGCAGAUGUACAGCUACUGAGCUGCGUUCCGGGAG2000000006ACUCGGGGCAAGA2000000006ACUGCAGAGGGAUGUUUGGGAUUUGUUUAGAUGUGUUUGCUGGAUACCAAACAAACAAAAAGUCAUACAUUGCAAUGUAAGGUUGACUUAGCUUUGCAGAGUAUCUCCAGAUCCCCCGCCAGCAACCAUUACGGUCUGUCAGCUUAACUCUAGAAGGGACCUCUGGCAGGCCAGAGUUUUAAACUGGAUGGGGCUCCACACCAUGCCUUACCAAGGCAGUAAGUCCUGGGCCGGGGCCGCAUCUGCCUCCCCUUACAGAACCAGUGUUCGCCCGACACAGGGUUCGGGAAAGUGAAGCUGAGAGAGAAGCAGGAUUUUAAGAGGCAGGAGAUAAGUUAUUAGGAACACAAAUGGUUCAUUUUCUUUUUUCUUUUAGAGCUCGGUUCCUAUGAGAACACAGACAGUAUUCACAGGUGGCAGCAGGCAGCAGGGAACAUUUUCUCCUCACUUCUGGAUUUUUUUGCAAGCGAGCACAUAGAAGUUAAAGUAACGUGUAUUCUCUUUGAACUAGGAGUGGAGUCGGUUCUUAUACAACUAUGGGCUGAAACCAUGAGGCGUGCUGAGCCGCACCUGAUCCUGCAACCUUCGAGGUCAUCACGGUCAUCAUGUGCAAGGGGUCACGUGAGGUCACUGACUCCAGCUCAAAACGCAUCUUAGUAAUAUCCAUGAAUCGAUUUCCAAUAGAGUUUUUUUCCUUUUUUUUUUUUAACUUUAUUUCAAACAUACAUUAUGUGUUCAAG2000000006ACUGUUAUGGCCAAUAUUGUGUUUUAGUUUUAUGUUAACAUGAUAAAGUCAUGUGCACUGUAGGACCAUCUGUCCCUGUCCACCCUUCACAGCUGCCCAGAUGCAGAGGGUCGCGCGGCUGUGUGUGAGGAGUGAGCCUCCCUGCUGCCCCCAGGGGCUCCUCCGGGUUGUCUCAGGAUUCUCUGCAAUCCAAAUGUAUCCAUUCUGGCUGAAGCCCAGCCAGAAUCCCGAGUGGAAGAAACGGGGGAAAAGUCAUAUUUUCCUUCUGUUUAAACUUCAAUUCCAAAGGUGCACAGAUGUAUUCAUAAAGGAAGACAUUAGAUCCAGCCAUUGUGGCCACCAGGCUCUGUGG2000000006ACCCAUCUCAGUGGAGAAUUCGUUUUGGACCCGUGGCUCCGUGCAGCUGUGG2000000006ACUCGAGUGCCAUCCACUGGUGUGAGUCUUGCGGGGAGGCCACAGGAAAACGUUCUGUGCCAAGUGCCGCCUCGCUGUGUCCGGCAUGGG2000000006ACUGCGCUGGAGGGUCCGGCGUGGAAGGCAGACCUCCUGUACCUCUAUCGUUCCCAUUUGUGGCAUCCAAAGGCGGAAGGCUCAUGGCUUCCCCACUAGAGGCGGCGUCUUGGGCUUUCCCAUUGGAUUGUGAAAGGCAUUAAG2000000006ACUGUUUGGAGAUGUUGGCUGUAUUUCCUGUCACAUCAGGUUGUAUGAUGACGAAUAAAAGGUGCUGUGACCCGUGUUUUCAA
2155   mRNA  unknown    Homo sapiens    AAAAGGCCCCGGAACGAGGCCGGCCCGCGAGGGCCCGCGCUCCCC2000000009UCCUCCCCGGCGGCCGCACUCACCCACUCCGGAAUCGGCCCUGUCGCCCCCGCCCGCACUCCAGAGCCGGCUGAGAACGGCAGCGGCGAGGGCUCCACGUGCAGCGUCUCUCCGGGUAAG2000000006ACCUGCAGCUCCCGCGACUAGAAGUGUGAGGUCCCAGGGCCCUUCCCGCGGAAUCGGCGCUGAGAAGCCCCAACCCCCCUCCCGCCUCCCAGGCACCUUCGGGUCCAGG2000000006ACUACAACUCCCGGCAGGGUGCGCAAAACGACCGCCCAAGGCAACGGAGGCUCACGAGAAUCAGCAUGAUUCUUCAGAGGCUCUUCAGGUUCUCCUCUGUCAUUCGGUCAGCCGUCUCAGUCCAUUUGCGGAGGAACAUUGGUGUUAC2000000006AGCAGUGGCAUUUAAUAAGGAACUUGAUCCUAUACAGAAACUCUUUGUGGACAAGAUUAGAGAAUACAAAUCUAAGCGACAGACAUCUGGAGGACCUGUUGAUGCUAGUUCAGAGUAUCAGCAAGAGCUGGAGAGGGAGCUUUUUAAGCUCAAGCAAAUGUUUGGUAAUGCAGACAUGAAUACAUUUCCCACCUUCAAAUUUGAAGAUCCCAAAUUUGAAGUCAUCGAAAAACCCCAGGCCUGAAGAAAUAAAGUAAAAUUAAUCUGGUAAUUUGUCACGGAUUAGUUGUACAACUAGUUAGAAGUUUCAGAAUAAACAUGCAUUUCAUAACUGUCAAAUGUUCUUUUAAUUCUGAGUCCAAAUAAAUUAUUUGGUGAUGUUGAGUGUGUUCUUGAUGAAUUGA
2156   mRNA  unknown    Homo sapiens    AAAAGUUCGCGCUGCUGGUCCCGCGCGGGCGGCCCCUGGGCUUUGUGUCCACCAGGACAGCGGGCCGGGCUCCCUGCAGGCGCGGGCGGCGCCGAACGGUGCUCAGCAACCACCCGGACAGGGCCAGGCCGUUUUCUCCCGCUCAGGCAUUAGUCGUUGGCUGUGGGCCGCCGCGGGAAGUUGAGGCCUACCACGGAGGAGGCUGCUGAGGUGGAUCUCAGGGGAUCCGCAAGGGCUCCCUCACCCUUGCCGGGACCCUGGGAACCCGAAACAAAAUCCUACGCCACCAGCCCGCCGAAUGCGCCCCCUCGGCCGGGGGUCCUGGGUCUUCAGAGAAGAACUCGGCCGAAUGCGGUCAGAAAGCCCGCGAACCGCCUGGACCUGCAGGCCCCGCCGCUUGGAGCUCCCGCCUUUCCCGACCGAGCCCGUGUCUGCUCGUGUGUCUCACUGAUGUCUUAGGUCUCAAAAAAAAAAGAAAAGAAAAGGUUUUUAGUAGACAGAAGAGAAAUGGGGCCGUGGGUUCGUGGUCCCAGGGGGAAACUGACGUCGCAUGAGGUCGUCGUCCCUCAGCUUGAGCUCAGCGGAACAUAAGCUUGCAGAGGUGGAAACCACGGAAGGUUUGGGUGUCUUGGAGCUCUCUGGACACCGAAGCCCGG2000000006ACACAGUCCCGGGGUCCGCACCGCCUGUGACCUGUGGCGGG2000000006ACCGCCGGGGUGGGCGUUUUCUCAGCUGGCGCGCGCGUAGGUGGA2000000006ACUUGGGAAACUA2000000006ACUGGAGCGAAGUGGCAAAAAACCAAGACAGGGCCGGUGACCUCGCGCAGGCCGUCCUUA2000000006ACUGUGGAGUAUUCCUUCAGCUAACCCCUUUAUUUCAUGUGUCCAAGUCUGGUUUCUGGGUUUCUUUGUAGUCCUCCGGGCCUGUUCGUGCGCCUUCACUUGCAAAAGGUUCGUCGUGGAGGGCCGUGUGCUUGUUUGCAGCAGUAACGAUGCCCUUCCCGAGCGUGCUGGAGUGGCUCCUCGCUGACGCAAGCUCACCUUGCAGCCUCCUCAGCAACUGCAACUUAAACGCGCCCUCAGGAAGCCCUGGAAUCUCGCUCAGAAUUUUUUUUCUUUUUUUGAG2000000006ACAGUCUCGCUGCGACGCCCAGGCUAUAGCGCAAUGGCGCGAUCUCGGCUCCCUGCAACCUCCCUCAGGAAGCCGUGGAAGCUCGACCGCCAGAA2000000006ACUUCCUUCUCCUGACUCAGGCCACAGUCUUCUGUGUGGUCUGGGCCCCUGCUGCUGACAUCCCCCACAUGUCAGUCUGCCUGCUAGUGGGAUUGACUAACUCAUCAACGUGGAGUUUAAUGCCCAACCAAGUGCAGACCACGCUCCUGUUUUGCGUCACCCUCUGCGAAGCUUCCUGCAAACUUGACUCCCUGCCCAGUGCCCCCAGCCCCAAGGCUGGUCUCCAGGAGGUAAGGCCCGCCCUGCAGGCAACACCGGUGCUUGGGCUCCUGCUGAGCAGUUCUUUCCUGCGAGUAACAGAACCAGGGAGGGAGGUGGGCUGUGGCCUCCCCUGCCCCUACAGUCGUCUCCUGCAGCUCCCACCAUGCUGGACUCAUCAGCAGCAGAGCAAGUGACCCGACUGACGCUGAAGCUCUUGGGACAGAAGCUGGAGCAAGAACGGCAGAACGUGGAAGGGGGACCUGAGGGCCUCCACCUCGAGCCAGGAAAUGAGGACCGGCCGGACGAUGCCCUGCAGACUGCUCUGAAGAGAAGGAGGGACCUUCUGCAGAGACUCCGGGAGGCCACCCUCAUGCACAUAACCCUGGAAGGGUCUUCCAGUCAUGGCCAUCCUGCCCGGAGAGGCGCCUGUACCUGGCCCAGGCUGGCCUGAGCCUGAUGCUGGGGGUGCCUCUGUGGCGUUGGGGCUCCCCGUCCCCGUGUGCAGCAGCUCUGCAUCGGCCUUGCAGGAACAACACC
2157   mRNA  unknown    Homo sapiens    AAAUUAGUCCAUCCCAUUUACAGCUACUUCCAAUGCAGCUGUGUCAGGGGAGAGAGAAGAAAGGACAUGGAAGAGAGCGUAGAGAUGAGCUGCUUCAGAAAGAGCAAAACUAUUCAGAUGACGUCUUGGCCAACAUGAUUAGUGA2000000006ACCAAGGAUCAGUUACGGAAACGAUGCUCUCAUGCCAUCUUUGACCGAAACGAAAACCACCGUGGAGCUCCUUCCCGUGAAUGGAGAGUUCAGCCUGGACGAUCUCCAGCCGUGGCAUUCUUUUGGGGCUGACUCUGUGCCAGCCAACACAGAAAACGAAGUUGAGCCUGUUGAUGCCCGCCCUGCUGCCGACCGAGGACUGACCACUCGACCAGGUUCUGGGUUGACAAAUAUCAAGACGGAGGAGAUCUCUGAAGUGAAGAUGGAUGCAGAAUUCCGACAUGACUCAGGAUAUGAAGUUCAUCAUCAAAAAUUGGUGUUCUUUGCAGAAGAUGUGGGUUCAAACAAAGGUGCAAUCAUUGGACUCAUGGUGGGCGGUGUUGUCAUAGCGACAGUGAUCGUCAUCACCUUGGUGAUGCUGAAGAAGAAACAGUAC2000000006ACA2000000009UCCAUUCAUCAUGGUGUGGUGGAGGUUGACGCCGCUGUCACCCCAGAGGAGCGCCACCUGUCCAAGAUGCAGCAGAACGGCUACGAAAAUCCAACCUACAAGUUCUUUGAGCAGAUGCAGAACUAGACCCCCGCCACAGCAGCCUCUGAAGUUGGACAGCAAAACCAUUGCUUCACUACCCAUCGGUGUCCAUUUAUAGAAUAAUGUGGGAAGAAACAAACCCGUUUUAUGAUUUACUCAUUAUCGCCUUUUGACAGCUGUGCUGUA2000000006ACACAAGUAGAUGCCUGAACUUGAAUUAAUCCACACAUCAGUAAUGUAUUCUAUCUCUCU2000000009UUACAUUUUGGUCUCUAUACUACAUUAUUAAUGGGUUUUGUGUACUGUAAAGAAUUUAGCUGUAUCAAACUAGUGCAUGAAUAGAUUCUCUCCUGAUUAUUUAUCACAUAGCCCCUUAGCCAGUUGUAUAUUAUUCUUGUGGUUUGUGACCCAAUUAAGUCCUACU2000000009UUACAUAUGCU2000000009UUAAGAAUCGAUGGGGGAUGCUUCAUGUGAACGUGGGAGUUCAGCUGCUUCUCUUGCCUAAGUAUUCCUUUCCUGAUCACUAUGCAUUUUAAAGUUAA2000000006ACAUUUUUAAGUAUUUCAGAUGCU2000000009UUAGAGAGAUUUUUUUUCCAUGACUGCAUUUUACUGUACAGAUUGCUGCUUCUGCUAUAUUUGUGAUAUAGGAAUUAAGAGGAUACACACGUUUGUUUCUUCGUGCCUGUUUUAUGUGCACACAUUAGGCAUUGAGACUUCAAGCUUUUCUUUUUUUGUCCACGUAUCUUUGGGUCUUUGAUAAAGAAAAGAAUCCCUGUUCAUUGUAAGCACUUUUACGGGGCGGGUGGGGAGGGGUGCUCUGCUGGUCUUCAAUUACCAAGAAUUCUCCAAAACAAUUUUCUGCAGGAUGAUUGUACAGAAUCAUUGCUUAUGACAUGAUCGCUUUCUACACUGUAUUACAUAAAUAAAUUAAAUAAAAUAACCCCGGGCAAGACUUUUCUUUG2000000006AAGGAUGACUAC2000000006A2000000090GACAUUAAAUAAUCGAAGUAAUUUUGGGUGGGGAGAAGAGGCAGAUUCAAUUUUCU2000000009UUAACCAGUCUGAAGUUUCAUUUAUGAUACAAAAGAAGAUGAAAAUGGAAGUGGCAAUAUAAGGGGAUGAGGAAGGCAUGCCUGGACAAACCCUUCUUUUAAGAUGUGUCUUCAAUUUGUAUAAAAUGGUGUUUUCAUGUAAAUAAAUACAUUCUUGGAGGAGCA
2158   unknown  unknown    Homo sapiens    AACAUGGUCAUUUUUAUUAAAGUAAAAAAUAAGAUAGUAGUAGCUCUGGACAUUUGGAAAUGUGUAUGUUUGUUUACACCCUGUGAAAAGUAGACAUGGUCUGCAAAAGAGCCAAUCUCCUAAAUAUAUUUCUUUCUCUAGAAAUGUUAUUUUGGGACAAAUGAAUGAAUCCCUGUUGGGAAAAAAGAACCUGCUGCAUAUCAUCCAUAUUUUAUUUUAUUAUUAUUUUUUUUGAGAUGGAGUCUCACUCUGUCUCCCAGGCUGGAGUGGAGUGGCACAAUCUCGGCUCACUGCAACUUCUGCCUCCUGGGUUCAAGCGAUUCUGCUGCCUCAGCAUGCCCAGUAGCUGGGAUUACAGGUGCAUGCCACCACACCCGGCUAAUUUUUGUAUUUUUAGUAGAGACGGGGUUUCACUAUGUUGGCCAUGCUGGUCUUGAACUCCUGACCUCAAGUGAUCCACCCGCCUCGGCUUCUGGAAUUACAGGUGUGAGCCACCGCACCCAGCCAUGAUCCAUACUUUAAUGUGGGUUCUGGAUUGCUUCCUAGGCCACGUGUUUAACAUGCCACAUGAUGAUGCAAAGCAGUGUGCCAGCCUUAAUGGUGUGAACCAGGAUUCCCACAUGAUGGCGUCAAUGCUUUCCAACCUGGACCACAGCCAGCCUUGGUCUCCUUGCAGUGCCUACAUGAUUACAUCAUUUCUGGAUAAUGGUCAUGGGGAAUGUUUGAUGGACAAGCCUCAGAAUCCCAUACAGCUCCCAGGCGAUCUCCCUGGCACCUCGUACGAUGCCAACCGGCAGUGCCAGUUUACAUUUGGGGAGGACUCCAAACACUGCCCCGAUGCAGCCAGCACAUGUAGCACCUUGUGGUGUACCGGCACCUCUGGUGGGGUGCUGGUGUGUCAAACCAAACACUUCCCGUGGGCGGAUGGCACCAGCUGUGGAGAAGGGAAAUGGUGUAUCAACGGCAAGUGUGUGAACAAAACCGACAGAAAGCAUUUUGAUGUGAGUUUUUCUACUGAAACACAUUCAGAAUUGAAAAGAACAAAGUGAUGGUAAAAGAUAUGAUACCAAGUUAAACAUCCCCAUCCGUGUCCUCUAGCAGGAAUGCGAGAUAGCUUAUUUUUAGAACUGAUUCUUUGUCCCAUGUGGCUUUCUUUGAUACCCUAAAAGUUCUCUUUAGAUAAUUCUAAUGCUGAUGAUUUAUGUCUCCAUUUAGACGCCUUUUCAUGGAAGCUGGGGAAUGUGGGGGCCUUGGGGAGACUGUUCGAGAACGUGCGGUGGAGGAGUCCAGUACACGAUGAGGGAAUGUGACAACCCAGUCCCAAAGAAUGGAGGGAAGUACUGUGAAGGCAAACGAGUGCGCUACAGAUCCUGUAACCUUGAGGACUGUCCAGACAAUAAUGGAAAAACCUUUAGAGAGGAACAAUGUGAAGCACACAACGAGUUUUCAAAAGCUUCCUUUGGGAGUGGGCCUGCGGUGGAAUGGAUUCCCAAGUACGCUGGCGUCUCACCAAAGGACAGGUGCAAGCUCAUCUGCCAAGCCAAAGGCAUUGGCUACUUCUUCGUUUUGCAGCCCAAGGUAGUUCGUUUUUACCUUAUUUUUACCUAAAAAUCAAGGCCUGGGCUUGCUACCUUUUCAAACAAUUUUUGUUAUACUUUCUUUGCUUUCCAUAUUAACAUAUCUUCAAUUUCAAAUUUGAACUCCUUUUCUUUUACAUUAAUUGGCAACUGCCUGCUUUGAGUUUAGUGUUUUCAGUUAUGAAUGAAGCUUAAAUCUAACACUUCACAUGCUUGCAAUUGCUCGCUAUUACUCUUUUAUAUGCAAAGAAAAGCUUUUUGGACAGUCAAGCGCUCCUCUGUGCGACUAGGCUUCACAUACAGCUCAUAGUUAGAUACAUUUUAUAUUCACACAGUAACCAGUAGUUUUGGAAAAUAGUCUAUGCAUGGUCCAAAAUACUUGUUACUGGGUAACUAGCAGUAGCAGGUGCAAACAGAAUAAUAGAAGUGGUAGUCUGAGUAUUGAUUAUUUUUAUGUUUGAAAACACAUAUUGAACUAGGAAAAGCAUCAUUUCUUUUGCUGUUUUGCUAAGGGAAUACAUCUGGAUCUGAGACAGAAAAUGGAAUUUAAUGUGAUUGAGAUGAUCGUGUGUCAUUAGCACCAUAGGCUAUGAAAAUAUUCCCAAGUUGCAGAUUCAAUAUUCAGCAAGUGAUUUCUGAAGCACUUACUCUUGCCAGAUACUAAUUAUUCUAGGCUCUGAAGAUACAGCAGUAAACAAAGUGACAAACAGCUCUACUUUCAUUGACCUUAGCUGGAGGAGACAUAGGUCAAUAGAUAAAUAAUUUUUAAAAAUAUCUAAUUUCUUCAGAUGUCUAUACGUAGUACUGAAAAAUAUGCCAAAGUGAAGGGUAAAUGCAUGAAAUGCAUAAUGUGUAGAGGGUACUGUGUUUAAUUAGCAUGGUCAGGAAAGUAGAGAGAAAAUGUUUACACUUAUCAUUGCAGCAUCUCCUUCCUUUGCUUGUAUGUAACACUAGACAUGUGUCCUUUUUUCAGGUUGUAGAUGGUACUCCAUGUAGCCCAGAUUCCACCUCUGUCUGUGUGCAAGGACAGUGUGUAAAAGCUGGUUGUGAUCGCAUCAUAGACUCCAAAAAGAAGUUUGAUAAAUGUGGUGUUUGCGGGGGAAAUGGAUCUACUUGUAAAAAAAUAUCAGGAUCAGUUACUAGUGCAAAACCUGGAUAUCAUGAUAUCAUCACAAUUCCAACUGGAGCCACCAACAUCGAAGUGAAACAGCGGAACCAGAGGGGAUCCAGGA2000000006ACAAUGGCAGCUUUCUUGCCAUCAAAGCUGCUGAUGGCACAUAUAUUCUUAAUGGUG2000000006ACUACACUUUGUCCACCUUAGAGCAAG2000000006ACAUUAUGUACAAAGGUGUUGUCUUGAGGUACAGCGGCUCCUCUGCGGCAUUGGAAAGAAUUCGCAGCU2000000009UUAGCCCUCUCAAAGAGCCCUUGACCAUCCAGGUUCUUACUGUGGGCAAUGCCCUUCGACCUAAAAUUAAAUACACCUACUUCGUAAAGAAGAAGAAGGAAUCUUUCAAUGCUAUCCCCACUUUUUCAGCAUGGGUCAUUGAAGAGUGGGGCGAAUGUUCUAAGUCAUGUGAAUUGGGUUGGCAGAGAAG2000000006ACUGGUAGAAUGCCGAG2000000006ACAUUAAUGG2000000006ACAGCCUGCUUCCGAGUGUGCAAAGGAAGUGAAGCCAGCCAGCACCAGACCUUGUGCAGACCAUCCCUGCCCCCAGUGGCAGCUGGGGGAGUGGUCAUCAUGUUCUAAG2000000006ACCUGUGGGAAGGGUUACAAAAAAAGAAGCUUGAAGUGUCUGUCCCAUGAUGGAGGGGUGUUAUCUCAUGAGAGCUGUGAUCCUUUAAAGAAACCUAAACAUUUCAUAG2000000006ACUUUUGCACAAUGGCAGAAUGCAGUUAAGUGGUUUAAGUGGUGUUAGCUUUGAGGGCAAGGCAAAGUGAGGAAGGGCUGGUGCAGGGAAAGCAAGAAGGCUGGAGGGAUCCAGCGUAUCUUGCCAGUAACCAGUGAGGUGUAUCAGUAAGGUGGGAUUAUGGGGGUAGAUAGAAAAGGAGUUGAAUCAUCAGAGUAA2000000006ACUGCCAGUUGCAAAUUUGAUAGGAUAGUUAGUGAGGAUUAUUAACCUCUGAGCAGUGAUAUAGCAUAAUAAAGCCCCGGGCAUUAUUAUUAUUAUUUCUUUUGUUACAUCUAUUACAAGUUUAGAAAAAACAAAGCAAUUGUCAAAAAAAGUUAGAACUAUUACAACCCCUGUUUCCUGGUACUUAUCAAAUACUUAGUAUCAUGGGGGUUGGGAAAUGAAAAGUAGGAGAAAAGUGAGAUUUUACUAAGACCUGUUUUACU2000000009UUACCUCACUAACAAUGGGGGGAGAAAGGAGUACAAAUAGGAUCUUUGACCAGCACUGUUUAUGGCUGCUAUGGUUUCAGAGAAUGUUUAUACAUUAUUUCUACCGAGAAUUAAAACUUCAGAUUGUUCAACAUGAGAGAAAGGCUCAGCAACGUGAAAUAACGCAAAUGGCUUCCUCUUUCCUUUUUUGGACCAUCUCAGUCU2000000009UUAUUUGUGUAAUUCAUUUUGAGGAAAAAACAACUCCAUGUAUUUAUUCAAGUGCAUUAAAGUCUACAAUGGAAAAAAAGCAGUGAAGCAUUAGAUGCUGGUAAAAGCUAGAGGAGACACAAUGAGCUUAGUACCUCCAACUUCCUUUCUUUCCUACCAUGUAACCCUGCUUUGGGAAUAUGGAUGUAAAGAAGUA2000000006ACUUGUGUCUCAUGAAAAUCAGUACAAUCACACAAGGAGGAUGAAACGCCGGAACAAAAAUGAGGUGUGUAGA2000000006ACAGGGUCCCACAGGUUUGGGGACAUUGAGAUCACUUGUCUUGUGGUGGGGAGGCUGCUGAGGGGUAGCAGGUCCAUCUCCAGCAGCUGGUCCAACAGUCGUAUCCUGGUGAAUGUCUGUUCAGCUCUUCUGUGAGAAUAUGAUUUUUUCCAUAUGUAUAUAGUAAAAUAUGUUACUAUAAAUUACAUGUACU2000000009UUAUAAGUAUUGGUUUGGGUGUUCCUUCCAAGAAGGACUAUAGUUAGUAAUAAAUGCCUAUAAUAACAUAUUUAUUUUUAUACAUUUAUUUCUAAUGAAAAAAACUUUUAAAUUAUAUCGCUUUUGUGGAAGUGCAUAUAAAAUAGAGUAUUUAUACAAUAUAUGUUACUAGAAAUAAAAGAACACUUUUGGAA
2159   mRNA  unknown    Homo sapiens    AACCCGCUCUGUGGCGGGGCUUCCGGUCGGGAGGGUCCGCCCGCUCUCGCGUCCUUUGCUGGGUCCAGACACCGGUUCCGUUGCAAACAUUUUUAAAGGGCUGGUUAUUCUUCCUGAAAUGAGUUUGGUGAUUAGAAAUCUGCAGCGAGUCA2000000009UCCCCAUCAGGAGAGCGCCACUUCGCAGUAAGAUCGAGAUUGUAAGGAGGAUUUUAGGAGUGCAGAAAUUUGACCUGGGGAUCAUCUGUGUUGACAACAAGAAUAUUCAGCACAUUAAUAGAAUCUACAGAGAUAGAAAUGUCCCAACCGAUGUGCUUUCUUUUCCAUUUCAUGAGCAUCUGAAAGCAGGUGAAUUUCCCCAGCCUGAUUUUCCAGAUGACUACAAUUUGGGAGACAUUUUCCUAGGAGUGGAGUAUAUCUUCCAUCAGUGUAAAGAAAAUGAAGAUUACAAUGACGUCCUGACUGUGACGGCCACCCACGGACUCUGUCACUUGCUGGGAUUCACACACGGCACGGAGGCAGAGUGGCAGCAGAUGUUCCAGAAGGAGAAGGCGGUGCUGGACGAGCUGGGCCGACGCACGGGGACCCGGCUGCAGCCCCUGACCCGGGGCCUCUUCGGAGGGAGCUGAGGGCCGCGUUCCUUCUGAAAGCGGGACGCGGGAGGGGUGGAGGCUGCGGGGAGCCGGGGUCGCACACGAAUAAAUAACGAAUGAACGUACGAGGGGAACCUCCUCUUAUUUCCUUCA
2160   mRNA  unknown    Homo sapiens    AACGGCGGAGCCGCCGGCCGGGCGCGGACCGGAGCGCGUGAGGCUCCGGCGCGCAAGCCCGGAGCAGCCCGCUGGGGCGCACAGGGUCGCGCGGGCGCGGGGAUGGAGGACGGCGUGGCCGGUCCCCAGCUCGGGGCCGCGGCGGAGGCGGCGGAGGCGGCCGAGGCGCGAGCGCGGCCCGGGGUGACGCUGCGGCCCUUCGCGCCCCUCUCGGGGGCGGCCGAGGCGGACGAGGGCGGCGGCGACUGGAGCUUCAUUGACUGCGAGAUGGAGGAGGUGGACCUGCAGGACCUGCCCAGCGCCACCAUCGCCUGUCACCUGGACCCGCGCGUGUUCGUGGACGGCCUGUGCCGGGCCAAAUUUGAGUCCCUCU2000000009UUAGGACGUAUGACAAGGACAUCACCUUUCAGUAUUUUAAGAGCUUCAAACGAGUCAGAAUAAACUUCAGCAACCCCUUCUCCGCAGCAGAUGCCAGGCUCCAGCUGCAUAAGACUGAGUUUCUGGGAAAGGAAAUGAAGUUAUAUUUUGCUCAGACCUUACACAUAGGAAGCUCACACCUGGCUCCGCCAAAUCCAGACAAGCAGUUUCUGAUCUCCCCUCCCGCCUCUCCGCCAGUGGGAUGGAAACAAGUGGAAGAUGCGACCCCAGUCAUAAACUAUGAUCUCUUAUAUGCCAUCUCCAAGCUGGGGCCAGGGGAAAAGUAUGAAUUGCACGCAGCGACUGACACCACUCCCAGCGUGGUGGUCCAUGUAUGUGAGAGUGAUCAAGAGAAGGAGGAAGAAGAGGAAAUGGAAAGAAUGAGGAGACCUAAGCCAAAAAUUAUCCAGACCAGGAGGCCGGAGUACACGCCGAUCCACCUCAGCUGA2000000006ACUGGCACGCGACGAGGACGCAUUCCAAAUCAUACUCACGGGAGGAAUCUUUUACUGUGGAGGUGGCUGGUCACGACUUCUUCGGAGGUGGCAGCCGAGAUCGGGGUGGCAGAAAUCCCAGUUCAUGUUGCUCAGAAGAGAAUCAAGGCCGUGUCCCCUUGUUCUAAUGCUGCACACCAGUU2000000006ACUGUUCAUGGCACCCGGGAAUGACUUGGGCCAAUCACUGAGUUUGUGGUGAUCGCACAAGG2000000006ACAU2000000009UUGGG2000000006ACUGUCUUGAGAAAACAGAUAAUGAUAGUGUUUUGUACUUGUUCUUUUCUGGUAGGUUCUGUCUGUGCCAAGGGCAGGUUGAUCAGUGAGCUCAGGAGAGAGCUUCCUGUUUCUAAGUGGCCUGCAGGGGCCACUCUCUACUGGUAGGAAGAGGUACCACAGGAAGCCGCCUAGUGCAGAGAGGUUGUGAAAACAGCAGCAAUGCAAUGUGGAAAUUGUA2000000090GCGUUUCCUUUCUUCCCUCAUGUUCUCAUGUUUGUGCAUGUAUAUUACUGAUUUACAAGACUAACCUUUGUUCGUAUAUAAAGUUACACCGUUGUUGUUUUACAUCUUUUGGGAAGCCAGGAAAGCGUUUGGAAAACGUAUCACCUUUCCCAGAUUCUCGGAUUCUCGACUCUUUGCAACAGCACUUGCUUGCGGA2000000006ACUCUUCCUGGAAUGCAUUCACUCAGCAUCCCCAACCGUGCAACGUGUA2000000006ACUUGUGCUUUUGCAAAAGAAGUUGAUCUGAAAUUCCUCUGUAGAAUUUAGCUUAUACAAUUCAGAGAAUAGCAGUUUCACUGCCAACUUUUAGUGGGUGAGAAAUUUUAGUUUAGGUGUUUGGGAUCGGACCUCAGUUUCUGUUGUUUCUUUUAUGUGGUGGUUUCUAUACAUGAAUCAUAGCCAAAAACUUUUUUGGAAACUGUUGGUUGAGAUAGUUGGUUCUUUUACCCCACGAAGACAUCAAGAUACACUUGUAAAUAAAGCUGAUAGCAUAUAUUCAUACCUGUUGUACACUUGGGUGAAAAGUAUGGCAGUGGGAGACUAAGAUGUAUUAACCUACCUGUGAAUCAUAUGUUGUAGGAAAAGCUGUUCCCAUGUCUAACAGG2000000006ACUUGAAUUCAAAGCAUGUCAAGUGGAUAGUAGAUCUGUGGCGAUAUGAGAGGGAUGCAGUGCCUUUCCCCAUUCAUUCCUGAUGGAAUUGUUAUACUAGGUUA2000000006ACAUUUGUAAUUUUUUUCUAGUUGUAAUGUGUAUGUCUGGUAAAUAGGUAUUAUAUUUUGGCCUUACAAUACCGUAACAAUGUUUGUCAUUUUGAAAUACUUAAUGCCAAGUAACAAUGCAUGCUUUGGAAAUUUGGAAGAUGGUUUUAUUCUUUGAGAAGCAAAUAUGUUUGCAUUAAAUGCUUUGAUUGUUCAUAUCAAGAAAUUGAUUGAACGUUCUCAAACCCUGUUUACGGUACUUGGUAAGAGGGAGCCGGUUUGGGAGAGACCAUUGCAUCGCUGUCCAAGUGUUUCUUGUUAAGUGCUUUUAAACUGGAGAGGCUAACCUCAAAAUAUUUUUUUUA2000000006ACUGCAUUCUAUAAUAAAUGGGCACAGUAUGCUCCUUACAGAAAAGUUGUCAUUUUAUUUCUAGAAUAAAUCUGUGAACCUUCUAAA
2161   mRNA  unknown    Homo sapiens    A2000000006ACGUUCCAUGAUGUCAUCUUACGA2000000006ACGCUCUAUGAUGUCUUAUGAGCGGUCUAUGAUGUCCCCUAUGGCUGAACGCUCUAUGAUGUCAGCCUACGAGCGCUCUAUGAUGUCAGCCUACGAGCGCUCUAUGAUGUCCCCUAUGGCUGAGCGCUCUAUGAUGUCAGCUUAUGA2000000006ACGCUCCAUGAUGUCAGCUUAUGA2000000006ACGCUCCAUGAUGUCCCCAAUGGCUGAUCGAUCUAUGAUGUCCAUGGGUGCUGACCGGUCUAUGAUGUCGUCAUACUCUGCUGCUGACCGGUCUAUGAUGUCAUCGUACUCUGCAGCUGACCGAUCUAUGAUGUCAUCUUAUACUGCUGAUCGUUCAAUGAUGUCUAUGGCUGCUGAUUCUUACACCGAUUCUUACACUG2000000006ACACAUAUACAGAGGCAUAUAUGGUGCCACCUUUGCCUCCUGAAGAGCCCCCAACAAUGCCACCGUUGCCACCUGAGGAGCCACCAAUGACACCACCAUUGCCUCCUGAGGAACCACCAGAGGGUCCAGCAUUGCCCACUGAGCAGUCAGCAUUAACAGCUGAAAAUACUUGGCCUACAGAGGUGCCAUCAUCACCAUCUGAAGAGUCUGUAUCGCAGCCUGAGCCUCCUGUGAGUCAAAGUGAGAUUUCGGAGCCUUCAGCAGUGCCUACUGAUUAUUCAGUGUCAGCAUCAGAUCCCUCAGUUUUAGUAUCAGAGGCUGCUGUG2000000006ACUGUUCCAGAACCACCACCAGAGCCAGAAUCUUCAAUUACGUUAACACCUGUAGAGUCUGCAGUAGUAGCAGAAGAACAUGAAGUUGUUCCAGAGAGACCAGUG2000000006ACUUGUAUGGUAUCUGAAACUCCCGCCAUGUCAGCUGAACCAACUGUGUUAGCAUCAGAGCCUCCUGUUAUGUCAGAG2000000006ACAGCAGAAACAUUUGAUUCCAUGAGAGCCUCAGG2000000006ACAUGUUGCCUCAGAAGUAUCUACAUCCUUGUUGGUUCCAGCAGUAACUACUCCAGUGCUGGCAGAGAGCAUUCUGGAGCCGCCAGCCAUGGCUGCCCCAGAGUCUUCAGCUAUGGCUGUCCUGGAGUCUUCGGCUGUGACCGUCCUGGAGUCUUCGACUGUGACUGUCCUGGAGUCUUCGACUGUAACUGUCCUGGAGCCUUCGGUUGUG2000000006ACUGUCCCGGAGCCUCCUGUUGUGGCUGAGCCAG2000000006ACUAUGUUACCAUUCCUGUGCCAGUUGUUUCUGCGCUGGAGCCUUCUGUGCCUGUUCUGGAACCAGCGGUGUCAGUCCUUCAACCUUCUAUGAUUGUUUCAGAACCAUCUGUUUCUGUCCAGGAAUCGACUGUGACAGUUUCAGAGCCUGCUGUCACAGUCUCAGAGCAG2000000006ACUCAAGUAAUACCAACUGAGGUGGCUAUAGAGUCCACACCAAUGAUACUGGAAUCUAGUAUCAUGUCAUCACAUGUUAUGAAAGGAAUUAAUCUAUCCUCUGGUGAUCAAAAUCUUGCUCCAGAGAUUGGCAUGCAGGAGAUUGCAUUGCAUUCAGGUGAAGAACCACAUGCUGAGGAACACCUGAAAGGUG2000000006ACUUUUACGAAAGUGA2000000006ACAUGGUAUAAAUAUAG2000000006ACCUUAAUAUAAAUAAUCAUUUAAUUGCUAAAGAGAUGGAACAUAAUACAGUGUGUGCUGCUGGUACUAGUCCUGUUGGGGAAAUUGGUGAAGAGAAAAUUUUGCCCACCAGUGAGACUAAACAGCGCACAGUAUUGGAUACCUACCCUGGUGUUAGUGAAGCUGAUGCAGGAGAAACUCUAUCUUCUACUGGUCCUUUUGCUCUGGAACCUGAUGCAACAGGAACUAGUAAGGGUAUUGAAUUUACCACAGCAUCUACUCUCAGUUUAGUUAAUAAAUAUGAUGUUGAUUUAUCUUUAACUACUCAAGAUACUGAACAUGACAUGGUAAUUUCCACCAGUCCUAGUGGUGGUAGUGAAGCUGACAUUGAAGGGCCUUUGCCUGCUAAAGAUAUUCAUCUUGAUUUACCAUCUAAUAAUAACCUUGUUAGUAAGGAUACAGAAGAACCAUUACCUGUAAAAGAGAGUGACCAGACAUUAGCAGCUCUGCUCAGCCCUAAAGAAAGUAGUGGAGGAGAAAAAGAAGUACCUCCCCCUCCUAAAGAG2000000006ACACUGCCUGAUUCAGGAUUUUCUGCCAAUAUUGAGGAUAUUAAUGAAGCAGAUUUAGUGAGACCGUUACUUCCUAAGG2000000006ACAUGGAACGUCUUACAAGCCUUAGAGCUGGCAUUGAAGG2000000006ACCUUUACUUGCAAGUGAUGUUGGACGUGACAGAUCUGCUGCCAGCCCGGUUGUAAGUAGUAUGCCAGAAAGAGCUUCAGAGUCUUCUUCAGAGGAAAAAGAUGAUUAUGAAAUUUUUGUAAAAGUUAAGG2000000006ACACUCACGAAAAAAGCAAGAAAAAUAAGAACCGUGAUAAGGGGGAGAAAGAGAAGAAAAGAG2000000006ACUCUUCAUUAAGAUCUCGAAGUAAGCGUUCCAAAUCUUCUGAACACAAAUCACGCAAGCGUACCAGUGAAUCUCGUUCUAGGGCAAGAAAGAGAUCAUCUAAGUCCAAGUCUCAUCGCUCUCAGACACGUUCACGGUCACGUUCAAGACGCAGGAGGAGAAGCAGCAGAUCAAGAUCAAAGUCUAGAGGAAGAAGAUCUGUAUCAAAAGAGAAGCGCAAAAGAUCUCCAAAGCACAGAUCCAAGUCUAGGGAAAGAAAAAGAAAAAGAUCAAGCUCCAGGGAUAACCGAAAG2000000006ACAGUUAGAGCUCGAAGUCGAACCCCAAGUCGUCGGAGUCGGAGUCAUACUCCAAGUCGUCGACGAAGGUCUAGAUCUGUGGGUAGAAGAAGGAGCU2000000009UUAGCAUUUCCCCAAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGGAGCCGCACCCCUAGCCGUCGGAGCCGCACCCCAAGCCGCCGGAGAAGAUCAAGGUCUGUGGUAAGAAGACGAAGCUUCAGUAUCUCACCAGUCAGAUUAAGGCGAUCAAGAACACCCUUAAGAAGAAGGUUUAGCAGAUCUCCCA2000000009UCCGUCGUAAAAGAUCCAGGUCUUCUGAACGAGGCAGAUCACCCAAACGUCUGACAGAUUUGGAUAAGGCUCAAUUACUUGAAAUAGCCAAAGCUAAUGCAGCUGCCAUGUGUGCUAAGGCUGGUGUCCCU2000000009UUACCACCAA2000000006ACCUAAAGCCUGCACCUCCACCUACUAUAGAAGAGAAAGUUGCUAAAAAGUCAGGAGGAGCUACUAUAGAAGAACUAACUGAGAAAUGUAA2000000006ACAGAUCGCACAGAGUAAAGAAGAUGAUGAUGUAAUAGUGAAUAAACCUCAUGUUUCGGAUGAAGAGGAAGAAGAACCUCCUUUUUAUCAUCA2000000009UCCCU2000000009UUAAACUCAGUGAACCCAAACCUAUUUUUUUCAAUCUGAAUAUUGCUGCAGCAAAACCAACUCCACCAAAAAGCCAGGUAACAUUAACAAAAGAAUUCCCUGUAUCAUCUGGAUCUCAACAUCGGAAAAAAGAAGCGGAUAGUGUUUAUGGAGAAUGGGUUCCUGUGGAGAAAAAUGGUGAAGAAAACAAAGAUGAUGAUAAUGUUUUCAGCAGCAAUUUGCCCUCAGAGCCUGUGGACAUCUCUACAGCAAUGAGUGAACGGGCACUUGCUCAGAAAAGACUCAGUGAGAAUGCAUUUGAUCUUGAAGCCAUGAGCAUGUUAAAUAGAGCUCAGGAAAGGAUUGAUGCCUGGGCUCAGCUGAACUCUAUUCCUGGCCAGUUCACAGGAAGUACAGGAGUACAGGUUUUGACACAAGAACAGUUGGCCAAUACUGGUGCCCAAGCCUGGAUUAAAAAGGAUCAGUUCUUAAGAGCAGCCCCGGUA2000000006ACUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCA2000000009UCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAA2000000006ACA2000000009UCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCU2000000009UUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGG2000000006ACCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCU2000000009UUAAUGUUGUAAAUAUUUGGCAAUUUAAG2000000006ACAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUA2000000006ACA2000000009UCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUA2000000006ACACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGACAGAUAAUGGGCCAGUGUUAUUGAGGUGAUCAAGAUCUGUUCCACAGGGCUAAUGCCACCAUCUCCCCUCAAAAUUUUGUAGAGGUUCUAAAAAGAAAGUGGUAUGUUGUGUGAUGAUCAGCACUAAGUCCUGCAUUCCUGUUAAAGCCACUUGGGUCA2000000009UAAGAAGGGAGUAAAAAAUGAAGUCUGACUAGAAUUCUAUUGCAGAGGCCAGUACAUUUAGUAUGGCAUUGAGUUGUGAUAUAGUUUUACUUUGAUGUGCAUUUUGAAUUUCAGCUACACCUAGAUAGACGUAAAAUGAUAAUUAAAAUGCUGUAACCAACUUAUCUAAUAAAAUUGGCAACCAGCCACUAUUUUGUUGACUAUGAGAAAGUUAAAAGUUUAUGUUAAUUUUUAGGGUCUGAUAGAAUAUUUCAUGUGUAUUACAGUGGUAUUCAUAUGCUAUGUCUCUAAACU2000000009UUAUUUUCAAAAGCUUAAGGCCCAAAUACAAACUUCUCUGGAAUAAA
2162   mRNA  unknown    Homo sapiens    AAGACUCAGGGGCUCUCUUGUUGGUGAACAGUAGCAAAAUCUGGAGUAACUGUGCCUGGAAUUUUUUGGCCCCAAGUCUAAACAAAGGAAUAGUUUCCAGAUAAGCGCUGUUUGCAUAGGUGGUGGUCUGUCACGUGGUGGGCCAGGCUAUUCAGUUCUUGGUCAGCGAGACGCCUGCCUUGGGUGCUGGAUGCCGGCUGUACGACAUGCGGCUCUCCCCUUUCCAUUUACAGCUGGAGUUCCACAUGAAGGAGAAGAGAGAGGACCUCCAGAUUAGCUGGUCUUUCAUCAGUGUGCCGGAAAUGGCCGUUAAUAUCCAGCCCAAAGCACUGGGGGAGGACCAGGUGGCUGAGACAAGUGCGAUGUCUGACGUUCUCAAGGACAUCUUGAAGCAUUUGGCUGGUUCUGCCUCUCCAUCAGUGGUUCUGAUUACCAAGCCCACGACUGUAAAGGAAGCUCAGAACUUACAGUGUGCUGCAUCUACUGCUCAGGAAUCCUGUCCUCCUAAACCUCCAAGGGCUCACGAGCUGAAGCUACUGGUGAGGAACAUCCACGUCUUGCUGCUCAGCGAGCCCGGUGCCUCAGGCCACAUUAAUGCAGUGUGCGUCGUGCAGCUGAACGAUCCUGUUCAGAGGUUCUCCAGCACCCUGACGAAAAACACUCCGGACCUCAUGUGGGAAGAGGAAUUCACCUUCGAGUUGAAUGCCAAGUCGAAGGAGUUACACCUGCAGAUUUCAGAGGCUGGGCGAUCCUCAGAAGGUCUGCUGGCGACGGCGACAGUUCCUCUGGACUUAUUUAAGAAGCAGCCUUCUGGGCCACAGAGCUUCACGCUGACCAGCGGGUCUGCCUGCGGCAGCUCGGUGCUGGGCUCGGUCACGGCAGAGUUCUCUUACAUGGAACCUGGUGAAUUGAAAUCCUGGCCCAUCCCUCCCCCUGUUCCUGCUGCAAAAAUAGAAAAGGACCGCACGGUGAUGCCCUGUGGG2000000006ACUGUGGUCACUACUGUCACUGCUGUGAAGACCAAGCCUCGCGUCGACGUGGGGAGGGCGUCCCCGCUGAGCUCUGAUUCUCCGGUGAAGACUCCCAUCAAGGUGAAGGUGAUCGAGAAGGACAUCUCUGUCCAGGCCAUCGCCUGCCGCAGCGCCCCCGUCAGCAAAACACUCUCUUCUUCAGACACAGAAUUGUUGGUGUUGAAUGGUUCGGAUCCAGUGGCUGAAGUGGCCAUUCGACAGCUCAGUGAAUCUUCAAAGCUGAAACUCAAGUCGCCACGGAAGAAAAGCACUAUUAUCAUAUCAGGGAUCUCCAAGACCUCACUAUCUCAGGACCACGACGCUGCCCUGAUGCAGGGCUACACGGCCUCUGUGGACAGCACCCACCAGGAGGACGCCCCAUCCCAUCCGGAGAGGGCGGCAGCCUCUGCCCCGCCAGAGGAAGCCGAGUCAGCCCAGGCAUCCCUUGCCCCCAAGCCCCAGGAGGACGAGCUAGACUCCUGGGACUUGGAGAAGGAGCCACAGGCCGCGGCAUGGAGCAGCCAGGUCCUGCUGGACCCCGACGGUGAUGAGCUGUCAGAGAGCUCCAUGAGUGUCUUGGAGCCGGGCACUGCCAAAAAGCAUAAAGGAGGAAUUCUAAGGAAAGGUGCAAAGCUGUUCUUCCGCCGGCGGCAUCAACAGAAAGACCCAGGCAUGAGUCAGUCACACAAUGACCUUGUGUUCCUGGAGCAGCCAGAGGGUUCCCGGAGGAAAGGCAUCACCCUCACCAGGAUCCUGAACAAGAAGCUGCUCUCCAGGCACAGAAACAAGAACACCAUGA2000000006ACGGUGCCCCCGUGGAGCCCUGCACGUAGGGCCUGAGGUCAUCACCUCCAAGCCAGAAGACGUGCACCCAUGUUAACUACCCUCACCAGGACGCAGCCAGUGUGUCCGCCGGAUGUCCAGAUGCCCCGCUUGUCUUGCUGGGUUUCUUCCAACCAUCUCGUCAUUUAAAGGGAAAACAAAAUCUGAGUCUCCAGCCAGGAGGCUUCUCCCAGAGAGG2000000006ACAAAAAAGCCCAACUUGCCACCAGAUGCUAAAUGAG2000000006ACUUGACAGCUGCAGAGCUUGGGCUGUGCUCAUAGCUAAGGGUUAGGGUUCAAUAUUAGAAGGAGAUUAACAUUAUAAGUGAAAUAAUAUGCUCUAAUAGAUUGUGGAGGGCAGGUUUGAGGG2000000006ACUUAGUUUACCUAUUCUACACUAACAAGUGUUGUUUUGGGUCCAUGCCUGGACCAUGUCACAAAAAGGAGGUGCCCCCCUGUGCUGUCACUGUGAAUGGAAAGGAUGGGUCACCUCUCUUCAUCUGCUGCUUGGAAUAAAAAAUGCAGCUGGCCCUGAGUACAGGGAAGUGGAACAUAGGCAGGAUUUUGGAUUAAUAGAGAAAUUUUGAUAAGAAUGGAGACGCUACGACAGAUGUAGGAAGUCAUCUACCUUUGAUAUUAGCCAUAGAACUUGAACACUAACUAUAUCCUAUGCAUAGUAUGCAGAACACUUUUCUAAGUUUACUUUGAGCCUACUUGCAAGUGGAAGAUAUAUAUAUUCUCACAUGGUUUUUACAUUUUUCUCUAUCGUGUUAAAAGCUCUAAUAAUGCUAGUGGAGCAGUUGACAUCCAGGGUUUUUUUUCCUGCCUGUCAUACUUGCUAAACAAGAGCACAGCGGGCCUGUCAGAUGAAGUCAGGAGCCAUACGUGACCGCUCGUAGAACACAGUAACCAAACACAUACAUGGAUUUUGCCAAGUGCUGCCAGUAGCCAAAACAAAGUCUUUUUAGGGCAAUAGAGGAAAUUAUUUUGUGUCUCAGGUGUCAGUCUUAGGAAUGGAAGUUUAAUAACAAAUGGGCCAAACUCGCAGG2000000006ACAUUCCUUCUAUGAGCGCUUCAGAAUUUUGCUGUGAACAGUCCUCUUGGACACAGGUUGGGGUGCCCUUGUUUGGGUUUGUUUUGGUGGAAAACAUCACAAACCUGGCACACCAUUUGAAUAUCCCUAAUAUCAUUCCAGUCGCUUUCCUCAUCAGUUGCCUUUCUAUUUCAGUUCAUUCACAGAUCUCACUUCUGAAUGUGCCACUUCCAGUAGACAUGCUGGUCAAAGAGCAGUCAUCAUUGGGGUGAAGUGUUCUUGACAGUUUAAUAUGAUUCACUUUUCUCCAAAGACAUGUAAAAGGCUGUUACGAAAGCUUGGCUUCUGUCAUGGAGACGGAAAUGGGCAAGCUUCCUUCCGUAGCCUCUUGUUAAUCCUUAAACAUUAAAUAUUUCGGGGGUAAUAGAGCCACUGGUGAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCGGUAUCAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCUAUAUGAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUGUAUAAAAACCAAAAUUAUAGGAUUUUUUUUUCUUCUUUUUUAGAGAGAGAGAUUAGAAAACGACAUUAGGAAUUUCACUUUAAAAUGCGCAUUACAAACUUCUUAGGUGUUCCAGGAAUUAUCAAGUGACUUUAAAAUGACUUUUCCAACCUGCUUUGUUUUUAAAAAUUAUAUUCCAGUUUUAAUCAUUGUAAAAAAAGCACCUGGAGUUUCAAAACAUGUGAAUACUACCAAGUUUCUGUCCCCAAAGUCAGGCAUCACUGUUAGUCUUUUGGGACAGAUGGGACAGAUGUUCACUUUAAUGUUUUACUUGAAGUUUUACUGCUCUUUGCCAUGUGGUAAAAAGAGGCUGAGACAUAUUUAAGAAUUCCAAGAGGAUAUUAUGUGUCAGAAUUUCAGACACUGAUGAGAAGUUUUUAAUUGUUCUUUUUUAUUUGAUUUUGGAAUUCAGGUGCACUCUAUUCAAGUGCAAGGAUAUCAGAAGUUUUUUUUUAUUUAAAAAAUUUUUUUUUCGAGAUGGAGUUUCACUCUGUUGCCCAGGCUGGAGUGCAAUGGCAGCUUACUGCAACCUCCACCUCCUGGUUCAAGCGAUUCUCCUGCCUCAGCCUCCCAAGUAGCUGGGAUUACAGGCACGCGCCACCACACCUGGCUAAUUCUAUUUAGUAGAAAUGGAGUCUCACCAUGUUGGUCAGGCUGGUCUCGAACUCCUGACCUCAGGUGAUCCACCCACCUUGGCCUCCCAGCGUGCUGGGAUUAUAGGCAUGAGCCACCAGGCCGGCCCCAGGAUUUUAUAUUAAGCCUUCUUGCUCUCAAAAAAAAAAAAAGGUUUUAACUAUUCCAUUUCCAGAUGAAUCCCAUGAGCGCUGCUUACUGUUGAAUACCAAGGUCUAGGGCUCUGCUUCCUGUAGACACGCACACGUUGUCUCCAUCCAAUGGCCUUUUCUGAAGUUACAGAAAACACCAACAUGGGAGGGAGUUUAUGAAGCAAAGGCAAAGGCAACACGUCGGCUAGCUUCAGGGUAGCACCGUGAGAAAUGGGCUGUAUUGAUACUGUGAAUGUUUGUUUUCCAAGCUGUUUUAUACAGGUUUGUUUUUUCAUGGUGUAGGGUAUUUAUGACAAAGUAAAUGUUGUGAAGGUUAAAGAUAAAUUAAGAUUAUCCACCAAAUGCUAAAAAUACUGAUGUGUAAAUCACCUUUAUCGCCUCACCUCUUCUACAAGCUUUUGUGGCUUGAGGGCUUUUGUUUUUGGCUUUUGUCUGGAUGAAAGUUUUGCCCAGUUGUGUUUUAAAAACAAUUCCUCAUGAACACUAAGAUUAAUUGUGUCUGUAUCUCUGGAACUGGGUGCUCAUGUUGGUUUUAAUGAGCUUGCAACCCUUCCCCGUUUGCUUUGUUUAAGGAGGUGCCUCUGUUCUUUGUGGAGGAGUGAAAUGGAGCUUUAAGUGUGUGUGUGUGUUAUGUGUGUUUGCACACACGCGUGUGUUAUUGUAGCAAUAACAAAAAGUAGCCAUCUCCUUGUUCCAGCUGAAAACCUGCUGUGAGAGUUUUGACAGAGCACU2000000009UUAUUUUCGUCAAGUUUCAAGUCUGAGUUCAAAACCAGCCCUGAUCCCUUAUGACCAACUGCUACUCGACCAGUCGCCACUCAGUGGCCACCUGGUGCCCGUUUAGAUUUUUGCUUGGGUUUUACUGGCCACCUCUAUAGACGAGAGUUGCAAAGUUGCUUUGAGCAGAGAGGGAAAGAUUAAUUUACACUGCUGGCCACCGAAGGCAGGUGUUUCCUGGGUAGUAAUCUCACGGCUCUUGAUCUGGAAACUUCAGAGUACAAAUUGGUGGAUGGUGGAAGGCAGG2000000006ACACGUAUCUCUGUCUGACGGAAAACAGACCUCGGGGCUGGCGUAAACCCUGCUGCCAGGCCCUCUCCCCACUGCCCCAAACCGGCCUAGACACGAAGACCAAAGCAGCCUGCACAGGGCAAGGCCCCCGCGGAAUCCUGCAGAGCAA2000000006ACUCAGGUUA2000000006ACUUGGGUCCAUGACCGUUUGCAUUCGAAACACAAUACACUGCCUCGUUCUCUCAGUUAGCAGCUGGGCAGCAGCGCACCAUUCAUCAUUUAGGCUUGUGGUUUGUUGUUUACUCUACCAAUGUUAUGUCGAAACUGCAUUGUAAAAAGAGAAGAAAGUGGCAGGUUUUCCAGGUCCACGGAAAGGUUUGGCCUGACGCUGGAGUGCGGUGAUGA2000000006ACUUACGUGACAAUGAUUGUAUUCCUCAGUAGCACU2000000009UUAAACGCCGAAGACAGCCCUGCAGCAAGCCUGCACACGGGCUUGGGUGGGUUCCUUUGGAGAAGAUGUGGCUGGAACACAAACAAUCUUUGAAAGAAAUAAAUGUGCACACAGAACACUA
2163   mRNA  unknown    Homo sapiens    AAGCACUAUUAUCAUAUCAGGGAUCUCCAAGGACCACGACGCUGCCCUGAUGCAGGGCUACACGGCCUCUGUGGACAGCACCCACCAGGAGGACGCCCCAUCCCAUCCGGAGAGGGCGGCAGCCUCUGCCCCGCCAGAGGAAGCCGAGUCAGCCCAGGCAUCCCUUGCCCCCAAGCCCCAGGAGGACGAGCUAGACUCCUGGGACUUGGAGAAGGAGCCACAGGCCGCGGCAUGGAGCAGCCAGGUCCUGCUGGACCCCGACGGUGAUGAGCUGUCAGAGAGCUCCAUGAGUGUCUUGGAGCCGGGCACUGCCAAAAAGCAUAAAGGAGGAAUUCUAAGGAAAGGUGCAAAGCUGUUCUUCCGCCGGCGGCAUCAACAGAAAGACCCAGGCAUGAGUCAGUCACACAAUGACCUUGUGUUCCUGGAGCAGCCAGAGGGUUCCCGGAGGAAAGGCAUCACCCUCACCAGGAUCCUGAACAAGAAGCUGCUCUCCAGGCACAGAAACAAGAACACCAUGA2000000006ACGGUGCCCCCGUGGAGCCCUGCACGUAGGGCCUGAGGUCAUCACCUCCAAGCCAGAAGACGUGCACCCAUGUUAACUACCCUCACCAGGACGCAGCCAGUGUGUCCGCCGGAUGUCCAGAUGCCCCGCUUGUCUUGCUGGGUUUCUUCCAACCAUCUCGUCAUUUAAAGGGAAAACAAAAUCUGAGUCUCCAGCCAGGAGGCUUCUCCCAGAGAGG2000000006ACAAAAAAGCCCAACUUGCCACCAGAUGCUAAAUGAG2000000006ACUUGACAGCUGCAGAGCUUGGGCUGUGCUCAUAGCUAAGGGUUAGGGUUCAAUAUUAGAAGGAGAUUAACAUUAUAAGUGAAAUAAUAUGCUCUAAUAGAUUGUGGAGGGCAGGUUUGAGGG2000000006ACUUAGUUUACCUAUUCUACACUAACAAGUGUUGUUUUGGGUCCAUGCCUGGACCAUGUCACAAAAAGGAGGUGCCCCCCUGUGCUGUCACUGUGAAUGGAAAGGAUGGGUCACCUCUCUUCAUCUGCUGCUUGGAAUAAAAAAUGCAGCUGGCCCUGAGUACAGGGAAGUGGAACAUAGGCAGGAUUUUGGAUUAAUAGAGAAAUUUUGAUAAGAAUGGAGACGCUACGACAGAUGUAGGAAGUCAUCUACCUUUGAUAUUAGCCAUAGAACUUGAACACUAACUAUAUCCUAUGCAUAGUAUGCAGAACACUUUUCUAAGUUUACUUUGAGCCUACUUGCAAGUGGAAGAUAUAUAUAUUCUCACAUGGUUUUUACAUUUUUCUCUAUCGUGUUAAAAGCUCUAAUAAUGCUAGUGGAGCAGUUGACAUCCAGGGUUUUUUUUCCUGCCUGUCAUACUUGCUAAACAAGAGCACAGCGGGCCUGUCAGAUGAAGUCAGGAGCCAUACGUGACCGCUCGUAGAACACAGUAACCAAACACAUACAUGGAUUUUGCCAAGUGCUGCCAGUAGCCAAAACAAAGUCUUUUUAGGGCAAUAGAGGAAAUUAUUUUGUGUCUCAGGUGUCAGUCUUAGGAAUGGAAGUUUAAUAACAAAUGGGCCAAACUCGCAGG2000000006ACAUUCCUUCUAUGAGCGCUUCAGAAUUUUGCUGUGAACAGUCCUCUUGGACACAGGUUGGGGUGCCCUUGUUUGGGUUUGUUUUGGUGGAAAACAUCACAAACCUGGCACACCAUUUGAAUAUCCCUAAUAUCAUUCCAGUCGCUUUCCUCAUCAGUUGCCUUUCUAUUUCAGUUCAUUCACAGAUCUCACUUCUGAAUGUGCCACUUCCAGUAGACAUGCUGGUCAAAGAGCAGUCAUCAUUGGGGUGAAGUGUUCUUGACAGUUUAAUAUGAUUCACUUUUCUCCAAAGACAUGUAAAAGGCUGUUACGAAAGCUUGGCUUCUGUCAUGGAGACGGAAAUGGGCAAGCUUCCUUCCGUAGCCUCUUGUUAAUCCUUAAACAUUAAAUAUUUCGGGGGUAAUAGAGCCACUGGUGAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCGGUAUCAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCUAUAUGAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUGUAUAAAAACCAAAAUUAUAGGAUUUUUUUUUCUUCUUUUUUAGAGAGAGAGAUUAGAAAACGACAUUAGGAAUUUCACUUUAAAAUGCGCAUUACAAACUUCUUAGGUGUUCCAGGAAUUAUCAAGUGACUUUAAAAUGACUUUUCCAACCUGCUUUGUUUUUAAAAAUUAUAUUCCAGUUUUAAUCAUUGUAAAAAAAGCACCUGGAGUUUCAAAACAUGUGAAUACUACCAAGUUUCUGUCCCCAAAGUCAGGCAUCACUGUUAGUCUUUUGGGACAGAUGGGACAGAUGUUCACUUUAAUGUUUUACUUGAAGUUUUACUGCUCUUUGCCAUGUGGUAAAAAGAGGCUGAGACAUAUUUAAGAAUUCCAAGAGGAUAUUAUGUGUCAGAAUUUCAGACACUGAUGAGAAGUUUUUAAUUGUUCUUUUUUAUUUGAUUUUGGAAUUCAGGUGCACUCUAUUCAAGUGCAAGGAUAUCAGAAGUUUUUUUUUAUUUAAAAAAUUUUUUUUUCGAGAUGGAGUUUCACUCUGUUGCCCAGGCUGGAGUGCAAUGGCAGCUUACUGCAACCUCCACCUCCUGGUUCAAGCGAUUCUCCUGCCUCAGCCUCCCAAGUAGCUGGGAUUACAGGCACGCGCCACCACACCUGGCUAAUUCUAUUUAGUAGAAAUGGAGUCUCACCAUGUUGGUCAGGCUGGUCUCGAACUCCUGACCUCAGGUGAUCCACCCACCUUGGCCUCCCAGCGUGCUGGGAUUAUAGGCAUGAGCCACCAGGCCGGCCCCAGGAUUUUAUAUUAAGCCUUCUUGCUCUCAAAAAAAAAAAAAGGUUUUAACUAUUCCAUUUCCAGAUGAAUCCCAUGAGCGCUGCUUACUGUUGAAUACCAAGGUCUAGGGCUCUGCUUCCUGUAGACACGCACACGUUGUCUCCAUCCAAUGGCCUUUUCUGAAGUUACAGAAAACACCAACAUGGGAGGGAGUUUAUGAAGCAAAGGCAAAGGCAACACGUCGGCUAGCUUCAGGGUAGCACCGUGAGAAAUGGGCUGUAUUGAUACUGUGAAUGUUUGUUUUCCAAGCUGUUUUAUACAGGUUUGUUUUUUCAUGGUGUAGGGUAUUUAUGACAAAGUAAAUGUUGUGAAGGUUAAAGAUAAAUUAAGAUUAUCCACCAAAUGCUAAAAAUACUGAUGUGUAAAUCACCUUUAUCGCCUCACCUCUUCUACAAGCUUUUGUGGCUUGAGGGCUUUUGUUUUUGGCUUUUGUCUGGAUGAAAGUUUUGCCCAGUUGUGUUUUAAAAACAAUUCCUCAUGAACACUAAGAUUAAUUGUGUCUGUAUCUCUGGAACUGGGUGCUCAUGUUGGUUUUAAUGAGCUUGCAACCCUUCCCCGUUUGCUUUGUUUAAGGAGGUGCCUCUGUUCUUUGUGGAGGAGUGAAAUGGAGCUUUAAGUGUGUGUGUGUGUUAUGUGUGUUUGCACACACGCGUGUGUUAUUGUAGCAAUAACAAAAAGUAGCCAUCUCCUUGUUCCAGCUGAAAACCUGCUGUGAGAGUUUUGACAGAGCACU2000000009UUAUUUUCGUCAAGUUUCAAGUCUGAGUUCAAAACCAGCCCUGAUCCCUUAUGACCAACUGCUACUCGACCAGUCGCCACUCAGUGGCCACCUGGUGCCCGUUUAGAUUUUUGCUUGGGUUUUACUGGCCACCUCUAUAGACGAGAGUUGCAAAGUUGCUUUGAGCAGAGAGGGAAAGAUUAAUUUACACUGCUGGCCACCGAAGGCAGGUGUUUCCUGGGUAGUAAUCUCACGGCUCUUGAUCUGGAAACUUCAGAGUACAAAUUGGUGGAUGGUGGAAGGCAGG2000000006ACACGUAUCUCUGUCUGACGGAAAACAGACCUCGGGGCUGGCGUAAACCCUGCUGCCAGGCCCUCUCCCCACUGCCCCAAACCGGCCUAGACACGAAGACCAAAGCAGCCUGCACAGGGCAAGGCCCCCGCGGAAUCCUGCAGAGCAA2000000006ACUCAGGUUA2000000006ACUUGGGUCCAUGACCGUUUGCAUUCGAAACACAAUACACUGCCUCGUUCUCUCAGUUAGCAGCUGGGCAGCAGCGCACCAUUCAUCAUUUAGGCUUGUGGUUUGUUGUUUACUCUACCAAUGUUAUGUCGAAACUGCAUUGUAAAAAGAGAAGAAAGUGGCAGGUUUUCCAGGUCCACGGAAAGGUUUGGCCUGACGCUGGAGUGCGGUGAUGA2000000006ACUUACGUGACAAUGAUUGUAUUCCUCAGUAGCACU2000000009UUAAACGCCGAAGACAGCCCUGCAGCAAGCCUGCACACGGGCUUGGGUGGGUUCCUUUGGAGAAGAUGUGGCUGGAACACAAACAAUCUUUGAAAGAAAUAAAUGUGCACACAGAACACUA
2164   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGCAAGAUGUGAGUGAGUUUACACACAAAUUAUUAGAUUGGUUAGAAGAUGCCUUCCAAAUGAAAGCUGAAGAGGAGACGGAUGAAGAGAAGCCAAAGAACCCCAUGGUAGAGUUGUUCUAUGGCAGAUUCCUGGCUGUGGGAGUACUUGAAGGUAAAAAAUUUGAAAACACUGAAAUGUUUGGUCAGUACCCACUUCAGGUCAAUGGGUUCAAAGAUCUGCAUGAGUGCCUAGAAGCUGCAAUGAUUGAAGGAGAAAUUGAGUCUUUACAUUCAGAGAAUUCAGGAAAAUCAGGCCAAGAGCAUUGGUUUACUGAAUUACCACCUGUGUUAACAUUUGAAUUGUCAAGAUUUGAAUUUAAUCAGGCAUUGGGAAGACCAGAAAAAAUUCACAACAAAUUAGAAUUUCCCCAAGUUUUAUAUUUGGACAGAUACAUGCACAGAAACAGAGAAAUAACAAGAAUUAAGAGGGAAGAGAUCAAGAGACUGAAAGAUUACCUCACGGUAUUACAACAAAGGCUAGAAAGAUAUUUAAGCUAUGGUUCCGGUCCCAAACGAUUCCCCUUGGUAGAUGUUCUUCAGUAUGCAUUGGAAUUUGCCUCAAGUAAACCUGUUUGCACUUCUCCUGUUGACGAUAUUGACGCUAGUUCCCCACCUAGUGGUUCCAUACCAUCACAGACAUUACCAAGCACAACAGAACAACAGGGAGCCCUAUCUUCAGAACUGCCAAGCACAUCACCUUCAUCAGUUGCUGCCAUUUCAUCGAGAUCAGUAAUACACAAACCAUUUACUCAGUCCCGGAUACCUCCAGAUUUGCCCAUGCAUCCGGCACCAAGGCACAUAACGGAGGAAGAACUUUCUGUGCUGGAAAGUUGUUUACAUCGCUGGAGGACAGAAAUAGAAAAUGACACCAGAGAUUUGCAGGAAAGCAUAUCCAGAAUCCAUCGAACAAUUGAAUUAAUGUACUCUGACAAAUCUAUGAUACAAGUUCCUUAUCGAUUACAUGCCGUUUUAGUUCACGAAGGCCAAGCUAAUGCUGGGCACUACUGGGCAUAUAUUUUUGAUCAUCGUGAAAGCAGAUGGAUGAAGUACAAUGAUAUUGCUGUGACAAAAUCAUCAUGGGAAGAGCUAGUGAGGGACUCUUUUGGUGGUUAUAGAAAUGCCAGUGCAUACUGUUUAAUGUACAUAAAUGAUAAGGCACAGUUCCUAAUACAAGAGGAGUUUAAUAAAGAAACUGGGCAGCCCCUUGUUGGUAUAGAA2000000006ACAUUACCACCGGAU2000000009UUGAGAGAUUUUGUUGAGGAAGACAACCAACGAU2000000009UUGAAAAAGAACUAGAAGAAUGGGAUGCACAACUUGCCCAGAAAGCUUUGCAGGAAAAGCUUUUAGCGUCUCAGAAAUUGAGAGAGUCAGAGACUUCUGUGACAACAGCACAAGCAGCAGGAG2000000006ACCCAGAAUAUCUAGAGCAGCCAUCAAGAAGUGAUUUCUCAAAGCACUUGAAAGAAGAAACUAUUCAAAUAAUUACCAAGGCAUCACAUGAGCAUGAAGAUAAAAGUCCUGAAACAGUUUUGCAGUCGAUCAUGAUGACACCGAACAUGCAAGGUAUUAUCAUGGCGAUAGGUAAAUCCAGGAGUGUAUAUGACAGGUGUGGCCCUGAAGCAGGGUUCUUUAAGGCAAUUAAGUUGGAAUAUGCAAGGUUGGUUAAGUUGGCCCAAGAAGACACCCCACCAGAAACCGAUUAUCGUUUACAUCAUGUAGUGGUCUACU2000000009UUAUCCAGAACCAGGCACCAAAGAAAAUUAUUGAGAAAACAUUACUAGAACAAUUUGGAGAUAGAAAUUUGAGUUUUGAUGAAAGGUGUCACAACAUAAUGAAAGUUGCUCAAGCCAAACUGGAAAUGAUAAAACCUGAAGAAGUAAACUUGGAGGAAUAUGAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAA2000000006ACAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACC2000000009UCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGA2000000006ACUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAA2000000006ACUGCACACUUUCCCUGAACACACUGUAUAA2000000006ACUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUA2000000006ACUUUUUUUUAUUUUAAUA2000000006ACUGCAAAAGACAAAAUGACUAUACAG2000000006ACU2000000009UUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGA2000000006ACUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUAUGUGUUUGUAAGCAGGUAUAUUGUAUAUUAGUGUAUUAGUAAUACUAGAUAAAUGAAUUUUGUCUGGGGAUUAAGAUUGGAUAGUUAAUAGAUUAAUACAAUCUUUUAAUUCUGCUCUAAUGCUAGCAAAUUGGAAAAUGUUUAAGUCUUUGACACUUAAAUUUAUCUAUAUUUUUAACAAAGUUCUUGAACUUAGUAUGGCACCGGAACCUGUUUUGAAUUCAGUCAGGUUUUUACUCAAGUAAGUGGUUGAUUUUUUUUAAGUCAAACUACACUGAAACUUUUAUCCUUUUCUUAGAUUAAUCUUACUUUUUAAAUGUAUUUACAAUAUACAGCAAGGUGAUUAUUUCAAGAGAAUCCCAAAGUACUUGAAUAAGGGCUAUUGUAAAAUUUAAAAGAAAUAUUUAUAUAUACACAUAUAUACACAUACACACAUGUAUAUAUAUAUUCUUCAUAAUGGAGGACAAUGUUUUGCAAUAUAUAAAUCAUUCUAUUUUUGUAAAUUGUAUAUCACUUUAAUUGAAAAUGUUCUCUACUAAUUAAUACUGUGAAACAAAAUUGAUGUUGUUUAACUAGAAGUUAUGAGUAUCUUAACUGCCUUUAUUCCUUUUCAAAAAGGAAAAAGCUGUAGAACAUUUUGUAGAUGAAACUACUGUUUAAGAUUAAUGAAUUAAUAUUGUGAAUGAAAAUCAAAAUCCAUACUUUAAAGGUAAUCAUGUUACUAACAACCUAUUUUUGAAUUCAUAAAAAUUUCUUUAUAAAUGAUGUUUUGUGAACAUAGUAAAAUAGACCAUUAUACUAUGUGUAUGUUUGAUACAGCGUCGCCAAAACUAGUGUUCUUUAUUAGUGCCUCUCACAAAAGAUCCUGGAUGGAGGAGUAAGAUGAAAUAUUAUGCUAUUAUAUGAUGCUGUUUGUAAAGGUAUUAAUGUACUAGUAAGGUGUUAAUGACAAGGAAUUAGUACUAUUCCUGUUGUAAAGUUAGAUUUUGCAUAUUGUAUCUAUCAAAAUAUGUUUGGGUUUAGAUUUUAAGUUGUCUACUGAGCAGAUUUCUGCAUUGGUUUUCCAGUCCUGUUAAAAGUUUAGAAACUUCAUAUGUGUCAUCACAGCUUUUGUAAAGAAAGUAUCCUUAAUAUUUUAUGACAUUCU
2165   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGCAAGAUGUGAGUGAGUUUACACACAAAUUAUUAGAUUGGUUAGAAGAUGCCUUCCAAAUGAAAGCUGAAGAGGAGACGGAUGAAGAGAAGCCAAAGAACCCCAUGGUAGAGUUGUUCUAUGGCAGAUUCCUGGCUGUGGGAGUACUUGAAGGUAAAAAAUUUGAAAACACUGAAAUGUUUGGUCAGUACCCACUUCAGGUCAAUGGGUUCAAAGAUCUGCAUGAGUGCCUAGAAGCUGCAAUGAUUGAAGGAGAAAUUGAGUCUUUACAUUCAGAGAAUUCAGGAAAAUCAGGCCAAGAGCAUUGGUUUACUGAAUUACCACCUGUGUUAACAUUUGAAUUGUCAAGAUUUGAAUUUAAUCAGGCAUUGGGAAGACCAGAAAAAAUUCACAACAAAUUAGAAUUUCCCCAAGUUUUAUAUUUGGACAGAUACAUGCACAGAAACAGAGAAAUAACAAGAAUUAAGAGGGAAGAGAUCAAGAGACUGAAAGAUUACCUCACGGUAUUACAACAAAGGCUAGAAAGAUAUUUAAGCUAUGGUUCCGGUCCCAAACGAUUCCCCUUGGUAGAUGUUCUUCAGUAUGCAUUGGAAUUUGCCUCAAGUAAACCUGUUUGCACUUCUCCUGUUGACGAUAUUGACGCUAGUUCCCCACCUAGUGGUUCCAUACCAUCACAGACAUUACCAAGCACAACAGAACAACAGGGAGCCCUAUCUUCAGAACUGCCAAGCACAUCACCUUCAUCAGUUGCUGCCAUUUCAUCGAGAUCAGUAAUACACAAACCAUUUACUCAGUCCCGGAUACCUCCAGAUUUGCCCAUGCAUCCGGCACCAAGGCACAUAACGGAGGAAGAACUUUCUGUGCUGGAAAGUUGUUUACAUCGCUGGAGGACAGAAAUAGAAAAUGACACCAGAGAUUUGCAGGAAAGCAUAUCCAGAAUCCAUCGAACAAUUGAAUUAAUGUACUCUGACAAAUCUAUGAUACAAGUUCCUUAUCGAUUACAUGCCGUUUUAGUUCACGAAGGCCAAGCUAAUGCUGGGCACUACUGGGCAUAUAUUUUUGAUCAUCGUGAAAGCAGAUGGAUGAAGUACAAUGAUAUUGCUGUGACAAAAUCAUCAUGGGAAGAGCUAGUGAGGGACUCUUUUGGUGGUUAUAGAAAUGCCAGUGCAUACUGUUUAAUGUACAUAAAUGAUAAGGCACAGUUCCUAAUACAAGAGGAGUUUAAUAAAGAAACUGGGCAGCCCCUUGUUGGUAUAGAA2000000006ACAUUACCACCGGAU2000000009UUGAGAGAUUUUGUUGAGGAAGACAACCAACGAU2000000009UUGAAAAAGAACUAGAAGAAUGGGAUGCACAACUUGCCCAGAAAGCUUUGCAGGAAAAGCUUUUAGCGUCUCAGAAAUUGAGAGAGUCAGAGACUUCUGUGACAACAGCACAAGCAGCAGGAG2000000006ACCCAGAAUAUCUAGAGCAGCCAUCAAGAAGUGAUUUCUCAAAGCACUUGAAAGAAGAAACUAUUCAAAUAAUUACCAAGGCAUCACAUGAGCAUGAAGAUAAAAGUCCUGAAACAGUUUUGCAGUCGGCAAUUAAGUUGGAAUAUGCAAGGUUGGUUAAGUUGGCCCAAGAAGACACCCCACCAGAAACCGAUUAUCGUUUACAUCAUGUAGUGGUCUACU2000000009UUAUCCAGAACCAGGCACCAAAGAAAAUUAUUGAGAAAACAUUACUAGAACAAUUUGGAGAUAGAAAUUUGAGUUUUGAUGAAAGGUGUCACAACAUAAUGAAAGUUGCUCAAGCCAAACUGGAAAUGAUAAAACCUGAAGAAGUAAACUUGGAGGAAUAUGAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAA2000000006ACAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACC2000000009UCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGA2000000006ACUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAA2000000006ACUGCACACUUUCCCUGAACACACUGUAUAA2000000006ACUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUA2000000006ACUUUUUUUUAUUUUAAUA2000000006ACUGCAAAAGACAAAAUGACUAUACAG2000000006ACU2000000009UUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGA2000000006ACUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUA
2166   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAA2000000006ACAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACC2000000009UCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGA2000000006ACUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAA2000000006ACUGCACACUUUCCCUGAACACACUGUAUAA2000000006ACUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUA2000000006ACUUUUUUUUAUUUUAAUA2000000006ACUGCAAAAGACAAAAUGACUAUACAG2000000006ACU2000000009UUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGA2000000006ACUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUA
2167   mRNA  unknown    Homo sapiens    AAGCCAUCCCACUGGCCUGGACUCUGCUGGGAUUAUUUUGACCCCCCAGGGCAGAGUGUAGCCAUCUGACUGGCUUUCUCUCUCGGCAGGAGACGGGGCGCACGCCUGCAGGCUUCAGUUUCACAUUCUUGGUACCUCCUGGUGGUGCCUGGGAGGGAGCCACUGCUGUACAGAGAUGCCAAUUCCAGAGGCAUGGUCCGGCACAGAGCGCUGGCUUCCAGCUGAAGG2000000006ACAUGUGUAACAGCAGGAGAUACCUUUCUCUGGGGUCCCAGGCUCCCGUCCUGGACCUUGGCACCCCGCCCCCCGUGCAUUGUCGUCUUCUGAGUCUGGCUUUGUCUGGCACAUGAAGUUGGAUGGGUAG2000000006ACUCUGGAAGCGUCCAGACCAGCUUGCGAUGCUGAUGAAUAAGCUGAUUUUGAUGGGGUGUGUGAAACGGAGAUGCCAGCCCAGGGGCUCAGCUUGCUCGUGCUCUCAUUUAAAAGCAGAAAAUAGCG2000000006ACUUCAUUCUCGGAUACGUUUGCCAGCCCCAAAGGAUUAAUUAUCUACACACCCAGAAGCAGUGGAGCAGAAUAUUUUGGCAGGAUUUUCAGGAUUUGUGUCAUCGUUGCUUAAUAUCUGUUUCUUCACAGUCGGUUUUGGGAUUUGAGAUUGACGCGGUGAACUCUGUCCAGUUUUCAA2000000006ACCACACAGAGACAAGGUCGGUCUCUGUCGCCCAGGCUGGCGUGAAGUGGCGCAACCAGCUCACUGCAGCCUUGACCUCCUGGGCUGAAGCAAUCUUUCUGCCUCCACCUCCCGAGUGGCUGGGACUAUAGUUGUGCACCAGCACGCCCACCUCCUGCCCAGGGUUGUUACUGGGGUGGUCACGUGGGCAGCUUCUGCCUGGGAUGGGCCACAAAGCCAGACUCCCGGCAGGGACACGGGUGUUCCACACAAGCUGCGUUGUUGGUUCCCUGACGCCCUUCAGGCUGGGGGGUGGGAAAGCCGAUCCCCCAAGUGCCUGCAGAGCCCACCUGGCGCAGGCCUCGCCGCCUCGAGGCUGCUGCUCGCACUUCUGCCCCUUCCCCCGGCCAGGCCCCCGUUCCUUGAGGCCGUACCACAAGGUGCGUUCAUUUUUCCACACCGUGAGCUGGGCUUGGCAGAGCCUCCACCUUGUGGCCAGUAUUCCCAGUGGCCCCUUUGAGAGGAUUUCCUGGAGCUCCCUGUCUGAGCUUCCCGG2000000006ACUGAGGGCACUGGGAAGGAGCCUGCGGAGCUGGAGGUCAGCGGGUGGACGGGUUGCGCUGUCCUGGCUUUCGGAGUGUAGAGCCAGAGGGGAUGGG2000000006ACAGGUGCCCUGCUGCUGGGCUUGGUGGUCCCUGCUGCAGGGAAGGGGCAGCUGGUGUGAACACAAGGAGCUGCGGGGCUGGAGAAGGCCAGGGCCAGGAGCCUGCCGACGGACACCAGCGAGGGGCCAGGCCGGGCCAGGAGCCUGCCGACGGACACCAGCGAGGGGCCAGGCCGGGCCAGACUCCCUGGCCGGCUGGGAUCUGACAGGAGUGCCAGGCUCCUUGGGCCGCCCGAGGAACCGCUUGUUUGCCUGUGCUUUUUCAUCUGUAAAUGGAAUGAGUUGG2000000006ACACAAGAUCCAAGCGCCCUCCCCUGUUGGAGAAGGUUCUUGUGGGCUCUGGGCCCAUCCCACAUCCCACAGUGGGCAGGAGGCCACCAAGAGGUGCAAGACCAUGCCCUCUGUUUCGAUAGGAAGCUGGGCCUCAGAGGGGCCUGGGGCCUGUGUCUGAGACCCGGCCAAGUGCUGG2000000006ACGUCUCCCCUUCCUCAUGGCUGUUAUGGCUGAAUUACGUCCCCCCAAAUUCUCAUGUUGCAGCCUUAACCCCAGCACCUCAGUGUGGG2000000006ACUGGGUUUGGAGAUGGAGCCCCUACAGAGGUCAGCAGGUUAAAAGAGGCCAUCAGGGCUCUGGGUGGGCCCUGAUCCAAGCUGCUUGGUGUCCUUGUAAGAAGAAGAGAUGAGGACACAGACACACACAGAGGGACAGCCCCAUGAGGAAACAGGGAGGCAAUGCCGUCUGCAAGCCCAGGGCAGAGGCCUCAGGAACCAGCCCUGGUGACACCUGG2000000006ACCUUGGACCCCCGUGCCCAGG2000000006ACAGUAGGAGAAUUGGAGCCGCCUGGCUGCAGUCCUUCCCGAUGGCACCCUGUAUUAGUCCGUUCUCACACUGCUAAUUGUUGGGAAAAGGGCUUGUGGAAUGCCUGUAUAAACUGGCCAUGAAAAUAUGGGACAAUAAGUUGUGGAAAGCCACAAGAGGCCUCUGAGGAGGAAAGCCUCCUAAUUGCCAUCAUGUUCGCAUGCUCAGGGCGAGACCUGCUGUCUUAUCUGUAAACACCGUGUUCAAGGAGAAAG2000000006ACAUUCCUUCGAAGCACUGG2000000006ACUGUGG2000000006ACAGACACACGAGCUCCUGGUUAAGCCCGCUCCCACCAGCUCCUGUCCGAUAAGUUAAAGAUACGCUGUUUGAGCACAAAGGAGAUUCAUUGAAACCGCUAUUGCUGUAGAUUACGCCUGUGACGCACUGCCUCCCUUUCACUGUUUCGCCCUGAAUAUCUGCUUCUCAGAUCUAAGUGACUGUACUCAAUAAAUAGCGUGGAGACCAGA
2168   mRNA  unknown    Homo sapiens    AAGCCGGCGGGGGGCGGGGAGCUGCUGCGGCCAGACCCACGGGCAGCCGGGCGGGCGGACGCCUCCAAGACCAGUCUCUGCCUCCGCAGCGUCAGCGGGAGCGGGCUGCCUCCGAAGAAAGGAGAAUGGCGUUCAGUAAAGGAUUCCGGAUCUAUCACAAAUUGGAUCCCCCACCUUUCAGCCUCAUAGUGGAAACUAGGCAUAAGGAAGAAUGUCUCAUGUUCGAGUCUGGGGCUGUCGCUGUGCUCUCAUCUGCAGAAAAAGAGGCAAUCAAGGGUACAUACUCCAAAGUACUGGAUGCAUAUGGACUCUUAGGUGUUCUGCGGUUAAAUCUUGGUGAUACUAUGUUACAUUAUCUGGUCCUAGUCACUGGAUGUAUGUCUGUUGGAAAAAUUCAAGAAUCUGAAGUUUUCCGAGUUACUUCCACUGAGUUUAUAUCACUGCGAAUCGAUUCUUCAGAUGAGGAUCGCAUUUCAGAAGUGCGGAAAGUUUUGAAUUCAGGAAACUUUUAUUUUGCAUGGUCUGCAUCUGGCAUCAGUUUAGAUUUGAGUCUUAAUGCGCAUCGUAGCAUGCAAGAACAGACAACUGAUAAUAGAUUUUUCUGGAAUCAGUCUUUGCAUUUGCAUCUCAAACACUAUGGCGUGAAUUGUGAUGACUGGUUAUUACGUCUUAUGUGUGGAGGAGUAGAAAUCAGAACAAUUUAUGCUGCUCAUAAACAGGCGAAGGCUUGCCUCAUUUCAAGAUUAAGCUGUGAACGAGCUGGGACCAGGUUUAAUGUCCGGGGAACAAAUGAUGAUGGUCAUGUUGCCAAUUUUGUAGAAACAGAACAGGUUGUGUACUUAGAUGACUCAGUUUCUUCCUUCAUACAAAUCCGAGGAUCUGUUCCAUUGUUCUGGGAGCAACCAGGGUUGCAAGUGGGAUCUCAUCGUGUCCGUAUGUCAAGGGGAUUUGAAGCCAAUGCACCUGCUUUUGACAGGCAUUUUAGAACACUUAAGAACUUAUAUGGUAAACAAAUAAUAGUAAAUUUGCUUGGAUCUAAGGAAGGUGAACAUAUGCUAAGUAAAGCUUUCCAGAGUCAUUUGAAAGCUUCUGAACAUGCUGCUGAUAUCCAGAUGGUGAAUUUUGACUAUCAUCAAAUGGUUAAGGGAGGAAAGGCAGAAAAAUUACAUAGUGUUCUUAAACCUCAAGUCCAGAAGUUUCUAGAUUAUGGAUUUUUUUAUUUCAAUGGAAGUGAAGUUCAAAGAUGCCAGAGUGGUACAGUUCGAACAAACUGCUUGGAUUGUCUUGAUAGAACAAAUAGUGUGCAGGCAUUUCUUGGCUUAGAGAUGCUAGCUAAACAGUUGGAAGCUCUUGGUUUAGCUGAAAAGCCUCAGUUGGUGACUCGCUUUCAAGAAGUUUUUCGGUCAAUGUGGUCCGUGAAUGGUGAUUCAAUCAGUAAGAUAUAUGCAGGAACUGGAGCUCUUGAAGGGAAAGCGAAGUUAAAAGAUGGUGCUCGCUCUGUUACCCGAACAAUUCAGAAUAACUUCUUUGACAGCUCCAAGCAAGAGGCCAUUGAUGUUUUGCUACUGGGAAAUACUCUGAAUAGUGAUUUAGCUGACAAAGCUCGAGCACUUUUAACUACUGGAAGUUUGCGUGUUUCUGAGCAGACAUUACAGUCAGCAUCUUCUAAAGUACUAAAGAGCAUGUGUGAGAAUUUCUACAAAUAUUCAAAGCCUAAGAAAAUUCGAGUAUGUGUCGGAACCUGGAAUGUGAAUGGUGGGAAGCAAUUUCGCAGCAUAGCUUUUAAGAAUCAGACACUCACUGACUGGCUUCUUGAUGCACCCAAGUUAGCUGGCAUCCAGGAGUUUCAAGAUAAAAGAAGUAAGCCAACUGAUAUAUUUGCAAUUGGUUUUGAAGAAAUGGUAGAAUUGAAUGCUGGAAACAUUGUGAGUGCAAGCACAACAAAUCAGAAGCUCUGGGCUGUAGAACUUCAGAAGACAAUCUCCAGAGACAACAAGUAUGUGCUGCUGGCUUCUGAACAGUUGGUGGGCGUCUGUUUGUUUGUUUUUAUCAGACCACAGCAUGCUCCUUUUAUCAGGGAUGUUGCAGUUGAUACUGUGAAGACUGGAAUGGGAGGUGCAACUGGAAAUAAGGGAGCAGUUGCAAUCCGAAUGCUCUUCCAUACAACCAGCCUUUGCUUCGUCUGUAGCCACUUUGCUGCAGGGCAGUCACAAGUCAAAGAAAGAAAUGAAGAUUUUAUAGAAAUAGCACGAAAAUUGAGUUUUCCUAUGGGAAGGAUGCUAUUUUCCCAUGACUAUGUAUUUUGGUGUGGUGAUUUCAACUAUCGAAUCGAUCUCCCUAACGAAGAAGUUAAAGAGCUCAUAAGACAGCAAAAUUGGGAUUCUCUUAUAGCAGGAGAUCAACUUAUCAAUCAGAAAAAUGCUGGACAGGUUUUUAGAGGAUUUUUAGAAGGAAAGGUAACCUUUGCUCCGACAUAUAAGUAUGACUUGUUUUCUGACGACUAUGACACCAGUGAAAAGUGCCGCACCCCUGCCUGGACAGACCGUGUCCUUUGGAGAAGGAGGAAAUGGCCUUUUGAUAGAUCAGCUGAAGAUCUAGAUCUUCUAAAUGCUAGUUUUCAAGAUGAAAGCAAAAUUCUGUACACGUGGACUCCAGGCACUUUGCUGCACUAUGGAAGAGCUGAGCUGAAGACUUCUGACCACAGGCCUGUCGUUGCCCUGAUUGAUAUAGAUAUAUUUGAAGUUGAAGCUGAAGAGAGGCAAAACAUUUAUAAAGAAGUAAUUGCAGUUCAGGGUCCACCAGAUGGUACAGUAUUGGUCUCAAUCAAAAGUUCUUUACCAGAAAAUAAUUUUUUUGAUGAUGCCUUGAUUGAUGAGCUUCUGCAGCAGUUUGCAAGUUUUGGUGAAGUUAUACUUAUAAGAUUUGUAGAAGAUAAAAUGUGGGUUACAUUUUUGGAGGGAAGCUCUGCCUUGAAUGUUCUGAGCCUAAAUGGUAAAGAGUUAUUGAAUCGGACUAUAACUAUUGCUUUAAAAAGUCCAGACUGGAUCAAAAAUUUGGAAGAAGAAAUGAGUUUAGAGAAAAUUAGCAUUGCAUUGCCAUCAUCAACAAGCUCUACCCUGCUUGGUGAAGAUGCAGAGGUUGCAGCAGAUUUUGAUAUGGAAGGUGAUGUUGAUGACUAUAGUGCUGAAGUGGAGGAACUUCUUCCUCAGCAUCUCCAGCCAUCUUCAAGUUCCGGCCUUGGUACUUCCCCCAGCUCUUCACCCCGAACUAGUCCCUGCCAGUCACCUACAAUAUCAGAGGGUCCUGUACCUUCCCUUCCCAUCAGACCAAGCCGAGCACCGUCAAGAACUCCUGGGCCUCCCAGUGCACAGAGUUCUCCUAUUGACGCGCAGCCAGCAACGCCGCUGCCGCAGAAAGACCCCGCCCAGCCCUUGGAGCCCAAGCGGCCGCCGCCGCCCCGCCCGGUCGCCCCUCCCACACGCCCGGCUCCCCCACAGAGACCUCCUCCGCCUUCAGGGGCUAGGAGUCCUGCACCCACUAGAAAGGAAUUUGGAGCACCCAAAAGCCCUGGAACAACAAGGAAAGAUAAUAUAGGACGCAGUCAGCCUUCACCUCAAGCAGGACUUGCAGGCCCAGGACCUGCUGGAUACAGUACAGCCAGACCGACGAUUCCUCCUCGUGCUGGAGUUAUCAGUGCCCCACAGAGCCACGCGCGGGCAUCUGCUGGAAGACUGACUCCUGAAAGCCAAAGCAAAACAUCAGAAACGUCGAAAGGUUCAACUUUCCUUCCUGAACCACUGAAGCCUCAGGCUGCUUUUCCUCCGCAGUCUUCUUUGCCCCCGCCUGCUCAAAGGUUGCAAGAGCCUCUUGUCCCUGUGGCAGCACCUAUGCCUCAGUCUGGCCCCCAGCCAAAUUUGGAAACCCCACCACAACCACCACCUCGAAGCAGGUCAUCCCAUAGCUUGCCUUCAGAAGCUUCCUCACAACCGCAACAGGAGCAACCAUCAGGGUAACAGGUAAAAACAAAUGGAAUCUCUGAUGGCAAAAGAGAAUCACCAUUAAAGAUUGACCCAUUUGAAGAUCUGUCAUUUAAUCUGCUUGCUGUAUCAAAGGCUCAGCUAUCUGUUCAAACGUCACCUGUUCCCACCCCAGACCCAAAGAGGUUGAUUCAGUUGCCUUCUGCAACGCAAAGUAAUGUUUUGAGUUCUGUAAGUUGCAUGCCAACAAUGCCUCCAAUUCCAGCUCGGAGUCAAUCCCAGGAAAAUAUGCGAAGUUCUCCAAACCCAUUUAUUACUGGCUUGACCAGG2000000006ACAAAUCCUUUCAGUG2000000006ACAGG2000000006ACUGCUGCUCCUGGAAACCCAUUUAGAGCCAAGUCUGAAGAAUCAGAGGCAACUUCAUGGUUCUCCAAAGAAGAGCCCGUUACUAUCAGUCCUUUCCCUUCUCUGCAGCCUCUUGGUCAUAACAAAAGCAGGGCUUCAUCUUCACUUGAUGGCUUUAAGG2000000006ACAGUUUUGAUCUACAGGGCCAGUCUACAUUAAAAAUUAGCAACCCGAAAGGAUGGGUAACCUUCGAGGAAGAAGAGGAUUUUGGUGUGAAAGGGAAGUCAAAGUCAGCUUGUUCAG2000000006ACUUACUGGGUAAUCAGCCAAGUUCAUUUUCUGGCUCCAACCUGACAUUGAAUGAUG2000000006ACUGGAAUAAAGGUACAAAUGUCUCCUUCUGUGUGUUGCCGUCAAGAAGACCUCCUCCACCUCCUGUCCCUCUGCUCCCGCCCGGCACCAGCCCUCCAGUAGAUCCUUUCACGACCUUGGCCUCUAAGGCUUCACCCACACUGG2000000006ACUUUACAGAAAGAUAACGCCAUGCAAUAGAAAACAGUGGGUACUUGCUUUUGGCAGGAUAGAGCUAAGAGAAUUGGGCAUUAGUAUUUCAUUAUGUGCAAUAAGUCAUUGUAAGUGCACUGAUAUCUUCACAAAACACCACUAUUUGAUGUGUACAGAGUUGG2000000006ACUAUGUGUAUAUUGGAAAUAAGGAAAAACCCUUCUCAUUGUUAACUGGAGUUUUGAUGUAUUUCUCUUUGGAUGAAUAGGAGACAGUAGUAGCCAUAAAAAGUACUUAUACUUUAGAAAACAGUCCUUAUUCAGAAACUUUUCGGUCAGUCUUCUGAAGAAUCUCAAAAAGCCCACCCAACUUUCAGCUGACAUUUCCACCAGCCCUCUCAUACUUGUUAACAAUUGGUAUCUUUGAGUAUUUACCAAAGAGCUGCCAAGGUUACAGUGAACAGAGUUUUGAAAGGCAUUGCUUUAAAGGAAAAAAGUAUAGGUAUGUGUACAUAUAUAAUACAUACAAACACAUGUACUUCUGUAUACAUUUACAUAUUUUUACAAUUCAUACUUUAAUUUCUAGGCUAUAACUCAGACCAAAUUAUACCUAAAAGUUCCAACAAAGUCCCUUUUUCAAUAUCACAUUACCAAAAAGAUGGCUGCAAAUGUAAUUUGGACCUUUCAUUAAUUUUGUUUUCAAAACUAGAAUAAUCUCACCACAGAAUCAGAAUUUUCUACCGUUCCACACCCAACCCCUUCAAAUACACACAACCUUGUUACUUUUCACUCCAGCACCUUCAUACGCUUUUCUCCAGGAGGAGGUUCUUGCAGCUGGAAACAGCCUAUUUUGUGGUCACUGUCAAGUGGAUGGAUAUUCUAGCGCUCCCAAAAAAGCACUAUGGCCUUAUAUGCAGGGAAGGCACAUACCACCAAGUUCAAUGAGAAAUAUUAGAGCUAACCGUACUCUCUUCUCUGCGUACGUUCGAGUAUACGUUGCCCAUAUCCCUCCCAUAUUUUCUUUUUGCUGCUUUUGCUCUGGAACUUUGCUUUUAGCAGGGAAAGCAGCUGUCCCCUGAGUGCUUUGAAUUGGGAAUAUACCCAGUGUGUGUUCUCCCCCCUCUUACGAGGCUACAUAACACAUCUAUGAUGCUGCUUUAAGUUUUUAGAGGCUAUACCUCAAAGUAGCUGCGGAUUUUGUCUCCUGCACUGCCAAUAUGCAACUGAUCCCGCUUUUAUUAAUUUUUUGAAGAAGUACACAGAAUUUUUACAGAAUGUAGUAUUUUGAUAUCAUUAAGUAAACCAAUCAGAAAACUCCUUGAGCAAUAGUUGUUUCUUUGUCAGUUUCAGUUACAAUCAUCUUUACCCAUUAAGACUUACAUUAACAUUCCUUUUAUAUAAAGAGUUGUAUAUGUCCACCUAAAUUCCUAUGUCCACACUUAACCUUUAAAGAUGUACAUUGAGGGAAUAUCAAAAAAUAGCGUUCAUGGCUACGAAUAUGUAGAAUGUUAAAAGCACAGCAAACUGCACUGCACUUAUAAAGCAAAUCUAUUAGAAAAAAAGCAUUUUUCUAAAUGCUCAAAUGUUAUCAAAAUACUAUAUUUAUAGAAGUAAUCUUCUCUGUUAACAGCCAAGAUUUGCUGUUAGAAAUAACUCUUGUGAGUUUUAUAUUGUGCUUUUUGGAGGUUCUAAUCAUUUCAGCAGUAGCGUCUUAAACAGCAGUAUUACUAUAAGCAGUUGCUUCAAAAUGUGAAUUAACUUGUUGAAACUGUGGCUUUAACA2000000009UCCAUGUGACUAGUGUAUAUGGUAUUUGCUCUCCAUUAGCAAAAUAAUUCAUUGUUAGGUAAACUUCACUAGUGCAAAUUGCAGAUCUGUGAGCAAUGUUUCCUAUUGAAUAUAAACUACUGUCUAAAAUAUACAUAUCAGCAGCCCAGCCU2000000009UUAUCAGGAAAAUUAUACUUGGCAAGUUGCUGAAAAUGCACAAAGUUAUGAAAGUUAAAGGUAUGCUGCAAAUAACUAGCCAUUAUUCUAUGUAUUAUUAAAUAUUUACUAGUUCUGUUAAAAGCAGAGCAGAAGUUAGACACUAAGGAUCUCUUUGUGAACUCUGUGUUCUCUAUAUUAGAUUGCUGUUUAUAUGUAAGAAUUUUAUUGCUUAUGUGGCAUACAAUAUUUAUAACUAUAAACU2000000009UUAUAGAAGUACAGUAUUAAAGUCAGUGGUACACAGACAUUCUGUACAUAUCCUGUGAAACGUGCUGUCAUAUGAAAUAAAUAUAUCUGUCUUUACCAUG
2169   mRNA  unknown    Homo sapiens    AAGGAGCCAAGAUGGCCGAAUAGGAACAGCUCUGGUCUACAGCUCCCAGCGUGAGCGACGCAGAAGACGGUGAUUUCUGCAUUUCCAUCUGAGGUACCGGGUUCAUCUCUCUAGGGAGUGCCAGACAGUGGGCGCAGAUGCAGUCGAAGCCCUGUGGCUCCACCCCGAGGGUCCAGCCCUUACCACUGCUAAGAACUACAACUCCCAGCCCGAGGGAGGUCUCUGCGCCUGCGGCCUGACGCCCUACGCCUACACUUCCCAGAGAACCUAGCGGUUACGCCAACGCGCGCGUGCGCCCUUGCGCGUUUCUCUCUUCCCACUCGGGUUUGACCUACAGCCGCCCGGGAGAAGAUGGCUGCCCCAGCAGUGUCCGGGCUCUCCCGGCAGGUGCGAUGCUUCAGUACCUCUGUGGUCAGACCAUUUGCCAAGCUUGUGAGGCCUCCUGUUCAGGUAUACGGUAUUGAAGGUCGCUAUGCCACAGCUCU2000000009UUAUUCUGCUGCAUCAAAACAGAAUAAGCUGGAGCAAGUAGAAAAGGAGUUGUUGAGAGUAGCACAAAUCCUGAAGGAACCCAAAGUGGCUGCUUCUGUUUUGAAUCCCUAUGUGAAGCGUUCCAUUAAAGUGAAAAGCCUAAAUGACAUCACAGCAAAAGAGAGGUUCUCUCCCCUCACUACCAAUCUGAUCAAUUUGCUUGCUGAAAAUGGUCGAUUAAGCAAUACCCAAGGAGUCGUUUCUGCCUUUUCUACCAUGAUGAGUGUCCAUCGCGGAGAGGUACCUUGCACAGUGACCUCUGCAUCUACUUCACAUGUAUCAUUCUCCGAGCCUGAUAUUCCGUCCUCAAAAAGUACUGAGUUACCUGUGGACUGGAGUAUUAAAACGCGACUCCUUUUCACCUCUUCUCAACCCU2000000009UUACCUGGGCAGAUCAUUUGAAAGCACAGGAAGAAGCUCAAGGUCUUGUCCAGCAUUGUAGGGCAACAGAAGUUACUUUGCCUAAAAGUAUACAGGAUCCCAAACUCUCCUCUGAGCUCCGUUGUACCUUCCAGCAGAGCCUUAUCUAUUGGCUCCACCCUGCUUUGUCUUGGCUAC
2170   mRNA  unknown    Homo sapiens    AAGGCGGGCUCGCCCUGCCGGCGGCGCGGCCAUGCUCAUCACGCUGUGCUACCUGUACCUGUGGGCGCGCUGGGGUCGCCGGCCGGCUGAGCUCGUGCGCGCCACGGUGCGGCGGCUGCGUGCCUCGCGCUGUUCCUUCACCUUCUGCGGCGCGGCCGCGCAGCCCCCGGGCGCCCGCGUGUGCCUGAGCCGUGGCGGCCGCGUCUUCUGCGUCAGCGACAGCCAGUCCAUUGAAGACUUGAACAAGUGGGCCCUAUUUCUUGUGUCUCCUUUUAUACUUGAAGCAGAACACAUAGCAUUUGUGACGGAGAGCAUUUGGGUACAAAGUGAGAAUUUACAGAGAUCAUCCUCUUCAGAAACAAUUGUCAAGUGGUCAGACUGUUGUUUGCCAUUAGCUUGCAGACCUGGGGAUCCUUAUCGGCUAAUUGCUGAAGCAAGUGUGGACAACUUCAGCAAGCUGGGGGUGGCGUUCAUGGAAGAUAGACUCCACAUGGAUAAUGGACUGGUACCCCAAAAGAUUGUGUCGGUGCACUUGCAGGACUCCACUCUGAAGGAAGUUAAGGAUCAGGUCUCAAACAAGCAAGCCCAGAUCCUAGAGCCGAAGCCUGAACCUUCUCUUGAGAUUAAGCCUGAGCAGGACGGUAUGGAGCAUGUUGGCAGAGAUGACCCAAAGGCUCUUGGUGAAGAACCCAAACAAAGGAGAGGCAGUGCCUCUGGGAGUGAGCCUGCUGGGG2000000006ACAGUGACAGGGGAGGGGGCCCCGUUGAGCAUUAUCACCUCCAUCUGUCUAGUUGCCACGAGUGUCUGGAACUUGAGAACAGCACCAUUGAGUCAGUCAAGUUUGCGUCUGCCGAGAACAUUCCAGACCUUCCCUACGAUUAUAGCAGCAGUUUGGAGAGUGUUGCUGAUGAGACCUCCCCCGAAAGAGAAGGGAGGAGAGUCAACCUCACGGGAAAGGCACCCAACAUCCUCCUCUAUGUGGGCUCCGACUCCCAGGAAGCCCUCGGCCGGUUCCACGAGGUCCGGUCUGUGCUGGCCGACUGUGUGG2000000006ACAUUG2000000006ACAGUUAUAUUCUCUACCACCUGCUGGAGG2000000006ACAGUGCUCUCAGAGACCCGUGGACGGACAACUGUCUGCUGUUGGUCAUUGCUACCAGGGAGUCCAUUCCCGAAGACCUGUACCAGAAGUUCAUGGCCUAUCUUUCUCAGGGAGGGAAGGUGUUGGGCCUGUCUUCAUCCUUCACCUUUGGUGGCUUUCAGGUGACAAGCAAGGGUGCACUGCACAAGACAGUCCAGA2000000006ACUUGGUUUUCUCCAAGGCUGACCAGAGCGAGGUGAAGCUCAGCGUCUUGAGCAGUGGCUGCAGGUACCAGGAAGGCCCCGUCCGGCUCAGCCCCGGCAGGCUCCAGGGCCACCUGGAGAAUGAGGACAAGGACAGGAUGAUUGUGCAUGUGCCUUUUGGAACUCGCGGGGGAGAAGCUGUUCUUUGCCAGGUGCACUUAGAACUACCUCCCAGCUCCAACAUAGUGCAAACUCCAGAAGAUUUUAACUUGCUCAAGUCAAGCAAUUUUAGAAGAUACGAAGUCCUUAGAGAGAUUCUGACAACCCUUGGCCUCAGCUGUGACAUGAAACAAGUUCCUGCCUUAACUCCUCUUUACUUGCUGUCAGCUGCGGAGGAAAUCAGGGAUCCUCUUAUGCAGUGGCUUGGGAAACAUGUGGACUCCGAGGGAGAAAUAAAAUCCGGCCAGCUCUCUCUUAGAUUUGUUUCAUCCUACGUGUCUGAAGUAGAAAUAACCCCAUCUUGUAUACCUGUGGUGACCAACAUGGAGGCCUUCUCAUCAGAACAUUUCAACUUAGAGAUCUAUCGCCAAAAUCUGCAGACCAAGCAGUUGGGGAAAGUAAUUUUGUUUGCCGAAGUGACCCCCACAACGAUGCGUCUCCUGGAUGGGCUGAUGUUUCAGACACCGCAGGAAAUGGGCUUAAUAGUGAUCGCGGCCCGGCAGACCGAGGGCAAAGGACGGGGAGGGAAUGUGUGGCUGAGCCCUGUGGGAUGUGCUCUUUCUACUCUGCUCAUCUCCAUUCCACUGAGAUCCCAGCUGGGACAGAGGAUCCCGUUUGUCCAGCAUCUGAUGUCCGUGGCUGUCGUGGAAGCAGUGAGGUCCAUUCCCGAGUAUCAGGAUAUCAACUUACGAGUGAAGUGGCCCAACGAUAUUUAUUACAGUGACCUCAUGAAGAUCGGCGGAGUUCUGGUUAACUCAACACUCAUGGGAGAAACAUUUUAUAUACUUAUUGGCUGUGGAUUUAAUGUGACUAACAGUAACCCUACCAUCUGCAUCAACGACCUCAUCACAGAAUACAAUAAACAACACAAGGCAGAACUGAAGCCCUUAAGAGCCGAUUAUCUCAUCGCCAGAGUCGUGACUGUGCUGGAGAAACUGAUCAAAGAGUUUCAGGACAAAGGGCCCAACAGCGUCCUUCCCCUUUAUUACCGAUACUGGGUCCACAGUGGUCAGCAAGUCCAUCUGGGCAGCGCAGAGGGACCAAAGGUGUCCAUCGUUGGCCUGGACGAUUCUGGCUUCCUCCAGGUUCACCAGGAGGGCGGCGAGGUUGUG2000000006ACUGUGCACCCGGACGGCAACUCCUUCGACAUGCUGAGAAACCUCAUCCUCCCCAAACGGCGGUAAUGCCGGGCGUCCCCGAGACGCGGCUGCCUGUCCGUGCCCAUGCAUCUGGAAAUCUAAUUUAGAGUUGUAGGUGAAUUUUCUUUUCCUCCAAUUCAUUUGUUAAGUCUUUGUUCUUUUUCUGUGUUUCUGUUUGUUUUUAGGUUUGUUUUGUUGUCGUUUUCUUUGGUGUUUGAAGAGGCUCUGGGAUAGAUGGUUAAGAAGUAGAAAAUUUAGUUUAGGGAAAGCCCUCCCACAGGUGGGAAAUUGCUCUCCCCUCUGUGGCUUGG2000000006ACUUACGUUUAUUGUCAAGGGGAGUUUUUACAUGGAAAUGACAAUGGGAAAAUUCAGAUAUUUUCUUAGUAGUGCAGACCUUUACCCCUAGUCUAUGAAAAAACAAACCAAAAUAUGCUCUUGCGCCCAGGCCAGUGGUGAGUUAGAGGUAUGCUAUCACUGUUUGUAAGCAUCUGGGGAGGUACUGAACUGUAAGAACAUGCUUGGACACUUAGUCAUUGUUCUGUGUUUUUAUUAAUGAAGAAAAGGGAAGACAGACUUCCAAGAGUUACUGUCCACCCGGUGGUGUGGCCCCAUAGCGAAGUCUAAAUGCCUGUAGAGAUAGAGCUAGCUGGUGUGGUUGCAGUGACCUUGUAGAGGAAAUCAGUUCAUUACUUUGACAUCAUUCAGUGAGCUCUCCUUUCCUAAGGAAGUUUAAAUGUCCUUAGUUAGGGACUGACUUUCUUAAGUAAGUUUAAAUUUACUACAUAUUGUGAAGAGACAGGAUCAAGUUCAGAAUCCUUAAAUGUCUGAUUAGGCAUCACUUGGAUGAGGAGGUGGGCGAUUUGGCUCUGACAGCUGGAGAUGAAGGCACACUCAUACCACAUACAAGGGAGGAUUUGGAGCUUUUAAGCCAGUUUCAGAUUUACUCUGAAAUGUGGAGCAUUCCUGCAAGACUGUGCAGCUCACGGAAUAUAGAAGACAUGGCAUUUUACUCAGAAGUCAUAAGUUUUUGCCCCCCUCAUUUACCUCGUAUUACCAAGAAAGAAAAUGUUAUCGAUACUAAACACCAUCAGUUCAGAGGGAGGAUGUGUGUGUGUGCCCGCAUAUGUGUGUGCGUGCGUGUGUGCGCACAUAGCUUUAAAAGAAGACAUUCAAAAUUUGAUGUGCUACAAGCCUCAUGAAAGAACAAAAGAAAUGAAGCCUUUUGAUAUGCAUUCGCUAUUCCCAGAUGUACGCCAUGCCUUUUCCAUGUCCCUCCUAUCUCUGUUGAACUUAUGAAUCAUACUCAUUACUUUUCAGCUUUUUAAAAGGCCAAUUUUUGUCCAGUUUUCUCUCUUCCAGUCCCAGCUGAAAUUAGUGGAAAGAAAGUUUGAUGGAGCUUUCAGCUUUGAACAAAAUCCCUUCAUUGUAAACUAGCACCAUCU2000000009UUAUCCAGGUCUUACCCAGUCAGGCUAAUUCCAGAAACUUGUGGUUUUUAGUAUAGUCUGUCUACCU2000000009UUAGCCAGGCACAGGACAGCCCUAUGAAAAAAUACCCAAUAUAUAUUUUUUGGAAAUGAAACAUUAAAAGAACUUAAAAAGUAAUUUUUGGAAAUGAGGCUUCAAUUAGAAUUAUUUUUCUCAAAAAACAAACAAACAAAAAACACAAAAAAAACCACUCUUCUCCAAAUGCCCAAGCCUUCUUUCAAAAUUAGUUAGAAACUUAAGUAAAAUACAAGUCCACACCAUCCCCAAAUUACAAAAUGG2000000006ACUUACCCUUGAGAGGGCAUCUGCAGAAUAUCAUCAGGGACAAAGAUCUCGAGGCUAACGAUGUAGGUUUCAUUUCUCAGACUUUGUAAUAUAAGGCAAGCCCUCUCUCAGAGCUGCCAUCAUCACUUUUUGAAUUUCUUUGGGGGUUAUUUAAUGAAAAACAUGCUAUGUUUUGUUUUAAGCUGAAGUCCUAUUCUGGACACUCUGCUUUGGGAAAAAAUGUUAUCAUUUAAUUUCCUUUCUGCAAAUUAAAACUAAUGAAGUGUGGCCUUGUCAAAGGCUAUGGAGAUGUUCCGGGCAUACUGCUGUGCUCUGUGCUUUCCAGCAGGCGCUCCUCCCUCACGCAGGAGACUCAGUUGUCCUGAGAGAGAUGAAGCAGCCUUGAAGCAGAUGCUGCGUUUUCCAUAAACCUGAUUUUGCCUCACAUGAACCAAAG2000000006ACUCUCAAAACUCCGCUUCUAUAGAAUUAGCUGAAUAAAGGCAUUUUACUGAUAGCUGUUCGUGUUAGCGAAACCUGUCUACCUGCUAUAGCACACUCUCCGAUUUGGGCCAUUUAUGCACCCCGCAACCUGGGAUCUCAAGGAGCU2000000009UUAAAGUCUUAAUGGGAACUUGGCAUUUUCCUGAUGAUCU2000000009UUAAAAUGUGGUCACUAAACUCAGGAUUGGCGUGUGCUUUUAGAACACUGGAGUAGCCCUUGUUUUAGAGGCUGUGCAUUGAGUAUCGACCGUAUUUUGUAAAAGGCAAGAUAUCCUCCCUUCCAGGCUGGUAACGGGUUUCAAGGGGACUCUUGAGGAAGUGCCCCCUAAAAUAGAACACAGCAAUAACUGGGCUUCCUGUCCCCACCCCCACCCCAGCAGUGCUCUCUGGCACUGGGAACUCUGCUAGGGAGUGGUGGAAGUAGGAAGGAUUUGUGUGCAAAGGAAAAUCGUGGUUGAGUUUCACUGCAGCAGGCUGACGUUGCCUGAUGUGAGAGCAAGUGGCCGACUGGGGUGCGGGUGCACAGGUCGGGGGAGCACAGGCCACAGAGCGCAGCCUCUGGGGGUCCCCCAAGGCACAGCAUAUACAGCAUGGUCGCCCCUUGCCCUGGAGUCUGGGAACAAAGAGAGGAGCCAGCCUCCCCGCACUGCUUCAGAUGGAAAAGGGAGGCAGGGUGGGCUUCCGUUCUCCAGAUCUGUUUGCUCUUAACAGGCAGAACAUGGGAGAAUCCUUAUUCCUGGUUAAUCACUAUGCAUAUUUGAAAUAAAAGAAAGCGUAAGCCUCUGCAAUUUUAACUUCUCAAAGGAUGUCUCUGAAAAGAAUCACU2000000009UUAAACCAAUGCCUAUAAAAAGCAAGUCUACCAAAAUAAACUAAGACUUUCUAUGUGGUUUGGGCUCCCUCUUAUUUUUACAAGUUUCAUUUUUAAAAGUAGGCAACUACUUUGGGUUACAGUAUUUUUAUUCAUAUUUAAACAUUUUUACAAAAUAAAUAAAGUGUUUUACAUAGUAAGGAAUAUGUACGUAUUUCCAAGUAUUAAGAAGCCAAGUGUUUUUUUUUUUGACGUAUUAUUGACAAAUGUAUUCAGCGCCAUACACAAGAGAAAUAUUAUUACUCCAAAGAACGAAAGUUAACAAAACUCCAAAGCAAAAACCCUUUUAAUGGAGGUGAGAAAUAAAUUUAAUGUAACAACAGCUAGAUUGUUUUUAGGAUUUUUCUUUUCUUUUGUGGAAACUUCUUGACUUGACUUUUCAUCUGAACAGUUUUUCCCCCCAAGAUUUUAAUCUUAUAUGUCAUACUUAAGUUUAGGAACAGCUUGAAUAAUUAGCAUUCUAGAUAACACAAGGGCCAUGAUUCACUAAAAUUCCAAGCUACUGUAAUUUUAUGGCAUUUAUUUGCAAAUGUUCUUUGUAUCUCAUUUUAUCUGUAGCAGUCCCCACUAGUCUACCUUAACCAUCUUAUAGCUCUGGUAAAUUAAAACUUACGUAGACUUUAUACAAGAUCCAUUGGCCGUAUUAAACCUCCCCCACUCUUAGGGCUUAGGGCGGAAGGGACGAAGGCAGGGCUGAUAGGACUUUUAAAAGGAUAAAAGGAGUGGGGGCAAGGGAGGCGGAAAAUACAGGCUCUUGCAGAUACCCUCCGCGCUGCCCUCCACACCCAGCCCACUGCUCUACAAAGGUAUGAAUGGAAUGGCUUUUCUAGAAAAGGGCUUCCAAGAACAUAAAGGAAUUCCUUUCCCUGGGAGGCCCCGUGGAGGGCUGAGCCAGCCUUGAAUUGGGCUUAUUUCUCAAAUCCAUUUGAUCUGGCAUUUUUGUCAACAUGGUACAUGUUAGGGCCUACGAUGAUUUUUUUUUCUUUUUUGUAAAAGAGAGGCAUAUGUAUUAAAAUGCUUCCUCUUCCCCUGCCGGAGCCUCACAGAAGUCAAGAAACGCUAUCCCCAGCUUAAAUGUGCAGACUCUUCAAGAUGGAGGUCACAAUAUUAGGUUGCCACAGUAACAGCUCUGCUGACUUCACACUCAGCCCUGGCCGUCCUGAAGCCAGCUCGUGUAAGAAUCUUCCUUCAUGUUCUAGGUUAUGAAAACGAAGUUUGUUUAGACAAGGACGUUUUCACUAGUACACAUUUUCAAGUACAUACACACUCUGUUACGCCUGUCCACGUUGUCACUUGUAAAUCUAUGAUAGGGUCUUUUUUCUCAACAGUAACCUUUGUUAUUGAACUGCUCCGAUAGCCUUGAUUUAUUUUUACUAAAUACAGCCCCAAAAGUUAAUAACAAGGUAGACACAAAAGCAUUUUGCAGUACUUUAUUGAAAAAUGUCGGUGGUAUCUCCUAGUAAUCAAACCUACACCUUUCAAGAAUCACGGUUUAAUUACAAGACUCAUGAACAUAAAAAAAUAAUACCCUCGGCUUAUUUCCUGUGCACACACUCACAAGGAGCUGUGAAUGAGGUAUAGCUGAGUGCGUGGAGAGGCGGGCACAUCCCUUCCUACCAUCCAGCCCCUUCGCUGCAUGACCCACGGUCCUAAAUUUGCAAAUUGUGACUCUUACCAUGAGGCCCACUGACAGACACCCUGUAGGGAUUGUGUCAGGUCCUCACUAAGUGACACAGGGUUGGCAAAAAAAAAAAAAAAAAAGUCAGUUCACAUUUUGAGAGCAGUUGGUGUAGGUGCACUUGAUUUUAGAACGAUGAGUUUAAAACAUUUGUGAAAACCUCUUUCCAUUCAGAAAGGUGGAAAAAGUUUCCUAAAAUAAACCAUUUUGAUAAAGCAGCAAAAUGCUGCAGUGUUGAUAGUGUGAAGAAAAUUGAAGGACGGCGGUUCAAUGCAUUGUGCAGUUCAGAGCCAUGACAGGAUUUUUCCAUGUUGAGAUCUUUAAGCAAAACCCAUAAAAAGUAAAAAUUAAUGGAAGCUCAUUUUUUAAACACUGCUGGUGCUUUAUGAAAGGAUUUCUGUUUACCUGUUGCACACGUAACAUGUUCUUACGAAGUUUUCUCGCUGUGUAGAAAAUGCUUAAAAUGUCUACAUCAUUUUCAUUACACCCCCUUAAGCAUGUUUUUCCUUCACAAGGUGCAGUCCAUUGACAGUGUUCCGUAUUGCACGUGCAAUUUAACUUUAUUAGCACUAUUUGUAGCAAACACGAGCCUAGUGAAUUACAGAUCUGUGUGGGCCAGAGGGAUUUUGCCACGUAAUAAUGAAGCUUGACAGGGUCAUUCUCAUAAACUGUCUGGCUACAUAUAUAUUUUUGCAUUUAAUGCCUAUUCAAUAUAUUCUGAAGGUGCUACUCUUGGUGUUAUCAAGAGUUCAUAGGGGUUAGGGGGAAGUAAGAGCUUGUUAAUGUAUUUGGGAAGCACACCUAUGUUCACAGACACAAAAUGGAAUUGCAUGGUCACCCCCUUAGUCUUGGUUUGUUGGCUUUUUGUAUUGAAGAAAGGGUUAAAUAAAAACAAAAAUAAUGAGA
2171   unknown  unknown    Homo sapiens    AAGUAAGAUUCCUCUUUUUAGAAAGUAAACAAUGAAUCUGUCACCAAGUUCUAACUGUAAAAUGGGGACAUUUUACCUUUCUUUCUUUGGAUAGGAUCAGUUCUUAAGAGCAGCCCCGGUA2000000006ACUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCA2000000009UCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAA2000000006ACA2000000009UCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCU2000000009UUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGG2000000006ACCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCU2000000009UUAAUGUUGUAAAUAUUUGGCAAUUUAAG2000000006ACAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUA2000000006ACA2000000009UCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUA2000000006ACACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGAC
2172   mRNA  unknown    Homo sapiens    AAGUCUCUGUAGGGCGGCCGGCUACCCUCAGCCGCCGCGCGUCAUGGCCCUUUCGGUGCCCGGCUACUCACCGGGCUUCCGAAAGCCGCCCGAGGUAGUGCGGCUCCGACGGAAAAGGGCCCGGAGCCGUGGAGCUGCCGCCUCCCCGCCCCGUGAGCUGACGGAGCCGGCGGCCCGCCGAGCCGCCCUGGUGGCGGGGCUGCCUCUUCGCCCUUUCCCUGCUGCGGGGGGCAGAGGCGGUGGCAGCGGCGGCGGCCCGGCCGCUGCUCGGAGGAACCCCUUCGCCCGCCUGGACAACCGACCGCGGGUCGCCGCGGAGCCCCCCGACGGGCCGGCCCGCGAGCAGCCGGAGGCCCCGGUCCCGUUUUUAGAUUCUAAUCAAGAAAAUGAUUUGCUAUGGGAAGAGAAGUUUCCUGAAAGAACAACUGUUACUGAAUUACCUCAGACUUCACAUGUAUCAUUCUCCGAGCCUGAUAUUCCGUCCUCAAAAAGUACUGAGUUACCUGUGGACUGGAGUAUUAAAACGCGACUCCUUUUCACCUCUUCUCAACCCU2000000009UUACCUGGGCAGAUCAUUUGAAAGCACAGGAAGAAGCUCAAGGUCUUGUCCAGCAUUGUAGGGCAACAGAAGUUACUUUGCCUAAAAGUAUACAGGAUCCCAAACUCUCCUCUGAGCUCCGUUGUACCUUCCAGCAGAGCCUUAUCUAUUGGCUCCACCCUGCUUUGUCUUGGCUACCACUGUUCCCUCGUAUUGGAGCUGAUAGAAAAAUGGCUGGAAAGACAAGUCCUUGGUCAAAUGAUGCAACCCUGCAGCAUGUUUUAAUGAGUGACUGGUCUGUGAGCU2000000009UUACUUCUCUAUAUAAUUUGCUGAAG2000000006ACAAAACUUUGCCCCUAUUUCUACGUUUGUACCUAUCAGUUUACUGUCCUGUUCCGAGCAGCAGGAUUAGCUGGAAGUGACUUAAUCACAGCUCUCAUAUCUCCAACAACUCGAGGUUUAAGAGAAGCUAUGAGAAAUGAAGGUAUUGAAUUUUCUCUGCCU2000000009UUAAUAAAAGAAAGUGGCCA2000000009UAAGAAGGAGACAGCAUCUGGAACAAGCUUGGGAUAUGGGGAGGAGCAAGCCAUCAGUGAUGAGGAUGAAGAGGAAAGUUUUUCCUGGCUGGAAGAGAUGGGUGUGCAAGAUAAAAUUAAAAAGCCAGACAUACUUUCUAUCAAGCUGCGUAAAGAGAAACAUGAAGUACAAAUGGAUCACAGACCUGAAUCUGUUGUGUUGGUAAAAGGAAUCAACACCU2000000009UUACAUUGCUCAAUUUUUUGAUUAACUCUAAGAGUUUAGUUGCUACCUCAGGUCCACAGGCAGGACUUCC2000000009UCCAACCCUCUUGUCCCCUGUUGCUUUCCGAGGUGCCACAAUGCAAAUGCUUAAGGCACGGAGUGUGAAUGUGAAGACACAAGCUCUUUCUGGAUACAGAGACCAAUUUAGUUUGGAGAUUACAGGUCCUAUCAUGCCUCAUUCUCUGCAUUCACUGACCAUGCUGCUCAAAUCUUCACAGAGUGGAUCUUUCUCUGCAGUACUGUAUCCACACGAGCCAACUGCUGUAUUUA2000000006ACAUCUGCCUGCAAAUGGACAAAGUACUUGAUAUGGAGGUUGUUCAUAAGGAGCUUACUA2000000006ACUGUGGUUUGCACCCUA2000000006ACACUCUGGAGCAACUUAGUCAAAUACCGUUACUUGGGAAAUCAUCU2000000009UUACGGAAUGUGGUGCUGAGAG2000000006ACUACAUUUAUAAUUGGAGAUCCUGAACACCAAAGUAAGCCUAAAAGGAAUCUUUGAGGAAAAAAGCCUUCUAGCAAGGAAAUUCAAGAUUCUUGAAGUUGAAGGAAUAUACUGAAAUGUUUAUAAACAUA2000000006ACUUUUACUAC2000000006AGUAGCAUCUAAGGUUUUAAAUGUGUUUUACUAUUUUCAGAUUAGAUUUUUAGAUAUAAAGAUGAAAAACUCAGAUAACUCAAAUGAGAUAUCUAUAUCCCUACAACCUAAUUGUAUAUUGAGCAGAAACUGAAUUAAUAUGCUUCCUUGCAAAUGGGAAAUCACAUAGCAGUUACCCCAUGGCAUUGUGACUAAUGGCAUCAGGGCAAAAAUAUGUUACU2000000009UUACGAUUUACCUGUUAGCAGGUUCUUGUUUCAUAAAGGUAGAAAAUAAAUACAGACAACAUCUACUGAGCUAGUUGAUUGGUGAUGCUUCUACCUUAAUAUCUUUCCUACUGAUUUAUAAUUCCU2000000009UUAUUUUCACAUAUACUAAAACUUUUUAAAUGCAUGUUAAUUCAGAUAAAAAGGCAUUUUGUAUUCCACAUAGAAUAGUGUUAAGAAUUGUGAAGUACACUGAGCUGUCACGGCAAAGUAGUAUUUAAUGUGCUUAUAGGGGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUAGGGGGGGACUGUAUAAUUCACAUUUUUAAAAUAAAAGUGCUUAAAAAUCAAAA
2173   unknown  unknown    Homo sapiens    AAUCCGGUUCCAUCCGGUUCUCCCACCGCCCCCGCUGUGGGUCUCAGCAGCUCGGGCGGCGGGAGGAGUGGCAGCGGCAAGGCAGCCCAGUUUCGCGAAGGCUGUCGGCGCGCCGCGGCCCGCAGGCACCCGGCACGCGCCUUCCCCGCAGGCACCCGGCACGCGCCUUCCCCGCCGCCACGAUGCCCAAGAGGAAGGUCAGCUCCGCCGAAGGCGCCGCCAAGGAAGAGCCCAAGAGGAGAUCGGCGCGGUUGUCAGCUAAACCUCCUGCAAAAGUGGAAGCGAAGCCGAAAAAGGCAGCAGCGAAGGUAAGCCUCGAAACGCGCAUUGGGAUGCAGCGGGGCCUUAGGCUACACUGCUUCUUAAUGCGGGGCUUCCAUUUUGAUUAGCUAUUGGAGCUUUAUUUAUACUUUAAUAAUUACGGUAAAUAAUUUUUCUAGUGGUCGAGGCAAAAAUGUAAUGGAUAUAUUCAUCCUGGUUUAUAGAACUAUAUCACACUAAUGCUGCUGCAGAUGUUAGGAGACUUAGGACGACAAAAAAUAUUAAAUAUUAAGUCUACAAAGGAAAUUUAUUCUUUGCGUUGCGUACAUUGUGGCUGGUGCUUGGCUUUUAAUUCGUGCUUGUACUUCCUUUUUUGACAAUAAAAGAGUCAAGAUAGCACCGAGGCCAGGAGAAAGGGAACGUGUAAGUUUUUAUAUAUACAGUUUCCAAGCCAACUUCGGGAAGCCUUAACCUUUUUACGGGGUGGGGGUGGGGAGGUAAAAAGUUGUGAUCUCUGAGAAAAUAACCGCCACUACUCUGGAAGUGUUCAUCAGCAGUUAUACAAAACCGUGAUUUUGGCUGCUCCCUAACAAAUUCGUGAUUGCAUGAUUCGAAUUGCAGGUCUGUAGAAUGAAGUUGGCUUUGGGUGUACGUGUGUUUGAUAACUUGCAGGGUGGAAAAGCAGAACAUGUGUAAAACAAGUAUAAGCUUUGUGUUUGGAUAUAGCAUUGAAACCUGUAAAGCUCUAC2000000006AUGUUCUUCGCGGGGUGAUUAAUUUUUAUCCAAAACUUAGGUGAGAGUUUGCUAUUUGAAGUCUCAAAAAAAAUUUUUGUUAAUGCCUUCACCUCUUUCCUAAAAGUGUAGGUAGAAGUUUAGCACUGCAGUCAUCAGAAGAGGCAAGAUUAAUUUCCUUGACAUUGAGGAGUUGUUGGAUAAUUACUAAAUUUGUCCUUGUUAAAUAAAGGUAUAAAACAAAGAUGUUUUUUCUUUUUUAAUUUAAAUUUUUUACAGAGCUGAGUGUAAAAAUGUUAACUAUGUUUUCUUUAACAGAAAGUUCUGUUUUUGUGAUCCUUUUAAAAAUAAAGCUUCACGGAAGGUAUGAGAAUAGUAUUUUUCAACUUUAAAUUUCUCAUUACCAGAAGACCAUGUGGUAAUUCUCUGUAUACAGUUAGAACAGCACGGAAACUUGAAGGCCUAAAAAAUUAGCUGACCUUGUUAAAAAUGUUGGCGUGAGCAGUAUAUUAUUACCUAUCUUUUUUUAUUGUGUGUGUGUGUGUGUGUGUGUUUUAAACUAAUUGGCUGAAAUAUCUGCCUGUUUCCCUCUUUACAUUUUUCUUGUUUCUUUCCUUAUUUAUCUUUGUCCAUCUUGAGAUCUACUGUAAAGUGAAUUUUUUAAUGAAAACAGUUCCAAGUUUUACUCUCAGUGGGUUUGGGACAUCAGAUGUAAUUGAGAGGCCAACAGGUAAGUCUUCAUGUCAGUGUUUGUUGAGGAACGAGCCUAUGAGGUCAGUUUUCCCAAAAGGAAAAAGGGCAGAAGGGAUUUGUUCAUUUUUACAUCUCGUUUCUGUAAUACACCUUUGACUUCAUGGUUGAUCAGACUUUGAAGUCUAAACAGAACGUAAGCACUUGGUGUAUCGAUUAUCAUACUACACAGUAGACAUGUUUUCAAGGCAUAUCUUGUCACUGUGUGUGCUUCUGACUUGUAUCUUUCCCUAGAACUAAAUAUUUUGAAGGUCCAAACAUUAUACUUUGGGAAACUUGAUUGAUUUUUUUUUAAUCUAGCUUUUCAGCUGAUAAUGGUUACACGUGGUAUUAUUUCAAGUCCAAGAUAUUAUGUAUUCUAUUUUAACUGUUUCCCAGUUUUGUAUUUUUUGUAUUGGAAUGAUUAUGAAAUUAAUGAGAAAUCUUUAGAAACAGACUACAAAAGAGUAGUUCUUAAAUACAGAAGUGAUUGUGAAACUUUGUGAUAGCAAUGUGUGUAGUAGCAGUUUUGUCUCAAAUACAUUUAUCAUUUGUUACUCAAAGGAUGUUGAAGUAUUAAAAGUCAUUAUGCUGUCUGUGGAAUCCUACUAUUAGUACAGAACACCCUGCAGUGAUUUUUCCGCCCGUGUUAGCAUUGAAGUUGUGAGCUCUACUUGCUUGUCUUUAUGGCCCU2000000009UUAAUUCAAGUAAUUGGUCAGUAUCCGUAUGGGUCUUUUAUACCACCCGCUGGGGGCUAAACUAAUUUAGCUGCUGCUGUAUACUUACUAACAAGGAAUAAAUGUUAAGCUUUCUUCUCAGUAUUGAUGGAUGGUAUCUAAAAGUAUUUUUAUGUUUCUUUAACAUGGCUUAAAUUUUGAACUUAAUGUAUCAAGUUAGUAUGGUCAUAUUAAUACCUGUGCUUUUCAGAUUCUUCAA2000000006ACACCUAAAUGAAAGUGAUAAAUUCAAAACUGAUCCUUUUAGUUCCUCAUUAUAUGAUAUG2000000006AAGGGAUUAACUGUAGCAGGAUAGUCAACCUGACCGUACGGCAUGGUGCUUUUUUUCAGGUGAUUGGUCUUAAUGUGAGGGUUAAGGUCUUGUGAGGACAGUAUUGUUGAAGUUCACAACAAAUUUGGGGAUGGGUGGGAAUACGGUCGACGAGACUCCUCCGGUAUUCAACUUCAUGACAUUGUCCUGUCAUGUGGAACUGUAGGGAAUAGUGGAUGAUGGCGACAGUGGUGAAAUAUAGCUCGGGCUUUAGGAUUUGUCAUAUGUCUAAUGAGGCUUGACAUGCAAGUACUAUUAAAAUCUCCUUAGCAUACAUUGUUUUCCUGAUUACUGGGGGGGACCUUAAGUUGUCUCAUGUAAUAGGUGUAUCAACUGAUGUGUGAUAGACAUUAAUAUGACAGCUGUUAUGGAUACAGUCUAUACAAAAUGAGAUCCUUUCAUAAGCUUGAAGAUUGGGGUUUCACGCUCAUGUGUGAGAUGUCCCUCUCUCAAACCUUACUAUGAAGUCAGCACCACUGGGCACAUUACUUGUCUGACAUGAAGGGGAAAAAGUAAAACAAAAUGUAAAUAAGGAGUAAAGCAUGUACUUAAAAUAUAUUCUUAUUCUAUCAUAGGAUAAAUCUUCAGACAAAAAAGUGCAAACAAAAGGGAAAAGGGGAGCAAAGGGAAAACAGGCCGAAGUGGCUAACCAAGAAACUAAAGAAGACUUACCUGCGGAAAACGGGGAAACGAAGACUGAGGAGAGUCCAGCCUCUGAUGAAGCAGGAGAGAAAGAAGCCAAGUCUGAUUAAUAACCAUAUACCAUGUCUUAUCAGUGGUCCCUGUCUCCCUUCUUGUACAAUCCAGAGGAAUAUUUUUAUCAACUAUUUUGUAAAUGCAAGUUUUUUAGUAGCUCUAGAA2000000006ACAUUUUUAAGAAGGAGGGAAUCCCACCUCA2000000009UCCCAUUUUUUAAGUGUAAAUGCUUUUUUUUAAGAGGUGAAAUCAUUUGCUGGUUGUUUAUUUUUUGGUACAACCAGAAAAUAGUGUGGGAUAUUGAAUUAUGGGAGGCUCUGACUGUCUCGGGUGUCAGCUUAACAUUCCACAGAUGGGGGGUUAGUUUUUAUAUCCUAUAAUACAAAGCAUAUUAAAUGGCAAUAUGGAGUCAGUCCUGCAUUUAAUGUCUUGAACAUUUUAAAUUACUUCUAUUACCAUGUUGUUUUUUAGUAGAAUUGUUUCCUAAAGAAAACCACUCUUUGAUCAUGGCUCUCUCUGCCAGAAUUGUGUGCACUCUGUA2000000006ACAUCUUUGUGGUAGUCCUGUUUUCCUAAUA2000000006ACUUUGUUACUGUGCUGUGAAAGAUUACAGAUUUGAACAUGUAGUGUACGUGCUGUUGAGUUGUGAACUGGUGGGCCGUAUGUAACAGCUGACCAACGUGAAGAUACUGGUACUUGAUAGCCUCUUAAGGAAAAUUUGCUUCCAAAUUUUAAGCUGGAAAGUCACUGGAAUA2000000006ACU2000000009UUAAAAAAGAAUUACAAUACAUGGCUUUUUAGAAUUUCGUUACGUAUGUUAAGAUUUGUGUACAAAUUGAAAUGUCUGUACUGAUCCUCAACCAAUAAAAUCUCAGUUAUGAAAAUA
2174   lncRNA  unknown    Homo sapiens    AAUCUGGCGCGGCCUUUGUCUCACUUCAGCCAGAGAGCGGGGUUAGGGCUUCAUUGCCUUGUGUCCUCUGCUCCGGGAGACUUCGGUGAUUCUGCCACUCCCUCCGUCGCUCUGUGACCUGCUGGCAUUGAAUGAUUUAUAGCUAAGACUCCAGGACACCCCUGAAGCCGAGAAAUGAAAUCCCAAGUUGACCGUCAAGUCCAACGCUCGCUGCAGACAUCUAGUGGACCCGGCGCUCGCGGACGGAAGCGGACAGACCUAGUUGGAUCCUUAUCCCACCAAUCUGGCCCACCUUUGCUGCCAUCUAACUCCGCUGACCGGCCCACCGUUCCUCCACUGUUCGCUGGUUGACCCGGGCAGCGGAGAGAGGAGGGUGUUGUCAAUGGAAAUAUGGAUUCUUCUACAGCAAACAUGUACAUCUAUAUCAUGUGGAACAAGGAUAGUGGGAAAACCUCUGAUUGUGAGGACGUAGA2000000006ACUGAGAAGAGCAUAUGAAAUGUCAUAAGAAAAACACUUCUGGAGCAUGUCGUCUUCAAGAAAAUGGUGCCCAGACAGUCAGGAUUGUGUUACAUUUUAAUAGGAAUGGGGAUAUUUGUGAUAUACUGACAAACCAAGACAGGUGACUAUAAA2000000006ACUGCAAUGUAAAGUGUCAGCUUCUCCUCACACCUUUAUAGUAGACAUCUGAGAACCUCACUCCUGUCAGCAUAUUCUUGGGGUUGAAUCUCAAGUGAUCCAUAGAAUCUUAGAUAAAGCAGAUGAAAAUAGGCUUUUCUGUCUUCCUAAGUAAACAGCAAUGAAGUUGAGAGAAAGAAGAUAUUGCUGGAAGUCAUGAUAAAGUCUAUCUUCUGUGACCAUAUGUUUCCUUAGAGAGUUUUAGACAUUGACCCUCAUCUAAAAAAUUGUGAAAAAGGACUCUCACCAGUCUGUUAAUAUGUAUGUAUAUGAAAGAAAUUACUGGUAAACUUCUAAGGCAGGCAUUGGUGUUACUUUUUUUUAUCUUUAUUGUGUCUGUGAAAUGAUUGUGUGUAUUUUUUCUUUGAUUAGACAAUGAGAUUCCCAAAUAAAUUUUAUUAAAGCCAAAAAAACCUUUA
2175   lncRNA  unknown    Homo sapiens    AAUCUGGCGCGGCCUUUGUCUCACUUCAGCCAGAGAGCGGGGUUAGGGCUUCAUUGCCUUGUGUCCUCUGCUCCGGGAGACUUCGGUGAUUCUGCCACUCCCUCCGUCGCUCUGUGACCUGCUGGCAUUGAAUGAUUUAUAGCUAAGACUCCAGGACACCCCUGAAGCCGAGAAAUGAAAUCCCAAGUUGACCGUCAAGUCCAACGCUCGCUGCAGACAUCUAGUGGACCCGGCGCUCGCGGACGGAAGCGGACAGACCUAGUUGGAUCCUUAUCCCACCAAUCUGGCCCACCUUUGCUGCCAUCUAACUCCGCUGACCGGCCCACCGUUCCUCCACUGUUCGCUGGUUGACCCGGGCAGCGGAGAGAGGAGGUUCUUGUGUACUAUGUUUAACAUUGACAAGAAGAUAAUUAGGAAAUAAAUAUAUAUAAAUACAGGAACAUAAAGAGAAAUAAAGAGGAAGCACCACAGUCAACUAAAAAAGAGAGAUUCCCAGCAACCUACACAACCAUUUCUAUAGGCUCUCAGCUGAUGCUUAGUGUUUGG2000000006ACAACUCACACAUGCAGAUUGACAGAUGACCAACUUAUAAAAGAGAUUUUUAAUAAUUCUUAAUGAUUUCACAGGGUGUUGUCAAUGGAAAUAUGGAUUCUUCUACAGCAAACAUGUACAUCUAUAUCAUGUGGAACAAGGAUAGUGGGAAAACCUCUGAUUGUGAGGACGUAGA2000000006ACUGAGAAGAGCAUAUGAAAUGUCAUAAGAAAAACACUUCUGGAGCAUGUCGUCUUCAAGAAAAUGGUGCCCAGACAGUCAGGAUUGUGUUACAUUUUAAUAGGAAUGGGGAUAUUUGUGAUAUACUGACAAACCAAGACAGGUGACUAUAAA2000000006ACUGCAAUGUAAAGUGUCAGCUUCUCCUCACACCUUUAUAGUAGACAUCUGAGAACCUCACUCCUGUCAGCAUAUUCUUGGGGUUGAAUCUCAAGUGAUCCAUAGAAUCUUAGAUAAAGCAGAUGAAAAUAGGCUUUUCUGUCUUCCUAAGUAAACAGCAAUGAAGUUGAGAGAAAGAAGAUAUUGCUGGAAGUCAUGAUAAAGUCUAUCUUCUGUGACCAUAUGUUUCCUUAGAGAGUUUUAGACAUUGACCCUCAUCUAAAAAAUUGUGAAAAAGGACUCUCACCAGUCUGUUAAUAUGUAUGUAUAUGAAAGAAAUUACUGGUAAACUUCUAAGGCAGGCAUUGGUGUUACUUUUUUUUAUCUUUAUUGUGUCUGUGAAAUGAUUGUGUGUAUUUUUUCUUUGAUUAGACAAUGAGAUUCCCAAAUAAAUUUUAUUAAAGCCAAAAAAACCUUUA
2176   mRNA  unknown    Homo sapiens    ACAAGUUGCACUUAAGAAGCUAUGCUAAGAAAACAAACACACAGAAGCCUACAUCAUUACAUGUAUAGAAUGUUCAAGAACUGAUGAAACCAGUCCGUGGUCACAAAAGCCAGAAAGUGGUUGCUUCUGGGGACCAGAAGGGAAAGGGGCAUAAAGGAACCUUUUGAGGUGAAUAGAAGUUUCUGCAUCUUGGUUUGGCACACAUGCCAAAACUCACCAGCUACAGAUUCUCGUUGACACUGGAAGCAGUA2000000006ACUUUGCCGUGGCAGGAACCCCGCACUCCUACAUAGACACGUACUUUGACACAGAGAGGUCUAGCACAUACCGCUCCAAGGGCUUUGACGUCACAGUGAAGUACACACAAGGAAGCUGGACGGGCUUCGUUGGGGAAGACCUCGUCACCAUCCCCAAAGGCUUCAAUACUUCUUUUCUUGUCAACAUUGCCACUAUUUUUGAAUCAGAGAAUUUCUUUUUGCCUGGGAUUAAAUGGAAUGGAAUACUUGGCCUAGCUUAUGCCACACUUGCCAAGCCAUCAAGUUCUCUGGAGACC
2177   mRNA  unknown    Homo sapiens    ACACGCUUUCAGGAGAGGAGCCGUGUGAUCAUUUGCCAGAGAAGGAUAGGCUGGUGGGUGCUGAGACCAGAAUCUUUAUAGCAGAAACUUGUGAAGCGUUCCAGCUGAAAGUCCAAUCUCUAAACCUCGUCACGUGUUCAAUAUGCUAAAGAAGUAUGUCCGCGCAGAACAGAAGGACAGACAGCACACCCUAAAGCAUUUCGAGCAUGUGCGCAUGGUGGAUCCCAAGAAAGCCGCUCAGAUCCGGUCCCAGGUUAUGACACACC2000000009UCCGUGUGAUUUAUGAGCGCAUGAAUCAGUCUCUCUCCCUGCUCUACAACGUGCCUGCAGUGGCCGAGGAGAUUCAGGAUGAAGUUGAUGAGCUGCUUCAGAAAGAGCAAAACUAUUCAGAUGACGUCUUGGCCAACAUGAUUAGUGA2000000006ACCAAGGAUCAGUUACGGAAACGAUGCUCUCAUGCCAUCUUUGACCGAAACGAAAACCACCGUGGAGCUCCUUCCCGUGAAUGGAGAGUUCAGCCUGGACGAUCUCCAGCCGUGGCAUUCUUUUGGGGCUGACUCUGUGCCAGCCAACACAGAAAACGAAGUUGAGCCUGUUGAUGCCCGCCCUGCUGCCGACCGAGGACUGACCACUCGACCAGGUUCUGGGUUGACAAAUAUCAAGACGGAGGAGAUCUCUGAAGUGAAGAUGGAUGCAGAAUUCCGACAUGACUCAGGAUAUGAAGUUCAUCAUCAAAAAUUGGUGUUCUUUGCAGAAGAUGUGGGUUCAAACAAAGGUGCAAUCAUUGGACUCAUGGUGGGCGGUGUUGUCAUAGCGACAGUGAUCGUCAUCACCUUGGUGAUGCUGAAGAAGAAACAGUAC2000000006ACA2000000009UCCAUUCAUCAUGGUGUGGUGGAGGUUGACGCCGCUGUCACCCCAGAGGAGCGCCACCUGUCCAAGAUGCAGCAGAACGGCUACGAAAAUCCAACCUACAAGUUCUUUGAGCAGAUGCAGAACUAGACCCCCGCCACAGCAGCCUCUGAAGUUGGACAGCAAAACCAUUGCUUCACUACCCAUCGGUGUCCAUUUAUAGAAUAAUGUGGGAAGAAACAAACCCGUUUUAUGAUUUACUCAUUAUCGCCUUUUGACAGCUGUGCUGUA2000000006ACACAAGUAGAUGCCUGAACUUGAAUUAAUCCACACAUCAGUAAUGUAUUCUAUCUCUCU2000000009UUACAUUUUGGUCUCUAUACUACAUUAUUAAUGGGUUUUGUGUACUGUAAAGAAUUUAGCUGUAUCAAACUAGUGCAUGAAUAGAUUCUCUCCUGAUUAUUUAUCACAUAGCCCCUUAGCCAGUUGUAUAUUAUUCUUGUGGUUUGUGACCCAAUUAAGUCCUACU2000000009UUACAUAUGCU2000000009UUAAGAAUCGAUGGGGGAUGCUUCAUGUGAACGUGGGAGUUCAGCUGCUUCUCUUGCCUAAGUAUUCCUUUCCUGAUCACUAUGCAUUUUAAAGUUAA2000000006ACAUUUUUAAGUAUUUCAGAUGCU2000000009UUAGAGAGAUUUUUUUUCCAUGACUGCAUUUUACUGUACAGAUUGCUGCUUCUGCUAUAUUUGUGAUAUAGGAAUUAAGAGGAUACACACGUUUGUUUCUUCGUGCCUGUUUUAUGUGCACACAUUAGGCAUUGAGACUUCAAGCUUUUCUUUUUUUGUCCACGUAUCUUUGGGUCUUUGAUAAAGAAAAGAAUCCCUGUUCAUUGUAAGCACUUUUACGGGGCGGGUGGGGAGGGGUGCUCUGCUGGUCUUCAAUUACCAAGAAUUCUCCAAAACAAUUUUCUGCAGGAUGAUUGUACAGAAUCAUUGCUUAUGACAUGAUCGCUUUCUACACUGUAUUACAUAAAUAAAUUAAAUAAAAUAACCCCGGGCAAGACUUUUCUUUG2000000006AAGGAUGACUAC2000000006A2000000090GACAUUAAAUAAUCGAAGUAAUUUUGGGUGGGGAGAAGAGGCAGAUUCAAUUUUCU2000000009UUAACCAGUCUGAAGUUUCAUUUAUGAUACAAAAGAAGAUGAAAAUGGAAGUGGCAAUAUAAGGGGAUGAGGAAGGCAUGCCUGGACAAACCCUUCUUUUAAGAUGUGUCUUCAAUUUGUAUAAAAUGGUGUUUUCAUGUAAAUAAAUACAUUCUU
2178   mRNA  unknown    Homo sapiens    ACACGUGCGACGGCCGUGAUGAAGUUCGCUUACCGGUUUUCAAAUUUGCUGGGUACGGUGUACCGGCGUGGGAACCUAAAUUUUACCUGCGAUGGAAAUUCAGUUAUCAGUCCCGUGGGCAAUAGAGUCACUGUAUUUGACCUUAAAAACAACAAAUCUGACACGCUGCCCCUGGCCACUCGGUACAACGUCAAGUGCGUGGGGCUGUCCCCGGAUGGCCGCCUCGCUAUCAUCGUCGAUGAAGGGGGCGAUGCGCUGCUGGUCAGCCUGGUCUGCAGGUCUGUGCUGCACCACUUCCACUUCAAGGGCUCUGUGCACAGUGUGUCCUUCUCCCCUGAUGGCAGGAAGUUUGUUGUCACAAAGGGUAACAUUGCCCAGAUGUAUCAUGCCCCUGGGAAGAAGCGGGAGUUCAACGCCUUCGUUCUGGACAAGACCUAUUUUGGGCCCUACGAUGAGACCACCUGCAUCGACUGGACGGAUGACUCCAGGUGCUUUGUGGUUGGGAGCAAAGACAUGUCCACCUGGGUGUUCGGAGCCGAGCGCUGGGACAACCUCAUCUACUAUGCACUGGGGGGACAUAAGGAUGCCAUCGUGGCCUGCUUCUUUGAAUCCAACAGCCUGGACCUGUACUCACUCAGCCAGGACGGAGUGCUGUGCAUGUGGCAGUGUGACACGCCCCCCGAGGGCUUGCGGCUGAAGCCCCCUGCGGGCUGGAAAGCAGACCUGUUGCAGCGGGAGGAGGAAGAGGAGGAGGAGGAGGACCAGGAGGGCGACAGAGAGACCACCAUCCGGGGAAAAGCCACUCCGGCCGAGGAGGAGAAGACAGGAAAAGUGAAGUACUCACGGCUGGCCAAGUACUUCUUCAAUAAAGAAGGGGAUUUUAACAACCUGACAGCUGCAGCAUUUCAUAAGAAGUCUCACCUCUUGGUCACUGGCUUUGCUUCUGGAAUCUUCCAUCUUCAUGAGCUGCCAGAGUUUAACCUCAUCCACUCCCUGAGCAUUUCAGAUCAGAGCAUCGCCUCAGUGGCCAUCAAUAGCUCGGGGGACUGGAUUGCUUUUGGCUGUUCAGGCCUGGGCCAGCUGCUGGUGUGGGAGUGGCAGAGUGAGUCCUACGUGCUCAAGCAGCAGGGCCACUUCAACAGCAUGGUGGCCCUGGCCUACUCGCCCGACGGACAGUACAUCGUGACUGGCGGGGACGACGGCAAGGUCAAGGUGUGGAACACCCUCAGCGGCUUCUGCUUCGUCACUUUUACGGAGCACUCCAGCGGGGUGACCGGUGUGACCUUUACUGCCACCGGCUACGUUGUGGUGACCUCAUCCAUGGACGGGACCGUGCGAGCCUUUGACCUUCACAGGUACCGAAACUUCCGCACCUUCACCUCUCCACGCCCCACCCAGUUCUCCUGUGUGGCGGUGGAUGCGAGCGGUGAGAUCGUCUCUGCAGGGGCGCAGGACUCCUUUGAGAUUUUCGUGUGGUCCAUGCAGACAGGCAGGCUCCUUGAUGUUUUGUCUGGACACGAAGGGCCCAUCAGUGGUCUGUGUUUUAACCCAAUGAAGUCCGUCCUGGCCAGUGCCUCCUGGGACAAGACAGUGCGCCUAUGGGACAUGUUUGACAGCUGGAGGACCAAGGAGACGCUGGCCCUGACCUCUGAUGCUCUGGCUGUGACUUUUCGCCCUGAUGGUGCGGAGCUGGCUGUGGCCACACUGAACUCACAGAUCACCUUCUGGGACCCUGAGAACGCGGUGCAGACGGGCUCCAUUGAGGGCAGGCAUGACCUCAAGACUGGCAGGAAGGAGCUGGACAAGAUUACAGCCAAGCACGCGGCCAAGGGGAAGGCCUUCACCGCCCUGUGCUACUCUGCAGACGGCCACAGCAUCCUGGCGGGAGGCAUGUCCAAGUUCGUGUGCAUCUACCACGUCCGUGAGCAGAUUCUCAUGAAGAGGUUCGAGAUCUCUUGCAACCUGUCUUUGGACGCCAUGGAGGAAUUUUUGAACCGAAGAAAAAUGACAGAGUUUGGCAACCUGGCACUAAUUGAUCAGGAUGCUGGGCAGGAGGAUGGAGUCGCGAUACCACUGCCAGGCGUCAGGAAAGGUGACAUGAGUUCUCGGCACUUCAAACCUGAGAUCAGGGUGACCUCACUCCGCUUCUCUCCCACUGGGCGCUGCUGGGCGGCCACCACCACGGAGGGACUCCUCAUCUACUCCCUGGACACCCGCGUGCUCUUUGACCCGUUUGAGCUGGACACCAGCGUCACCCCCGGGAGGGUGCGCGAGGCACUGCGCCAGCAGGACUUCAC2000000005CAGGGCCAUCCUCAUGGCCCUCCGGCUCAACGAGAGCAAACUGGUGCAGGAGGCCCUGGAGGCGGUGCCCAGGGGCGAGAUUGAAGUGGUCACCUCCUCCCUUCCUGAACUGUAUGUGGAGAAAGUGCUGGAGUUUUUAGCUUCCUCCUUUGAAGUGUCUCGCCACCUGGAAUUCUACCUCCUCUGGACUCACAAACUGCUCAUGUUGCACGGACAGAAGCUGAAGUCCAGAGCCGGGACGCUGCUGCCUGUCAUUCAGUUCCUCCAGAAGAGCAUCCAGCGGCACCUGGACGACCUGUCGAAACUCUGUAGCUGGAACCACUAUAACAUGCAGUACGCACUAGCAGUUUCCAAGCAGCGGGGCACAAAACGCUCCCUAGACCCGCUGGGAAGUGAGGAGGAGGCAGAAGCAUCUGAAGAUGACAGCCUGCAUCUGCUUGGAGGAGGAGGCAGAGACUCAGAAGAAGAGAUGCUGGCCUAGAGCCAGCCGGUUGCAGCGUUGGAUUGUGCCGGCUAAGACCUGCCAGGGAGAUGGG2000000006ACCCUUGUGCCACCUGGGCCAGCAAAGAGGAGGGGUCCAGAGA2000000006ACAGCUGAAAUACUGUCACUAGUGGUAGUGACUUGCUUUUCCUGUGCACACAUGUAGCCCAUCAGG2000000006ACAGCGAGCCGACGGGUCACGCCAGGGGCCGGCACGCACUGGCACCUGGCCCCAGGAGCGGGGCCGUGUGAACGGUGAUGAAUGUUGAAAAUGCGUCUCAGAGAGGUAUUCACAUGA2000000006ACUUUGUAUGAG2000000006ACUUAUUUAUAUCUUUAACAUAAAGGUUUGAUAAAGAACUUAGGGAUUAAAAAAAAGAUGGAGUUUUCUAACGUGAGGAUGAAGUCUACACUUCAGAUUAAAAAGGGUUAUGUUGUA
2179   mRNA  unknown    Homo sapiens    ACACUCAGGAUCUUGCCUGAACAACAAACCAACUCACCACUCCUGACACCAUGAGUCACUACGGCAGCUACUACGGAGGCCUGGGCUACAGCUGUGGAGGCUUCGGUGGCCUGGGCUAUGGCUAUGGCUGUGGAUGUGGCAGCUUCUGCAGACGGGGUUCUGGCUGUGGCUAUGGAGGCUACGGAUAUGGCUCUGGCUUUGGAAGCUACGGAUAUGGCUCUGGCUUUGGAGGCUACGGAUAUGGCUCUGGCUUUGGAGGCUAUGGAUAUGGCUGCUGCCGCCCAUCGUACAAUGGAGGAUACGG2000000006AUUCUCUGGCUUUUAUUAAAUGAAUUGCUGAAAUUGGAAGCAGAGGAGAAACCUCCAAAUGUGUUUGGUCCUGUCCCGUGCUUUCAUUCCAAAAAUCCAUUCUAUUGCCUUCAGCAUCAAUGGAGAGAUAUUUAGCUAUGUUAAAUCUUUAAAAUAGAUUUAAGCUGCUUCUGUGAAUAUUUGUUGUCUUUUUACUUUCGGAGUCCGUCACCUGAAAUCAUAUUCAUGUAUAACUACUCUAGGUUGUUCUUCUAAAUUUGCUUUAUUUUUCUUACCACCAUUACCUUGAUGUUAUCUAUCAAGAUCCUAGCAAAAACUUGUAUUUUGCUUUUAUCUAAUAAAUGAAGUAAAGUAUAAA
2180   mRNA  unknown    Homo sapiens    ACAGCGCUCGCGCUGCUCUCGGCGCUCGCAGCUGCCGACUGGGGAUGACGGCGGGCAGGAGGAGACCGCAGCCGAAGGGACACAGACACGCCGCUUCACCAGCUCGCCUCAGGCUGCCCCCCUGCAUUUUUGUUUUAAUUUUUACGGCUUUUUCCCCUCUCUUUCUUCCCUUCCUCCUGGUCCCAGCAGAGCCAAGGAAACCCACAAAAUAAGAAAGGAAGUGGGCCCCGGAGCUUGGAACCUCCACAGCCGGCUUGUCCAGCGCAGCGCGGGGGCGGGAGGCUGCGCGCACCAGUUGCCAGCCCGGUGCGCGGUACCUUUCCUUACUUUUCUUGAAACAGCGAUCGUGCCUGCAUUUGGUGGUUUUUUGGUUUUUGUUUUUUUCCUUUUCCCGUAUUUGCUGAAUCUCCACUAUCCGACUUUUUUUUUUUAAUCUUUUCUUUCCCCCCCCCCCCACCCCACCUCUUUCUGGAGCACGAAUCCAAACAUUUUCCCAAGCAACAAAGAAAAGUUCGCACGCUGGCACCGCAGCCCGGACAGGCUGGCGCUGCUGCCGGGCCCCCCUCCCUCCGACACUUGACUCAAUCCUGCAAGCAAGUGUGUGUGUGUCCCCAUCCCCCGCCCCGUUAACUUCAUAGCAAAUAACAAAUACCCAUAAAGUCCCAGUCGCGCAGCCCCUCCCCGCGGGCAGCGCACUAUGCUGCUCGGGUGGGCGUCCCUGCUGCUGUGCGCGUUCCGCCUGCCCCUGGCCGCGGUCGGCCCCGCCGCGACACCUGCCCAGGAUAAAGCCGGGCAGCCUCCGACUGCUGCAGCAGCCGCCCAGCCCCGCCGGCGGCAGGGGGAGGAGGUGCAGGAGCGAGCCGAGCCUCCCGGCCACCCGCACCCCCUGGCGCAGCGGCGCAGGAGCAAGGGGCUGGUGCAGAACAUCGACCAACUCUACUCCGGCGGCGGCAAGGUGGGCUACCUCGUCUACGCGGGCGGCCGGAGGUUCCUCUUGG2000000006ACCUGGAGCGAGAUGGUUCGGUGGGCAUUGCUGGCUUCGUGCCCGCAGGAGGCGGGACGAGUGCGCCCUGGCGCCACCGGAGCCACUGCUUCUAUCGGGGCACAGUGG2000000006ACGGUAGUCCCCGCUCUCUGGCUGUCUUUGACCUCUGUGGGGGUCUCGACGGCUUCUUCGCGGUCAAGCACGCGCGCUACACCCUAAAGCCACUGCUGCGCGG2000000006ACCCUGGGCGGAGGAAGAAAAGGGGCGCGUGUACGGGGAUGGGUCCGCACGGAUCCUGCACGUCUACACCCGCGAGGGCUUCAGCUUCGAGGCCCUGCCGCCGCGCGCCAGCUGCGAAACCCCCGCGUCCACACCGGAGGCCCACGAGCAUGCUCCGGCGCACAGCAACCCGAGCGGACGCGCAGCACUGGCCUCGCAGCUCUUGG2000000006ACCAGUCCGCUCUCUCGCCCGCUGGGGGCUCAGG2000000006ACCGCAGACGUGGUGGCGGCGGCGGCGCCGCUCCAUCUCCCGGGCCCGCCAGGUGGAGCUGCUUCUGGUGGCUGACGCGUCCAUGGCGCGGUUGUAUGGCCGGGGCCUGCAGCAUUACCUGCUGACCCUGGCCUCCAUCGCCAAUAGGCUGUACAGCCAUGCUAGCAUCGAGAACCACAUCCGCCUGGCCGUGGUGAAGGUGGUGGUGCUAGGCGACAAGGACAAGAGCCUGGAAGUGAGCAAGAACGCUGCCACCACACUCAAGA2000000006ACUUUUGCAAGUGGCAGCACCAACACAACCAGCUGGGAGAUGACCAUGAGGAGCACUACGAUGCAGCUAUCCUGUUUACUCGGGAGGAUUUAUGUGGGCAUCAUUCAUGUGACACCCUGGGAAUGGCAGACGUUGGGACCAUAUGUUCUCCAGAGCGCAGCUGUGCUGUGAUUGAAGACGAUGGCCUCCACGCAGCCUUCACUGUGGCUCACGAAAUCGGACAUUUACUUGGCCUCUCCCAUGACGAUUCCAAAUUCUGUGAAGAGACCUUUGGUUCCACAGAAGAUAAGCGCUUAAUGUCUUCCAUCCUUACCAGCAUUGAUGCAUCUAAGCCCUGGUCCAAAUGCACUUCAGCCACCAUCACAGAAUUCCUGGAUGAUGGCCAUGGUAACUGUUUGCUGGACCUACCACGAAAGCAGAUCCUGGGCCCCGAAGAACUCCCAGGACAGACCUACGAUGCCACCCAGCAGUGCAACCUGACAUUCGGGCCUGAGUACUCCGUGUGUCCCGGCAUGGAUGUCUGUGCUCGCCUGUGGUGUGCUGUGGUACGCCAGGGCCAGAUGGUCUGUCUGACCAAGAAGCUGCCUGCGGUGGAAGGGACGCCUUGUGGAAAGGGGAGAAUCUGCCUGCAGGGCAAAUGUGUGGACAAAACCAAGAAAAAAUAUUAUUCAACGUCAAGCCAUGGCAACUGGGGAUCUUGGGGAUCCUGGGGCCAGUGUUCUCGCUCAUGUGGAGGAGGAGUGCAGUUUGCCUAUCGUCACUGUAAUAACCCUGCUCCCAGAAACAACGGACGCUACUGCACAGGGAAGAGGGCCAUCUACCGCUCCUGCAGUCUCAUGCCCUGCCCACCCAAUGGUAAAUCAUUUCGUCAUGA2000000006ACAGUGUG2000000006AGGCCAAA2000000006AAUGGCUAUCAGUCUGAUGCAAAAGGAGUCAAAACUUUUGUGGAAUGGGUUCCCAAAUAUGCAGGUGUCCUGCCAGCGGAUGUGUGCAAGCUGACCUGCAGAGCCAAGGGCACUGGCUACUAUGUGGUAUUUUCUCCAAAGGUGACCGAUGGCACUGAAUGUAGGCUGUACAGUAAUUCCGUCUGCGUCCGGGGGAAGUGUGUGAGAACUGGCUGUGACGGCAUCAUUGGCUCAAAGCUGCAGUAUGACAAGUGCGGAGUAUGUGGAGGAGACAACUCCAGCUGUACAAAGAUUGUUGGAACCUUUAAUAAGAAAAGUAAGGGUUACACUGACGUGGUGAGGAUUCCUGAAGGGGCAACCCACAUAAAAGUUCGACAGUUCAAAGCCAAAGACCAGACUAGAUUCACUGCCUAUUUAGCCCUGAAAAAGAAAAACGGUGAGUACCUUAUCAAUGGAAAGUACAUGAUCUCCACUUCAGAGACUAUCAUUGACAUCAAUGGAACAGUCAUGA2000000006ACUAUAGCGGUUGGAGCCACAGGGAUGACUUCCUGCAUGGCAUGGGCUACUCUGCCACGAAGGAAAUUCUAAUAGUGCAGAUUCUUGCAACAGACCCCACUAAACCAUUAGAUGUCCGUUAUAGCUUUUUUGUUCCCAAGAAGUCCACUCCAAAAGUAA2000000006ACUCUGUCACUAGUCAUGGCAGCAAUAAAGUGGGAUCACACACUUCGCAGCCGCAGUGGGUCACGGGCCCAUGGCUCGCCUGCUCUAGG2000000006ACCUGUGACACAGGUUGGCACACCAGAACGGUGCAGUGCCAGGAUGGAAACCGGAAGUUAGCAAAAGGAUGUCCUCUCUCCCAAAGGCCUUCUGCGUUUAAGCAAUGCUUGUUGAAGAAAUGUUAGCCUGUGGUUAUGAUCUUAUGCACAAAGAUAACUGGAGGAUUCAGCACUGAUGCAGUCGUGGUGAACAGGAGGUCUACCUAACGCACAGAAAGUCAUGCUUCAGUG2000000006ACAUUGUCAACAGGAGUCCAAUUAUGGGCAGAAUCUGCUCUCUGUGACCAAAAGAGGAUGUGCACUGCUUCACGUGACAGUGGUGACCUUGCAAUAUAGAAAA2000000006ACUUGGGAGUUAUUGAACAUCCCCUGGGCUUACAAGAAACACUGAUGAAUGUAAAAUCAGGGGACAUUUGAAGAUGGCAGA2000000006ACUGUCUCCCCCUUGUCACCUACCUCUGAUAGAAUGUCUUUAAUGGUAUCAUAAUCAUUUUCACCCAUAAUACACAGUAGCUUCUUCUUACUGUUUGUAAAUACAUUCUCCCUUGGUAUGUCACUUUAUAUCCCCUGGUUCUAUUAAAAUAUCCAUAUAUAUUUCUAUAAAAAAAGUGUUUGACCAAAGUAGGUCUGCAGCUAUUUCAACUUCCUUCCGUUUCCAGAAAGAGCUGUGGAUAUUUUACUGGAAAUUAAGAACUUGCUGCUGUUUUAAUAAGAUGUAGUAUAUUUUCUGACUACAGGAGAUAAAAUUUCAGUCAAAAAACCAUUUUGACAGCAAGUAUCUUCUGAGAAAUUUUGAAAAGUAAAUAGAUCUCAGUGUAUCUAGUCACUUAAAUACAUACACGGGUUCAUUUACUUAAACCUUUGACUGCCUGUAUUUUUUUCAGGUAGCUAGCCAAAUUAAUGCAUAAUUUCAGAUGUAGAAGUAGGGUUUGCGUGUGUGUGUGUGAUCAUACUCAAGAGUCUAAAAACUAGUUUCCUUGUGUUGGAAAUUUAAAAGGAAAAAAAUCGUAUUUCACUGUGUUUUCAAUUUAUAUUUUCACAACUACUUUCUCUCUCCAGAGCUUUCAUCUGAUAUCUCACAAUGUAUGAUAUACGUACAAAACACACAGCAAGUUUUCUAUCAUGUCCAACACAUUCAACACUGGUAUACCUCCUACCAGCAAGCCUUUAAAAUGCAUUUGUGUUUGCUUAUUUGUUUUGUUCAAGGGUUCAGUAAGACCUACAAUGUUUUGUAUUUCUUGACUUAUUUUAUUAGAAACAUUAAAGAUCACUUGGUAGUUAGCCACAUUGAGAAGUGGUUAUCAUUGUUAAUGUGGUUAAUGCCAAAAAGUGGUUAAUAUUAAUAAGACUGUUUCCACACCAUAGGCAAUAAUUUCUUAAUUUAAAAAAUCUAAGUAUAUUCCUAUUGUACUAAAUAUUUUUCCCAACUGGAAAGCACUUGAUUGUACCCGUAAGUGUUUGAGUGAUGACAUGUGAUGAUUUUCAGAAAGUUGUUGUUUUUGUUUCCAUAGCCUGUUUAAGUAGGUUGUAAGUUUGAAUAGUUAGACAUGGAAAUUAUUUUAUAAGCACACACCUAAAGAUAUCUUUUUAGAUGAUAAAAUGUACACCCCCCCAUCACCAACCUCACAACUUAGAAAAUCUAAGUUGUUUGAUUUCUUUGGGAUUUCUUUUGUUGUGAAACACUGCAAAGCCAAUUUUUCUUUAUAAAAAUUCAUAGUAAUCCUGCCAAAUGUGCCUAUUGUUAAAGAUUUGCAUGUGAAGAUCUUAGGGAACCACUGUUUGAGUUCUACAAGCUCAUGAGAGUUUAUUUUUAUUAUAAGAUGUUUUUAAUAUAAAAGAAUUAUGUAACUGAUCACUAUAUUACAUCAUUUCAGUGGGCCAGGAAAAUAGAUGUCUUGCUGUUUUCAGUAUUUUCUUAAGAAAUUGCUUUUAAAACAAAUAAUUGUUUUACAAAACCAAUAAUUAUCCUUUGAAUUUUCAUAGACUGACUUUGCUUUUGACGUAGAAAUUUUUUUUCUCAAUAAAUUAUCACUUUGAGAAAUGAGGCCUGUACAAGGCUGAUAACCUAUAUGUGAUGGAGAUCACCCAAUGCCAAGGGCAGAAAGCAAACCUAGUUAAAUAGGUGAGAAAAAAAAUAAUAAUCCCAGUGCCAUUUGUCUGUGCAAAGAGAAUUAGGAGAGAGGUUAAUGUUACUUUUUUCCAUUUUGGAAAUAAUUUUAAUCAAGUAACUCAAAUGUGACAAAAUUUAUUUUUAUUUUUUGUGGUUAUAUUCCCAACAACAUUAAAAAAUACUCGAGGCAUAAAUGUAGUUGUCUCCUACUCUGCUUCUCUUACUAUACUCAUACAUUUUUAAUAUGGUUUAUCAAUGAUUCAUGUUUCCCUCAAAUAGUGAUGGUUUACACCUGUCAUGGAAACAAUCCUAGAGAGCUCAGAGCAAUUAAACCACUAUUCCAUGCUUUUAAGUAGUUUUCUCCACCUUUUUCUUAUGAGUCUCACUAGAUUGACUGAGGAAUGUAUGUCUAAAUUCCUGGAGAAGAUGAUAUGGAUUGGAAACUGAAAUUCAGAGAAAUGGAGUGUUCAAUAGAUACCACGAAUUGUGAACAAAGGGAAAAUUCUAUACAACUCAAUCUAAGUCAGUCCACUUUGACUUCGUACUGUCUUUCACCUUUCCAUUGUUGCAUCUUGAAUUUUUUAAAAUGUCUAGAAUUCAGGAUGCUAGGGGCUACUUCUUUAAAAAAAAAAAAAAAAAAGAAUUCGUCUGAAAAUGCUCAGGUUUGUAAGAAUCUAAUCUCACUUACAUAACUAAGCACUCCAUAAUAAGUUUUAUUAAGUACAAAGGGAGCCAGAAAAAAUGACAUUUAUUUCUUCUAGAUCAGAAAAAUUUAAAUUAAGCCCUGCCUUGCUGUUUAGAAAUAUGUGGGCAUUGUUAUAAUUUAUUCAAUAAAUUUAUGUUCCUUUGCCUUCCUGUGGAAACAGUUUUAUCCCACUAAACUAGGAAUUAGGGGAUAAAUCACAAACAAAAAAAAAGUUGCAGCACUGAAAAAAAGUAAUUUAUUGUUUUUGCAACUGGUAUGUGAAUUUGUGUGAUAAAAUUAUUUAUUCUUAUUUAACAAAAAUAUGUUCAAAUUUUUCUAUAUUUAAAAUGUUUUGCUGUUGUCCUACUUUUUAAUUUAUGCUUCAUGUUUGUGUAUAAAGUACACUUUUACACUUUGUGAGUUUACAUAAUAUACAGCACUGGUUGCUUUUGUAUUUUUUUACAGAAAGCUUUCUGUGUGAAGCAGGUGUAUAUGUAUAUAUUCCUCAUGUAUUCUUAUUCUGAUACUAUCAUUUUUCUUUCCAAGGAAAUUUUAAUCUGUCAUGACCAAUAGUGUUCAUUACUUGUGCCUAUGAUAAUAGGUUUUUUACAUCACAUUAACACUAUUUUUUCCAAGUCACAAAUAAGAAAAACACUUAUUCAAUGAAACAAGGUGCAAGUUUUAAAUUUGGGUACACAAAUAGCCUAGAAGCUUCCUACAGACGCUAAGACACAGCCAAUAAUCAGAUCCUUUCACUUCAUCGAGAAACUUGGACAAGUCGAUAUUGAUGUAUUAGAUGAAAGUUGUCUACACACAACUUCUGAGGGAUACAAACGAUAAUAAAACCAAAUGUUGUCUGUUUCUCCUUUAGAAACACCUCCUAAAAUUAAUAUCAUUUAGUCUCUAGUGUCUGUAGGAUUCUACAGAUGAGCACAAAUAGAUUGGGUUUGUAUAACAAAUGCUAAUAGUCAUAACUGUUUCUACAAAUAUGGGGUGUCCAUUAAGAGAAUGUGAUGUUUUCCUACUGCUGUUGAAUCCCAUGGGGUGAUUAUAGGACUUGAAAUAGGCAGAGUCACCUCUGAUGACAUCAGCUUGCCUCUGUGAUUUCACAGUCUGAUCCUGGCAACAAGACAAAGCACCCUUGGACACACAGCCAAUCUCUGGUUGUGAUAUUUCCCCAUUGAUUCCUUCCUUGUUAACAAGGUCAUUUUAAUGGUUCAGGUGAGGACAGCAGCCAGAUUCAAAGUCCAGAAUUUGUGCUGUUACAUAGAGUUCACACUGUCAAAUAACAUUGAAUUUAAUAAUGAUCAAAUUUUUCUAGUAGUCUUUGGCAGAGUGUAUAAUCUCAUUGGCAUGAUUGGUGAAUAUUACUAAUCUCUUUAUAAUGAAAGAUGCUUUACAAAUACCUUAUAUUUGCUAACAUUUCAAAACUACUAAAUAAAUGAAAUAGCCAUGUGUACAGAAAUGGUCAUUUAAAGCUUUAAUAGAACCAAAUUCAAGACAAUGUAUCAUUUAGACACACAGAAAAGGAACUUGUAUGUUUUCCCUAUUAUUUUUCUCAUUUGCCAACAAUCUAUAGUUUUAGGUUAUCAAACAGAUAGAUCAACUUAACUGGCUAGUACAUUGAAAAAUCUUCCUAAGAAUCCUUUGUUAGCAUAAUCUAUAGAGAUAAUUUCUCAAAUUAUAUCAUCAUGAUGCAUAUAAACUCUAUAAUGUAUAAUUGUGUUUCAUUUAUUUAAUGUAUGAGAACAUAUUGAAAUACAAAACCAUGCAUUAGCCAAAAAAUUGGAAUACAGGUAGUGUUCAGAUCAGCAAAACAUUCAGUCUGGUAAAUGCCUGCCUGGGGCUAUGAUAUCAUUCUCAAUGCAGGUUUUAUGGAAAAACUAAAAGAAUAUGUUGUUAGAUGAUGUUGGUUUUGAAAAAAAAAAGACAUUAACAUACACAUUAGUUAGCCCAGUUAAUUGCAUUCUACUAAUAUAGUUGCACAUUAGCAAUAAUUUUGCUGUCUCUGGUCUUUAUUUUGUGGCUUCAACUAACUGGACCAUGUGGACUGUAAAGGUCAAAUGGAAAAAACGAGCAGUGGCCCCUCAUCCUGUAAGGUACUGCUACAUCAGAGUGACCUAAAAGUCUAACACUGUGAGGAAAACUGUGAUUUGUAGGAAAAAAAAAAAAAACAAAUAAAAAACAGGGCAUGCUUUUUAAUUUUUUUCCACUUUCCUUUGGCACACCCAAUGAACAAUUCUAAUUUUUAUUGAGGUGCUAACAUCUUUCGUGACCGACUGUCAAAUGUGGUAUUUUUGAGUUACUAUUUUUCUACAUGAUUUUACAGUUUGCAAGAAAGACCUCUAAGCUUUGUGUCACGGUAGGGCACAACUUGAUACUCAAAAUUUGAAAAAUAAGCACAUCCAAUGAUUGUUUUGACCAACAGUGGUCAGUGACGUAAACUGCAUGUGCAUCUGAGGACAUUUAAGGGGUCAUUAAAAUUUGAGGAGCAUCAGGCCGGAGUAGCAGACUUUUAGAUGAGUCAUAUUUCAGCAUUCACUAAGUCCUCAGCAUUCCAUUCAAACUGUCGUGUAUAUUUGGCCUGAUUUUUUUUCAAGCUUUGCAAUAAUUUAUGUUAUUGGUAAACACUUGGUGACUAUAUCUCAGCCUUUUCUUUAACAACUCACAAUAUAUUAGAAACACGUCUACCUAUACUGAGAGUAUAUUUACAAUAGAAGAACAUACUGUAUGUGACUUUGUAAAGCUAGACUUUUGAUUAAGAAAUAUAUAAUCUCUGGAUGCUAUUUUUGCAUUAUACACUCAGGCACAACGUAAACCUUGAUGGCUCAUCUUGCUACAAUUACGAGUUGAAAAACACUACUUACGUAUUUGUAUGACCUAUUAGUCAGAGGAAAUCAUACAUAUGCUUUGUAAAUAGACUUUGCAGAUAACUAAAUAGACUGAAGAAAUAUGUUGCAUUUGAUAGAAGCAAUUGCAUAAAUAUUUGGUUUCUAUAUUAGAGUCUGUGAGUAAAGUCAAGUAAUAAACCUAAGUAGGUAUAACAGAUUUUUAAACCUUGAAACUUGCUUUGAUGGUAGAGAAAAUCAUUGAAGAUUUACAUACUGUAUAUAAGAUGUAAAAUGUACGCUGCUUAUUACCCUCAAUUUUCCAGAAGCAAUGGUAUAUAAUGCAGUUGAAAAACCAAAAAUCUUGGAAAACUAAGACGGGUCUUGUUUAAAAUGUCUCUCAGCUUUGGCAACCUUCAAAUCUUAAUCAACUAUUUAAAGCAUUACUGUGUCUUGUAGCCUGCAUUCCACAACAGCUCUGUUAUUCAGGUAAAAGACUUGAACUGAGCCGUUUGGGACCUAUACUGUAAUAUUUUCAUUGAGGAACAAUAUCCUAUUUUGUAAAGCAUUUCCCUAUGUGUGACUUUAAACUGUAAAAUUAAACACUGCUUUUGUGGGUUCAGUGGGCAUAAUAAAUAUAAAUUGUAAACUA
2181   mRNA  unknown    Homo sapiens    ACAGUCGUUCCGCCACCUCCCAGUCGGGUUGCGGCGGAGGCCGUUCCUGGCUUUGUAGCUCGCUCAAGAUGGCGGCGCAGCCACCCCGCGGGAUACGCCUCAGCGCGCUUUGCCCGAAGUUUUUACAUACAAAUUCUACUAGUCACACCUGGCCAUUCAGUGCAGUUGCUGAAUUAAUAGAUAAUGCUUAUGAUCCUGAUGUGAACGCUAAACAAAUAUGGAUUGACAAAACAGUGAUAAAUGACCAUAUAUGCUUGACAUUCACCGACAAUGGGAAUGGUAUGACUUCUGAUAAAUUACAUAAAAUGCUAAGCUUUGGCUUCAGUGACAAAGUCACCAUGAAUGGUCAUGUCCCAGUUGGAUUAUAUGGGAAUGGCUUCAAGUCGGGUUCUAUGCGUCUGGGUAAAGACGCAAUCGUUUUUACCAAAAAUGGAGAAAGCAUGAGCGUGGGCCUUUUGUCUCAGACCUACUUGGAAGUCAUAAAAGCGGAGCAUGUUGUUGUUCCAAUAGUGGCAUUCAACAAGCACCGACAGAUGAUUAAUUUAGCAGAAUCAAAAGCCAGCCUUGCUGCAAUUCUGGAACAUUCUCUGUUUUCCACGGAACAGAAGUUACUGGCAGAACUUGAUGCUAUUAUAGGCAAGAAGGGGACGAGGAUCAUCAUUUGGAAUCUUAGAAGCUACAAAAAUGCAACAGAGUUCGAUUUUGAAAAGGAUAAAUAUGAUAUCAGAAUUCCCGAGGAUUUAGAUGAGAUAACAGGGAAGAAGGGGUACAAGAAGCAGGAAAGGAUGGACCAGAUUGCCCCUGAGAGUGACUAUUCCCUGAGGGCUUAUUGCAGUAUAUUAUAUCUAAAGCCAAGAAUGCAGAUCAUCCUACGUGGACAGAAAGUGAAGACACAGCUGGUUUCGAAGAGUCUUGCCUACAUCGAACGUGAUGUUUAUCGACCAAAAUUUUUAUCUAAAACAGUGAGAAUUACCUUUGGAUUCAACUGCAGAAAUAAAGAUCAUUAUGGGAUAAUGAUGUAUCACAGAAAUAGACUCAUCAAAGCUUAUGAAAAAGUUGGAUGUCAGUUAAGGGCAAACAACAUGGGUGUUGGAGUGGUUGGAAUUAUAGAGUGUAAUUUCCUUAAGCCAACUCAUAAUAAACAAGAUUUCGACUAUACUAAUGAGUACAGACUUACAAUAACAGCACUAGGAGAAAAGCUGAAUGAUUACUGGAAUGAAAUGAAAGUGAAGAAAAAUACAGAAUAUCCUCUAAAUUUGCCAGUUGAAGAUAUACAGAAGCGUCCUGAUCAGACAUGGGUUCAGUGUGAUGCCUGUCUAAAGUGGCGGAAAUUACCUGAUGGGAUGGAUCAACUUCCUGAAAAAUGGUAUUGCUCCAAUAACCCUGACCCACAGUUCAGAAAUUGUGAGGUUCCAGAAGAACCUGAAGAUGAGGAUUUGGUACAUCCCACUUAUGAAAAAACCUACAAAAAGACCAACAAGGAAAAAUUCAGGAUCAGACAACCGGAAAUGAUCCCUCGGAUUAAUGCUGAACUGUUGUUUCGGCCAACUGCUCUUUCAACUCCAAGCUUUUCUUCUCCUAAGGAAAGUGUUCCAAGAAGACAUCUUUCAGAAGGAACAAAUUCUUAUGCGACAAGACUUCUAAAUAAUCAUCAAGUUCCACCUCAGUCUGAACCUGAGAGCAACAGCUUGAAACGGAGACUUUCUACUCGUUCCUCAAUUUUGAAUGCAAAGAAUCGGAGAUUGAGUAGUCAGUUUGAAAAUUCAGUUUAUAAAGGUGAUGAUGAUGAUGAAGAUGUCAUCAUCUUAGAAGAAAACAGUACCCCCAAACCUGCAGUAGAUCAUGAUAUUGACAUGAAAUCAGAACAGAGUCACGUUGAGCAAGGUGGUGUUCAGGUUGAGUUUGUGGGUGACAGUGAACCUUGUGGCCAGACUGGUUCAACAAGCACCUCAUCAUCCCGAUGCGACCAGGGAAAUACUGCAGCUACCCAGACUGAAGUACCAAGUUUAGUUGUUAAAAAAGAAGAAACUGUUGAAGACGAGAUAGACGUAAGAAAUGAUGCAGUGAUUCUGCCCUCCUGUGUAGAAGCUGAAGCAAAGAUACAUGAAACCCAGGAAACCACCGAUAAAUCUGCAGAUGAUGCAGGCUGCCAAUUACAAGA2000000006ACUGAGAAACCAGCUACUCCUUGUCACUGAGGAAAAAGAGAAUUAUAAAAGACAGUGUCAUAUGUUUACUGAUCAAAUCAAAGUGUUACAACAGAGGAUACUAGAAAUGAAUGACAAGUAUGUUAAGAAAGAAACUUGCCAUCAGUCCACUGAAACCGAUGCUGUAUUUUUACUUGAAAGUAUUAAUGGCAAAUCUGAAAGUCCAGACCAUAUGGUAUCUCAGUAUCAGCAAGCUUUGGAAGAAAUAGAAAGGCUGAAAAAACAAUGUAGUGCUUUGCAACAUGUAAAGGCUGAAUGCAGCCAGUGUUCCAAUAAUGAGAGUAAAAGUGAAAUGGAUGAGAUGGCUGUGCAGCUUGACGAUGUGUUUAGACAACUGGACAAAUGCAGUAUUGAGAGGGACCAGUAUAAAAGUGAGGUUGAAUUGCUGGAAAUGGAAAAGUCACAAAUCCGUUCACAGUGUGAAGAACUCAAAACUGAAGUAGAACAGUUAAAAUCUACAAAUCAACAGACGGCAACAGAUGUUUCAACAUCAAGUAACAUUGAGGAGUCUGUAAAUCAUAUGGAUGGAGAAAGCCUCAAACUCCGAUCUCUUCGAGUUAACGUAGGACAACUGCUGGCUAUGAUUGUGCCUGAUCUUGAUCUUCAGCAAGUGAAUUACGAUGUUGAUGUAGUUGAUGAGAUUUUAGGACAAGUUGUUGAACAAAUGAGUGAAAUCAGUAGUACUUAAAGUAUAUGUUAUGUAAGAUAAAAUAUUUGCUCAAUUCUUUUGGUUGUACAGCUUUCAAAAUAUAAUUAAUUUUGUUUUAUAGAUAUGAUAGGCAACAG2000000006ACUGAAAACCAUAAUCUUUACUGUAUUCUAUGCAUUCAAAUGUGGUCACAAAUAUUGUGGACACAUUAUCUUAUGUUUUGAAAUACCUGUGAAUUGUUGGCAUUGAGCAGCUGAAGCUAACUCAUGACUCUGUUUUGAAUGUAAAUAUUUGUAAUUAAGCCUGCACAUAUUUUUUUAUUGCCCUAGAGUACUCAAGUGUUUUUCACCAAGAGCUUUUCAGGUUGCCCCUAAGCUUUGUGCAAUUUUUUCUGGUUCCCCAAAGUGUAUUUUUCUCUAAGUCGAGGGCUAUGCCAUAAUACAAAUGGAAAUGUUACCUUUGAUUUUCUUAUAAAGGAGUUUAAAUAGGAUUUUUAAAUAAUGUAGUAACACUCCUGAUACAACUCUGGUUAUAAGUGAAUUGAGCAUUAAUGUUUCUUUUGUAUAAAUUCCUGUCCUGAAAUAUUUUAUUCAUGAAAAUAAGGUAAGCAAAAACCAACUCCAUUUUGCCAGGAUUUUGUUGUGCUGAGAUUGCCAAUCACGGUUAAACACAAAGUGUUUUUAUAGAAUGAAGAAACAGUCUUUAACAGAAAAAAGGUAUUGAAAUAUUAAAUGGCCACCAAGUUUACUUUGAAGCCCAUUUUUGGCUGUUUAGUCAGCAUGAAGUGGGCAUGAUAAUUUUUUAAUAUUUCUUUUUGUGAAAUUUCCUGUACAGCCUUUUGUAGGAUUACUACAGGUUAAUGUGAGUUGAGGAAGACAGUCUUUCUCAAACAAUACUACAUACCUUUUAUUAUAUUACAAACCUAAGUGUUUUAUAUCCUAGAGUCAAGGAACAAAUUUCCUUAGGAUUAUAGUAUUACAUGCCAUAAAAUACUAUGCUUUAUUGGUCCCAUGUUUUGUGCAAUUUUAAAGAGAUGGCUUUCUAUUAAGUAUAAACUAUGUAUAUAUAAGAACCAUAUUUUCCACAACUAAAAUGUGCAUUAUUUUUUCCAAAGUUUUAUCAUUGCUAUUUAUUUUUACCUUUGUUUUUGAACAUUCAAUCCGUUCAUUUUGUAUGUAUGCUUAAUACGUGUCGGUCAUAUACAGUAUUGAAUUUUUACUGUAUAGUAAUUCUGGAAAGAGCAAAUAAAUGAAGAUUGUUUUUAUUUGCCUGAUAAAGUAAUUGAAAGUGUAUUUUUGGUAUGAAGCUGGUUUUCUGUCACAAUUGUAAUUUCCCAAAUUUUAAAAUAUCUUAUAAUAAAAUAAAAAUAUAUGAUGGCUAA
2182   mRNA  unknown    Homo sapiens    ACAGUUGCGGCGGGAGAGCGGCGGGGCCGAGAGCGUGACUCGCCCGCUCCGCGCUGCUUCCCCCGCGCCGCCUCCCCGCGCCGCUCGCGCAGCCAUGUCCGAGGAGAAGCCCAAGGAGGGUGUGAAGACAGAGAAUGACCACAUCAACCUGAAGGUGGCCGGGCAGGACGGCUCCGUGGUGCAGUUCAAGAUCAAGAGGCACACGCCGCUGAGCAAGCUGAUGAAGGCCUACUGCGAGAGGCAGGGCUUGUCAAUGAGGCAGAUCAGAUUCAGGUUCGACGGGCAGCCAAUCAAUGAAACUGACACUCCAGCACAGCUGGAGAUGGAGGACGAGGACACCAUCGACGUGUUCCAGCAGCAGACGGGAGGUGUGCCGGAGAGCAGCCUGGCAGGGCACAGUUUCUAGAGGGCCCGUCCCCAGCCCGGGCCGUCCA2000000009UCCUCGCAUUGCUGUUGAAUGGUGAGCACGUGACCAUGCCGACCACAAAGGUGUCUGCGGAAACUCGAGG2000000006ACAUUCACCACGAUGAUUUUCCUCUCUUUGAUGUACUUCAAGUGCAACUCAAAACUAUAUCUGCAGGGAUGAAUCUGUA2000000006ACUUAAAUUGGGCCAAUCAGAAUUGUUAUCUUUGUUCAGGUAAAAUGAGUUGCAAGAUAUUGUGGGUACUUUUGUGUGCUCAUUUGUGUUUUCCCCCCCUCCUACAACAUUUUUUUAACCCCAA2000000006AAUUAUAGCCUGAAUGUUCGCUUUUAGUCUGGCCAGGGAUCUGACUCCUGAGUUGGUUGCCUCUCCCCUGCUCACUCCAGUCACAUAGAGAAUUGGUGUUUCCCGCAGUGGGGAUGCAGCUGUUGGACAGGUAUUGGGGGCAAGGUUGGUAGGGAGGACAGACUGUCACUUGCUGUUACAGGCACAGGUGAUUAAAAUGCUAAAUAUUGCAAAUUUAAGCUUUGUCAGUAUAUGGAAAAGUUGAAGGGAAAAUACUGGAAUGCUUCUUCAAAGGUUAAAAAAUA2000000006ACCGAGUCUUUUGGUAAUUUGACCCCACGUGCUCUCUGGCCCUCAAGCAUGUAACCUCGGGGUCUGAGGCCCAGGACCCACCCCCCUGCCACCCC2000000009UCCCACCCCACUCCCUGCUCAGUACCUGGCGUUGGUACACAGGCAAGGAUUGGCACAACCAAAAUUGGCCUUUUUCUCCCUCUUAAUAUUGAAGAAAUUCCCACAUUUCUCAUUUGGUAAUGGUGUUGUGGCCUCAGAUUUCUUCUAGUAUUUGCUUCUGAUGAAUGAUUAUGGUCUAUACAUAAAAAAGUAAGACUAAGUAUUGCUGAAUUUGCAGUUAUGUUGUCGUGUAUAAGAGCUACUUCCAAGUGUGGUUACAAAUGAACCCAUGGAAUGAUGACUUCAUGUUCUUCUCGUGGGUUUGUGCCGUGCUGCUUUCCAAAUAGGUAUUGAAUUUAUGCAUUAGUCUGGUGAUUUCAGUUCUGUGAAAUAUUUUGGGAUCUAUACCAAUUAA2000000006ACAUUUUCAUAGUUCUGCCUAUUGUCCUUCCCUGAGGCUCCAUUGCUGCUUGGUGGCCAUUCUCUGCCUUUUUACAGUCACCUGAACAAUGACCCAUCAUCUCUUGCUUGCUUGAAAUCUUGCUGAAAUGUUCUCAUUUCCUGUUUGCUGUAUGGGCUCGGGUGGGAUGUUUGUUGGCUCUGUUGUGUUUAUUCACCAAUUUGUACAUUAUUUGUUGUCCU2000000009UUACUACUGUAA2000000006ACAGUAAAUAUAGUUUGGUAUUCUGUC
2183   unknown  unknown    Homo sapiens    ACAUACGCAUGCACAGGCACGUGUGUACACACAUGCAGAUACACCCACAGCAUGCCAUCUGUGACACACACAGACGUAGGUACAUGGAGACACAUGCACACACAGGUCUGUGCACACACAUACGCAUGCACAGGCACCUAUGUACACACAUGCAGAUACACCCACAGCAUCCCAUCUGUGCCACACACAGACAUAGGUACAUGAAGACAGAUGCACACACAGGUCUAUGCACACACGUAUGCAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCACAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGCACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCAUACACAGACAUACGUACAUGGAGACAGAUGCACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGUACACACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGCACACACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUAUGCAGAUGCACCCGCAGUAUCGCAUCUGUGCCACACAGACAUACGUACAUGGAGACAGAUGUACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUACAUACAGAUGCACCCGCAACAUCCCGUCUGUGCUGCCCUAUUAGGUUUGUGGCCAUUUGGGGAAUCUUCCUAAAACCCUAAAAGCUAGGGCAGGUCUGCUUGAGCAGGAGCAGCAGGGUCUGGGGGACCCCUGAGGGCAGGACAGUCAGGGACCCACAGUUGAGCUGGGCCCGCUGAGCCCUGGAUCCUUCUUGGUGUCUUAUCCUGGCCAGCAAGCAAGUGUGAGCUCCUGUGGGUCUCCAGAGGCCCAUGAGGACCAGUGGGCCAGUUGGGAACAAGGCUUGGCGUCCUCUUCAGGGGGGAACACCAGGGCAGGCCUGAGGAGGCCUGUGUCCCCAGCCUGUCAUUGCUGUGGCUCCGCUUCUCAGGGAGCCUAGGAAGAAGGUGUGGCAAGAGCCCGAGGCGCUGGCUGCACCUGGCGGGGCCUGUGGGCGUCAGUUUAGACCCAUCCAUUCUCACUGCAGCAUUCCAGGGUUUGCCCUUAUGCUCGGCUGUGUGAGGGUGAGGAUGAUGCUGUGGGGGCAUGCAUGCUGGGUGUGUUUCAGCCUUCUCUUCCACCAGGCAUCCUGACAUCGAGGCCCAGGAGAGAGGAGUCCGGUGUCUACUUGAGAAACAGCUCCCCAAUGGCGACUGGCCGCAGGAAAACAUUGCUGGGGUCUUCAACAAGUCCUGUGCCAUCUCCUACACGAGCUACAGGAACAUCUUCCCCAUCUGGGCCCUCGGCCGCUUCUCCCAGCUGUACCCUGAGAGAGCCCUUGCUGGCCACCCCUGAGAACAUGCCUACCUGCUGGGUGCCGUCUGUGCGUUCCAGUGAGGCCAAGGGGUCCUGGCCGGGUUGGGGAGCCCUCCCAUAACCCUGUCUUGGGCUCCAACCCCUCAACCUCUAUCUCAUAGAUGUGAAUCUGGGGGCCAGGCUGGAGGCAGGGAUGGGGACAGGGUGGGUGGCUUAGACUCUUGAUUUUUACUGUAGGUUCAUUUCUGAAAGUAGCUUGUCGGGCUUGGGUGAGGAAGGGGGCACAGGAGCCGUGACCCCUGAGGAGGCACAGCGCCUUCUGCCACCUCUGGGCACGGCCUCAAGGUAGUGAGGCUAGGAGGUUUUUUCUGACCAAUAGCUGAGUUCUUGGGAGAGGAGCAGCUGUGCCUGUGUGAUUCCUUAGUGUCGAGUGGGCUCUGGGCUGGGGUCGGCCCUGGGCAGGCUUCUCCUGCACCUUUUGUCUGCUGGGCUGAGGGACACGAGGGCAACCCUGUGACAAUGGCAGGUAGUGUGCAUCCGUGAAUAGCCCAGUGCGGGGGUUGCUCAUGGAGCA2000000009UCCUGAGGCCGUGCAGCAGGGAGCCCCAUGCCCCUGGGUCGUGAGCUUGCCUGCGUAUGGGGUGGUGUCAUGGAGCCUCAUGCCCCUGGGUCGUGAGCUCGCCUGAGUAUGGGGUGGUGUCAUGGAGCCGCAUACCCCUGGGUUGUGAGCUCGCCUGCAUAUGCAGGGUCUGUCAUGGAACAUCCCAAGUCUGUGCAGCAGGGAGCCCCAUGCCCCUGGGACAUGAACCCACCUGCGUGGAAUGCUGUUUGUGAGGUGUCUACAGGGUUUAUAGUAGUCUUGUGGACACAGAAAUGCACAGGGGACACUUACGGACACAGAAAUGCACAGGGGAGGCCGAGCA2000000009UAACCAGGGGUGAGGGGCAGGCAGCAGUUGUAGUUACUGCCGCGGGGCACUGCUAUGUGCAGGGACAGCCAGCACCCAGCCCAUCACCACUCCCUGGGCUGGCUGGCAGGUAUGGCACCCUGGGAGCCCGGCAUAUACCCAGGGCACCCCUACGGCUGCCGCCAGUCUCAUGCCCAGGUGGGUGCUCUGGGCUGGAGCGAGGGCCAGGUUUUGGGCCGAGGCUUCCCCAGGCAAUCCUGUGAGCUCCCUUCUAGCCUCUGACCCAGUCUGGUCUGGCUUGCAUGGAUGUAGGGCUUGGGGUGGGAAGUUCAGGUCCUGGCUUUGCCUUUGCCUGAUGUGGAUGAGCAGCUCACAUGCUCAGGGCCACCUGAGACUGUCACUGCUCUCCCCUGGCUACUGGGAGGAGUCACUGAGAGCUUCGUUACCCCUGCUGCCUUGCCCAGGGCACACCCUAUACCUCCUUAUCUGCUCUUCCCCUCCCUGCCGCCUUCUGGGCAGGUAGCAGUCCCUGGCCUCUCCCCCUGGCUGAUCACUCUCCCUCAGGCAGUGGAGAUCUGCGUCUGGACACCCUCAGAUCCUGUCAUUGCCUGCCCAGAGUCCUUCAGGGGCACCCCUCUGCCUUGGUGUGCAGUCCAGGGCUCUCACCCAGGUGCCGCACCCUCUGGGGUCUUCUGUCCAGCUCCCUUGCCCCAUGUGCUGUCACUGACUCUCCUUGGG2000000006ACUCGCCUGCCUGCUCAGAGCCCUGCAGGGCUUGGUCAGCUGCCUGUUCAGUGUCAACACUUCCCUGCACAUCUUAAAACUGGGCU2000000009UUAUUUUCGCUGAAGGA2000000006ACUGUGUUGGGACCCUUGACAUCUGUCAGGUUUGCACAUGCUGUUUUUUUUUCUCAGCCCACGUGU2000000009UCUCCCCCACGUGGGGUAGCAGCAGGACAGACAGUGAAUCACAGAGUCUGCCCUGAGCAGAGGCUGCUGUCCCUGGGACUCCUAGCCAUGGUCAGACUGUACAAAACGGUUUUCCAGAAAUGAAAUGUAAAUCCAUUUUUAUACUGAAAAUGUUACUGAAAGUCACUUUUAUGAGCAUCUGCCUUAAUAA2000000006ACAGACAUUGAUUCCCUUAUCAGAA
2184   unknown  unknown    Homo sapiens    ACCACACCCAGCUAAUUUUUGUAUUUUUAGUAGAGAUGGGGUUUCACCAUGUUGGCCAGGCUGGUCUCAAACUCCUGGCUUCAAGUGACCCGCCUGCCUUGGCCUCCCAAAGUGCUGGGAUUACAGGCGUGAGCCACCACACCCAGCCCCAUUGUCUUUUUUUUAAGACACUGGUUCUCACUCUGUCACCUAGGCUGGAGUGCAGUGGUGUGAUCAAGGCUUACUGCAGCCUCAACCUCUUGGGCUCAAGCAGUCCUCCCACUUUAGCCUCCCAUGUUGCUGGGACCACAGGUGCAUGCCACCAAGCCCCACUAAUUAAAACAAAUUUUUUUUUAUAGAGAAUAGGAUGUAGCUAUGUUGCCCAGGCUGGUCUUGAAUUCCUGGGCUCAAGUGAUCCUCCCACCUUGGCCUCCCAAAGUGCUGGGAUUACAGGUAUGAGCUACUGCACCUGGUCUCUGUCUUCUUUUUUUUUUUUUAAGGCUCUUGUUAGAAUGCCGUGAACAGUUGUCUCCAACUAUUAUAUGUCAUUCCACGGGAUUGGUUUCCUGCUGGCAUUCCAUGGUCUCCGGGGUCCUCUGCAGCACCUUCCUGGCCUUUUGUCAUGUGGAUGCUGCACAGCUGACUUCACCUGGUCUUGUUGAUGG2000000006ACAGUUUGUUUCAUGAUUUCUCUUAUGAAUAAAACCUUCACAAGCCAUCCUUCUCUAUGAGAGUGUUUGCUUGGCACGCAUUCCUGAGCACUGCCCCUGAGCAGACCGCCUAUGAUCUCUAAGCUUGGGUUCCGUGUUGCCAAAGCGCCUUCUGGUGG2000000006ACUCAGCCCAGGAGGAGCCCAUGUGCCCCACGCUGGCCAUGGCUGUGGUCAUGGGCUGACUGCAUGUGUCUGACUGGGCCUUCGUCUGAGACUGCAGUGAUUUCGCUCCUCCUCUCAGAUCCGCAAGGAUGCUCUCCGGGCGCUCAACUUUGCGUACACGGUGAGCACACAGCGAUCUACCAUCUUUCCCCUGGAUGGUGUGGUGCGCAUGCUGCUGUUCAGAGACUGUGAAGAGGCCACCGACUUCCUCACCUGCCACGGCCUCACCGUUUCCGACGGCUGUGUGGAGCUGAACCGGUCUGCAUUCCUGGAACCAGAGGGAUUAUCCAAGACCAGGAAGUCGGUGUUUAUUACUAGGAAGCUGACGGUGUCAGUCGGGGAAAUUGUGAACGGAGGGCCAUUGCCCCCCGUCCCUCGUCAUACCCCUGUGUGCAGCUUCAACUCCCAGAACAAGUACAUCGGGGAGAGCCUGGCCGCGGAGCUGCCCGUCAGCACCCAGAGACCCGGCUCCGACACAGUGGGCGGAGGGAGAGGAGAGGAGUGUGGUGUAGAGCCGGAUGCACCCCUGUCCAGUCUCCCACAGUCUCUACCAGCCCCUGCGCCCUCACCAGUGCCUCUGCCUCCUGUCCUGGCACUGACCCCGUCUGUGGCGCCCAGCCUCUUCCAGCUGUCUGUGCAGCCUGA2000000006ACCACCGCCUCCAGAGCCCGUGCCCAUGUACUCUGACGAGGACCUGGCGCAGGUGGUGGACGAGCUCAUCCAGGAGGCCCUGCAGAGGGACUGUGAGGAAGUUGGCUCUGCGGGUGCUGCCUACGCAGCUGCCGCCCUGGGUGUUUCUAAUGCUGCUAUGGAGGAUUUGUUAACAGCUGCAACCACGGGCAUUUUGAGGCACAUUGCAGCUGAAGAAGUGUCUAAGGAAAGAGAGCGAAGGGAGCAGGAGAGGCAGCGGGCUGAAGAGGAAAGGUUGAAACAAGAGAGAGAGCUGGUGUUAAGUGAGCUGAGCCAGGGCCUGGCCGUGGAGCUGAUGGAACGCGUGAUGAUGGAGUUUGUGAGGGAAACCUGCUCCCAGGAGUUGAAGAAUGCAGUAGAGACAGACCAGAGGGUCCGUGUGGCCCGUUGCUGUGAGGAUGUCUGUGCCCACUUAGUGGACUUGUUUCUCGUGGAGGAAAUCUUCCAGACUGCAAAGGAG2000000006ACCCUCCAGGAGCUUCAGUGCUUCUGCAAGUAUCUACAGCGGUGGAGGGAAGCUGUCACAGCCCGCAAGAAACUGAGGCGCCAAAUGCGGGCUUUCCCUGCUGCGCCCUGCUGCGUGGACGUGAGCGACCGGCUGAGGGCGCUGGCGCCCAGCGCAGAGUGCCCCAUUGCUGAAGAGAACCUGGCCAGGGGCCUCCUGGACCUGGGCCAUGCAGGGAGAUUGGGCAUCUCCUGCACCAGGUUAAGGCGGCUCAGAAACAAGACAGCUCACCAGAUGAAGGUUCAGCACUUCUACCAGCAGCUGCUGAGUGAUGUGGCAUGGGCGUCUCUGGACCUGCCAUCCCUCGUGGCUGAGCACC2000000009UCCCUGGGAGGCAGGAGCAUGUGUUUUGGAAGCUGGUGCUGGUGUUGCCGGAUGUAGAGGAGCAGUCCCCAGAGAGUUGUGGCAGAAUUCUAGCAAAUUGGUUAAAAGUCAAGUUCAUGGGAGAUGAAGGCUCAGUGGAUGACACA2000000009UCCAGCGAUGCUGGUGGGAUUCAGACGCUUUCGCUUUUCAACUCACUUAGCAGCAAAGGGGAUCAGAUGAUUUCUGUUAACGUGUGUAUAAAGGUGGCCCAUGGCGCCCUCAGUGAUGGUGCCAUUGAUGCUGUGGAGACACAGAAGGACCUCCUGGGAGCCAGUGGGCUCAUGCUGCUGCUUCCCCCCAAAAUGAAGAGUGAGGACAUGGCAGAGGAGGACGUGUACUGGCUGUCGGCCUUGCUGCAGCUCAAGCAGCUCCUGCAGGCUAAGCCCUUCCAGCCUGCGCUUCCUCUGGUGGUUCUUGUGCCUAGCCCAGGAGGGGACGCCGUUGAGAAGGAAGUAGAAGAUGGUUUGUGAAGGAAGUCUCGUUUAUGAAGCAGCAUUGUUUAAUAAAUGGGUGGAGGCCCUGGGUCUGAGGAUGGUCCAGUAGUGUUGGGGUCAGGAAUCACUGAGACAGCAACCCCUGUGGUGACUGUCCACUGCAGGACUGGGUGGGGUCAGCACAGUGAGAUAUGUUAGCAGGUGUGCUGACAGCAGAAUGCAAGUGACCUUCAUCUAUGUCUGUCUUAAAGGUCUGAUGCUACAGGACUUGGUUUCAGCUAAGCUGAUUUCAGAUUACACUGUUACCGAGAUCCCUGAUACCAUUAAUGAUCUACAAGGUUCAACUAAGGUUUUGCAAGCAGUGCAGUGGCUGGUUUCCCACUGCCCCCAUUCCCUUGACCUCUGCUGCCAGACUCUCAUUCAGUACGUCGAAGACGGGAUUGGCCAUGAGUUUAGUGGCCGCUUUUUCCAUGACAGAAGAGAGAGGCGUCUGGGCGGUCUUGCUUCUCAGGAGCCUGGCGCCAUCAUUGAGCUGUUUAACAGUGUGCUGCAGUUCCUGGCUUCUGUGGUGUCCUCUGAACAGCUGUGUGACCUGUCCUGGCCUGUCACUGAGUUUGCUGAGGCAGGGGGCAGCCGGCUGCUUCCUCACCUGCACUGGAAUGCCCCAGAGCACCUGGCCUGGCUGAAGCAGGCUGUGCUCGGGUUCCAGCUUCCGCAGAUGGACCUUCCACCCCUGGGGGCCCCCUGGCUCCCCGUGUGCUCCAUGGUUGUCCAGUACGCCUCCCAGAUCCCCAGCUCACGCCAGACACAGCCUGUCCUCCAGUCCCAGGUGGAGAACCUGCUCCACAGAACCUACUGUAGGUGGAAGAGCAAGAGUCCCUCCCCAGUCCAUGGGGCAGGCCCCUCGGUCAUGGAGAUCCCAUGGGAUGAUCUUAUCGCCUUGUGUAUCAACCACAAGCUGAGAGACUGGACGCCCCCCCGGCUUCCUGUUACAUCAGAGGCGCUGAGUGAAGAUGGUCAGAUAUGUGUGUAUUUUUUUAAAAACGAUUUGAAAAAAUAUGAUGUUCCUUUGUCGUGGGAACAAGCCAGGUUGCAGACGCAGAAGGAGCUACAGCUGAGAGAGGGACGUUUGGCAAUAAAGCCUUUUCA2000000009UCCUUCUGCAAACAAUUUUCCCAUACCAUUGCUUCACAUGCACCGUAACUGGAAGAGGAGCACAGAGUGUGCUCAAGAGGGGAGGAUUCCCAGCACAGAGGAUCUGAUGCGAGGAGCUUCUGCUGAGGAGCUCUUGGCGCAGUGUUUGUCGAGCAGUCUGCUGCUGGAGAAAGAAGAGAACAAGAGGUUUGAAGAUCAGCUUCAGCAAUGGUUGUCUGAAGACUCAGGAGCAUUUACGGAUUUA2000000006ACUUCCCUUCCCCUCUAUCUUCCUCAGACUCUAGUGUCUCUUUCUCACACUAUUGAACCUGUGAUGAAAACAUCUGUAACU2000000006ACUAGCCCACAGAGUGACAUGAUGAGGGAGCAACUGCAGCUGUCAGAGGCGACAGGAACGUGUCUAGGCGAACGACUAAAGCACCUGG2000000006AAAGGCUGAUCCGGAGUUCAAGGGAAGAGGAAGUUGCCUCUGAGCUCCAUCUCUCUGCGCUGCUAGACAUGGUGG2000000006ACAUUUGAGCAGCCUG2000000006ACCUGUGGGGAGGGGGUCUCUCCCGAAGAGUUUCUGUUUUUACUCAAAAUAAUGUUAUUCUCAGAUGCUUGAUGCACUGUUGGAAAUGUGAUUAAUUUAAUCAUGCAGAUAAACCAUUUAAAUGUCA
2185   mRNA  unknown    Homo sapiens    ACCCGCUCCCUCCCGCCGUCGGCUGACGUGGAGGGCCGGAGGUGGCGGCGGCGGCGGCGGCGGCUGCUGCUGCUGCUGCCCGCGUCCGAGGCUCGCGGGCGGCGGGCCCGGGUGAGUGCACACCCGGCGCGCUGCCGGGCUCCCGGAUGUGUCACCUUGUCCCGCUGCAGCCGAGAUGCCGGGGGAGCGGGGCCUUCCACACCCCCUCCGUGGGUGUGUGACUUGUGCACCAUGGACAAUUUUGCUGAGGGAGAUUUCACUGUGGCGGAUUAUGCCUUGUUAGAAGAUUGCCCUCACGUGGAUGAUUGUGUCUUUGCUGCUGAAUUUAUGAGCAAUGAUUAUGUUCGUGUGACUCAGCUUUACUGUGAUGGGGUGGGUGUGCAAUAUAAAGAUUAUAUCCAAAGUGAGAGGAAUUUGGAAUUUGACAUCUGCAGUAUAUGGUGUAGUAAACCAAUUUCUGUCCUGCAAGAUUAUUGCGAUGCCAUUAAAAUAAACAUCUUCUGGCCACUUCUGUUUCAACAUCAAAACAGUUCCGUAAUAUCACGAUUGCAUCCCUGUGUGGACGCCAACAAUUCACGUGCUUCUGAGAUAAAUUUGAAGAAACUACAACAUCUUGAGUUGAUGGAAGAUAUUGUGGAUUUGGCAAAGAAAGUUGCUAAUGAUUCAUUCCUUAUUGGAGGCUUAUUGAGAAUUGGUUGUAAAAUAGAAAAUAAAAUCUUGGCAAUGGAAGAAGCUCUGAAUUGGAUAAAAUAUGCAGGCGAUGUAACAAUUCUAACUAAAUUAGGAUCAAUUGACAAUUGUUGGCCUAUGUUAAGUAUUUUCUUUACUGAAUACAAGUACCACAUAACUAAAAUUGUAAUGGAAGACUGCAAUUUGCUUGAAGAACUUAAAACUCAAAGUUGUAUGGAUUGUAUAGAGGAAGGAGAACUAAUGAAAAUGAAAGGAAAUGAAGAGUUUUCCAAAGAAAGAUUUGAUAUAGCUAUUAUCUAUUACACCAGAGCCAUUGAAUAUAGACCUGAAAACUACCUUCUUUAUGGUAACCGAGCUCUUUGUUUUCUUCGUACUGGACAGUUUAGAAAUGCACUCGGUGAUGGAAAGAGAGCCACUAUUCUGAAGAACACUUGGCCAAAGGGUCAUUAUCGUUAUUGUGAUGCUCUUUCUAUGCUGGGGGAAUAUGACUGGGCCCUGCAAGCAAACAUAAAAGCUCAAAAACUCUGUAAAAAUGACCCUGAGGGAAUCAAGGAUCUAAUUCAGCAGCAUGUAAAGUUACAAAAACAAAUAGAAGACCUACAAGGUCGAACAGCAAAUAAGGAUCCAAUUAAAGCCUUUUAUGAAAACAGGGCCUACACACCUAGGAGUUUAUCAGCACCUAUAUUUACUACUUCACUUAACUUUGUGGAGAAGGAAAGAGAUUUCAGAAAAAUUAAUCACGAAAUGGCCAACGGUGGUAAUCAGAAUCUAAAGGUGGCGGAUGAGGCGUUGAAGGUAGAUGAUUGUGACUGUCAUCCUGAAUUUUCACCACCAUCAAGUCAGCCUCCAAAACAUAAAGGAAAACAAAAAUCUCGAAACAAUGAAUCAGAAAAGUUCAGUUCUAGUUCACCAUUGACUUUACCAGCAGAUUUGAAGAACAUCUUGGAGAAACAGUUUUCUAAAUCUUCCAGAGCUGCACACCAGGAUUUUGCUAAUAUAAUGAAAAUGCUGAGAAGCUUAAUUCAAGAUGGCUAUAUGGCCUUAUUGGAGCAGCGUUGCCGCAGCGCUGCACAGGCCUUUACAGAGUUGCUGAACGGUUUAGAUCCUCAAAAAAUAAAGCAAUUGAACCUGGCCAUGAUUAACUAUGUUUUGGUCGUCUAUGGACUUGCCAUUUCUCUCCUUGGAAUAGGACAGCCUGAGGAAUUAUCUGAAGCCGAAAACCAGUUUAAGAGGAUUAUUGAACACUACCCCAGUGAGGGCCUUGAUUGCUUGGCCUACUGUGGAAUUGGAAAAGUAUAUUUGAAAAAAAACAGAUUUCUAGAAGCUCUCAAUCACUUUGAGAAAGCAAGAACCUUGAUUUAUCGUCUUCCUGGAGUGUUAACUUGGCCCACGAGUAAUGUGAUUAUUGAAGAGUCUCAGCCACAAAAAAUAAAGAUGCUGUUAGAGAAAUUUGUUGAAGAAUGCAAGUUCCCUCCAGUGCCAGAUGCCAUUUGUUGCUAUCAGAAGUGCCAUGGAUAUUCUAAGAUCCAGAUAUACAUAACUGAUCCAGACUUUAAGGGUUUUAUACGCAUCAGCUGUUGCCAGUACUGUAAAAUAGAAUUUCACAUGAAUUGCUGGAAGAAGUUAAAAACUACAACCUUUAAUGAUAAAAUUGACAAGGAUUUUCUACAAGGAAUAUGUCUUACCCCUGACUGUGAAGGUGUCAUUUCUAAGAUUAUCAUCUUCAGCAGUGGUGGUGAAGUUAAAUGUGAAUUUGAACACAAGGUCAUAAAAGAAAAGGUUCCUCCAAGACCUAUUCUGAAACAGAAAUGUUCUAGCCUAGAGAAACUAAGACUGAAAGAAGACAAAAAAUUGAAGAGAAAGAUCCAAAAAAAAGAAGCAAAAAAGUUAGCACAAGAAAGAAUGGAGGAGGACUUAAGAGAAAGUAAUCCACCCAAAAAUGAAGAGCAGAAAGAAACUGUAGACAAUGUUCAGCGUUGUCAGUUCCUUGAUGACAGAAUUCUACAGUGUAUAAAGCAGUAUGCUGACAAGAUUAAAUCCGGCAUACAGAAUACAGCCAUGCUUCUCAAAGAAUUGCUUUCUUGGAAAGUUUUGAGCACAGAAGACUAUACAACCUGUUUUUCUAGCAGAAAUUUUCUAAAUGAAGCAGUGG2000000006ACUAUGUUAUUCGCCACUUGAUUCAAGAAAAUAACAGAGUAAAGACAAGAAUAUUUCUGCAUGUUUUGAGUGAGCUUAAAGAAGUGGAGCCCAAAUUAGCCGCCUGGAUCCAAAAACUUAAUAGCUUUGGCUUAGAUGCCACAGGAACUUUCUUUUCUCGUUAUGGAGCAUCUCUUAAACUGCUUGAUUUUAGUAUCAUGACUUUCCUCUGGAAUGAGAAAUAUGGUCACAAACUAG2000000006ACUCUAUAGAAGGAAAGCAACUUGAUUAUUUCUCUGAGCCAGCAUCAUUGAAGGAAGCCCGUUGUUUAAUAUGGCUGCUAGAAGAACACAGAGACAAGUUCCCAGCAUUGCAUAGUGCUUUAGAUGAAUUCUUUGAUAUAAUGGACAGCCGCUGUACUGUGUUAAGGAAACAAGAUAGUGGUGAAGCACCGUUUAGUUCAACCAAGGUGAAAAACAAAAGCAAGAAAAAGAAGCCAAAGGAUUCAAAGCCUAUGUUAGUUGGGUCUGGAACAACUUCAGUAACUUCAAAUAAUGAGAUCAUCACUUCAAGUGAAGACCAUAGCAAUCGAAAUUCAGAUUCUGCAGGCCCAUUUGCAGUGCCUGACCAUCUUCGGCAAGAUGUAGAAGAAUUCGAAGCUCUCUAUGACCAACACAGUAACGAAUAUGUUGUCCGCAAUAAGAAGCUAUGGGACAUGAACCCAAAACAAAAAUGUUCAACUCUAUAUGAUUACUUCUCUCAGUUUUUGGAGGAACAUGGUCCCUUGG2000000006ACAUGAGUAACAAGAUGUUCUCUGCAGAAUAUGAGUUUUUCCCAGAAGAAACUCGACAGAUACUAGAAAAAGCAGGAGGUUUAAAACCUUUUCUCUUGGGAUGCCCUCGUUUUGUUGUGAUUGACAACUGUAUUGCACUGAAGAAGGUUGCAUCACGGCUCAAGAAAAAAAGGAAGAAGAAAAACAUUAAAACAAAAGUAGAAGAAAUUUCAAAAGCAGGGGAGUAUGUACGAGUUAAACUACAACUGAAUCCAGCUGCUAGGGAAUUUAAACCAGAUGUAAAGUCUAAACCAGUGUCAGAUUCAUCUUCAGCACCAGCUUUUGAAAAUGUGAAACCCAAACCUGUGUCUGCAAAUUCUCCCAAGCCAGCUUGUGAAGAUGUGAAGGCCAAACCAGUAUCCGACAAUUCUUCUAGACAAGUUUCUGAGGAUGGGCAACCCAAAGGGGUCUCUUCUAAUUCUCCUAAACCAGGCUCUGAGGAUGCAAAUUACAAGCGAGUCUCCUGUAAUUCCCCCAAACCGGUUCUUGAGGAUGUGAAACCAACUUAUUGGGCUCAAUCCCAUUUGGUCACAGGAUACUGUACGUAUCUUCCUUUCCAGAGAUUUGAUAUCACCCAGACACCGCCAGCAUAC2000000006AUAAACGUGUUACCAGGUUUGCCCCAGUACACCAGCAUAUAUACACCCUUGGCCAGCCUUUCUCCUGAAUAUCAGCUACCAAGAUCAGUACCAGUGGUGCCGUCUUUUGUAGCCAAUG2000000006ACAGAGCAGAUAAAAAUGCUGCUGCCUAUUUUGAGGGUCAUCAUUUGAAUGCUGAGAAUGUUGCUGGUCACCAGAUUGCCUCUGAAACACAGAUCCUUGAGGGCUCUUUGGGAAUAUCUGUAAAGUCACACUGCAGCACAGGUGAUGCUCAUACAGUCCUGAGUGAGUCUAACAGAAAUGAUGAGCACUGUGGAAAUUCUAACAACAAAUGUGAAGUAAUUCCAGAAAGCACCAGUGCAGUAACAAACAUUCCACACGUGCAGAUGGUUGCCAUACAGGUAUCUUGGAACAUAAUACACCAAGAAGUCAAUACUGAGCCAUAUAAUCCUUUUGAGGAACGACAAGGGGAAAUUUCACGGAUUGAAAAGGAGCACCAAGUAUUACAAGACCAACUUCAAGAAGUGUAUGAAAAUUAUGAGCAGAUAAAACUUAAGGGCUUAGAAGAGACCAGGGACCUGGAAGAGAAGUUGAAAAGGCACUUAGAAGAAAACAAGAUCUCAAAGACGGAAUUAGAUUGGUUCCUUCAAGAUUUGGAAAGAGAAAUUAAAAAAUGGCAACAGGAAAAAAAAGAAAUCCAAGAAAGACUAAAAUCACUGAAGAAGAAAAUUAAAAAGGUUUCAAAUGCCAGUGAAAUGUAUACCCAGAAAAAUGAUGGAAAGGAAAAGGAACAUGAAUUACAUCUGGAUCAGUCCCUUGAAAUCAGCAACACACUUACAAAUGAGAAAAUGAAAAUAGAAGAGUAUAUAAAGAAAGGGAAAGAGGAUUAUGAAGAGAGUCAUCAGAGAGCUGUGGCUGCAGAGGUAUCCGUACUUGAAAACUGGAAGGAGAGUGAAGUGUAUAAGCUACAGAUCAUGGAGUCACAAGCAGAAGCCUUUCUGAAGAAGCUGGGGCUGAUUAGCCGUGAUCCUGCAGCAUAUCCUGACAUGGAGUCUGAUAUACGUUCAUGGGAAUUGUUUCUUUCUAAUGUUACAAAAGAAAUUGAGAAAGCAAAGUCUCAGUUUGAAGAACAAAUUAAGGCAAUUAAAAAUGGUUCUCGGCUCAGUGAACUUUCUAAAGUGCAGAUUUCUGAGCUUUCAUUUCCUGCCUGUAACACGGUUCAUCCCGAGUUACUCCCUGAGUCUUCAGGCGACGAUGGCCAAGGGCUUGUGACUUCUGCAAGCGACGUGACUGGAAACCACGCAGCACUUCACAGGGAUCCUAGUGUGUUCUCUGCUGGUGAUUCCCCAGGGGAGGCUCCUUCUGCGCUGUUGCCAGGGCCACCCCCUGGUCAGCCUGAAGCCACUCAGCUGACAGGGCCAAAACGGGCUGGCCAGGCAGCUCUGUCAGAACGAAGCCCUGUGGCUGAUCGGAAGCAGCCUGUUCCUCCAGGACGUGCUGCGCGUUCAAGCCAGUCUCCAAAAAAGCCGUUCAAUAGUAUUAUUGAGCACCUGUCAGUGGUAUUCCCAUGUUACAACAGCACUGAGCUUGCUGGUUUUAUUAAAAAAGUGCGAAGCAAAAACAAGAACUCACUCUCAGGAUUGAGUAUUGAUGAAAUUGUCCAAAGAGUGACAGAACACAUUCUAGAUGAACAGAAAAAGAAAAAGCCAAACCCAGGAAAGGACAAGAGGACUUAUGAGCCCAGCUCUGCCACCCCCGUGACCAGGUCCUCCCAGGGCUCACCCUCGGUGGUUGUUGCACCAUCACCCAAAACCAAGGGGCAGAAAGCAGAAGAUGUCCCUGUGAGGAUUGCACUGGGUGCAAGUUCCUGUGAAAUAUGCCACGAGGUGUUCAAAUCAAAAAACGUGCGUGUGCUCAAAUGUGGGCACAAGUAUCACAAAGGGUGCU2000000009UUAAGCAGUGGCUUAAAGGGCAGAGCGCUUGCCCGGCCUGCCAGGGUCGUGAUCUCCUGACAGAAGAGUCACCUUCUGGAAGAGGCUGGCCCAGUCAGAAUCAGGAGCUGCCUUCCUGCUCUUCUAGGUAGUCACACUUCACUAAAGUGUCA2000000009UCCACCAGUGUGUUGAAUCCGAAGAAUGACAAUUUUCUACCACUGGUGUAAAAAACAAACAUUUGAAGACCCUUGUGCAUUGUGUGUCACAAAGCUAAAUACAUGGAAAUCGUUAAUAUCGCUGAUAUUAAGUAAUUUCCCCACUCUGAGUGAAUACUUUGAUGAUUGCCAACAGUGGCUAAUAAAAUGACGGCUACCACACUCAUGGGUCACUGGGGCUGCGCAGGGCUCUUUGAGGUGGGUGGCUUCUUUUGGAAAGUACUAUGAACGUCUCGAAGCAGUAUUCUAGUGAUAAGAAUUCUUA2000000006ACAUAGCCAAGCGCCCCACGUUUGUUCCCCACGUUUGUUCCCCUUUUCUGUUUGAAAAACCUGUUCUGGUAGCUCCACAAGAGAGAUGAUACUGACUUUUUAAAUUUUUUACAAGAGUCUGUAUUCCUGAUAUGCCUAUAUUUUUCCUCAAAGAUUCUGCAUUUUAAGGAUGGGCAUAAGCAAACUAUAUUUUAAUAAUUUAUAGUUAAUGUUAAAAUAUUGGCUGAUUUAGACCAAAAGAUUCAAAUCUCCUCUUUGUGAAAUCCCAUCUGCAUUUGAUUUUUUAUUAUUUUAUGUUCCCCCGUUAGAUUGUUUUAAGUGUUUGCUUUUCAUCUUUUAUAGAUGUAAUCUGAUUUUCAAAAAUCAUUAACACUUUUUAAUUAGUAUCGACUAAGACUUUUUCCCCCUGGAAUCGAGGCUGUGUGUCCGUCA2000000009UCCCAGCCCCCGGUUGGAGCCUGCUCUUUGAACUCCGCUGCCUUCCUUAGCAGCUUCUGUCCUCUUCUGUGAGUCAGUCAGCGAGUGCUUGGGAUCCGCA2000000009UCCAGCCGUGCUGAGCACACAACAGGCUGUGUGUGGAAAUGGCCACCACCAUUCUCCUUCCCCACCCCACCACAAAAAGAGAAGCUGUGUCU2000000009UUAGACAACCCUGAGGUAUCUGUGUUACAAUCGUUCUGUGUUUGAUAUUUGUGUAAAGUAUGCAUGCAGUCUUGUACUGUGACCUAAGAACAAAACUGUAACUGCAUUAGAAACCAUGAAAAAAUUAGAUAUUGUUUUGUGACUUUUAGACAGUGGUAAAUAUAGA2000000006ACCAUGAAUUCUGGUCACAUUCCAUUUCUCUCCAACAUGAAGGAUCAAAAAAUGUUUUUCAAUGUGUUCUUUGUUCCACUGGAAACUUAGAGUCAUGAGUUUAUGAGCUGAUUUGGUCACCUUCCUCUGCCUUUGUUCACUGUGAGUUCUGAUGUCUUAGUGACUUAGUUCUUAGAAGCUCACGCCUUAGUUUGAAACAGAUUCUCCACGGUGGUCCCCAAAACACUGUCUGCAUAUCCAUAAGAAUUGAGCGCUAUGGGUGUUAACGUGCAUGAGGAUCAGUUUGCAGCAGCAAGUACAAAAGGAGAAGAGGAACA2000000009UCCGUUGAAUGAGUGUGUUUUGUACAUA2000000006ACUUCAGAUACUUGUGAACAUGCCUUAUAUUUGUCCAACAACUGUCAGAAUAAAGAACAUUCUAAAAUGAGAA
2186   lncRNA  unknown    Homo sapiens    ACCCGGAAGCGGCUCGGGCGGGCGCAGGGUCGCGGGUGUAGGGUGGCGGCGCUCCGCCUUUCACCGACGCACCUGGGAGAAACAGACCGGAGGACGCGGGUGGCGCGGAGCACGAGAAACAACGAGUUUCUGUCUAGAUCGUGGGGGACCCAAGCCCGGGGUUGCGUCCAAGGUCGGGGAUGGAGAGGACGCGACCCCCGCGGCAGUCGAGAUGGCCUUUUUAAAAUUCUAUAUUUGAGAAGGAGUCUCGCGCUGUCGCCCAGGCUGGAGCGCAAUGGCGCGAAAUCGGCUCAUUGCAGCCUCGACGUCCAGG2000000006ACUCGAGCGAUCCUCCCGCCUCAGCCUCUCGAGAAGGAGUGGCCAGAAGGCUCCUCUCCAGGCCUCACAGAGGGAAACACUGGUCUAGUGAGAGACCUGCGUCCUGCCCAUCAGGACCGAAGCGGCACGCGUGAGGAUCCUGCAGGCCAAGAGACAACAGCGAUUACAAACCCCAGUCCCAGCCUUGCAGCUGACCUUGCAGGUGACGCCCUGCCUGGGUGUCUCGGUGCAGCUGCACAUCAGGGGCCUCUGCUGGACAGAAGCUCUGAGUCCACACUUGGCCCCCAGGCGCUGGAGCUGGAGCACUGCCACGAGAGGGGAUGCUGCCGUGGCUGCGCCAGCUUCAGCCCUUUCCCUGCACCGAGAUGUCCCAGUGAGCGGCUGGGUGCUCACAGUUCCCGUUGGGCCAUCAGAGGAAGAUCAAAGAUCAACCCUCCCCCAUGGGCUCCUGCCUGCCUGCCAGGUGGGUUUCCUGCCUGUCUCCCAGCCCCCAAGAGCUCCACGG2000000006ACUCUGCCAGUAGCUGCUUUAAAGGAGGGAGGGAGUUUUCUGAUCCUCUGG2000000006ACAUCCCUGGGGCUGGAGCUAUGGGCUGAGCCAUAGGAGAGCCAGCCCAGCUCCCUGGGGGUUGGGGGCUGUGUCUCUCCAUCCCUUAGUAAAAAUACAGCAACUCCCAACUCAAAGUCAAGGGUCAAUAGUCACAAAACCUUGGUGCAGCCUGGAACAGGCAUAGAGGUCUCAGCAGAGCUGCCCAAGGACAAGACCUAAGAUCCAGCAGGGAACUAUGUAGUCACCCCGAGAGGCCCAGCUCUCUCCGUGAGCUCUGGGCCUAGGGUGGGGGUGGUUGUUGGUUCUGCGCGCACUGUUCCCCCUACAUGAUGGGUCCAUCCCAGUUGGCUUCUCUCACUCGCUUCCUCCUGUGGAGAAGCCUGUCCAGGUGUCACUGCCUCCAGGAAGCUGUCUCUGAUUUCUCCAGUUGAACAGUGAGAUUUGCCACACCUCACAUGCAUCGCUCUUGUCCCUGGAAUUGUAACCAUAGGUUUUCCUGUCUCCUGGAGGACAAGGAUGAGGGCUUUCCACUUGAGUCUCCCUGGUGGAGCCCAGCUCCUGACAUACCUGGUAAAAGUUCUCAAGAGAAGAACAUGGAGGAGGAAUGUGGAUAACAACCCUGGCUGCCUGUGUGUUCCAAGCUAGGAAGAUGUAAUGUCCCCACAAACGGGGUAAAUGGCUUGCCUGCGUCACAGCUGUCUCAAGCCCAGGCCCUGGGUGCCAGCCCAAGCCCAAGG2000000006ACUAGGUCCAGAGCCACACAGCGCCAGGCCACAUCCGCCUCACCUGGG2000000006ACCUUUUGUGGGGUACAGUCUCCGGCCCCACCCAGACCUGCUGAAGGAGAGACCCCAUGGCAAGG2000000006ACUCAGCCACCUGCAGUUUCAUAAGCCCCCAGUGGGUUCCUAGGCAUGAAGACCACCGGUUAGAGGCUGA2000000006ACUGGCAGGAACCUGUCUCCAGCCCCUUCUCACCCCAGCCGGGCCCUGCCUCAGAGGCAGCACCCAGG2000000006ACGUGGCCAUGACCCGUGG2000000006ACUCCACUCAAUCCCUCUUCUCCAGGAGCCAUGCAAAGUGUCAGCCAGCCAGGCCCCUGGAAGGCAGUCAUCACCUCUUAAGGCAUUGCGGGUGUCGGUCCUGCAACUGCCAGGUGCAGCACACGACCCAUGUCCGGUGUUCGAUAGCAGGGAGCCAUGACCUGGCAACGAUUCCACGCUCAAAGGGGCACCCGGGGGGCCCUGGGUCGGGGCGGAUCAGCUUUCCCUGGGCACAUCUGCCUCAUUCCAGAUCUCCAGGGCUCAUGUCUGUGACAGGGAGGGAAGGCUCUGCCCUGGCCUUCCGUCAGCUCUGCCAGUGCAGGCUGGGCAGCCUGGGCUUUAGAGCUGGCUUCUGCCCACACUUUCUCCGUGAAAGGAAAACAACUAUGAGUCUGCCAAACGCAUCUCAGAUGCGUUUUAAAAAAUUCUGGUCCCCGCUCUCUGUCCCAUCAUCUGCCUCGGGG2000000006ACUUCCUCUCUCCGUGGUUCUCACCCCAUACUCUGUCACUGCCACAUUUUCACCUGGGCCUGGCCUUUGUCUCCACCUGAA
2187   mRNA  unknown    Homo sapiens    ACGAGAGGGCGCAGCGCGGCGCGGCAGGGAUUCGCGGGCGACCACCCGGCGCAGGAGCGGCCGCGUUUCGGCCUCAGAAUCCAUUGAAGACUUGAACAAGUGGGCCCUAUUUCUUGUGUCUCCUUUUAUACUUGAAGCAGAACACAUAGCAUUUGUGACGGAGAGCAUUUGGGUACAAAGUGAGAAUUUACAGAGAUCAUCCUCUUCAGAAACAGUUCGGUUUUUGCCCACUAGGGAUGAUGUGGUUUCUCAUGAGGUUACUUGCUCUAAAGGACUUUAUAUUUUGGAACCAUAAGAGCACCCUUGUGGCCCAGGCACUUUAUGGAUGAUCCCUUUUAGUGCUCCCAGUAACCUUCCAAGAUUGUCAAGUGGUCAGACUGUUGUUUGCCAUUAGCUUGCAGACCUGGGGAUCCUUAUCGGCUAAUUGCUGAAGCAAGUGUGGACAACUUCAGCAAGCUGGGGGUGGCGUUCAUGGAAGAUAGACUCCACAUGGAUAAUGGACUGGUACCCCAAAAGAUUGUGUCGGUGCACUUGCAGGACUCCACUCUGAAGGAAGUUAAGGAUCAGGUCUCAAACAAGCAAGCCCAGAUCCUAGAGCCGAAGCCUGAACCUUCUCUUGAGAUUAAGCCUGAGCAGGACGGUAUGGAGCAUGUUGGCAGAGAUGACCCAAAGGCUCUUGGUGAAGAACCCAAACAAAGGAGAGGCAGUGCCUCUGGGAGUGAGCCUGCUGGGG2000000006ACAGUGACAGGGGAGGGGGCCCCGUUGAGCAUUAUCACCUCCAUCUGUCUAGUUGCCACGAGUGUCUGGAACUUGAGAACAGCACCAUUGAGUCAGUCAAGUUUGCGUCUGCCGAGAACAUUCCAGACCUUCCCUACGAUUAUAGCAGCAGUUUGGAGAGUGUUGCUGAUGAGACCUCCCCCGAAAGAGAAGGGAGGAGAGUCAACCUCACGGGAAAGGCACCCAACAUCCUCCUCUAUGUGGGCUCCGACUCCCAGGAAGCCCUCGGCCGGUUCCACGAGGUCCGGUCUGUGCUGGCCGACUGUGUGG2000000006ACAUUG2000000006ACAGUUAUAUUCUCUACCACCUGCUGGAGG2000000006ACAGUGCUCUCAGAGACCCGUGGACGGACAACUGUCUGCUGUUGGUCAUUGCUACCAGGGAGUCCAUUCCCGAAGACCUGUACCAGAAGUUCAUGGCCUAUCUUUCUCAGGGAGGGAAGGUGUUGGGCCUGUCUUCAUCCUUCACCUUUGGUGGCUUUCAGGUGACAAGCAAGGGUGCACUGCACAAGACAGUCCAGA2000000006ACUUGGUUUUCUCCAAGGCUGACCAGAGCGAGGUGAAGCUCAGCGUCUUGAGCAGUGGCUGCAGGUACCAGGAAGGCCCCGUCCGGCUCAGCCCCGGCAGGCUCCAGGGCCACCUGGAGAAUGAGGACAAGGACAGGAUGAUUGUGCAUGUGCCUUUUGGAACUCGCGGGGGAGAAGCUGUUCUUUGCCAGGUGCACUUAGAACUACCUCCCAGCUCCAACAUAGUGCAAACUCCAGAAGAUUUUAACUUGCUCAAGUCAAGCAAUUUUAGAAGAUACGAAGUCCUUAGAGAGAUUCUGACAACCCUUGGCCUCAGCUGUGACAUGAAACAAGUUCCUGCCUUAACUCCUCUUUACUUGCUGUCAGCUGCGGAGGAAAUCAGGGAUCCUCUUAUGCAGUGGCUUGGGAAACAUGUGGACUCCGAGGGAGAAAUAAAAUCCGGCCAGCUCUCUCUUAGAUUUGUUUCAUCCUACGUGUCUGAAGUAGAAAUAACCCCAUCUUGUAUACCUGUGGUGACCAACAUGGAGGCCUUCUCAUCAGAACAUUUCAACUUAGAGAUCUAUCGCCAAAAUCUGCAGACCAAGCAGUUGGGGAAAGUAAUUUUGUUUGCCGAAGUGACCCCCACAACGAUGCGUCUCCUGGAUGGGCUGAUGUUUCAGACACCGCAGGAAAUGGGCUUAAUAGUGAUCGCGGCCCGGCAGACCGAGGGCAAAGGACGGGGAGGGAAUGUGUGGCUGAGCCCUGUGGGAUGUGCUCUUUCUACUCUGCUCAUCUCCAUUCCACUGAGAUCCCAGCUGGGACAGAGGAUCCCGUUUGUCCAGCAUCUGAUGUCCGUGGCUGUCGUGGAAGCAGUGAGGUCCAUUCCCGAGUAUCAGGAUAUCAACUUACGAGUGAAGUGGCCCAACGAUAUUUAUUACAGUGACCUCAUGAAGAUCGGCGGAGUUCUGGUUAACUCAACACUCAUGGGAGAAACAUUUUAUAUACUUAUUGGCUGUGGAUUUAAUGUGACUAACAGUAACCCUACCAUCUGCAUCAACGACCUCAUCACAGAAUACAAUAAACAACACAAGGCAGAACUGAAGCCCUUAAGAGCCGAUUAUCUCAUCGCCAGAGUCGUGACUGUGCUGGAGAAACUGAUCAAAGAGUUUCAGGACAAAGGGCCCAACAGCGUCCUUCCCCUUUAUUACCGAUACUGGGUCCACAGUGGUCAGCAAGUCCAUCUGGGCAGCGCAGAGGGACCAAAGGUGUCCAUCGUUGGCCUGGACGAUUCUGGCUUCCUCCAGGUUCACCAGGAGGGCGGCGAGGUUGUG2000000006ACUGUGCACCCGGACGGCAACUCCUUCGACAUGCUGAGAAACCUCAUCCUCCCCAAACGGCGGUAAUGCCGGGCGUCCCCGAGACGCGGCUGCCUGUCCGUGCCCAUGCAUCUGGAAAUCUAAUUUAGAGUUGUAGGUGAAUUUUCUUUUCCUCCAAUUCAUUUGUUAAGUCUUUGUUCUUUUUCUGUGUUUCUGUUUGUUUUUAGGUUUGUUUUGUUGUCGUUUUCUUUGGUGUUUGAAGAGGCUCUGGGAUAGAUGGUUAAGAAGUAGAAAAUUUAGUUUAGGGAAAGCCCUCCCACAGGUGGGAAAUUGCUCUCCCCUCUGUGGCUUGG2000000006ACUUACGUUUAUUGUCAAGGGGAGUUUUUACAUGGAAAUGACAAUGGGAAAAUUCAGAUAUUUUCUUAGUAGUGCAGACCUUUACCCCUAGUCUAUGAAAAAACAAACCAAAAUAUGCUCUUGCGCCCAGGCCAGUGGUGAGUUAGAGGUAUGCUAUCACUGUUUGUAAGCAUCUGGGGAGGUACUGAACUGUAAGAACAUGCUUGGACACUUAGUCAUUGUUCUGUGUUUUUAUUAAUGAAGAAAAGGGAAGACAGACUUCCAAGAGUUACUGUCCACCCGGUGGUGUGGCCCCAUAGCGAAGUCUAAAUGCCUGUAGAGAUAGAGCUAGCUGGUGUGGUUGCAGUGACCUUGUAGAGGAAAUCAGUUCAUUACUUUGACAUCAUUCAGUGAGCUCUCCUUUCCUAAGGAAGUUUAAAUGUCCUUAGUUAGGGACUGACUUUCUUAAGUAAGUUUAAAUUUACUACAUAUUGUGAAGAGACAGGAUCAAGUUCAGAAUCCUUAAAUGUCUGAUUAGGCAUCACUUGGAUGAGGAGGUGGGCGAUUUGGCUCUGACAGCUGGAGAUGAAGGCACACUCAUACCACAUACAAGGGAGGAUUUGGAGCUUUUAAGCCAGUUUCAGAUUUACUCUGAAAUGUGGAGCAUUCCUGCAAGACUGUGCAGCUCACGGAAUAUAGAAGACAUGGCAUUUUACUCAGAAGUCAUAAGUUUUUGCCCCCCUCAUUUACCUCGUAUUACCAAGAAAGAAAAUGUUAUCGAUACUAAACACCAUCAGUUCAGAGGGAGGAUGUGUGUGUGUGCCCGCAUAUGUGUGUGCGUGCGUGUGUGCGCACAUAGCUUUAAAAGAAGACAUUCAAAAUUUGAUGUGCUACAAGCCUCAUGAAAGAACAAAAGAAAUGAAGCCUUUUGAUAUGCAUUCGCUAUUCCCAGAUGUACGCCAUGCCUUUUCCAUGUCCCUCCUAUCUCUGUUGAACUUAUGAAUCAUACUCAUUACUUUUCAGCUUUUUAAAAGGCCAAUUUUUGUCCAGUUUUCUCUCUUCCAGUCCCAGCUGAAAUUAGUGGAAAGAAAGUUUGAUGGAGCUUUCAGCUUUGAACAAAAUCCCUUCAUUGUAAACUAGCACCAUCU2000000009UUAUCCAGGUCUUACCCAGUCAGGCUAAUUCCAGAAACUUGUGGUUUUUAGUAUAGUCUGUCUACCU2000000009UUAGCCAGGCACAGGACAGCCCUAUGAAAAAAUACCCAAUAUAUAUUUUUUGGAAAUGAAACAUUAAAAGAACUUAAAAAGUAAUUUUUGGAAAUGAGGCUUCAAUUAGAAUUAUUUUUCUCAAAAAACAAACAAACAAAAAACACAAAAAAAACCACUCUUCUCCAAAUGCCCAAGCCUUCUUUCAAAAUUAGUUAGAAACUUAAGUAAAAUACAAGUCCACACCAUCCCCAAAUUACAAAAUGG2000000006ACUUACCCUUGAGAGGGCAUCUGCAGAAUAUCAUCAGGGACAAAGAUCUCGAGGCUAACGAUGUAGGUUUCAUUUCUCAGACUUUGUAAUAUAAGGCAAGCCCUCUCUCAGAGCUGCCAUCAUCACUUUUUGAAUUUCUUUGGGGGUUAUUUAAUGAAAAACAUGCUAUGUUUUGUUUUAAGCUGAAGUCCUAUUCUGGACACUCUGCUUUGGGAAAAAAUGUUAUCAUUUAAUUUCCUUUCUGCAAAUUAAAACUAAUGAAGUGUGGCCUUGUCAAAGGCUAUGGAGAUGUUCCGGGCAUACUGCUGUGCUCUGUGCUUUCCAGCAGGCGCUCCUCCCUCACGCAGGAGACUCAGUUGUCCUGAGAGAGAUGAAGCAGCCUUGAAGCAGAUGCUGCGUUUUCCAUAAACCUGAUUUUGCCUCACAUGAACCAAAG2000000006ACUCUCAAAACUCCGCUUCUAUAGAAUUAGCUGAAUAAAGGCAUUUUACUGAUAGCUGUUCGUGUUAGCGAAACCUGUCUACCUGCUAUAGCACACUCUCCGAUUUGGGCCAUUUAUGCACCCCGCAACCUGGGAUCUCAAGGAGCU2000000009UUAAAGUCUUAAUGGGAACUUGGCAUUUUCCUGAUGAUCU2000000009UUAAAAUGUGGUCACUAAACUCAGGAUUGGCGUGUGCUUUUAGAACACUGGAGUAGCCCUUGUUUUAGAGGCUGUGCAUUGAGUAUCGACCGUAUUUUGUAAAAGGCAAGAUAUCCUCCCUUCCAGGCUGGUAACGGGUUUCAAGGGGACUCUUGAGGAAGUGCCCCCUAAAAUAGAACACAGCAAUAACUGGGCUUCCUGUCCCCACCCCCACCCCAGCAGUGCUCUCUGGCACUGGGAACUCUGCUAGGGAGUGGUGGAAGUAGGAAGGAUUUGUGUGCAAAGGAAAAUCGUGGUUGAGUUUCACUGCAGCAGGCUGACGUUGCCUGAUGUGAGAGCAAGUGGCCGACUGGGGUGCGGGUGCACAGGUCGGGGGAGCACAGGCCACAGAGCGCAGCCUCUGGGGGUCCCCCAAGGCACAGCAUAUACAGCAUGGUCGCCCCUUGCCCUGGAGUCUGGGAACAAAGAGAGGAGCCAGCCUCCCCGCACUGCUUCAGAUGGAAAAGGGAGGCAGGGUGGGCUUCCGUUCUCCAGAUCUGUUUGCUCUUAACAGGCAGAACAUGGGAGAAUCCUUAUUCCUGGUUAAUCACUAUGCAUAUUUGAAAUAAAAGAAAGCGUAAGCCUCUGCAAUUUUAACUUCUCAAAGGAUGUCUCUGAAAAGAAUCACU2000000009UUAAACCAAUGCCUAUAAAAAGCAAGUCUACCAAAAUAAACUAAGACUUUCUAUGUGGUUUGGGCUCCCUCUUAUUUUUACAAGUUUCAUUUUUAAAAGUAGGCAACUACUUUGGGUUACAGUAUUUUUAUUCAUAUUUAAACAUUUUUACAAAAUAAAUAAAGUGUUUUACAUAGUAAGGAAUAUGUACGUAUUUCCAAGUAUUAAGAAGCCAAGUGUUUUUUUUUUUGACGUAUUAUUGACAAAUGUAUUCAGCGCCAUACACAAGAGAAAUAUUAUUACUCCAAAGAACGAAAGUUAACAAAACUCCAAAGCAAAAACCCUUUUAAUGGAGGUGAGAAAUAAAUUUAAUGUAACAACA
2188   mRNA  unknown    Homo sapiens    ACGAGUCCUCCGCCGCAGUCUCGGCCUGGCCGCGUCUCUGCGCCUGGAGGGUCCGCUUUCGCCGUCCGCUCUCGGCGUCCGCUCCCCGGCUCCGGCGCGCUCCUUGCACUAGAUGGCUGGUCUGCGGUGUUCUUGCCCGGUUAGCGCCGCCGGGUCGCUUCCGGUCUCCGCGGCGCCGGCGGGGACCGGGUAGGUAGAGCACGUGGGGCGACGCUGACCAGUCAGCAAGGCCCGGCCGAACACGCUCUGCAGAACUGGGAAGAAGCGGGUCUCGGGUCUCCCUGUGAUGAUGACAGCCUCUUCAUCUAUGACUGCAGUGCUGCAGAAAAGAAGUCACAAGAAAAUAAAGGGGAGGACGCGCCCUUGGACCAGGGGAGCGGUGCGAUUCUGGCGUCCACCUUCUCCAAGUCUGGCAGCUAUUUUGCU2000000009UUAACCGAUGACAGACCGUGGCAAGGAGGUGUACAGCCCUGACUUUCAUAGCCUCGGAGGAGAAGGUCUUGGUGGCCGACAAGUCUGGAGACGUCUACUCCUUUUCGGUGCUGGAGCCACACGGGUGUGGCCGUCUAGAGCUGGGGCACCUGUCUAUGCUGUUAGAUGUGGCUGUGAGUCCUGAUGACCGCUUCA2000000009UCCUCACUGCCGACCGGGACGAGAAGAUCCGAGUCAGCUGGGCCGCGGCGCCCCAUAGCAUCGAGUCCUUCUGCUUGGGGCACACAGAGUUUGUGAGCCGUAUCUCCGUGGUGCCAACUCAGCCCGGGCUGCUUCUGUCCUCCUCUGGGGACGGCACCCUGAGGCUCUGGGAGUACAGGAGCGGCCGCCAGCUGCACUGCUGUCACCUGGCCAGUCUGCAGGAGCUGGUGGACCCCCAGGCCCCCCAGAAGUUUGCCGCGUCCAGGAUUGCAUUCUGGUGCCAGGAGAACUGCGUGGCGCUCCUGUGCGACGGCACUCCUGUGGUCUACAUCUUCCAGCUGGACGCCCGCAGACAGCAGUUGGUGUACAGGCAGCAGCUGGCGUUCCAGCACCAAGUGUGGGACGUGGCUUUCGAGGAG2000000006ACCCAGGGGCUGUGGGUGCUCCAGGACUGCCAGGAAGCCCCCCUGGUGCUCUACAGGCCUGUGGGCGACCAGUGGCAGUCUGUUCCUGAGAGCACCGUGUUAAAGAAAGUCUCUGGUGUUCUUCGUGGGAACUGGGCCAUGCUGGAAGGCUCUGCCGGCGCAGACGCCAGCUUCAGCAGUCUCUACAAGGCCACGUUCGACAACGUGACCUCCUACCUGAAGAAGAAAGAGGAGAGACUGCAGCAGCAGCUAGAGAAGAAGCAGCGGCGCCGGAGUCCCCCGCCUGGGCCCGACGGGCAUGCCAAGAAGAUGAG2000000006ACCGGGGGAGGCGACGCUAAGUUGCUGAUCGUGGCGGUCAGUGGUGUCUCUCACCUCAAAUUAGGAAAAGCUUUUUAACUUGUUCCCCUGCAUCCUGGCAUGUCCCUUCAAGAAGGAAAAGGUGACAUCAGUUGUGACCAGCUCAGAGGAUGGGGCUGUCCCCUGGGCUCUAGAAAGA2000000006ACAUUCUGUGUCACCAGCACAGGCUCUUGCUGGGUGCCUGUGCCCCCUUUCUGGUUGAAGGGAAGCCAGACCAGUGGAGUGGAAGCUCUUGAAGC2000000006ACUUUCUUUUCAUGUCGGAGGCUGCGUGUGAGCCGGUGGUGGCGGCAGCUGUCUGUGUUUCUCCUGUUCUCAUACCGCCCUUCGUGUCCGCUGCAUCUUCCUCUAGGAGCAUCUGUGGGCUGACGUUUCUGGCAUGGUGGAUGUUUUCAUGUUGUUCCGCCGUCUCAGCAUCCAGGUGACGUGCUGUCCCGCAGUAGCUGCUCGCCACACAGGCUGUUGAA2000000006ACUCAGCACGAAUGCUUGAGCCUGCCCCAGCCCCAGCCGUAGCCCUUGUGCUCAGGAGCUGCUCCUGGAGAGUGGCUCCCUUGUGGGAAGUGAGAA2000000006ACACGUUUCGGAGUCGCAGGGAGCUCUGUCUGGCAUCGGUGGCACAGAUGGUGA2000000006ACUUGUUUCAGGAAGUGUGAGCACGGGCCUGGCUGGCACCCGGUUUACAGGGAGGUGAUUGAGG2000000006ACGUCGUUAUGAUUUGAUUUG2000000006ACCUUGGCACACACUGCAGAGCCACAGGGAUGUUGCUGAAUUUCAAUCACCGAUCAGCAAGGAUGA2000000006ACCUUCUCAACUUCCUAGGAAUGUUUAGCAGCAACCGAAUAUACCAGGCAAAACUC
2189   mRNA  unknown    Homo sapiens    ACGCGCAGCCGGAAGUGGCGGCUGCUGCGGAGAAUUGGAGAUGGGGACCGCCCUGGACAUCAAGAUUAAAAGAGCGAAUAAAGUUUAUCACGCCGGGGAAGUGCUCUCUGGCGUGGUGGUCAUAUCGAGUAAGGAUUCAGUCCAACACCAGGGAGUGUCUUUGACCAUGGAAGGAACUGUAAACCUCCAGCUCAGUGCCAAAAGUGUGGGUGUGUUUGAAGCUUUUUAUAAUUCUGUUAAGCCUAUCCAGAUUAUCAACAGCACCAUAGAAAUGGUGAAGCCGGGGAAAUUUCCCAGCGGCAAAACAGAAAUCCCUUUUGAAUUUCCUCUGCACUUGAAGGGUAACAAAGUUCUGUAUGAGACGUAUCAUGGCGUGUUUGUCAACAUUCAGUAUACACUGCGCUGUGACAUGAAGCGGUCUCUGUUGGCCAAGGACUUGACAAAGACCUGUGAAUUUAUCGUUCACUCCGCUCCUCAGAAGGGGAAGUUUACUCCCAGUCCCGUGGACUUCACGAUUACACCUGAAACCUUACAGAACGUCAAAGAGAGAGCUUUGCUUCCCAAAUUUCUCCUUCGAGGACAUCUCAACUCAACAAACUGUGUCAUCACGCAGCCACUAACGGGAGAGCUGGUGGUGGAGAGCUCGGAAGCCGCCAUCAGAAGCGUGGAGCUGCAGCUGGUGCGCGUGGAGACGUGCGGGUGUGCAGAAGGCUAUGCCCGCGACGCCACGGAGAUUCAGAACAUUCAGAUCGCCGACGGGGAUGUGUGCAGGGGCCUCUCUGUCCCCAUCUACAUGGUCUUCCCUAGGCUGUUCACCUGCCCUACACUGGAGACCACCAACUUCAAAGUGGAAUUUGAGGUUA2000000006ACAUCGUGGUGCUGCUUCACCCUGACCACCUCAUCACGGAGAACUUCCCGCUGAAGCUCUGCAGGAUAUAGCCCGGAGGAGGGAAGCAUAGAGAACGGGAGUGGCCAUCUGGAAAUCCAGCUGGUUAUCCAAAUCCUAAGGGGAGCUACAGCCAGCGGCAUAUACUUGUUUUUGUGAUUAUUCUGUAUCAGAAAUGAA2000000006ACAGACCCUCAAAUUA2000000006ACUUUCCUUCCUCAUUUCUUGAGGCUUCUGCUUCCAACAGGCACCUCUAAUCAGACCUUUUCUUUGAAAUUCAACAAGAUUUCUUAAUGCUAUUUGCCAAGACCAUUUCACAGAAAACAUUG2000000006ACUGUGGCUCUUGCCUUAUCUGUUCCUUUUUAGGUACAGUAAAACAAUUGUGACAGCAGUUUGAGCUUGCUGGAGAGUGGCAUCAUGGGGACAAAAGGAAACCUCUGACUUGCUAAUGGAUGUAGCCAGGGACUCCCCAUAGCAAAGGGUCUGUGGCCAGUUGACAUCCAGGAUGGCUGCAAGCGCACUUGAUGGUCAGGAAGUUUGCAGAUACUCGCCAAGGCAGAGCGCAAAGUGCUAGCCACUGGAAAUGCAUGACUUCCCUCCACCCCUACUCUAUUCUGUAGUUUUUUGGUUUUGUUUCUGAGACGGAGUCUCAGUCUGUCACCCAGGCUGGAGUGAUCUCAGCUCACUGCAACC2000000009UCCACCUCCCAGGUUCAAGCGACUCUCCUGCCUCAGCCUCCCGAGUAGUUGGGAUUACAGGUGACUGCCACCGUGCCCGGCUAAUGUUUGUAUUUUUAGUAGAGACGGGGCUUCACCAUCUUGGCCAGGCUGGUCUUGAACUCCUGACCUCGUGACCCACCCGCCUUGGCCUCCCAAAGUGCUGGGAUUACAGGUGUGAGCCACCACACCCAGCCUCUGUAGUUCUUUUUACAACAUUUUUCAUUAUAACU2000000009UUAAAUUUUUUAAGCAACUGGAAAAGUGUUCCUUGCUCUCUUGGGGGGAU2000000009UUGGCUGGUGCCGAAGUGUUUCUGAAGUCUCAAGAACUGCCAUAAAAUCUCACGCUGCCAUUUCCCUGAACAGAUACAUACAUAGAGAGAGACAGUUUUCCAAACUGUGUCACGCAGGCUGAGUGCACUGGCAGGAUCACAGCUCACGGCAGCCUCAACCUCCCUGGCUCAAGCGAUCCCUCCCCUCAGCCUCCUGAGUAGCUGAGACUACAGGUGAGUGCCACCACACUCAGCUAAUUUUCAAAUUUUUUGUAGACAGGGUCUCCCUAUGUUGCCCAGGCUGGUCUUGAACUCCUAGACUCAAGUGAUCCUCCUGUCUUGGCCUCCCAAAGUGCUGAGAUUACAGGUGUGAGCCACUGUGCCCAGCAGUUUCCCAGAAUAUAUUUAAAUGCAAAGUUACAUGAGGGGAAAACAUGUAUGUUUGCUCCUGUUGUUACUGGGUAGGUUCUGAACAGCAGAAACCCAUGUGCAGGGUGGGCUGGUGAAGGCCCCUCUCCGCAAGGUGGUAGCAGGAAAAGGUCCUUGACUUGAUGAAUUUGGUCUGCCUCUGAGCCACUGGAGGAAGCUGUUUUGAGCCAGGGUUUUUUGGCCUAAAGCCAGCAUUUCCUCAGUCUCCCUUUGUGGUUCGAAGGAUAUGG2000000006ACUAUUGCAAUAC2000000006AUUUCUUCCUUCAAAUCCUGCCACUGUUUUGUUGGCCCACAACUAAUAGGACCUCAAAAUAAGCCAUGCUGCUUUGCACACACACUAGCCUUCUUUUGUACUUUUCAUUCUGGAUGGGCUUGGCCAAAACAGGCUCAGGCCAAAG2000000006ACCUCCCAAGCUGUAUGUACUUCCAGUAUCCUGAAACAGUGUUUGGUGACAUAAUGCCAAGGGUAA2000000006ACAAGCCUGAUUUAGGCACUGCU2000000009UUAUCCAGGGGCUUCACCCAUGAAAUUAAUAAAACUUAUCUGAGUCACUUGAAACUUGGUUCCCAGAAAACACAUUUCUGGUUUAUAAUCUCCUUUUAUGCUCACCUGACAUUAAUUAUCUAUCCUUGAUGAUGUGUUUAAACUGAGUAGCAGAAA2000000006ACAGAGGCCACACUUUCUGGGAAAUUUUAAAGGAAGAAACCAUUUUUAAUGAGAUGAAAAUAUUUAACGAAUUUAAAAAGCUAAUGACAAUUUUGAGAAAAGGUUUGGGAUGUAUAUUGCUAUGUAAUUUAAUAAACUGAUUUUAUGGAUAUAAA
2190   mRNA  unknown    Homo sapiens    ACGUGACGCACCUCGCUUCAACGCCGCCACCCGCUCCCUCCCGCCGUCGGCUGACGUGGAGGGCCGGAGGUGGCGGCGGCGGCGGCGGCGGCUGCUGCUGCUGCUGCCCGCGUCCGAGGCUCGCGGGCGGCGGGCCCGGAAAUGCACUCGGUGAUGGAAAGAGAGCCACUAUUCUGAAGAACACUUGGCCAAAGGGUCAUUAUCGUUAUUGUGAUGCUCUUUCUAUGCUGGGGGAAUAUGACUGGGCCCUGCAAGCAAACAUAAAAGCUCAAAAACUCUGUAAAAAUGACCCUGAGGGAAUCAAGGAUCUAAUUCAGCAGCAUGUAAAGUUACAAAAACAAAUAGAAGACCUACAAGGUCGAACAGCAAAUAAGGAUCCAAUUAAAGCCUUUUAUGAAAACAGGGCCUACACACCUAGGAGUUUAUCAGCACCUAUAUUUACUACUUCACUUAACUUUGUGGAGAAGGAAAGAGAUUUCAGAAAAAUUAAUCACGAAAUGGCCAACGGUGGUAAUCAGAAUCUAAAGGUGGCGGAUGAGGCGUUGAAGGUAGAUGAUUGUGACUGUCAUCCUGAAUUUUCACCACCAUCAAGUCAGCCUCCAAAACAUAAAGGAAAACAAAAAUCUCGAAACAAUGAAUCAGAAAAGUUCAGUUCUAGUUCACCAUUGACUUUACCAGCAGAUUUGAAGAACAUCUUGGAGAAACAGUUUUCUAAAUCUUCCAGAGCUGCACACCAGGAUUUUGCUAAUAUAAUGAAAAUGCUGAGAAGCUUAAUUCAAGAUGGCUAUAUGGCCUUAUUGGAGCAGCGUUGCCGCAGCGCUGCACAGGCCUUUACAGAGUUGCUGAACGGUUUAGAUCCUCAAAAAAUAAAGCAAUUGAACCUGGCCAUGAUUAACUAUGUUUUGGUCGUCUAUGGACUUGCCAUUUCUCUCCUUGGAAUAGGACAGCCUGAGGAAUUAUCUGAAGCCGAAAACCAGUUUAAGAGGAUUAUUGAACACUACCCCAGUGAGGGCCUUGAUUGCUUGGCCUACUGUGGAAUUGGAAAAGUAUAUUUGAAAAAAAACAGAUUUCUAGAAGCUCUCAAUCACUUUGAGAAAGCAAGAACCUUGAUUUAUCGUCUUCCUGGAGUGUUAACUUGGCCCACGAGUAAUGUGAUUAUUGAAGAGUCUCAGCCACAAAAAAUAAAGAUGCUGUUAGAGAAAUUUGUUGAAGAAUGCAAGUUCCCUCCAGUGCCAGAUGCCAUUUGUUGCUAUCAGAAGUGCCAUGGAUAUUCUAAGAUCCAGAUAUACAUAACUGAUCCAGACUUUAAGGGUUUUAUACGCAUCAGCUGUUGCCAGUACUGUAAAAUAGAAUUUCACAUGAAUUGCUGGAAGAAGUUAAAAACUACAACCUUUAAUGAUAAAAUUGACAAGGAUUUUCUACAAGGAAUAUGUCUUACCCCUGACUGUGAAGGUGUCAUUUCUAAGAUUAUCAUCUUCAGCAGUGGUGGUGAAGUUAAAUGUGAAUUUGAACACAAGGUCAUAAAAGAAAAGGUUCCUCCAAGACCUAUUCUGAAACAGAAAUGUUCUAGCCUAGAGAAACUAAGACUGAAAGAAGACAAAAAAUUGAAGAGAAAGAUCCAAAAAAAAGAAGCAAAAAAGUUAGCACAAGAAAGAAUGGAGGAGGACUUAAGAGAAAGUAAUCCACCCAAAAAUGAAGAGCAGAAAGAAACUGUAGACAAUGUUCAGCGUUGUCAGUUCCUUGAUGACAGAAUUCUACAGUGUAUAAAGCAGUAUGCUGACAAGAUUAAAUCCGGCAUACAGAAUACAGCCAUGCUUCUCAAAGAAUUGCUUUCUUGGAAAGUUUUGAGCACAGAAGACUAUACAACCUGUUUUUCUAGCAGAAAUUUUCUAAAUGAAGCAGUGG2000000006ACUAUGUUAUUCGCCACUUGAUUCAAGAAAAUAACAGAGUAAAGACAAGAAUAUUUCUGCAUGUUUUGAGUGAGCUUAAAGAAGUGGAGCCCAAAUUAGCCGCCUGGAUCCAAAAACUUAAUAGCUUUGGCUUAGAUGCCACAGGAACUUUCUUUUCUCGUUAUGGAGCAUCUCUUAAACUGCUUGAUUUUAGUAUCAUGACUUUCCUCUGGAAUGAGAAAUAUGGUCACAAACUAG2000000006ACUCUAUAGAAGGAAAGCAACUUGAUUAUUUCUCUGAGCCAGCAUCAUUGAAGGAAGCCCGUUGUUUAAUAUGGCUGCUAGAAGAACACAGAGACAAGUUCCCAGCAUUGCAUAGUGCUUUAGAUGAAUUCUUUGAUAUAAUGGACAGCCGCUGUACUGUGUUAAGGAAACAAGAUAGUGGUGAAGCACCGUUUAGUUCAACCAAGGUGAAAAACAAAAGCAAGAAAAAGAAGCCAAAGGAUUCAAAGCCUAUGUUAGUUGGGUCUGGAACAACUUCAGUAACUUCAAAUAAUGAGAUCAUCACUUCAAGUGAAGACCAUAGCAAUCGAAAUUCAGAUUCUGCAGGCCCAUUUGCAGUGCCUGACCAUCUUCGGCAAGAUGUAGAAGAAUUCGAAGCUCUCUAUGACCAACACAGUAACGAAUAUGUUGUCCGCAAUAAGAAGCUAUGGGACAUGAACCCAAAACAAAAAUGUUCAACUCUAUAUGAUUACUUCUCUCAGUUUUUGGAGGAACAUGGUCCCUUGG2000000006ACAUGAGUAACAAGAUGUUCUCUGCAGAAUAUGAGUUUUUCCCAGAAGAAACUCGACAGAUACUAGAAAAAGCAGGAGGUUUAAAACCUUUUCUCUUGGGAUGCCCUCGUUUUGUUGUGAUUGACAACUGUAUUGCACUGAAGAAGGUUGCAUCACGGCUCAAGAAAAAAAGGAAGAAGAAAAACAUUAAAACAAAAGUAGAAGAAAUUUCAAAAGCAGGGGAGUAUGUACGAGUUAAACUACAACUGAAUCCAGCUGCUAGGGAAUUUAAACCAGAUGUAAAGUCUAAACCAGUGUCAGAUUCAUCUUCAGCACCAGCUUUUGAAAAUGUGAAACCCAAACCUGUGUCUGCAAAUUCUCCCAAGCCAGCUUGUGAAGAUGUGAAGGCCAAACCAGUAUCCGACAAUUCUUCUAGACAAGUUUCUGAGGAUGGGCAACCCAAAGGGGUCUCUUCUAAUUCUCCUAAACCAGGCUCUGAGGAUGCAAAUUACAAGCGAGUCUCCUGUAAUUCCCCCAAACCGGUUCUUGAGGAUGUGAAACCAACUUAUUGGGCUCAAUCCCAUUUGGUCACAGGAUACUGUACGUAUCUUCCUUUCCAGAGAUUUGAUAUCACCCAGACACCGCCAGCAUAC2000000006AUAAACGUGUUACCAGGUUUGCCCCAGUACACCAGCAUAUAUACACCCUUGGCCAGCCUUUCUCCUGAAUAUCAGCUACCAAGAUCAGUACCAGUGGUGCCGUCUUUUGUAGCCAAUG2000000006ACAGAGCAGAUAAAAAUGCUGCUGCCUAUUUUGAGGGUCAUCAUUUGAAUGCUGAGAAUGUUGCUGGUCACCAGAUUGCCUCUGAAACACAGAUCCUUGAGGGCUCUUUGGGAAUAUCUGUAAAGUCACACUGCAGCACAGGUGAUGCUCAUACAGUCCUGAGUGAGUCUAACAGAAAUGAUGAGCACUGUGGAAAUUCUAACAACAAAUGUGAAGUAAUUCCAGAAAGCACCAGUGCAGUAACAAACAUUCCACACGUGCAGAUGGUUGCCAUACAGGUAUCUUGGAACAUAAUACACCAAGAAGUCAAUACUGAGCCAUAUAAUCCUUUUGAGGAACGACAAGGGGAAAUUUCACGGAUUGAAAAGGAGCACCAAGUAUUACAAGACCAACUUCAAGAAGUGUAUGAAAAUUAUGAGCAGAUAAAACUUAAGGGCUUAGAAGAGACCAGGGACCUGGAAGAGAAGUUGAAAAGGCACUUAGAAGAAAACAAGAUCUCAAAGACGGAAUUAGAUUGGUUCCUUCAAGAUUUGGAAAGAGAAAUUAAAAAAUGGCAACAGGAAAAAAAAGAAAUCCAAGAAAGACUAAAAUCACUGAAGAAGAAAAUUAAAAAGGUUUCAAAUGCCAGUGAAAUGUAUACCCAGAAAAAUGAUGGAAAGGAAAAGGAACAUGAAUUACAUCUGGAUCAGUCCCUUGAAAUCAGCAACACACUUACAAAUGAGAAAAUGAAAAUAGAAGAGUAUAUAAAGAAAGGGAAAGAGGAUUAUGAAGAGAGUCAUCAGAGAGCUGUGGCUGCAGAGGUAUCCGUACUUGAAAACUGGAAGGAGAGUGAAGUGUAUAAGCUACAGAUCAUGGAGUCACAAGCAGAAGCCUUUCUGAAGAAGCUGGGGCUGAUUAGCCGUGAUCCUGCAGCAUAUCCUGACAUGGAGUCUGAUAUACGUUCAUGGGAAUUGUUUCUUUCUAAUGUUACAAAAGAAAUUGAGAAAGCAAAGUCUCAGUUUGAAGAACAAAUUAAGGCAAUUAAAAAUGGUUCUCGGCUCAGUGAACUUUCUAAAGUGCAGAUUUCUGAGCUUUCAUUUCCUGCCUGUAACACGGUUCAUCCCGAGUUACUCCCUGAGUCUUCAGGCGACGAUGGCCAAGGGCUUGUGACUUCUGCAAGCGACGUGACUGGAAACCACGCAGCACUUCACAGGGAUCCUAGUGUGUUCUCUGCUGGUGAUUCCCCAGGGGAGGCUCCUUCUGCGCUGUUGCCAGGGCCACCCCCUGGUCAGCCUGAAGCCACUCAGCUGACAGGGCCAAAACGGGCUGGCCAGGCAGCUCUGUCAGAACGAAGCCCUGUGGCUGAUCGGAAGCAGCCUGUUCCUCCAGGACGUGCUGCGCGUUCAAGCCAGUCUCCAAAAAAGCCGUUCAAUAGUAUUAUUGAGCACCUGUCAGUGGUAUUCCCAUGUUACAACAGCACUGAGCUUGCUGGUUUUAUUAAAAAAGUGCGAAGCAAAAACAAGAACUCACUCUCAGGAUUGAGUAUUGAUGAAAUUGUCCAAAGAGUGACAGAACACAUUCUAGAUGAACAGAAAAAGAAAAAGCCAAACCCAGGAAAGGACAAGAGGACUUAUGAGCCCAGCUCUGCCACCCCCGUGACCAGGUCCUCCCAGGGCUCACCCUCGGUGGUUGUUGCACCAUCACCCAAAACCAAGGGGCAGAAAGCAGAAGAUGUCCCUGUGAGGAUUGCACUGGGUGCAAGUUCCUGUGAAAUAUGCCACGAGGUGUUCAAAUCAAAAAACGUGCGUGUGCUCAAAUGUGGGCACAAGUAUCACAAAGGGUGCU2000000009UUAAGCAGUGGCUUAAAGGGCAGAGCGCUUGCCCGGCCUGCCAGGGUCGUGAUCUCCUGACAGAAGAGUCACCUUCUGGAAGAGGCUGGCCCAGUCAGAAUCAGGAGCUGCCUUCCUGCUCUUCUAGGUAGUCACACUUCACUAAAGUGUCA2000000009UCCACCAGUGUGUUGAAUCCGAAGAAUGACAAUUUUCUACCACUGGUGUAAAAAACAAACAUUUGAAGACCCUUGUGCAUUGUGUGUCACAAAGCUAAAUACAUGGAAAUCGUUAAUAUCGCUGAUAUUAAGUAAUUUCCCCACUCUGAGUGAAUACUUUGAUGAUUGCCAACAGUGGCUAAUAAAAUGACGGCUACCACACUCAUGGGUCACUGGGGCUGCGCAGGGCUCUUUGAGGUGGGUGGCUUCUUUUGGAAAGUACUAUGAACGUCUCGAAGCAGUAUUCUAGUGAUAAGAAUUCUUA2000000006ACAUAGCCAAGCGCCCCACGUUUGUUCCCCACGUUUGUUCCCCUUUUCUGUUUGAAAAACCUGUUCUGGUAGCUCCACAAGAGAGAUGAUACUGACUUUUUAAAUUUUUUACAAGAGUCUGUAUUCCUGAUAUGCCUAUAUUUUUCCUCAAAGAUUCUGCAUUUUAAGGAUGGGCAUAAGCAAACUAUAUUUUAAUAAUUUAUAGUUAAUGUUAAAAUAUUGGCUGAUUUAGACCAAAAGAUUCAAAUCUCCUCUUUGUGAAAUCCCAUCUGCAUUUGAUUUUUUAUUAUUUUAUGUUCCCCCGUUAGAUUGUUUUAAGUGUUUGCUUUUCAUCUUUUAUAGAUGUAAUCUGAUUUUCAAAAAUCAUUAACACUUUUUAAUUAGUAUCGACUAAGACUUUUUCCCCCUGGAAUCGAGGCUGUGUGUCCGUCA2000000009UCCCAGCCCCCGGUUGGAGCCUGCUCUUUGAACUCCGCUGCCUUCCUUAGCAGCUUCUGUCCUCUUCUGUGAGUCAGUCAGCGAGUGCUUGGGAUCCGCA2000000009UCCAGCCGUGCUGAGCACACAACAGGCUGUGUGUGGAAAUGGCCACCACCAUUCUCCUUCCCCACCCCACCACAAAAAGAGAAGCUGUGUCU2000000009UUAGACAACCCUGAGGUAUCUGUGUUACAAUCGUUCUGUGUUUGAUAUUUGUGUAAAGUAUGCAUGCAGUCUUGUACUGUGACCUAAGAACAAAACUGUAACUGCAUUAGAAACCAUGAAAAAAUUAGAUAUUGUUUUGUGACUUUUAGACAGUGGUAAAUAUAGA2000000006ACCAUGAAUUCUGGUCACAUUCCAUUUCUCUCCAACAUGAAGGAUCAAAAAAUGUUUUUCAAUGUGUUCUUUGUUCCACUGGAAACUUAG
2191   mRNA  unknown    Homo sapiens    ACUAGGGAUUUGAAAGUGCACGGGCUGCGGAGUGGAGCUCGCAUCUGUUCCCGCCGCCCGCGAGCGGAUUAAAUUUCUGCAAAUUCAAACUGAAUGGGGCUUUCUUCUGCUGCCUUCCAGAGGGCGCCGGCAGCCCGCCGCGCGCUUCUCUCCGGCGGGAGCGGCCGCCCAGCGCACGGCUAGGAGCGAUCGCGGGAGCCCGACCCAAGCCCGUGCGGGCCAGACGGCGGCGGCGAGGCGGAGGCUGCGGAGGCACCCGGGCUCCCGGACCCAGGCACCCGGACCCCGGGACCCAGGCGCCGCCGGACCGCGCCCCACCCCGCGCGCCCGAGCAGGGCGACUGUCAUUAGCUUCCUGGACGGG2000000006ACCCGGGGCGGGAUCCUGGUGUCCUGAAAGGGGCCCGGGCGACCCUAAGAGGAAGA2000000006ACUUUUGGGGGCGGGGUCCCCGGUCCCGCGUCCCCUGGGCAGCCGCUAUUGUCUACGCGCCUCGCUGGGCGGCGCGGGGGGCGUGAUCGCGGCGGCCCCGGGCUCUGGGUGCGGAGACCCAGGCGGGGCUGGGCCCAGGGCGGCGGCGGGAGAAGCCGGGGAAGCCGAAGAGCCUGGGGAGGAGGAGCUGCGAGCGCGGGAGACGAGCAGGAGCCGCGCGGGCCGCGGCGAGCGCGAUGCCGGCGGCGGCGGGGGACGGGCUCCUGGGGGAGCCGGCGGCGCCUGGGGGCGGCGGCGGCGCGGAGGACGCGGCCAGGCCCGCGGCGGCCUGCGAGGGAAGUUUCCUGCCUGCCUGGGUGAGCGGCGUGCCCCGCGAGCGGCUCCGCGACUUCCAGCACCACAAGCGCGUGGGCAACUACCUCAUCGGCAGCAGGAAGCUGGGCGAGGGCUCCUUUGCCAAGGUGCGCGAGGGGCUGCACGUGCUGACCGGGGAGAAGGUGGCCAUAAAAGUCAUUGAUAAGAAGAGAGCCAAAAAGGACACCUAUGUCACCAAAAACCUGCGGCGAGAGGGUCAGAUCCAGCAGAUGAUCCGCCACCCCAAUAUCACUCAGCUCCUUGAUAUUUUAGAAACGGAAAACAGCUACUACCUGGUCAUGGAGCUGUGCCCUGGGGGCAACCUGAUGCACAAGAUCUAUGAGAAGAAGCGGCUGGAGGAGUCCGAAGCCCGCAGAUACAUCCGACAGCUCAUCUCUGCCGUAGAGCACCUGCACCGGGCCGGGGUGGUCCACAGAGACUUGAAGAUAGAGAAUUUGCUACUAGAUGAAGACAAUAAUAUCAAGCUGAUUGACUUUGGUUUGAGCAACUGCGCAGGGAUCCUGGGUUACUCGGAUCCGUUCAGCACACAGUGUGGCAGCCCUGCCUACGCUGCACCUGAACUGCUCGCCAGGAAGAAAUACGGCCCCAAAAUCGAUGUCUGGUCCAUAGGUGUGAACAUGUAUGCCAUGUUGACCGGGACGCUGCCUUUCACGGUGGAGCCUUUCAGCCUGAGGGCUUUGUACCAGAAGAUGGUAGACAAAGAAAUGAACCCCCUCCCCACUCAGCUCUCCACAGGUGCCAUCAGUUUCCUGCGCUCUCUCCUGGAACCGGAUCCUGUGAAGAGGCCAAAUAUUCAGCAGGCACUGGCGAAUCGCUGGCUUAAUGAGAAUUACACGGGCAAAGUGCCCUGUAAUGUCACCUAUCCCAACAGGAUUUCUCUGGAAGAUCUGAGCCCGAGCGUCGUGCUGCACAUGACCGAGAAGCUGGGUUACAAGAACAGCGACGUGAUCAACACUGUGCUCUCCAACCGCGCCUGCCACAUCCUGGCCAUCUACUUCCUCUUAAACAAGAAACUGGAGCGCUAUUUGUCAGGGAAAUCUGACAUCCAGGACAGCCUCUGCUACAAGACCCGGCUCUACCAGAUAGAAAAGUACAGGGCCCCCAAGGAGUCCUAUGAGGCCUCUCUGGACACCUGGACACGAGAUCUUGAAUUCCAUGCCGUGCAGGAUAAAAAGCCCAAAGAACAAGAAAAAAGAGGGGAUUUUCUUCAUCGACCAUUCUCCAAGAAGUUGGACAAGAACCUGCCCUCGCACAAACAGCCCUCAGGCUCGCUUAUGACACAGAUUCAGAACACCAAAGCCCUCCUGAAGGACCGGAAGGCCUCCAAGUCCAGCUUCCCCGACAAAGAUUCCUUUGGCUGCCGCAAUAUUUUCCGCAAAACCUCAGAUUCCAAUUGUGUGGCUUCUUCUUCCAUGGAGUUCAUCCCCGUGCCACCGCCCAGGACCCCGAGGAUUGUGAAGAAACCGGAGCCCCAUCAGCCAGGGCCCGGAAGCACUGGCAUCCCCCACAAGGAAGACCCCCUGAUGCUGG2000000006ACAUGGUGCGCUCCUUCGAGUCUGUGGAUCGCGACGACCACGUAGAAGUGCUGUCUCCCUCUCAUCACUACAGGAUUCUGAACUCCCCGGUCAGCUUGGCUCGCAGAAAUUCCAGCGAGAGGACGCUGUCCCCGGGUCUGCCAUCCGGAAGCAUGUCGCCUCUCCAUACUCCUUUGCAUCCAACUCUGGUCUCUUUUGCUCACGAAGAUAAGA2000000006ACAGCCCCCCAAAAGAGGAGGGCCUGUGUUGCCCACCUCCGGUUCCCAGCAAUGGCCCCAUGCAGCCUCUGGGGAGCCCCAAUUGUGUGAAAAGCCGAGGCCGGUUCCCUAUGAUGGGCAUCGG2000000006ACAGAUGUUAAGGAAGCGCCAUCAGAGUCUGCAGCCAUCUGCAGAUAGGCCCCUGGAGGCCAGCCUGCCCCCACUGCAGCCCCUAGCCCCUGUGA2000000006ACCUUGCCUUUGACAUGGCCGAUGGGGUCAAGACCCAGUGCUAACUUGGGCCAGCGGGGUUUGGGGUAUCUCUAGAAAACAGCA2000000006ACUGAACAGAGCUCCACACAUCUGUCAGGGUGUGAGCACUCCAAGGCCUCGCGUGGAGCAUCCUUAGUCCCACCUGUAGCUGAAUCCACAGACCCAAAGCCUGCACAACCCAACCUCGCUUAGGGACCCCCAGAGAUGCUGGAAUCGCUAGGAGGGUUGGCUCCAGGGGCAGCCAAUUCCUAUCAUUCAGAUCUUCCUUCCUCCCAAGU2000000006ACUCACCAACCCCUUCCACUUCCCACUUCCCCCAGGCUUGGGGGGAAAACAGGGCAUGAGCCUUCUGGGGCACUCAGAUUAUGG2000000006ACUGUUACCAGAUCUUUCUUCACGCUGUGCUACAUGUGUGCCUCUCACAGCAGUUGGCCACAGUUACAGGGAGAGA2000000006ACAAUAUCACAGUCAUUCAUCCAGGCCACGUUUCCUCUGCGGAGUGUAGCAGCCCUGCCUUUCAUAGCAGGGAUUACCUGAAGGCCAGCAGGAGCCGGGGGCAGGCCCAGGAUCCUCAGAGGAAGAUGGAGAGGAGCUUCGGACCAAGAUCAAACCAAACAGUGGGGACCCCAACAGAAGAGAAAGACUGAAGGAGACACUCAUUUCCCAAGCAAGAUUUUGAUAGAUUUUUGUUGUUGUUGUUGUUGAAACAUGCUAAUGAUUGAAUUAUCUUUUCCAAAGAUUUUUUUUAAAUGUGAUGUCGGUAAAUUGAAAUAACAUAAUUUUUUAAAACUUGGAUGGAGAGAUGAGAAGCAAUUCCACCAAACUCAUGUUUUCACAGGAGGGUUCAGUGUGGAGAGCAAAAAAGCUG2000000006ACUGUGGUGAUUUGCUGAGUGCUGUGGCCCACAGGCAGGGCAAGUCUCGGUGGCCCUGUGUUCAUCCUGUUGUUUAAGGCAUAGCCCUGAUCCUUCUGGAAGGCAUAGAACACGGUUACAGCUGGUUCUGUAGAAAGAGGGAAAAGAUGAUUGUGACAAUUCAGAGCAUAACUCAGAUGGCGAGAAGGCAGCAUUAUCUCUGUGCGAUGCUGAUUUCAAGCUGCCCACAGA2000000006ACUGGUGCGGCUCAGAGCUCGGCGAGUUUGCUGGGAGCUGGGAGCAGGCUUGCCUGGCAGAGAACCUGUUCAGAUACAGGCCAGUUUCUUCUUCGAGGAAAGCCAAGCUCCUCAAACAGGGUUCAGUCCACGUUGUGUUUUCACACCUUUCUCCAAGGAUCGAACCAAAGAUGUGUCUCCAGUAUUGUGUCUGUGCCCCUGUGUGUGUUUUGUGG2000000006ACAGCCGUGUUGUCUG2000000006ACUGUAUCCAGCUGGCACUUGACAGGGUGCAGUCAUUGGUGAGAAGAAUCAGAAAAAGAAGACCCAUCAGCACAGGUUGGAUAGGGGUUAGUGUAGGAGACCAGUUACAGAAUGGCCUGGAGUCUUCAACUUUUGACCGGUGCAGGUGUGACCAGAGACCACCUCUGUGGCCACCUCAGAUAGUCAUCUCAGUCCAAGGAUCCCAAAACACAAAUCUAGAAUUGCAAAGCCAGCCUUUAUUUCCCUGGCAGGCAGCCUUGCCAGAAGGCAGAGAGGCAGUUCUGAAUCAUUCUCUCAUUCACCAGUGGUGACAUCCUUCAGUCCCUCACAUCUCUGACAGAGCGGGACAGAAUGGAUAUUUGGCUGACCUUGGUGAGACCUGGAGCUGCCUGUUUCUUCCCUAGGGGAUCACCACGGCUCUAGGGCAUUCUAGGAUGAGGUCAGACCCCUUGGCCAUUGGUGUUAUUUUUUGUAUAGCUUCAGACUGGGUUCCAGA2000000006ACUUACCAUUGAAAACAGAGCUUUUAGGCCAGGUGUGGUGGCUCACACCUGUAAUCCCAGCACUUUGGGAGGCCGAGGCAGGUGGAUCGCUUGAGCUCAGGAGUUCGAGAGCAGCCUGGGCAACAUGGUGAAAGCCCGUCUCUACCGAAAAAUACAAAAAAAAAUAGCUGGGUGUGGUGGUACGUGCCUGUAGUCCCAGCUACUUCGGGG2000000006ACUGAGGUGGGAGGAUCACUUGAACCUAGGAGGUCGAGGCUGCAGUGAGCCAAGAUCAUGCUACUGCACUCCAGCUUAGGUGGCAAAGUGAGACCCUGUCUCCAAAAAAAGAAAAUAGAGCUUUAUAAGCAGAGAGAAGAAAAUAAUCAUCUAAGACCAUCUCUCCAUUCGACAUGAAGUGUACCUUUUCUAAAG2000000006ACGGUUUCCAGCUGCAACGGCUCCACUUUGCAGGCUUGCAGGGUGUAUACCUGCGCAUUGGGA2000000006ACUUGCUGGAACCCCUGAUGCAUUUUCCUUGAGAGCAGGGGUACUUCCGCCUUGCCGUUAGCUUGUGGAGAACGUGCUUCUUAUUCCUGGCAGGCUUCAAGAACAGCUGCACAUGUGCCGCUAACUGACCGCGUUGCCAUUGGCGACCUGG2000000006ACUCUGA2000000006ACUCAGGUUUAUUCUAAACCCAGUGAGAGGUGAGGGGGAGUGAUGAAAGGGGAUCAGCUGUAUUUGUGUGUGUGUGUGUGUGUGAGCACCUGACAAAUCUAUGAAACCGAGUGAAAGGAGAAAUGUUAGAUUCUUUAUUAUUUUAUUAUAUUUAUAUGGAAAGCUCGACUCUCCCUUUGGUAAGUCCGAAGCAUGUUGUCUGUUCGACCGUGACUGUCUUCCUCAGUCUGUGCCUGUGAUUCCAGUCACCCUGUAGUUACUGACAGAAAUUGACUGGACUGUCAUUGUGUGAAGUCUAGGAGGAAAUGUCCAUUUUAAUUGUAUGAUUUGGUCAUAAGUAAGGACUAUAUUUAUGUCACCAUUAUUAGAUAUAUGUACUUUUGUAAUGACUGUGAAAUACACUUUUCCCUCACUACGACUGCUUCUUUAUUUGCUGAUAAAUCUUAAAACAACUAAGUACGUUGCAAAUAAUAGUACAGGUACCAUCUUUUAUGUGAAGUUCUUUUUCUUUUUUUGAGACAGGGUCUUGCUCUGUCACCCAGGCUGGAGUGCAGUGGCACAAUCACAGUUCACUGCAGCCUCAACCUCUCCAGAUUCAAGUGAUCCUCCCAUCUCAGCCUCCCAAGUAGCUGGGACUACAGUUGUGCACCACAAUGCCUAGCUAAUUUUUUUUGUAUUUUGUAGAAAUGGGGUUUCGCCAUGUUGCUCAGGCUGAUCUCAAACUCCUGGGCUCCAACGAUCUGCCCACCUUGGCCUCCCAAAGUGCUGAGAUUACAGGCGUGAGCCACUGUGCCUGGCCUUAUGUAAAGCUCUUGACCUAGCAUCUGACUGGAAACAAGCGGGAAUUGCAUUGGGGGGCAUUUUCUGGGCCAGUUUCCCUGCCUUAUUUUACCUGCAAUAGGUGUGCCUACAAAAGUCUUUCUGACAUACACACUGCAGGUGGCAGUUCAAGAAGAAUCAACCUUUUUCAUUUGGGGAUAUUAGGAUCUUCCUUGGAGACUCUGAAAAUGGCACACAAAGAAUGGCAGUUAUGAACGUGACUUCUAGAUUUUGUCCUUGUAGGAGGCCUUGGUCAUGGAUAGGGGAAGAGGGAUGAUGGGAUGGAAUGGGAGGGUGGGAUCUAGAUGACCUCUUGAAAUUGUCCCAGUUACUGCUUCCUUCAUAACUGUUCACAAAACGUUUUUCAUAUAUACCACCUUGUUUCCCCUGGGAAGUGAGGGGACGAAGCCUUAGAGGGUGACAUAGCUAGAAAGUGGAGAAGCUCACUGUUCACUGUGCAAAGCCCCAGUAGUCGGAUUCCGGGGAAAAGAACAAGUAUCUAGUUUUGAUGACAAUGUUUUCUUGUAAGAAUCCCAACACUUUAGAAUAGAAAAGGACCUAAGAUUCUCUGGCUCAGCCCCAGCCUUUCUGAAGAAGGGAAAACUAGGGACCCAGAUGGUUUAAGGACACCCCAGAGUCCCCAGAUGAGCUGGCAUUUGAGCUGGUCUGGAGCAGAGUUUCUCCCUCAAAGAACACAGAGAAAUCAGAGAGUGGCUGCCAUGGUCAGAGGGGGAUGUCAACAACAGAUCAAGCCGUCAUCACAACAGGUAUUUCUGAAGUUCCUGCAGGGACUAGGUCUUGCAUUUUUAAGUCCUUUUCAAAACUGUGCAGCUUCCUGAACCUUAUGCUGUUUGUCCCAUCCACUCUUGAAGCUGGGGAAAGACAGCUUUCUUUGGGAACUCUGUCUUUCUCAGUUGACUUCCCAAGUAAGCAGCAAACCCCUGGAUAGCCUUGUUAUCUACUUUAGGUAUUAAGAGGCUAUUGGGUUUUACUAGAUUAAAUCAAUAAAACAUUUCCUAUAGAGCCAUAUCAUACACUGAAGCAAAUUCAGAAAGAAUGCAAAACUGCUAUCUUUUGGGGGAGUCUGGAAGCCUGUUGGUUAGUGUAUUUAUUUUCUUUGUGGGGUCUUCUGUGAGCUACAGGCACAGUAAGAAUAAUUCAGAGCGGUACUGGGAGUUGGUUCAAUUUCAUGUCAUCACUUUUCAAUGAAGGGAGUGCAUUUCCUGAGUAGUAAAUGAGUAUAUUAUUUGUGGCAGCUUUUCUGUUAAGGGAGCUUUCCAGACAUCUGGUUGCAAAGACAAAUAGGAUAUAUAUUUGUACUUCUUCUCUGUGGACAUGUUUUUGUGACACACAGUUAUCUCUAGGAGUUGACGUCUGUGGGCACUAAGGGACUGAGGUUGGGGGAGAAAGCUGAGGAGGCUUUGGAAGAGAAGGUGAGGAGCAUUUCAGGAUUUGCAGUCCCCCUCCACAUGUAUCCACAUCUGAGCUGGUGGUGUUCCAAUAAUGAGGCAUUUGGGGCAACCAAUUUUGGAAGGAUAGAAUAGCUUUAUGUGGAGCAAACUUGAGGAUCAAUUGGAGUUGAGUGGUUUAAAACUUAAAGAUGGCACAGGAAGCUGUAUCAUUUACAGGUGAAAAAAAUAAAUGGGUCUGACUUCA
2192   mRNA  unknown    Homo sapiens    ACUCGCUGAGGCCCCGACGCAGGGCCGGGCCGGGCCCAGGGCCGAGGAGCGCGGCGGCCAGAGCGGGGCCGCGGAGGCGACGCCGGGGACGCCCGCGCGACGAGCAGGUGGCGGCGGCUGCAGGCUUGUCCAGCCGGAAGCCCUGAGGGCAGCUGUUCCCACUGGCUCUGCUGACCUUGUGCCUUGGACGGCUGUCCUCAGCGAGGGGCCGUGCACCCGCUCCUGAGCAGCGCCAUGGGCCUGCUGGCCUUCCUGAAGACCCAGUUCGUGCUGCACCUGCUGGUCGGCUUUGUCUUCGUGGUGAGUGGUCUGGUCAUCAACUUCGUCCAGCUGUGCACGCUGGCGCUCUGGCCGGUCAGCAAGCAGCUCUACCGCCGCCUCAACUGCCGCCUCGCCUACUCACUCUGGAGCCAACUGGUCAUGCUGCUGGAGUGGUGGUCCUGCACGGAGUGUACACUGUUCACGGACCAGGCCACGGUAGAGCGCUUUGGGAAGGAGCACGCAGUCAUCAUCCUCAACCACAACUUCGAGAUCGACUUCCUCUGUGGGUGGACCAUGUGUGAGCGCUUCGGAGUGCUGGGGAGCUCCAAGGUCCUCGCUAAGAAGGAGCUGCUCUACGUGCCCCUCAUCGGCUGGACGUGGUACUUUCUGGAGAUUGUGUUCUGCAAGCGGAAGUGGGAGGAGGACCGGGACACCGUGGUCGAAGGGCUGAGGCGCCUGUCGGACUACCCCGAGUACAUGUGGUUUCUCCUGUACUGCGAGGGGACGCGCUUCACGGAGACCAAGCACCGCGUUAGCAUGGAGGUGGCGGCUGCUAAGGGGCUUCCUGUCCUCAAGUACCACCUGCUGCCGCGGACCAAGGGCUUCACCACCGCAGUCAAGUGCCUCCGGGGGACAGUCGCAGCUGUCUAUGAUGUAACCCUGAACUUCAGAGGAAACAAGAACCCGUCCCUGCUGGGGAUCCUCUACGGGAAGAAGUACGAGGCGGACAUGUGCGUGAGGAGAUUUCCUCUGGAAGACAUCCCGCUGGAUGAAAAGGAAGCAGCUCAGUGGCUUCAUAAACUGUACCAGGAGAAGGACGCGCUCCAGGAGAUAUAUAAUCAGAAGGGCAUGUUUCCAGGGGAGCAGUUUAAGCCUGCCCGGAGGCCGUGGACCCUCCUGAACUUCCUGUCCUGGGCCACCAUUCUCCUGUCUCCCCUCUUCAGUUUUGUCUUGGGCGUCUUUGCCAGCGGAUCACCUCUCCUGAUCCUGACUUUCUUGGGGUUUGUGGGAGCAGCUUCCUUUGGAGUUCGCAGACUGAUAGGAGUAACUGAGAUAGAAAAAGGCUCCAGCUACGGAAACCAAGAGUUUAAGAAAAAGGAAUAAUUAAUGGCUGUGACUGAACACACGCGGCCCUGACGGUGGUAUCCAGUUAACUCAAAACCAACACACAGAGUGCAGGAAAAG2000000006ACAAUUAGAA2000000006ACUAUUUUUCUUAUUA2000000006ACUGGUGACUAAUAUUAACAAAACUUGAGCCAAGAGUAAAGAAUUCAGAAGGCCUGUCAGGUGAAGUCUUCAGCCUCCCACAGCGCAGGGUCCCAGCAUCUCCACGCGCGCCCGUGGGAGGUGGGUCCGGCCGGAGAGGCCUCCCGCGGACGCCGUCUCUCCAGA2000000006ACUCCGCUUCCAAGAGGGAGCCUUUGGCUGCUUUCUCUCCUUAAACUUAGAUCAAAUUUUUUGGUUUUUAAUCAGUUAUCUUGGGA2000000006ACUUAACCUGGCCCCUCACCUCUUCUGCACCCCCCGCCCCCGAA2000000006ACUGUCUCGUAAUGAAUUUCUGCUGUCCUCCUGGGAGUGGACGGCCGGGUCCCGUCCCCCGGGAGCAUCGCUCGGCUCAGCACCUUGGCUCCCAGUGGGGGCCCCGUGGAGGGCGCCCGUAGUGAUAAGCACACCGGCACGAACGUCAGGUCCAUUCCUCGAAGUCGGAGCCCUCACUCUGCCCUGUCCUGGGGCUGGCUGAGGGCGAACGCCCCACCUCACUUUCUAGAGCCCUGUCUGUCCUAGCUCCUAUCUGACCUUGUGUGUAAAUACGUACAUCUGUUUUUAAAGUGGAUGGGCCCCUGAGAACUCAGUGAAAUGCAGAGUUCUCCAUGCACCUAAAGCUCCUUUGUCGCUCUCAUGGCUGUCAGAUCCUGGUCCCUCCACACUGGGUGCUGGGGAGGGAGGACCCUCGGGGCUACCGCGCGCCCCCCCA2000000009UCCCACAGAUCAGGAGCCAAGGAGGGAGAACAGGGCAGCCUGUGGG2000000006ACUCUAGGAUGCUUCAGAAGAAGCGACGGCACCGUCAACCCUCUGUUUUUUAAAGGUGGUUGGAG2000000006ACUGUUAACACUGAGCUCAUUGACUUCUAGAGAUUUUAUUUUUACUGGUUGAUCUCUUGGUGGUUUUCAACUUCCUGCUGGAAACUAGAGGUGGGGCACCCCCCACCCCCCAGCCUCGCACUGUGUCCUUGGGGAAGGCCCGCCCCCA2000000009UCCUGGCCGGUGUCACUGUGGCCCGGCCACCCCUGAGCGCCCAGCUCCCUACCUCCUGGACGUCUCUGAGAGUCCAGGCAGAGCAGAGGGCAGCGCUCGGCCGGUCAUGCUGGCUCCCUUGGCCUUGCAGCGAGCCCCUGGCCCACGCCGAGCGAGGGAUGCUUCUCCCUACAGCAUGUCCACUCCCCCGGCAUGGCCAGGUGGGGCCCCUGGGGCAAUGGCAGUGGUAGAACGCUCAACUUGGUUGCGGUACCAUCAGCCCACCUGCAUUUGGCUUUCGACUUGCUUGUUCUAAGUCACAGCGCCCUCAUCUUUUUAGCAAGGUAAAAAAACCAAAAUGGGUGUUAUCUCUGAUAUCUUGAAACCAGCGUUCUGAAUAGAGGUAGGUUGAGUUUUCUAGGGGAAAACAAAUGGAGAAAAGAGGCAUGAAGAAAAGUAAACCGAGAACAUAAUUAGGCAUCGGGCCUAAGUGUCCUGGGGAGAUUGGAGGGGACGGCAGCGUUCUGCAUGAUGGAGGCGCUGCCGGGCCCCGGGUCUGUGGGGGCCGUGCUCUCAGGGCGUGUGCGGGACGCCACCUGUGCACACCUGCUCAGAGCACGGCUCCUCGCAGGGGUGAAGGGGCAGACCAACGAAACCAGAUGAGACCAACGACACCAUGCGAGACACGCUUGCAGACACUGUUGUUUUGGAAAUGUGCUUCCCUCCAUCUGAAAUCUCAUCCCUCCACCCGCCCACUCGGGCAGCUGUGCCGUGGGCAGGGCAUGCGCUCCCCUGGCUGAGCACCCCAGAGAUUCUCCUGCACCUUCCUCAUGCCGCACGCUGCUCA2000000009UCCGUCUCCAUGUGUGUUUAGAUCCAUGCCAUUCACUGACUCACUA2000000006ACACCUGCAAAAUCU2000000009UUAAGGAAAAAAGCUGAAGGGUACGACCAUGCACAUAUGUGACCUGGAAAAUGCAAAUUUAGAUCUUUUAUGAUUUAAUUAUUAUUGUUUCCCAUAGAAGUUCCCUCCCUUUGAAAUUAAUAUAUAAUGUAUAAAUUCUGCACUGAGCCAUGGCGGAGCUGGGCAGCCCCUAGGUUAGAGUGGAGACGGAGGCCCAGGCGCAGGGGUCACACCUCAUCUGGUUUCCUUCCCAUCUCACAGCUUAGCUUGUGCUUCUCAACACCAAGUCU2000000009UUAAGAGCAAUAAAAACUACACCAUGAAUGUUUGAAUUUUUUUUUUUUGGGGGGGGGAGGGUGGAUUUUGCUUUUCAUCCAGAAGGAAAAGGGGAGGAGAGCUCCUUUACAUUUUUUAAAUUAAAUUCAUAAAUCCCAGAACAGUCUUUUUUUUUUCUUUUUCCUUUACACCCUACUUCUGAGCUUAAUUCAGUUGAUGUUAUGUCCAAAUUCAGGCUGAGUGCUCAGGCUGAAGCAACUCUGUAGCCCACAGUCCGUGCUGGCCACUGUCGGGGUGAGGCACAUUCUAGGCCUGGCAUCGCUGAUGCCCUCUGCACCCAGUCCUUGAGCCAGGCCGAGGACAGGAAGGGCAUUGCUGGCCUGUAGCUCCUGUUACCCACCCAGAGCCAGGCGCCACACUGGAGGCUCCCAGGCGGGAGGGCCCAGGCCCACCCACGGGCGUCUGGCCGGUCAAGCUCCCAGCCUGGGCCGUGGUCUCCUGGGGACGCCGCUGGCCUCCCAGCUUAGGCCCAGGUGCCAGGUGUCAUGGGGUCUCCUGCCCAUCUUCCCAAGGAUGCCAUUGCUGUCUUCAUCGUCUUCCCCCGUGUGAGACACUGGUUGUCUGGUACUCGGCGACAGUGUACCAGACGCGCACCCUAUGUGAGGUGCU2000000009UUAAGGUCCCUGUCCUCAGGAAGCGCAGUCUGGUGGAAGAGAUGAGCGCUGAACAAAUCACUAAAUAACACAAAACAACAAUGUAAGCAGCACUUUCUUGUGUAAAAAAAAAAAAAAAGCACGUCCUGUCGAUGAAUUUUGAGUCUCUCUGCCUUGCCUGUCCCGACUCCCUUUCGCGCACCGUGGCAUGAGAAUCUUUCCUCACGCUGUUCGUUGCGGUAUUGCUGAGCAUUGAUGUUGAUUUGAAGGAAAAGCCGUGGUUGGACCCAGCUGUGUGUUUCACUCACGUGCAAUUGAGUAGCUGUUGCCAGGCUGUCCAUGCCUGUUGUG2000000006ACUACCGGUUGGGGUCAGAUUUGGGGUGAAGAAUGAGUAAGUUUCUGCAUGCUUUGUCUCUACCUGAGACACUUCUACAACAAGCCAAGUAUAAUCUCUCCAGCCCUGCAGAUUUUCACCUGACUUGUUCAGCCCCAUGCGUAGACUCCCGCUGCAGGCCUCUGGCCUGUGGCUCACUGCAUGCAGCCCCUGGCGUGCAAUACUAGUGCUCCACGGCGCGAUGUGCUUCUAGCCCUUGCACUGCACCUAGGCUCAGGGUUCAAACGGCCAGCCCGAAAAGCCUGCCUGCCUUCUUUCUGGAAACAGCACGUCCCCGGCCGUGUGCCUGCCCCUUUCUCUACUGAGCUAGUCCCCAAACCAAAGGCAAGCCCCCUCGGGCCUCGGGGGAUGGGGCCGGCCACACCCCUGACUCCGCCCUGGCUCUGCCCCAUACCCCUGCCGUGGGGCCGACCUGGGGGAUGCAGACAUCCGGCUCCGUAUUCCUGCCUAUCGGGGCCAGGAUGCAAAAACAAUUUUUGCGUAAAAGAUGUCACACUGAUCUGCUGGAGUGGGGUGGACACAUGAAUUCAGUUUUAUCAUGAACACUCGCCACUGGCUGCUUGUUAAUUCAGGGAUAAUGGUGGCAUUCUUACAAACUGCUCGGGAAAUAGAAUGACGGGAACACUUUUAGGGAGCCCAGGAAGUUACCAGGG2000000006ACAUUGGUGUCGCCGGCCCAGGCAACAGCAGCGUACGCUUUUCAAAGAUCAUUGAGUUGUCUUAGAAUUUGAAGCUGUGUAAUGACAAUGUCACCUGGAGUUCGUCUCCAUUUCUUA2000000006ACUUUUUGUUGCACAAGUAUUUGGACAGAAGUCGA2000000006ACUGUGAAUGAGAUACUGAAAUGCACUAAAUUGUAUUACAUUAAACUGGAGUUACUUGAUACAAUGAAGAAAUGCAUCUGAUCUACUUGUAUUUAUUGUCUCAGAAUUGUACGUUGUGACAAUCAAAUGUUACUUGCCUAAAUGCCAGGAAAUUCAACUGGCCUUUUAAUCAGCAAGAUCGCCAGCAAGUACUGUAACUGUAAAGGAAAAUCUCUCUCUCUGGAGAACCCACACAAACCAUUGACCUGAGUGCGCAUGACAGCCACUGGCUUCUUUUUCUAUGAUUGAAAAUCUGCCAUCGCUGACUGUUGGCCAGUUUCAAAGGGACCCAUUGUAUACAGGGUGCAAAUGUAUUAUACGGAUGUUUCCUUUUGUACACUUCAUUUUUACAAGUUUUGCUACUCACAAGCUUUAUGUAGUGGAGGAUAGAGGUAUUUUUGGUCUUUAGAAGCUUGUCGGGGUGAGGGCUGCUAACUUACACUUCAGAGGCCUGUGUCCCAAAGGCCUGGCUGCGUUUGCCGUGCUGUGCGAGGACCUGUGUACACAGGCAGGUGUGCGCCUGCCCGAGCGCGAGUAGCUCUUGUGUAGUGGUGAAAUGCUGCAGGCAUCUGUUUAUUAAAAUUGCUGCUGUGAAAGACAGGGAUAAAAUAUCCACAAUAUAAGAGAAAGCGACUCCGUGCCUCCUUCUGUUUCUUCGUUUCCAGUCUGCAUAGAUGUCUCCAAGGGGAAACCAGGGCCACCAGGCACUCCUGUCCCAUGGGGCCACCCACCUUCAGAGCCCACUCCCACGGGCUCUGUUUCCUUGGAGGCCAUCCUGCCGAUGGCACUUUUCAAGGCCCUCCCUUCCCUACGAGUUGCUUUCUGGGAGGGGAAAUUGAAAAGGAGAGCGGUCACCUGGCAAAAACACAGGGGAAAUCAGCCAGUCCACAAAAAUACGCAAAAUGACCUGAUGAUGUCCAAAAAAGGGUUUUAAAAGCGAUCAAGGACAAAAGGUUUUCCUAAGUGGCAUGUAUACAUCCAAAACUACUCUUUUUUUGUAAAAACAUUCAUCUGUGGAGAAAACCAAGGAACCCCUUUCUCUUCUUUAUUAAAAAGCAAAACAAAAACUCUUGUUAGAACCAAAA
2193   mRNA  unknown    Homo sapiens    ACUCGUGUGCGCGCUCGUCCGCCCGCCAGUCCUCUCAACGCGCGCUUGGCCGCCCGACGACGCGGGAGCCGCACGCGCCGGACGAGGCUCGCUGCGCUCCCUGUUGCCCAGCGCGGGCCCGUUGAGGCGGAGCCCUCAGUUCCCGGCCAGGACACGGUCUGGGCCGCCGAAUCUCCGGCCGAAGAGCGGCGGCGGCAGCGGCGGGAAAAAAAUGAAGAAUGAAAUUGCUGCCGUUGUCUUCUUUUUCACAAGGCUAGUUCGAAAACAUGAUAAGUUGAAAAAAGAGGCAGUUGAGAGGUUUGCUGAGAAAUUGACCCUAAUACUUCAAGAAAAAUAUAAAAAUCACUGGUAUCCAGAAAAACCAUCGAAAGGACAGGCCUACAGAUGUAUUCGUGUCAAUAAAUUUCAGAGAGUUGAUCCUGAUGUCCUGAAAGCCUGUGAAAACAGCUGCAUCUUGUAUAGUGACCUGGGCUUGCCAAAGGAGCUCACUCUCUGGGUGGACCCAUGUGAGGUGUGCUGUCGGUAUGGAGAGAAAAACAAUGCAUUCAUUGUUGCCAGCUUUGAAAAUAAAGAUGAGAACAAGGAUGAGAUCUCCAGGAAAGUUACCAGGGCCCUUGAUAAGGUUACCUCUGAUUAUCAUUCAGGAUCCUCUUCUUCAGAUGAAGAAACAAGUAAGGAAAUGGAAGUGAAACCCAGUUCGGUGACUGCAGCCGCAAGUCCUGUGUACCAGAUUUCAGAACUUAUAUUUCCACCUCUUCCAAUGUGGCACCCUUUGCCCAGAAAAAAGCCAGGAAUGUAUCGAGGGAAUGGCCAUCAGAAUCACUAUCC2000000009UCCUCCUGUUCCAUUUGGUUAUCCAAAUCAGGGAAGAAAAAAUAAACCAUAUCGCCCAAUUCCAGUGACAUGGGUACCUCCUCCUGGAAUGCAUUGUGACCGGAAUCACUGGAUUAAUCCUCACAUGUUAGCACCUCACUA2000000006ACUUCGUUUUUGAUUGUGUUGGUGUCAUGUUGAGAAAAAGGUAGAAUAAACCUUACUACACAUUAAAAGUUAAAAGUUCUUACUAAUAGUAGUGAAGUUAGAUGGGCCAAACCAUCAAACUUAUUUUUAUAGAAGUUAUUGAGAAUAAUCUUUCUUAAAAAAUAUAUGCACU2000000009UUAGAUAUUGAUAUAGUUUGAGAAAUUUUAUUAAAGUUAGUCAAGUGCCUAAGUUUUUAAUAUUGG2000000006ACUUGAGUAUUUAUAUAUUGUGCAUCAACUCUGUUGGAUACGAGAACACUGUAGAAGUGGACGAU2000000009UUGUUCUAGCACCUUUGAGAAUUUACU2000000009UUAUGGAGCGUAUGUAAGUUAUUUAUAUACAAGGAAAUCUAUUUUAUGUCGUUGUUUAAGAGAAUUGUGUGAAAUCAUGUAGUUGCAAAUAAAAAAUAGUUUGAGGCAUGA
2194   mRNA  unknown    Homo sapiens    ACUCUGGCUUCGACUCCGUCGCUCUCAAUUCGUCACCAGGAGGAAGACGGAGCUGGCUGCCCAGCCCAAAGGCCCAUGAGGGGAUGCAGUUAUGGGCUCUGUCGCCGUGGAUUGUUAUUUUGUGUCAGUAAGUAAUCCAUAAAGUGCCAACAUGGGAAAGAAACGGACAAAGGGAAAAACUGUUCCAAUCGAUGAUUCCUCUGAAACU2000000009UUAGAACCUGUGUGCAGACACAUUAGAAAAGGAUUGGAACAAGGUAAUUUGAAAAAGGCU2000000009UUAGUGAAUGUGGAAUGGAAUAUCUGCCAAGACUGUAAGACUGACAAUAAAGUGAAAGAUAAAGCUGAAGAAGAAACAGAAGAAAAGCCUUCAGUUUGGCUGUGUCUUAAAUGUGGCCAUCAGGGCUGUGGCAGAAAUUCUCAGGAGCAGCAUGCCUUGAAGCACUAUCUGACGCCAAGAUCUGAACCUCACUGUCUGGUUCUUAGUUUGGACAACUGGAGUGUAUGGUGUUACGUAUGUGAUAAUGAGGUCCAGUAUUGUAGUUCAAACCAGUUGGGUCAAGUGGUUGAUUAUGUCAGAAAACAAGCCAGCAUUACAACUCCAAAGCCAGCAGAGAAAGAUAAUGGAAAUAUUGAACUUGAAAAUAAAAAAUUAGAAAAAGAGAGUAAGAAUGAACAAGAGAGAGAAAAGAAGGAAAACAUGGCUAAAGAGAAUCC2000000009UCCCAUGAAUUCUCCUUGCCAAAUAACCGUGAAAGGACUCAGUAAUUUGGGAAACACAUGUUUCUUCAAUGCAGUUAUGCAGAACUUGUCACAAACACCAGUGCUUAGAGAACUACUAAAAGAAGUGAAAAUGUCUGGAACAAUUGUAAAAAUUGA2000000006ACCACCUGAUUUGGCAUUA2000000006ACAGAACCAUUAGAAAUAAACCUUGAGCCUCCAGGCCCUCUUACU2000000009UUAGCCAUGAGCCAGUUUCUUAAUGAGAUGCAAGAGACCAAAAAGGGGGUUGUGACACCGAAAGAACUCUUUUCUCAGGUCUGUAAAAAAGCAGUGCGGUUUAAAGGCUAUCAGCAGCAAGACAGCCAGGAGCUGCUUCGCUACUUAUUGGAUGGGAUGAGAGCAGAAGAACACCAAAGAGUGAGUAAAGGAAUACUUAAAGCAUUUGGUAAUUCUACUGAAAAGUUGGAUGAAGAACUAAAAAAUAAAGUUAAAGAUUAUGAGAAGAAAAAAUCAAUGCCAAGUUUUGUUGACCGCAUCUUUGGUGGUGAACUAACUAGUAUGAUCAUGUGUGAUCAAUGCAGAACUGUCUCCUUGGUUCAUGAAUCUUUCCUUGAUUUGUCCCUCCCAGUUUUAGAUGAUCAGAGUGGUAAGAAAAGUGUAAAUGAUAAAAAUCUGAAAAAGACAGUGGAGGAUGAAGAUCAAGAUAGUGAGGAAGAAAAAGAUAACGACAGUUACAUAAAAGAGAGAAGUGAUAUUCCUUCUGGAACAAGUAAGCACUUACAGAAAAAAGCAAAGAAACAAGCCAAAAAGCAAGCCAAGAACCAACGAAGACAACAAAAAAUUCAAGGAAAAGUUCUUCAUUUAAAUGAUAUUUGUACUAUUGACCA2000000009UCCUGAAGACAGUGAAUAUGAAGCUGAAAUGUCACUUCAAGGAGAAGUAAAUAUUAAAUCCAACCAUAUUUCACAAGAGGGUGUUAUGCAUAAAGAAUAUUGUGUCAACCAGAAAGAUUUGAAUGGCCAAGCAAAAAUGAUCGAAAGUGUAACUGACAAUCAAAAAUCCACAGAGGAAGUAGAUAUGAAAAAUAUCAACAUGGAUAAUGAUCUGGAGGUUUUA2000000006ACAUCUUCUCCCACUAGGAAUUUAAAUGGUGCCUACCUAACGGAAGGGAGCAAUGGAGAAGUGG2000000006ACAUUUCCAAUGGUUUCAAAAACCUAAAUUUGAAUGCUGCUCUUCA2000000009UCCUGAUGAAAUAAAUAUAGAGAUUCUGAAUGAUAGUCAUACUCCUGGAACAAAGGUGUAUGAGGUUGUAAAUGAAGAUCCAGAA2000000006ACUGCUUUCUGU2000000006ACUCUUGCAAACAGGGAAGUUUUCAAUACUGAUGAGUGUUCAAUCCAACAUUGUUUAUAUCAGUUCACCCGUAAUGAGAAACUUCGAGAUGCGAAUAAACUGCUUUGUGAAGUAUGCACACGGAGACAGUGUAAUGGACCAAAGGCAAAUAUAAAAGGUGAAAGGAAGCAUGUUUACACCAAUGCCAAAAAGCAGAUGCUAAUUUCUCUUGCUCCUCCUGUUCUUACUCUUCAUUUAAAGAGAUUUCAGCAGGCUGGUUUUAACCUACGCAAAGUUAACAAACACAUAAAGUUUCCGGAAAUCUUAGAUUUGGCUCCUUUUUGCACCCUUAAAUGUAAGAAUGUUGCAGAAGAAAAUACAAGGGUACUCUAUUCCUUAUAUGGAGUUGUUGAACACAGUGGUACUAUGAGGUCGGGGCAUUACACUGCCUAUGCCAAGGCAAGAACCGCAAAUAGUCAUCUCUCUAAUCUUGUUCUUCACGGUGAUAUUCCACAAGAUUUUGAAAUGGAAUCAAAAGGGCAGUGGUUUCACAUCAGCGACACACAUGUGCAAGCUGUGCCUACAACUAAAGUACUAA2000000006ACUCACAAGCGUACCUCCUAUUUUAUGAGAGAAUACUGUAAUAAUAUCAAAAGCACUUUUUCUGGAAACACAUUUAUGGCUUUUAUAAUGGCUGAAAUAACGAUAAAAAAAG2000000006ACUAAUUAAAAUCAUGUUCACUUAACAUUAAAUACAUGCCAGAAGAAAUCAUGUUUAUUUAAAUAUUGAAGGGAAAAAUACCUAAAAAUGUACAAAGGUUUUAUAUUGUCAUAGUGGUUUUUAUUCCUGCUUUGUUUCUGGAAAGGAAAUCCUGAAUUACUUAAGUACUUUGUGUUUAAUAUAUCUGGGUGAUGGAUCACAACACAUCAAUAAACUGACUUACCCUAAAA
2195   mRNA  unknown    Homo sapiens    ACUGCAGAUCACCAAUGUGGUAGAAGCCAACCAACCAGUGACCAUCCAGAACUGGUGCAAGCGGGGCCGCAAGCAGUGCAAG2000000006ACCCAUCCCCACUUUGUGAUUCCCUACCGCUGCUUAGUUGGUGAGUUUGUAAGUGAUGCCCUUCUCGUUCCUGACAAGUGCAAAUUCUUACACCAGGAGAGGAUGGAUGUUUGCGAAACUCAUCUUCACUGGCACACCGUCGCCAAAGAGACAUGCAGUGAGAAGAGUACCAACUUGCAUGACUACGGCAUGUUGCUGCCCUGCGGAAUUGACAAGUUCCGAGGGGUAGAGUUUGUGUGUUGCCCACUGGCUGAAGAAAGUGACAAUGUGGAUUCUGCUGAUGCGGAGGAGGAUGACUCGGAUGUCUGGUGGGGCGGAGCAGACACAGACUAUGCAGAUGGGAGUGAAGACAAAGUAGUAGAAGUAGCAGAGGAGGAAGAAGUGGCUGAGGUGGAAGAAGAAGAAGCCGAUGAUGACGAGGACGAUGAGGAUGGUGAUGAGGUAGAGGAAGAGGCUGAGGAACCCUACGAAGAAGCCACAGAGAGA2000000006ACCACCAGCAUUGCCACCACCACCACCACCACCACAGAGUCUGUGGAAGAGGUGGUUCGAGAGGUGUGCUCUGAACAAGCCGAGACGGGGCCGUGCCGAGCAAUGAUCUCCCGCUGGUACUUUGAUGUGACUGAAGGGAAGUGUGCCCCAUUCUUU2000000009UACGGCGGAUGUGGCGGCAACCGGAACAACUUUGACACAGAAGAGUACUGCAUGGCCGUGUGUGGCAGCGCCAUUCCUACAACAGCAGCCAGU2000000006ACCCCUGAUGCCGUUGACAAGUAUCUCGAGACACCUGGGGAUGAGAAUGAACAUGCCCAUUUCCAGAAAGCCAAAGAGAGGCUUGAGGCCAAGCACCGAGAGAGAAUGUCCCAGGUCAUGAGAGAAUGGGAAGAGGCAGAACGUCAAGCAAAGAACUUGCCUAAAGCUGAUAAGAAGGCAGUUAUCCAGCAUUUCCAGGAGAAAGUGGAAUCUUUGGAACAGGAAGCAGCCAACGAGAG2000000006ACAGCAGCUGGUGGAGACACACAUGGCCAGAGUGGAAGCCAUGCUCAAUGACCGCCGCCGCCUGGCCCUGGAGAACUAC2000000006AUCACCGCUCUGCAGGCUGUUCC2000000009UCCUCGGCCUCGUCACGUGUUCAAUAUGCUAAAGAAGUAUGUCCGCGCAGAACAGAAGGACAGACAGCACACCCUAAAGCAUUUCGAGCAUGUGCGCAUGGUGGAUCCCAAGAAAGCCGCUCAGAUCCGGUCCCAGGUUAUGACACACC2000000009UCCGUGUGAUUUAUGAGCGCAUGAAUCAGUCUCUCUCCCUGCUCUACAACGUGCCUGCAGUGGCCGAGGAGAUUCAGGAUGAAGUUGGUGCAGUGGCUCAUGCCUGUAAUUCCAGCAUUUUGGGAGGCCAAGGUGGGCAGAUGACUUGAGCCCAGAAGUUCAAGACCAGAAUGGGAAACAUGGCAAGACCACAUUUCUACAAAAAAAUUAUCCAGGCAUGAUAACAUCUAUUUGUAGUCCCAGCUACUCAGGAGGCUGUGGUGGGAGGAUCUCCUGAGCCUGGGGUGGCUGAGGCUGCAGUGAGCCUUGAUCACGCCACCUGGGCAAUAGAGCAAGACCCUGUCUCAAAAAAAGGAAGAAAAAGACUAUUAUUUCCCCCAUUGAAUGGUCUUGGCACUAUUACACAAAAUCAAUUGUCCAUAGAUAAUAUGGGUUUAUUUCUUAAUUCUUAGUUCUUUUCUUUGAUCUGUGUGCCUGUGCUUACUGUAGUACCACACUGUUUUGAUUAUUGUAGCUUUGUAGUAAAUUUUGAAAUCAGC
2196   mRNA  unknown    Homo sapiens    ACUGCCCCGAUGGCUCCCUACCCCUGUGGCUGCCACAUCCUGCUGCUGCUCUUCUGCUGCCUGGCGGCUGCCCGGGCCAACCUGCUGAACCUGAACUGGCUUUGGUUCAAUAAUGAGGACACCAGCCAUGCAGCUACCACGAUCCCUGAGCCCCAGGGGCCCCUGCCUGUGCAGCCCACAGCAGAUACCACCACACACGUGACCCCCCGGAAUGGUUCCACAGAGCCAGCGACAGCCCCUGGCAGCCCUGAGCCACCCUCAGAGCUGCUGGAAGAUGGCCAGGACACCCCCACUUCUGCCGAGAGCCCGGACGCGCCAGAGGAGAACAUUGCCGGUGUCGGAGCCGAGAUCCUGAACGUGGCCAAAGGCAUCCGGAGCUUCGUCCAGCUGUGGAAUGACACUGUCCCCACUGAGAGCUUGGCCAGGGCGGAAACCCUGGUCCUGGAGACUCCUGUGGGCCCCCUUGCCCUCGCUGGGCCUUCCAGCACCCCCCAGGAGAAUGGGACCACUCUCUGGCCCAGCCGUGGCAUUCCUAGCUCUCCGGGCGCCCACACAACCGAGGCUGGCACCUUGCCUGCACCCACCCCAUCGCCUCCCUCCCUGGGCAGGCCCUGGGCACCACUCACGGGGCCCUCAGUGCCACCACCAUCUUCAGAGCGCAUCAGCGAGGAGGUGGGGCUGCUGCAGCUCCUUGGGGACCCCCCGCCCCAGCAGGUCACCCAGACGGAUGACCCCGACGUCGGGCUGGCCUACGUCUUUGGGCCAGAUGCCAACAGUGGCCAAGUGGCCCGGUACCACUUCCCCAGCCUCUUCUUCCGUGACUUCUCACUGCUGUUCCACAUCCGGCCAGCCACAGAGGGCCCAGGGGUGCUGUUCGCCAUCACGG2000000006ACUCGGCGCAGGCCAUGGUCUUGCUGGGCGUGAAGCUCUCUGGGGUGCAGGACGGGCACCAGGACAUCUCCCUGCUCUACACAGAACCAGGUGCAGGCCAGACCCACACAGCCGCCAGCUUCCGGCUCCCCGCCUUCGUCGGCCAGUGGACACACUUAGCCCUCAGUGUGGCAGGUGGCUUUGUGGCCCUCUACGUGG2000000006ACUGUGAGGAGUUCCAGAGAAUGCCGCUUGCUCGGUCCUCACGGGGCCUGGAGCUGGAGCCUGGCGCCGGGCUCUUCGUGGCUCAGGCGGGGGGAGCGGACCCUGACAAGUUCCAGGGGGUGAUCGCUGAGCUGAAGGUGCGCAGGGACCCCCAGGUGAGCCCCAUGCACUGCCUGGACGAGGAAGGCGAUGACUCAGAUGGGGCAUCCGGAGACUCUGGCAGCGGGCUCGGGGACGCCCGGGAGCUUCUCAGGGAGGAGACGGGCGCGGCCCUAAAACCCAGGCUCCCCGCGCCACCCCCCGUCACCACGCCACCCUUGGCUGGAGGCAGCAGCACGGAAGAUUCCAGAAGUGAAGAAGUCGAGGAGCAGACCACGGUGGCUUCGUUAGGAGCUCAGACACUUCCUGGCUCAGAUUCUGUCUCCACGUGGGACGGGAGUGUCCGGACCCCUGGGGGCCGCGUGAAAGAGGGCGGCCUGAAGGGGCAGAAAGGGGAGCCAGGUGUUCCGGGCCCACCUGGCCGGGCAGGCCCCCCAGGAUCCCCAUGCCUACCUGGUCCCCCGGGUCUCCCGUGCCCAGUGAGUCCCCUGGGUCCUGCAGGCCCAGCGUUGCAAACUGUCCCCGGACCACAAGGACCCCCAGGGCCUCCGGGGAGGGACGGCACCCCUGGAAGGGACGGCGAGCCGGGCGACCCCGGUGAAGACGGAAAGCCGGGCGACACCGGGCCACAAGGCUUCCCCGGGACUCCAGGGGACGUAGGUCCCAAGGGCGACAAGGGAGACCCUGGGGUUGGAGAGAGAGGGCCCCCAGGACCCCAAGGGCCUCCAGGGCCCCCAGGACCCUCCUUCAGACACGACAAGCUGACCUUCAUUGACAUGGAGGGAUCUGGCUUCGGGGGCGAUCUGGAGGCCCUGCGGGGUCCUCGAGGCUUCCCUGGACCUCCCGGACCCCCCGGUGUCCCAGGCCUGCCCGGCGAGCCAGGCCGCUUUGGGGUGAACAGCUCCGACGUCCCAGGACCCGCCGGCCUUCCUGGUGUGCCUGGGCGCGAGGGUCCCCCCGGGUUUCCUGGCCUCCCGGGACCCCCAGGCCCUCCGGGAAGAGAGGGGCCCCCAGGAAGGACUGGGCAGAAAGGCAGCCUGGGUGAAGCAGGCGCCCCAGGACAUAAGGGGAGCAAGGGAGCCCCCGGUCCUGCUGGUGCUCGUGGGGAGAGCGGCCUGGCAGGAGCCCCCGGACCUGCUGGACCACCAGGCCCCCCUGGGCCCCCUGGGCCCCCAGGACCAGGACUCCCCGCUGGAUUUGAUGACAUGGAAGGCUCCGGGGGGCCCUUCUGGUCAACAGCCCGAAGCGCUGAUGGGCCACAGGGACCUCCCGGCCUGCCGGGACUUAAGGGGGAUCCUGGCGUGCCUGGGCUGCCGGGGGCGAAGGGAGAAGUUGGAGCAGAUGGAGUCCCCGGGUUCCCCGGCCUCCCUGGCAGAGAGGGCAUUGCUGGGCCCCAGGGGCCAAAGGGAGACAGAGGCAGCCGGGGAGAAAAGGGAGAUCCAGGGAAGGACGGAGUCGGGCAGCCGGGCCUCCCUGGCCCCCCCGGACCCCCGGGACCUGUGGUCUACGUGUCGGAGCAGGACGGAUCCGUCCUGAGCGUGCCGGGACCUGAGGGCCGGCCGGGUUUCGCAGGCUUUCCCGGACCUGCAGGACCCAAGGGCAACCUGGGCUCUAAGGGCGAACGAGGCUCCCCGGGACCCAAGGGUGAGAAGGGUGAACCGGGCAGCAUCUUCAGCCCCGACGGCGGUGCCCUGGGCCCUGCCCAGAAAGGAGCCAAGGGAGAGCCGGGCUUCCGAGGACCCCCGGGUCCAUACGGACGGCCGGGGUACAAGGGAGAGAUUGGCUUUCCUGGACGGCCGGGUCGCCCCGGGAUGAACGGAUUGAAAGGAGAGAAAGGGGAGCCGGGAGAUGCCAGCCUUGGAUUUGGCAUGAGGGGAAUGCCCGGCCCCCCAGGACCUCCAGGGCCCCCAGGCCCUCCAGGGACUCCUGUUUACGACAGCAAUGUGUUUGCUGAGUCCAGCCGCCCCGGGCCUCCAGGAUUGCCAGGGAAUCAGGGCCCUCCAGGACCCAAGGGCGCCAAAGGAGAAGUGGGCCCCCCCGGACCACCAGGGCAGUUUCCGUUUGACUUUCUUCAGUUGGAGGCUGAAAUGAAGGGGGAGAAGGGAGACCGAGGUGAUGCAGGACAGAAAGGCGAAAGGGGGGAGCCCGGGGGCGGCGGUUUCUUCGGCUCCAGCCUGCCCGGCCCCCCCGGCCCCCCAGGCCCCCCAGGCCCACGUGGCUACCCUGGGAUUCCAGGUCCCAAGGGAGAGAGCAUCCGGGGCCAGCCCGGCCCACCUGGACCUCAGGGACCCCCCGGCAUCGGCUACGAGGGGCGCCAGGGCCCUCCCGGCCCCCCAGGCCCCCCAGGGCCCCCUUCAUUUCCUGGCCCUCACAGGCAGACUAUCAGCGUUCCCGGCCCUCCGGGCCCCCCUGGGCCCCCUGGGCCCCCUGGAACCAUGGGCGCCUCCUCAGGGGUGAGGCUCUGGGCUACACGCCAGGCCAUGCUGGGCCAGGUGCACGAGGUUCCCGAGGGCUGGCUCAUCUUCGUGGCCGAGCAGGAGGAGCUCUACGUCCGCGUGCAGAACGGGUUCCGGAAGGUCCAGCUGGAGGCCCGGACACCACUCCCACGAGGGACGGACAAUGAAGUGGCCGCCUUGCAGCCCCCCGUGGUGCAGCUGCACGACAGCAACCCCUACCCGCGGCGGGAGCACCCCCACCCCACCGCGCGGCCCUGGCGGGCAGAUGACA2000000009UCCUGGCCAGCCCCCCUCGCCUGCCCGAGCCCCAGCCCUACCCCGGAGCCCCGCACCACAGCUCCUACGUGCACCUGCGGCCGGCGCGACCCACAAGCCCACCCGCCCACAGCCACCGCGACUUCCAGCCGGUGCUCCACCUGGUUGCGCUCAACAGCCCCCUGUCAGGCGGCAUGCGGGGCA2000000009UCCGCGGGGCCGACUUCCAGUGCUUCCAGCAGGCGCGGGCCGUGGGGCUGGCGGGCACCUUCCGCGCCUUCCUGUCCUCGCGCCUGCAGGACCUGUACAGCAUCGUGCGCCGUGCCGACCGCGCAGCCGUGCCCAUCGUCAACCUCAAGGACGAGCUGCUGUUUCCCAGCUGGGAGGCUCUGUUCUCAGGCUCUGAGGGUCCGCUGAAGCCCGGGGCACGCAUCUUCUCCUUUGACGGCAAGGACGUCCUGAGGCACCCCACCUGGCCCCAGAAGAGCGUGUGGCAUGGCUCGGACCCCAACGGGCGCAGGCUGACCGAGAGCUACUGUGAGACGUGGCGGACGGAGGCUCCCUCGGCCACGGGCCAGGCCUCCUCGCUGCUGGGGGGCAGGCUCCUGGGGCAGAGUGCCGCGAGCUGCCAUCACGCCUACAUCGUGCUCUGCAUUGAGA2000000006ACAGCUUCAUGACUGCCUCCAAGUAGCCACCGCCUGGAUGCGGAUGGCCGGAGAGGACCGGCGGCUCGGAGGAAGCCCCCACCGUGGGCAGGGAGCGGCCGGCCAGCCCCUGGCCCCAGGACCUGGCUGCCAUACUUUCCUGUAUAGUUCACGUUUCAUGUAAUCCUCAAGAAAUAAAAGGAAGCCAAAGAGUGUAUUUUUUUAAAAGUUUAAA2000000006ACAGAAGCCUGAUGCUGACAUUCACCUGCCCCAACUCUCCCCUGACCUGUGAGCCCAGCUGGGUCAGGCAGGGUGCAGUAUCAUGCCCUGUGCAACCUCUUGGCCUGAUCAGACCACGGCUCGAUUUCUCCAGGAUUUCCUGCUUUGGGAAGCCGUGCUCGCCCCAGCAGGUGCUGACUUCAUCUCCCACCUAGCAGCACCGUUCUGUGCACAAAACCCAGACCUGUUAGCAGACAGGCCCCGUGAGGCAAUGGGAGCUGAGGCCACACUCAGCACAAGGCCAUCUGGGCUCCUCCAGGGUGUGUGCUCGCCCUGCGGUAGAUGGGAGGGAGGCUCAGGUCCCUGGGGCUAGGGGGAGCCCCUUCUGCUCAGCUCUGGGCCAUUCUCCACAGCAACCCCAGGCUGAAGCAGGUUCCCAAGCUCAGAGGCGCACUGUGACCCCCAGCUCCGGCCUGUCCUCCAACACCAAGCACAGCAGCCUGGGGCUGGCCUCCCAAAUGAGCCAUGAGAUGAUACA2000000009UCCAAAGCAGACAGCUCCACCCUGGCCGAGUCCAAGCUGGGAGAUUCAAGGG2000000006ACCCAUGAGUUGGGGUCUGGCAGCCUCCCA2000000009UCCAGGGCCCCCAUCUCAUGCCCCUGGCUGGGACGUGGCUCAGCCAGCACUUGUCCAGCUGAGCGCCAGGAUGGAACACGGCCACAUCAAAGAGGCUGAGGCUGGCACAGG2000000006ACAUGCGGUAGCCAGCACACAGGGCAGUGAGGGAGGGCUGUCAUCUGUGCACUGCCCAUGG2000000006ACAGGCUGGCUCCAGAUGCAGGGCAGUCAUUGGCUGUCUCCUAGGAAACCCAUAUCCUUACCCUCCUUGGG2000000006ACUGAAGGGGAACCCCGGGGUGCCCACAGGCCGCCCUGCGGGUGAACAAAGCAGCCACGAGGUGCAACAAGGUCCUCUGUCAGUCACAGCCACCCCUGAGAUCCGGCAACAUCAACCCGAGUCAUUCGUUCUGUGGAGGGACAAGUGG2000000006ACUCAGGGCAGCGCCAGGCUGACCACAGCACAGCCAACACGCACCUGCCUCAGG2000000006ACUGCGACGAAACCGGUGGGGCUGGUUCUGUAAUUGUGUGUGAUGUGAAGCCAAUUCAGACAGGCAAAUAAAAGUGACCUUUUACACUGA
2197   mRNA  unknown    Homo sapiens    ACUGCGCCUGCGCGGGGCGCCGGGCCCUGGGCGGGGCCUUCCCGGCUGACGGCCUGCGUGCACUGCGCUUGCGCGGGUUGAGGGCGGUGGCUCAGGCUCCUGGAAAGGACCGUCCACCCC2000000009UCCGCGCUGGCGGUGUGGACGCGGAACUCAGCGGAGAAACGCGAUUGAGAAAUGGAAAAGAAAAUGAAAUAAAUCAGCAGUUAUGAGGCAGAGCCUAAGAGA2000000006ACUAUGGCAACAUCAGGUGACUGUCCCAGAAGUGAAUCGCAGGGAGAAGAGCCUGCUGAGUGCAGUGAGGCCGGUCUCCUGCAGGAGGGAGUACAGCCAGAGGAGUUUGUGGCCAUCGCGGACUACGCUGCCACCGAUGAG2000000006ACCCAGCUCAGUUUUUUGAGAGGAGAAAAAAUUCUUAUCCUGAGACAAACCACUGCAGAUUGGUGGUGGGGUGAGCGUGCGGGCUGCUGUGGGUACAUUCCGGCAAACCAUGUGGGGAAGCACGUGGAUGAGUACGACCCCGAGGACACGUGGCAGGAUGAAGAGUACUUCGGCAGCUAUGGAACUCUGAAACUCCACUUGGAGAUGUUGGCAGACCAGCCACGAACAACUAAAUACCACAGUGUCA2000000009UCCUGCAGAAUAAAGAAUCCCUGACGGAUAAAGUCA2000000009UCCUGGACGUGGGCUGUGGGACUGGGAUCAUCAGUCUCUUCUGUGCACACUAUGCGCGGCCUAGAGCGGUGUACGCGGUGGAGGCCAGUGAGAUGGCACAGCACACGGGGCAGCUGGUCCUGCAGAACGGCUUUGCUGACAUCAUCACCGUGUACCAGCAGAAGGUGGAGGAUGUGGUGCUGCCCGAGAAGGUGGACGUGCUGGUGUCUGAGUGGAUGGGGACCUGCCUGCUGCACCACACACUGGAAGCAGACGCUGUUCAUGAUGGACGACCCAGUCCCUGUCCAUACAGGAGACGUGGUCACGGGUUCAGUUGUGUUGCAGAGAAACCCAGUGUGGAGAAGGCACAUGUCUGUGGCUCUGAGCUGGGCUGUCACUUCCAGACAAGACCCCACAUCUCAAAAAGUUGGAGAAAAAGUCUUCCCCAUCUGGAGAUGACAGUUGAUGCU2000000009UUAUUUGGAAAGCAGUGUGCAUAUCUUGAGGGGUGAUGAACACAAGCAA2000000006ACCAAGUUGCACCUGGCUUCUGCACACUCCUGCGAAAGUCGGUGAACAUUCACUCCACAUUGACCCC2000000009UCCCUAGCCUGGCAGGUGACGUCAGGGUCCUUCACAGACAAACACGCUUGGGCUCGGCAGGAGCUGCCGUGGCCACCCCCGCUGCCCAGUGUCUGCCCUCUAGAAGUAGGCUGUGUUUCCAGGUGUUCACCCGUGGUGCCCACAGUGCCGACCCGUGGCUGGGUCGGAGCUCCAUGUUCCUAAGCUAGGUCUAGGUCUACACUCCUAGGACGCACGCAUAUCAGCCCGUGUACCCUGUGACAGUGACUGUCCCCACCUCCUAUGUUAGUGGUGCCCUUACUGCCGUCGCUCA2000000009UCCACUCGUGUGGGACGUAGGAUUGCACAGGGCUGUGCCAGUGGCGUGUAGGGAACACUGCCCUGGCUCAGCGUGCGAGCUAAGGUGGUGAUGUAUGCGAUGGG2000000006ACUCUGCAUGGGAUAGUACAGUUGUGUAGACGUCUUCCAAAUAAAUUAUGUGUUGGUCCAUCGCACAUGCUCAAUAAAUAUUUUUAAAUGAGUGAAUGUCAUUGUGUAUCCUGUUUUAUGCAUAUAUGUUAUUUUUUGUAAUUACAGGAUCAUACUAUAUGCAUUGCUUUAUAAGUUUUUCUCAAUAUUGUGAAAAAACUUCCACAUCAGUAGAUACAUGUCCAUAAUUUUUUUUUGUAUUGUUUUGAUUUUUAUUAAAUUUUAUUG
2198   mRNA  unknown    Homo sapiens    ACUGCGCCUGCGCGGGGCGCCGGGCCCUGGGCGGGGCCUUCCCGGCUGACGGCCUGCGUGCACUGCGCUUGCGCGGGUUGAGGGCGGUGGCUCAGGCUCCUGGAAAGGACCGUCCACCCC2000000009UCCGCGCUGGCGGUGUGGACGCGGAACUCAGCGGAGAAACGCGAUUGAGAAAUGGAAAAGAAAAUGAAAUAAAUCAGCAGUUAUGAGGCAGAGCCUAAGAGA2000000006ACUAUGGCAACAUCAGGUGACUGUCCCAGAAGUGAAUCGCAGGGAGAAGAGCCUGCUGAGUGCAGUGAGGCCGGUCUCCUGCAGGAGGGAGUACAGCCAGAGGAGUUUGUGGCCAUCGCGGACUACGCUGCCACCGAUGAG2000000006ACCCAGCUCAGUUUUUUGAGAGGAGAAAAAAUUCUUAUCCUGAGACAAACCACUGCAGAUUGGUGGUGGGGUGAGCGUGCGGGCUGCUGUGGGUACAUUCCGGCAAACCAUGUGGGGAAGCACGUGGAUGAGUACGACCCCGAGGACACGUGGCAGGAUGAAGAGUACUUCGGCAGCUAUGGAACUCUGAAACUCCACUUGGAGAUGUUGGCAGACCAGCCACGAACAACUAAAUACCACAGUGUCA2000000009UCCUGCAGAAUAAAGAAUCCCUGACGGAUAAAGUCA2000000009UCCUGGACGUGGGCUGUGGGACUGGGAUCAUCAGUCUCUUCUGUGCACACUAUGCGCGGCCUAGAGCGGUGUACGCGGUGGAGGCCAGUGAGAUGGCACAGCACACGGGGCAGCUGGUCCUGCAGAACGGCUUUGCUGACAUCAUCACCGUGUACCAGCAGAAGGUGGAGGAUGUGGUGCUGCCCGAGAAGGUGGACGUGCUGGUGUCUGAGUGGAUGGGGACCUGCCUGCUGUUUGAGUUCAUGAUCGAGUCCA2000000009UCCUGUAUGCCCGGGAUGCCUGGCUGAAGGAGGACGGGGUCAUUUGGCCCACCAUGGCUGCGUUGCACCUUGUGCCCUGCAGUGCUGAUAAGGAUUAUCGUAGCAAGGUGCUCUUCUGGGACAACGCGUACGAGUUCAACCUCAGCGCUCUGAAGUUGGAGAAAAAGUCUUCCCCAUCUGGAGAUGACAGUUGAUGCU2000000009UUAUUUGGAAAGCAGUGUGCAUAUCUUGAGGGGUGAUGAACACAAGCAA2000000006ACCAAGUUGCACCUGGCUUCUGCACACUCCUGCGAAAGUCGGUGAACAUUCACUCCACAUUGACCCC2000000009UCCCUAGCCUGGCAGGUGACGUCAGGGUCCUUCACAGACAAACACGCUUGGGCUCGGCAGGAGCUGCCGUGGCCACCCCCGCUGCCCAGUGUCUGCCCUCUAGAAGUAGGCUGUGUUUCCAGGUGUUCACCCGUGGUGCCCACAGUGCCGACCCGUGGCUGGGUCGGAGCUCCAUGUUCCUAAGCUAGGUCUAGGUCUACACUCCUAGGACGCACGCAUAUCAGCCCGUGUACCCUGUGACAGUGACUGUCCCCACCUCCUAUGUUAGUGGUGCCCUUACUGCCGUCGCUCA2000000009UCCACUCGUGUGGGACGUAGGAUUGCACAGGGCUGUGCCAGUGGCGUGUAGGGAACACUGCCCUGGCUCAGCGUGCGAGCUAAGGUGGUGAUGUAUGCGAUGGG2000000006ACUCUGCAUGGGAUAGUACAGUUGUGUAGACGUCUUCCAAAUAAAUUAUGUGUUGGUCCAUCGCACAUGCUCAAUAAAUAUUUUUAAAUGAGUGAAUGUCAUUGUGUAUCCUGUUUUAUGCAUAUAUGUUAUUUUUUGUAAUUACAGGAUCAUACUAUAUGCAUUGCUUUAUAAGUUUUUCUCAAUAUUGUGAAAAAACUUCCACAUCAGUAGAUACAUGUCCAUAAUUUUUUUUUGUAUUGUUUUGAUUUUUAUUAAAUUUUAUUG
2199   mRNA  unknown    Homo sapiens    ACUGGCCCCGCCCACCGUGCGAACCCAAAGAGGGUGAGCCAAAGAAAUGUAAGACAACAGAGUGACAAGCCGAAUGAGCCAAUCAGCAGGGGCUGUGUGGGGGCAGGAUUAGCACUCUCCCCCUCCUCCCCAUGUAGGCGUAACAGGAGAUUUAUGGUCUGAGGUUGCCUAUCGUGGUUUAUGGAGAUUUUGUUGCACGAUUUCGGUGCAUCUGCUCGUUGCCGUGAGAGACACUAGAUAGGAUGCACUUAAUUGACUUAAUUAUUGGAGGUUUUCAAGGAGAGAAUAAUGUGGAAAGGAAAAAGGCGAAGCACAACCCAAAGGGGUUGGCCGGGCCUAUGGUUGGAAUGAGGAAGGGUGUGGUCUUCGGCUAAAAUUUGCAUAAAACGGAACCCAUCCGGGCGAUUCCAACUUCGCCCAUUUAUUGGUAGUCCUUGGGGCGGGGCCUCGCCUCUUUCUCCGCCCCCGAGCGGAACAUGACGGGAGAUGUAGUUCCGAGACCGGUUGCCAUGGCGUUCUGGACAGCCUCGCGAGUCCGACCCCGCCCUUCAGGAGUGACGAGCGGCCUGACCAAUGGGAGCAGGGGGCGGGCUCUCUGACGAAGGACUGGAAGGUGGCGGUGGUGAAGGUGCAGGCCGUUGGGGCGGCUCAGAGGCAGGUGACUAUGAAAGGCUUAUAUUUCCAACAGAGUUCCACAGAUGAAGAAAUAACAUUUGUAUUUCAAGAAAAGGAAGAUCUUCCUGUUACAGAGGAUAACUUUGUGAAACUUCAAGUUAAAGCUUGUGCUCUGAGCCAGAUAAAUACAAAGCUUCUGGCAGAAAUGAAGAUGAAAAAGGAUUUAUUUCCUGUUGGGAGAGAAAUUGCUGGAAUUGUAUUAGAUGUUGGAAGCAAGGUAUCAUUCUUUCAACCAGAUGAUGAAGUAGUUGGAAUUUUGCCCCUGGACUCUGAAG2000000006ACCCUGGACUUUGUGAAGUUGUUAGAGUACAUGAGCAUUACUUGGUUCAUAAACCAGAAAAGGUCACAUGGACGGAAGCAGCAGGAAGCAUUCGGGAUGGAGUGCGUGCCUAUACAGCUCUGCAUUAUCUUUCUCAUCUCUCUCCUGGAAAAUCAGUGCUGAUAAUGGAUGGAGCAAGUGCAUUUGGUACAAUAGCUAUUCAGUUAGCACAUCAUAGAGGAGCCAAAGUGAUUUCAACAGCAUGCAGCCUUGAAGAUAAGCAGUGCCUUGAAAGAUUCAGACCUCCCAUAGAGAACAGUACAAUUGCCUGAUUUCCUGUCCUUUACAGCCCGAGUGAUUGAUGUAUCUAAUGGGAAAGUUCAUGUUGCUGAAAGCUGUUUGGAAGAAACAGGUGGCCUGGGAGUAGAUAUUGUCCUAGAUGCUGGAGUGAGAUUAUAUAGUAAAGAUGAUGAACCAGCUGUAAAACUACAACUACUACCACAUAA2000000006ACAUGAUAUCAUCACACUUCUUGGUGUUGGAGGCCACUGGGUA2000000006ACAACAGAAGAAAACCUUCAGUUGGAUCCUCCAGAUAGCCACUGCCUUUUCCUCAAGGGAGCAACGUUAGCUUUCCUGAAUGAUGAAGUUUGGAAUUUGUCAAAUGUACAACAGGGAAAAUAUCU2000000009UUAGUAUUCCAAGUGCCUUGCAAGUAUUCAUUUAAACAUUAAAACAGCCUUUUGAGAUGUAAGUACUGUUAUCAUCCCCAUUUCACAGGUGAAGAAACAGAAGCACAGAGAUGUUGAUACAGACUCAAGGACGCAGCAAGUGGCGGAGCAAGAAUCACACUCAGGCAGUCUCUCUCCUUUCUGAACAGAGAUGAGCCCUAAGAUACCUGGAAGAUUUUGUUUUUAACCUCACAUUAAGGAAAGCACACAUCACCUUGAAAGGUUGCACACUUACUCCUAUGAUGGUGCCAUUGCACAGAAACAUUUCAGAAUACUUUUCUAAAUUAAAGAGUUUGUGGAGUGUUUUAUAAAUAUCAAUGCUAGGAAAUCUUUAUCAAAUGAAGAUAGGUUUGACUUUUUGAAACAAAAGUCAUUCAGAGAUAAGUCUGGUGUGAUUGAAGCCAAAUCAUUCCAGUUGAGUAAAAAUAAUAAAAAGUUUGGAAUAUACAAACAAUUUCAAAAAGAAAGGUGCAAACCUCUUUAGAGUAGGGUCAACUUAAGAAUUCCUUUUAUUUCUAAAAUGACUGGCUUAGAGGCAGCAGCACUUGGUAAAAGUUUUAAUGUAUUGGAUAAAAAAAAAGUUAUCAUUACUUGAUAGAGCAUAUGUGUGUGUCUGAAGAAAGAUUUACAUAGCCUUACACUUCUCUCUACUGAAUAUCAUACGUUACUUUUCUUAAAUGUGUCUAGUCAUAUAUGUGUGAUAUGUAUAAAGGCCAGUUCCCUCCAGGAGCAAUGACAGUCUUUAUUCGGAGCUUUAAGGUAGUUAUGUAGGCCGGGCAUGGUGGCACAUGCCUGUAAUCCCAGCUACUCAUGAGGCUGAGGCAGAAGAAUCGCUUGAACCUGGGAGGCAGAGGUUUCAGUGAGCCAAGAUUGCACUACUACACUCCAGCCUGGUGACAGAGUGAGACUCCAUCUC
2200   unknown  unknown    Homo sapiens    ACUUAGGACAGCAUUUUAAAUCAUUCAUUCCAGAGGAAAGCCACGGGGCCUGGCAGGCGGUGGCUUCCCGUGCUCGGUGGCGCGCCUCCCGGCUGGAGGUUUCUGAGCUCUGCAGAAGCGUCCAGCCACAGGCCUGUUGCCCCCGUGGGCCCCUGGCUCUGCCUCACGGCUGGACGAAGUGAUUCACACACAGGCUCCUCAGAAACCUGUCUUGUCUCUCUUGAGCCGUGAGCUCUUGUUUAGUUUUGCAUAAUGGUCACUUGGGGCGCGUAUGCAACUUUGAGUGCCCAUUUAUUUUUACAGGACAGUUAAUGAUUGGACGUCAUCCAAUGAGAAAGCAGUGAUGUCU2000000009UUACUGCACACGUUGGAGGAGCUGAAGUCUGACUUGAGCAGGCCCACC2000000009UCCUCCCAGAAAAAAAUGGCAGCAGAGCUGCAGUUCCAGUUUGUGGACGUCCUGCUGAAAGACAAUGUUUCCCUCACAAAAGCGCUCAGCACGGUGACCCAGGAGAAGCUGGAGCUGAGCAGAGCCGUGUCUAAGCUUGAGAAGUUGCUGAAGCACCAUCUGCAGAAGGGCUGCAGCCCAAGCAGGUCGGAAAGGUCUGCUUGGAAGCCAGACGAAACGGCUCCACAGAGUUCCCUGAGGCGCCCAG2000000006ACCCCGGCCGGCUUCCACCAGCUGCCAGCGAGGAAGCACACACCAGCAAUGUCAAGAUGGAAAAAUUGUACCUGCAUUACUUGAGAGCAGAGAGCU2000000009UUAGAAAAGCUCUGAUUUAUCAAAAGAAGUAUCUUUUGCUGUUGAUUGGUGGAUUCCAGGAUUCUGAACAAGAAACACUCUCCAUGAUUGCCCAUUUGGGGGUAUUUCCUUCCAAAGCAGAACGGAAAAUCACAUCUCGUCCUUUCACCAGGUUCCGCACGGCCGUCAGGGUGGUCAUUGCAAUAUUAAGAUUACGUUUUUUGGUUAAGAAAUGGCAAGAAGUAGAUCGGAAAGGAGCUCUGGCACAAGGCAAAGCCCCUCGCCCAGGGCCCCGAGCACGACAGCCGCAGUCUCCACCCAGAACCAGAGAGUCCCCCCCAACCCGGGAUGUACCCUCUGGCCACACCAGGGACCCUGCCAGAGGCCGCAGACUGGCAGCAGCAGCCUCCCCACACAGUGGGGGAAGAGCCACUCCA2000000009UCCCCAAAUUCAAGAUUAGAAAGAUCCCUGACUGCUUCUCAAGAUCCAGAACAUUCCUUGACAGAGUAUAUUCACCAUUUAGAAGUGAUCCAGCAAAGAUUGGGAGGGGUACUACCAGAUUCUACUUCAAAGAAAUCCUGCCACCCGAUGAUUAAACAGUGAAUAAAAUGUCAUGGCUCUUUCCUGCGACAAUUCUAUUUGAGGAAAAGAUUUGUUUUUCCCUUUUCCCAAGGAAGCUCGUGGGACAGCAUGGGCACUACUCUUCAUGUGCGGUGACACCAGCCCCCAGAUGCCUUGAAUUAAGUGUCCUCACCU2000000009UUAUGCAUGACUGCAAAGCCAGCUGGAGCAUUUUCUAUGGAGCCUCCGUAUGUUUUAGGCCCAUGACCUUCGUGAGGUGACGGGCACUCACUCCCAUGAGCCCUGGCUGUGUGCUGUUGUGUGCCUAUCGGCAGAUCCA2000000009UCCUUCCUGCCUCCAAGGAGGAUACACAGAGAAUGGCUUCCUGUUGUUUUGUUUAUUUUCUUAACGUGUACAGAUGGAAACUUCAUUUAAAAAUAAAAACAAAACAACUCAAAAAGGAAUAAAAUUUAAUCA
2201   mRNA  unknown    Homo sapiens    ACUUCUCUUCUUCCGCGACCGGGAGAAGGCCGAGGGAUCGGCGGCACGAUCGACAUUGUACACCUUGAAGGUGGACGGAUGUGAAGCCGCGCGUUGUAGGGCUGAAGCUUACCAAAGAAAGGAAGAAUGCACUUUUCAGGAUUAGAAGAGGCUGUGUAUAGAAACAUACAAGCUUGCAAGGAGCUUGCCCAAACCACUCGUACAGCAUAUGGACCAAAUGGAAUGAACAAAAUGGUUAUCAACCACUUGGAGAAGUUGUUUGUGACAAACGAUGCAGCAACUAUUUUAAGAGAACUAGAAGUACAGCA2000000009UCCUGCUGCAAAAAUGAUUGUAAUGGCUUCUCAUAUGCAAGAGCAAGAAGUUGGAGAUGGCACAAACUUUGUUCUGGUAUUUGCUGGAGCUCUCCUGGAAUUAGCUGAAGAACUUCUGAGGAUUGGCCUGUCAGUUUCAGAGGUCAUAGAAGGUUAUGAAAUAGCCUGCAGAAAAGCUCAUGAGAUUCUUCCUAAUUUGGUAUGUUGUUCUGCAAAAAACCUUCGAGAUAUUGAUGAAGUCUCAUCUCUACUUCGUACCUCCAUAAUGAGUAA2000000006ACAAUAUGGUAAUGAAGUAUUUCUGGCCAAGCUUAUUGCUCAGGCAUGCGUAUCUAUUUUUCCUGAUUCCGGCCAUUUCAAUGUUGAUA2000000006ACAUCAGAGUUUGUAAAAUUCUGGGCUCUGGUAUCAGUUCCUCUUCAGUAUUGCAUGGCAUGGUUUUUAAGAAGGAA2000000006ACCGAAGGUGAUGUA2000000006ACAUCUGUCAAAGAUGCAAAAAUAGCAGUGUACUCUUGUCCUUUUGAUGGCAUGAUAACAGAAACUAAGGGAACAGUGUUGAUAAAGACUGCUGAAGAAUUGAUGAAUUUUAGUAAGGGAGAAGAAAACCUCAUGGAUGCACAAGUCAAAGCUAUUGCUGAUACUGGUGCAAAUGUCGUAGUAACAGGUGGCAAAGUGGCAG2000000006ACAUGGCUCUUCAUUAUGCAAAUAAAUAUAAUAUCAUGUUAGUGAGGCUAA2000000006ACUCAAAAUGGGAUCUCCGAAGACUUUGUAAAACUGUUGGUGCUACAGCUCUUCCUAGAUUGACACCUCCUGUCCUUGAAGAAAUGGGACACUGUGACAGUGUUUACCUCUCAGAAGUUGGAGAUACUCAGGUGGUGGUUUUUAAGCAUGAAAAGGAAGAUGGCGCCAUUUCUACCAUAGUACUUCGAGGCUCUAC2000000006AGACAAUCUGAUGGAUGACAUAGAAAGGGCAGUAGACGAUGGUGUUAAUACUUUCAAAGUUCUUACAAGGGAUAAACGUCUUGUACCCGGAGGUGGAGCAACAGAAAUUGAAUUAGCCAA2000000006ACAGAUCACAUCAUAUGGAGAGACAUGUCCUGGACUUGAACAGUAUGCUAUUAAGAAGUUUGCUGAGGCAUUUGAAGCUAUUCCCCGCGCACUGGCAGAAAACUCUGGAGUUAAGGCCAAUGAAGUA2000000090AUCUCUAAACU2000000009UUAUGCAGUACAUCAAGAAGGAAAUAAAAACGUUGGAUUAGAUAUUGAGGCUGAAGUCCCUGCUGUAAAGGACAUGCUGGAAGCUGGUAUUCUAGAUACUUACCUGGGAAAAUAUUGGGCUAUCAAACUCGCUACUAAUGCUGCAGUCACUGUACUUAGAGUGGAUCAGAUCAUCAUGGCAAAACCAGCUGGUGGGCCCAAGCCUCCAAGUGGGAAGAAAGACUGGGAUGAUGACCAAAAUGAUUGAAAUUGGCUUAAUUUUUACUGUAGGUGAAGGCUGUAUUUGUAGUAGUACUCAAGAAUCACCUGAUGUUUUCUUAUUCUCCUUAAAUUAAGAGUUAUUUUGUGUUUGUAUUCUUGGCUGGAUGUUAUAAUAAACAUAUUGUUACUGUC
2202   mRNA  unknown    Homo sapiens    AGAAAUAUUUUGAGCUCUGUAUUCAAAGCAGGAAGAUCUGGGACCAUAUGAAUGAUUUCGGAAUCAAGAAUAUGGACCAGGUAGCCCCUGUGGCUA2000000006ACAGUUAC2000000006AGAGGGACACUCAAGCGCCAGCCAGCCUUUGACACCUUUGAUGGGUCCCUGUUUGCUGUUUUUCCUUCUCUAAAUGAAGAGCAAACACUGCAAGAAGUGCCAACAGGCUUGGAUUCCAUUUCUCAUGACUCCGCCAACUGUGAAUUGCCUUUGUUAACCCCGUGCAGCAAGGCUGUGAUGAGUCAAGCCUUAAAAGCUACCUUCAGUGGCUUCAAAAAGGA2000000006ACAGCGGCGCCUGGGCAUUCCAAAGAACCCCUGGCUGUGGAGUGAGCAACAGGUAUGCCAGUGGCUUCUCUGGGCCACCAAUGAGUUCAGUCUGGUGAACGUGAAUCUGCAGAGGUUCGGCAUGAAUGGCCAGAUGCUGUGUAACCUUGGCAAGGAACGCUUUCUGGAGCUGGCACCUGACUUUGUGGGUGACAUUCUCUGGGAACAUCUGGAGCAAAUGAUCAAAGAAAACCAAGAAAAGACAGAAGAUCAAUAUGAAGAAAAUUCACACCUCACC2000000009UCCGUUCCUCAUUGGAUUAACAGCAAUACAUUAGGUUUUGGCACAGAGCAGGCGCCCUAUGGAAUGCAGACACAGAAUUACCCCAAAGGCGGCCUCCUGGACAGCAUGUGUCCGGCCUCCACACCCAGCGUACUCAGCUCUGAGCAGGAGUUUCAGAUGUUCCCCAAGUCUCGGCUCAGCUCCGUCAGCGUCACCUACUGCUCUGUCAGUCAGGACUUCCCAGGCAGCAACUUGAAUUUGCUCACCAACAAUUCUGGGACUCCCAAAGACCACGACUCCCCUGAGAACGGUGCGGACAGCUUCGAGAGCUCAGACUCCCUCCUCCAGUCCUGGA2000000006ACAGCCAGUCGUCCUUGCUGGAUGUGCAACGGGUUCCUUCCUUCGAGAGCUUCGAAGAUGACUGCAGCCAGUCUCUCUGCCUCAAUAAGCCAACCAUGUCUUUCAAGGAUUACA2000000009UCCAAGAGAGGAGUGACCCAGUGGAGCAAGGCAAACCAGUUAUACCUGCAGCUGUGCUGGCCGGCUUCACAGGAAGUGGACCUAUUCAGCUGUGGCAGUUUCUCCUGGAGCUGCUAUCAGACAAAUCCUGCCAGUCAUUCAUCAGCUGGACUGGAGACGGAUGGGAGUUUAAGCUCGCCGACCCCGAUGAGGUGGCCCGCCGGUGGGGAAAGAGGAAAAAUAAGCCCAAGAUGAACUACGAGAAGCUGAGCCGGGGCUUACGCUACUAUUACGACAAGAACAUCA2000000009UCCACAAGACGUCGGGGAAGCGCUACGUGUACCGCUUCGUGUGCGACCUCCAGAACUUGCUGGGGUUCACGCCCGAGGA2000000006ACUGCACGCCAUCCUGGGCGUCCAGCCCGACACGGAGG2000000006ACUGAGGUCGCCGGGACCACCCUGAGCCGGCCCCAGGCUCGUGG2000000006ACUGAGUGGGAAGCCCA2000000009UCCUGACCAGCUGCUCCGAGGACCCAGGAAAGGCAGGAUUGAAAAUGUCCAGGAAAGUGGCCAAGAAGCAGUGGCCUUAUUGCAUCCCAAACCACGCCUCUUG2000000006ACCAGGCUGCCUCCCUUGUGGCAGCAACGGCACAGCUAAUUCUACUCACAGUGCUUUUAAGUGAAAAUGGUCGAGAAAGAGGCACCAGGAAGCCGUCCUGGCGCCUGGCAGUCCGUGGGACGGGAUGGUUCUGGCUGUUUGAGAUUCUCAAAGGAGCGAGCAUGUCGUGG2000000006ACACACACAG2000000006ACUAUUUUUAGAUUUUCUUUUGCCUUUUGCAACCAGGAACAGCAAAUGCAAAA2000000006ACUCUUUGAGAGGGUAGGAGGGUGGGAAGGAAACAACCAUGUCAUUUCAGAAGUUAGUUUGUAUAUAUUAUUAUAAUCUUAUAAUUGUUCUCAGAAUCCCUUA2000000006ACAGUUGUAUUUAACAGAAAUUGUAUAUUGUAAUUUAAAAUAAUUAUAUAACUGUAUUUGAAAUAAGAAUUCAGACAUCUGAGGUUUUAUUUCAUUUUUCAAUAGCACAUAUGGAAUUUUGCAAAGAUUUAAUCUGCCAAGGGCCGACUAAGAGAAGUUGUAAAGUAUGUAUUAUUUAC2000000006AUUUAAUAG2000000006ACUUACAGGGAUAAGGCCUGUGGGGGGUAAUCCCUGCUUUUUGUGUUUUUUUGUUUGUUUGUUUGUUUGUUUUUGGGGGGUUUUCUUGCCUUGGUUGUCUGGCAAGGACUUUGUACAUUUGGGAGUUUUUAUGAGAAACUUAAAUGUUAUUAUCUGGGCUUAUAUCUGGCCUCUGCUUUCUCCU2000000009UUAAUUGUAAAGUAAAAGCUAUAAAGC
2203   unknown  unknown    Homo sapiens    AGAACAUAAAAACCUAAAAUUUAGUAACAAGGGGAAAAUAAAGCAUGAUUUGGAGAUAUGUUUCAAAUUUUUAAAAAAUGACCAUAAAGAUCAACAGUACAACUUAAUACUGUUUGCUAUAUGUACAUGGAUGCCCUUUAAUAAGAGGCAUUGAAUAUUUCUUAACCUGUAAAAAUAACUGUUGACCAUGCUAAUGUAUAUAUACUUGUGCAUCUUAGGACAUUAAGUGGUUUGCUGCUUUGAUGGAAAUUAUGGUUCAGUGGGUUGGAUACAAGAGAGAUGACUGUUCACAGAAUAACCUGUGAACUUUCACCCCUCUGUAUGGAAACUUGUUUCAGGGCCAAAUCCUUGUAGCUGUCUUCUUGCCCCGGUCAGUGCCAGCCGUACUAUUCACAACACUGCUGCUACCGAGGCCUAGGAUCAGUUCUUAAGAGCAGCCCCGGUA2000000006ACUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCA2000000009UCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAA2000000006ACA2000000009UCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCU2000000009UUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGG2000000006ACCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCU2000000009UUAAUGUUGUAAAUAUUUGGCAAUUUAAG2000000006ACAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUA2000000006ACA2000000009UCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUA2000000006ACACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGACAGAUAAUGGGCCAGUGUUAUUGAGGUGAUCAAGAUCUGUUCCACAGGGCUAAUGCCACCAUCUCCCCUCAAAAUUUUGUAGAGGUUCUAAAAAGAAAGUGGUAUGUUGUGUGAUGAUCAGCACUAAGUCCUGCAUUCCUGUUAAAGCCACUUGGGUCA2000000009UAAGAAGGGAGUAAAAAAUGAAGUCUGACUAGAAUUCUAUUGCAGAGGCCAGUACAUUUAGUAUGGCAUUGAGUUGUGAUAUAGUUUUACUUUGAUGUGCAUUUUGAAUUUCAGCUACACCUAGAUAGACGUAAAAUGAUAAUUAAAAUGCUGUAACCAACUUAUCUAAUAAAAUUGGCAACCAGCCACUAUUUUGUUGACUAUGAGAAAGUUAAAAGUUUAUGUUAAUUUUUAGGGUCUGAUAGAAUAUUUCAUGUGUAUUACAGUGGUAUUCAUAUGCUAUGUCUCUAAACU2000000009UUAUUUUCAAAAGCUUAAGGCCCAAAUACAAACUUCUCUGGAAUAAA
2204   mRNA  unknown    Homo sapiens    AGAACUUAGUCUGCGCGGCGGCAUUGACACUAGCUGGGCUCCUCGGGGCGCGCCCCAGGUGGUCCGAAGCCCGGUCCGCCCUCCACGCAGGUGCCCCGCGCUCCCCGCUCAGCCAUGUCGUCCUGCAGCCGCGUGGCGCUGGUGACCGGGGCCAACAGGGGCAUCGGCUUGGCCAUCGCGCGCGAACUGUGCCGACAGUUCUCUGGGGAUGUGGUGCUCACCGCGCGGGACGUGGCGCGGGGCCAGGCGGCCGUGCAGCAGCUGCAGGCGGAGGGCCUGAGCCCGCGCUUCCACCAACUGGACAUCGACGACUUGCAGAGCAUCCGCGCCCUGCGCGACUUCCUGCGCAAGGAGUACGGGGGGCUCAACGUACUGGUCAACAACGCGGCCGUCGCCUUCAAGAGUGAUGAUCCAAUGCCCUUUGACAUUAAAGCUGAGAUGACACUGAAGACAAAUUUUUUUGCCACUAGAAACAUGUGCAACGAGUUACUGCCGAUAAUGAAACCUCAUGGGAGAGUGGUGAAUAUCAGUAGUUUGCAGUGUUUAAGGGCUUUUGAAAACUGCAGUGAAGAUCUGCAGGAAAGGUUCCACAGUGAGACACUCACAGAAGGAG2000000006ACCUGGUGGAUCUCAUGAAAAAGUUUGUGGAGGACACAAAAAAUGAGGUGCAUGAGAGGGAAGGCUGGCCCAACUCACCUUAUGGGGUGUCCAAGUUGGGGGUCACGGUCUUAUCGAGGAUCCUGGCCAGGCGUCUGGAUGAGAAGAGGAAAGCUGACAGGAUUCUGGUGAAUGCGUGCUGCCCAGGACCAGUGAAGACAGACAUGGAUGGGAAAGACAGCAUCAGG2000000006ACUGUGGAGGAGGGGGCUGAGACCCCUGUCUACUUGGCCCUCUUGCCUCCAGAUGCCACUGAGCCACAAGGCCAGUUGGUCCAUGACAAAGUUGUGCAAAACUGGUAAACGUCUGCUUCGGAGCUUGCUGCUUAAUAAAUGUUGGUGGAAUGAAUGAA
2205   mRNA  unknown    Homo sapiens    AGAAGAGGCGGCGCGUGCGUAGAGGGGCGGUGAGAGCUAAGAGGGGCAGCGCGUGUGCAGAGGGGCGGUGUGACUUAGGACGGGGCGAUGGCGGCUGAGAGGAGCUGCGCGUGCGCGAACAUGUAACUGGUGGGAUCUGCGGCGGCUCCCAGAUGAUGGUCGUCCUCCUGGGCGCGACGACCCUAGUGCUCGUCGCCGUGGCGCCAUGGGUGUUGUCCGCAGCCGCAGGUGGAAAAAAUCUAAAAUCUCCUCAAAAAGUAGAGGUCGACAUCAUAGAUGACAACUUUAUCCUGAGGUGGAACAGGAGCGAUGAGUCUGUCGGGAAUGUGACUUUUUCAUUCGAUUAUCAAAAAACUGGGAUGGAUAAUUGGAUAAAAUUGUCUGGGUGUCAGAAUAUUACUAGUACCAAAUGCAACUUUUCUUCACUCAAGCUGAAUGUUUAUGAAGAAAUUAAAUUGCGUAUAAGAGCAGAAAAAGAAAACACUUCUUCAUGGUAUGAGGUUGACUCAUUUACACCAUUUCGCAAAGGAAAGGAUUGAAAAUAUUUAUUCCAGACAUAAAAUUUAUAAACUCUCACCAGAGACUACUUAUUGUCUAAAAGUUAAAGCAGCACUACUUACGUCAUGGAAAAUUGGUGUCUAUAGUCCAGUACAUUGUAUAAAGACCACAGUUGAAAAUGAACUACCUCCACCAGAAAAUAUAGAAGUCAGUGUCCAAAAUCAGAACUAUGUUCUUAAAUGGGAUUAUACAUAUGCAAACAUGACCUUUCAAGUUCAGUGGCUCCACGCCUUUUUAAAAAGGAAUCCUGGAAACCAUUUGUAUAAAUGGAAACAAAUACCUGACUGUGAAAAUGUCAAAACUACCCAGUGUGUCUUUCCUCAAAACGUUUUCCAAAAAGGAAUUUACCUUCUCCGCGUACAAGCAUCUGAUGGAAAUAACACAUCUUUUUGGUCUGAAGAGAUAAAGUUUGAUACUGAAAUACAAGCUUUCCUACUUCCUCCAGUCUUUAACAUUAGAUCCCUUAGUGAUUCAUUCCAUAUCUAUAUCGGUGCUCCAAAACAGUCUGGAAACACGCCUGUGAUCCAGGAUUAUCCACUGAUUUAUGAAAUUAUUUUUUGGGAAAACACUUCAAAUGCUGAGAGAAAAAUUAUCGAGAAAAAAACUGAUGUUACAGUUCCUAAUUUGAAACCACUGACUGUAUAUUGUGUGAAAGCCAGAGCACACACCAUGGAUGAAAAGCUGAAUAAAAGCAGUGUUUUUAGUGACGCUGUAUGUGAGAAAACAAAACCAGGAAAUACCUCUAAAAUUUGGCUUAUAGUUGGAAUUUGUAUUGCAUUAUUUGCUCUCCCGUUUGUCAUUUAUGCUGCGAAAGUCUUCUUGAGAUGCAUCAAUUAUGUCUUCUUUCCAUCACUUAAACCUUCUUCCAGUAUAGAUGAGUAUUUCUCUGAACAGCCAUUGAAGAAUCUUCUGCUUUCAACUUCUGAGGAACAAAUCGAAAAAUGUUUCAUAAUUGAAAAUAUAAGCACAAUUGCUACAGUAGAAGAAACUAAUCAAACUGAUGAAGAUCAUAAAAAAUACAGUUCCCAAACUAGCCAAGAUUCAGGAAAUUAUUCUAAUGAAGAUGAAAGCGAAAGUAAAACAAGUGAAGAACUACAGCAGG2000000006ACUUUGUAUGACCAGAAAUGA2000000006ACUGUGUCAAGUAUAAGGUUUUUCAGCAGGAGUUACACUGGGAGCCUGAGGUCCUCACCUUCCUCUCAGUAACUACAGAGAGG2000000006ACGUUUCCCUGUUUAGGGAAAGAAAAAACAUCUUCAGAUCAUAGGUCCUAAAAAUACGGGCAAGCUCUUAACUAUUUAAAAAUGAAAUUACAGGCCCGGGCACGGUGGCUCACACCUGUAAUCCCAGC2000000006ACUUUGGGAGGCUGAGGCAGGCAGAUCAUGAGGUCAAGAGAUCGAG2000000006ACCAGCCUGGCCAACGUGGUGAAACCCCAUCUCUACUAAAAAUACAAAAAUUAGCCGGGUGUGGUGGCGCGCGCCUGUUGUCUUAGCUACUCAGGAGGCUGAGGCAGGAGAAUCGCUUGAAAACAGGAGGUGGAGGUUGCAGUGAGCCGAGAUCACGCCACUGCACUCCAGCCUGGUGACAGCGUGAG2000000006ACUCU2000000009UUAAAAAAAGAAAUUAAAAGAGUUGAGACAAACGUUUCCUACAUUCUUUUCCAUGUGUAAAAUCAUGAAAAAGCCUGUCACCGG2000000006ACUUGCAUUGGAUGAGAUGAGUCAGACCAAAACAGUGGCCACCCGUCUUCCUCCUGUGAGCCUAAGUGCAGCCGUGCUAGCUGCGCACCGUGGCUAAGGAUGACGUCUGUGUUCCUGUCCAUCACUGAUGCUGCUGGCUACUGCAUGUGCCACACCUGUCUGUUCGCCAUUCCUAACAUUCUGUUUCAUUCUUCCUCGGGAGAUAUUUCAAACAUUUGGUCUUUUCUUUUAACACUGAGGGUAGGCCCUUAGGAAAUUUAUUUAGGAAAGUCUGAACACGUUAUCACUUGGUUUUCUGGAAAGUAGCUUACCCUAGAAAACAGCUGCAAAUGCCAGAAAGAUGAUCCCUAAAAAUGUUGAGGG2000000006ACUUCUGUUCAUUCAUCCCGAGAACAUUGGCUUCCACAUCACAGUAUCUACCCUUACAUGGUUUAGGAUUAAAGCCAGGCAAUCUUUUACUAUGCAUUAAGACCUCUGAUUCAAAACUUAUUAGAACAGUAGCUUCUGCUGGAAUUUGCAAUCACUGAAGUCAUAGAAAAUAGGUAACUAUCUAAUUAGAGAAAUAAUUGUUGUAUUUUAAGAUCUGAGAGUGUGUACAAGUUUUAGUAUACAUGCCAUGCCAGAAGAUAGUGUAUGCAAGAAGUCUUGGGACCAGAAAAUGGCAAUGAUAGGAGACUGACAUAGAAGAAGAAUGCUUCCCUAGGAAAAAGGUCGCUGGCUUUGGUGCAAGAGGAAGAAGAAUGUUCCACUGGAAGCCUGAGCACCUAAUCAGCUCUCAGUGAUCAACCCACUCUUGUUAUGGGUGGUCUCUGUCACUUUGAAUGCCAGGCUGGCUUCUCGUCUAGCAGUAUUCAGAUACCCCUUCUGCUCAGCCUGCUUGGCGUUAAAAUACAAAUCAUUGA2000000006ACUGAGGGGGAAAAAUGUAACUAGGAAGAAAAACCCAAUUUAAGAAAUUACAUAAUGCUUUCCAAAGGCACCUACAACUUAGUUUUAAAUUACUUGCUACUGGGGAUUACCCAUGGAUAUCCUUAAUAGGCAGGAAGUCUGGGAAUUCUGGUGGCCUCUAGGGCAGUGUUCUCACAGCACCGUUCCGACAGGGACCAGUGAAAGAAAAGAGACAAAGUUAGAACGUGCUGGGGAGCGGCCAUUUCUAAGGCCAGUCUGGUUUAAGUAGUCAUUUCUGCUGAAAAAACAGAUGAUCCUGGUGGAAGAAAAGGUUGAAGGCAGCUGCCCUCGGGAGGGCUGUGAUGCUCGGCACAUCCUGCCUGGCACAUACACGUGUCUGCAGGCCACACCGUGCAUGUCCCCAGACCUGCCGCCUGGCUUCUGGAGUGCUUCAAGCAGAGCAUGGUGGGUCAUUGAGGAGACCCAGGAAUCUCAUCUGAGAACCCACUCUCUGCCGGAGAACCCCAUGGUGACACAUUUUCAUCUUUCUGACCAGAGGCUGUUUUUUUUUUUUUUUGAGACAGUCUCAUUCUGUUGCCCAGGCUGGAGUGCAGUGGCUUGAUCUCGGCUCACUGCAACCUCGCCUCCCGGGUUCAAGCAAUUCUCUGCCGCAGCCUCCAGAGUAGCUGGGAUA2000000006ACAGGUGCCCACCACCACACCCCACUAAUUUUUGUAUUUGUAUUUUUAGUAGAGAUGGGGUUUCACCAUGUUGGUCAGGCUGGUCUUGGACUCCUGACCUCAUGCUCCACCCGCUUCGGCCUCCCAAAGUUCUGGGAUUACAGGUGUGAGCCACCGUGCACGGCCGGCCUGACCUUUGGAAAAGCCUUGUCACUUUGG2000000006ACGUUUGCGUCUUUGAAGAGGCGAUGGGAGCAUAUCAUG2000000006ACUGCCUGCCACCAUUGCUUUUCAGACUACCACAACUCAAUCAUGCUGUCCAGG2000000006ACUUCUGGCCCUGUGUUCACCACUGGGAAAACGUACUUCAG2000000006ACUGGAUAGCCUAAAAAGGAGCAAUGCCCUUGUAGGAUGUGGAGAAGGGAAAAUACGG2000000006ACAUUAACAUUAAAAG2000000006ACACCAGUGAAAUUGUUAGGUCUCUAGGAAGUUGGAGCACAAGGCUUCACGCUUUAAGACCAUCUGUGGUUUUCAGUGAACAAGCGCUGAGCACCAGCAGCAGAAAACAACAACAAAAAAACACCUCGUUUUUACCUUGUCUUCUAGACAUGAAAAGGCAGUUGCAUUCCACUCUGCAUUAUGUUCUACAUGUUGCUUUAUCAGUAUAUGCUUAGCUGUAAGUGACAAGUAUUUUUUCUGAACAGAAGUUUACUUAGAAAUACCAUGCACUUGGGGGUACCAAUUAACCGCCUGAAAAUUAGCAUAUUGAUAGUUCUUAGAGAGACCAGAUAUAAUCUAAGAAUUUAUAUGAAAGAUUUGUAUCAUUAGAGCCAGAAAUAAUUUUAUAUUAAUAUAUAAUACAGAUUAACAUUAUAUAUAAUAUGUACCUGUGUCACUUCUGACAUGAGCCUGUAAACAUAUAUUCAUAUAUGUACCUGCACAUGUACCCACCUGAUGUAGGUCUUAUUCCUUUAGUAUGGACUUAAAGUACUUAUUCAUAUACCUUGUAACUAAAAAUUAGAACAGCUCCCUAGAAUUGUGAACUUUUAAGAGUCUGACUAGAAAUUUGCAACUUAUAAAAAAGUUACUUUUAAAAAUAUAAGUUAGGGCUAGGCACAGUGGCUCAUGCCUAUAAUCUCAGCACUUUUGGGAGGCCAAGACAGGAGGAUCACUUCAGGCCAGGAGUUCAAGAUCAACCAACCUGGGUAACAUGGCCAGACCCCAUCUCUAUUUAUAUAUAUAUAUAUAAAACUUAGAGUUUUUAUCUUCCCCUAAAAGAGGCCGUGAUAUUUGCAGCAGCCUCAAAUUGCUCUUAAGGGGUUUAGGUGUGCAGAAGCUUUCCUUUCCCUACCCAGUAACCAUGUGACUACUAACGUGGUAUAUUGAUUUAUUUUGUUUGCUGUCUGUCUCCCCUGCCCCACUGCUGGAACAGAGGCUCCAAGAAAACAGGGACCUUAUUAUUCAUUACUGCAUCCCCAGUAAUGAAAGUACUUAGAAAAUAAUUAUUGAAUGAAUGAAAUCUAAACUGUGAACCUGAGGGUGUUUGUGGCAGUGUUUGUUUUACUGAAUUGUAGAAGG2000000006ACAUAACCGUGUUUUCAGUGUUUCUAUGGAACAAACUUGUACAUUUUAUUUCACUUGUGUUUUGUCUUAAACCCUACUGCUGGAAACAAUUUUAUGUAAUAAGCAAUGGGCCCAAAAGUCUAGGAGUUUUUUUGUACUUAGUGAAUUUGUAUGCAACAGAGAUGCUGCAGCUGAUGCCUUUAAAAGGUAUUCAUCAUGGAAGAGCUGAGGCCUGUGCUUGGUGUUCCAGAGCCCAGGGUUGAGCAUCCUGAAGGAGCCACUGCAGCCGUCACUGUCCCCAGAGCCUGUGGAGAUAGAGCCUGUUUGCUGCUUUUUCUUCCCGCUCUUAAG2000000006ACAUGGCUGGAGCUCAGUCUUCAUUGAAUGAAGUUUGCUGUGGUAUUGCAUAGCCUUGCUUUCUUGAACUAAACUGUUUGCCCUUCACAAGUAGUUCUUCUUUCAGGAUUAGUUCGUUCCAAGGAGGCUCUUCAGUCUCACAGAUAAGUAGAUCUCUCCUGCUGUCUGGACACAUUUCACUCGGAAAUUGAAUACAAUUUGUAUUCAGGCUGGGAACCUGAACACACACUUGUGUUUUUAAGCUUCCCUUUUUUACAGUGGACAAGGACACAAAUAA
2206   unknown  unknown    Homo sapiens    AGAAGAUGGCUGCCCCAGCAGUGUCCGGGCUCUCCCGGCAGGUGAGAGAAAGGUGGUCCUGAGAGCCAGUGGGAGGAUCCCUCCUGGGAUGACCGGUACCAAACCUCGAGCACCAGGGUGCGAUGCUUCGGCUGGGGAAGUCUGGCAGUCUUCAAGGUUAUGGGACCUGGCGAGUGGGAGCGACUCAGGACGACCCAGCGUUUGUCCCCCGGGAUGCCUACGGGGCAGUAGGCGCGGGGCUGCGCGUGCCGUAACCUUGGCGUCUUCCGAGCACAGCCCCUGGAAGCUGCUAGCCUGAGGGGCGCAGGAGAGGGGGUCUGCCCUUCGCUGAAUUCCGGGGAAGGGGCAUGG2000000006ACUAGCCCCCAAAUCAGCUUCCUUUGCCAUUGUGGUAAAACCUGUCAGAGAUCACUUACUAGUAAUGCUAAGGAAUAUUUGUAAAACACAUUUCACAGUUUUAUAAAUAAAAUGAGGCCGAAAAGUUUAAAUGAGUCUUUGGCUGCUCAGUCAGUAAGUGGUAGAAUUGAGAUUUGAACCCACGGAAUCACCCAGAAGAUCGAGUUUGAAAAAAUGUUAUGCUGUUUGUGCUGCAUCUCACCAUGGUGCUUUACAUAUCAUGACCCCUUCCUGGCAUCUUAGGUAAUUUUUUCAUAAGCAUUAAAAAGUCUUAAUCCUCACAAGCAGUUUUGAUAAAACACGUUCCAUAGCUGGAGUAUUUGAAGGUGACCUGUGAUCUGUGACCUGUGCGCUUGCAGGUGAUUUUUAAACUGUGUAUUCCAGCUCUGUCUUUUGAUGGGCAGGAUAGUGUCUCUCAGAACUAAGGCUUCUUGUCAGAUCAAACUCUGCGGCAGUACUCAAAAAAUUCAUCUUUAUUUUCAGAUAGCAUUUGCAUUCCGAGGAGGGUACGUCUGUUGCAAAUGAUCUGCUCAAGGGUCUGUUAAUAGAAACGCCAAAAUUUUGGUUAAAUAUUUUUGAAACAUGCACUCCUUGGAAGUUAGUGUUUUUCUGUCUUACGGGUAUGCUAGCCUCGGUCCAUUCCUAGCAAACUAGGAGGUUCGUGGGAAGGUGAUUUCCCAAGCAACUUGGCAUAAUCCUCAUUGGGUAAGUUUACCCCUUAGUAAUAGUAAGUAGCUCACCCUCAUGUAAUAUGUGAAUAUACAAAGAGACAAAAGUAAUGAUUUUAAGGUUAUUUAAAAUUUUUUGUUGUUAUUGAGUUAAAUGCAGAAAUCCUUCAAGUAAUUUUGUUUGAUCUAUUUUCCUUUAUUGCUUUGAAGGUGCGAUGCUUCAGUACCUCUGUGGUCAGACCAUUUGCCAAGCUUGUGAGGCCUCCUGUUCAGGUAUACGGUAUUGAAGGUCGCUAUGCCACAGCUCU2000000009UUAUUCUGCUGCAUCAAAACAGAAUAAGCUGGAGCAAGUAGAAAAGGAGUUGUUGAGAGUAGCACAAAUCCUGAAGGAACCCAAAGUGGCUGCUUCUGUUUUGAAUCCCUAUGUGAAGCGUUCCAUUAAAGUGAAAAGCCUAAAUGACAUCACAGCAAAAGAGAGGUUCUCUCCCCUCACUACCAAUCUGAUCAAUUUGCUUGCUGAAAAUGGUCGAUUAAGCAAUACCCAAGGAGUCGUUUCUGCCUUUUCUACCAUGAUGAGUGUCCAUCGCGGAGAGGUACCUUGCACAGUGACCUCUGCAUCUGUAAGUAACGGGUUGUUGCUGCUGUGUUUGCCUUGAUAUUACAUGUGUCACCUUUUGCAGGAAGAAAAGGGAAAAACAGGGUAAAAUCAAGAAAUUGGGAAAGGUAACUUGUCACCUGGGAUGUUUGUUUCAUUUUUAUAUCAGCUUCUGUGACCCUUUGCUUUGGAAAAGCCAGCGUGUAUCUUAUUAGUGCUUCUGUAACCAGUGAUUAUUCAUAAGGCCUGGGUUAAAUGUAAAGUACAUCAAAAUGUGUUGGAAAAGAGUGGUUUAGACUCUAUUAUAUGUUUGAAUUAUUUUAUGAAUACCACUUGAAGUAGUUUCCUGAAACUAGAAUUCUAGAGUUUAUUUUUUUGAGACAGAGUCUCACUUUGUCACCCAGGCUAGAGUGCAGUGACACAGUCACACCUCUGUAGCCUCAACCUCCUGGGCUCAGGUGAUCCUCCUGCCUCAGCUUCCUGAGUAGCUGGGAUUACAGUGCACCCCCACCACACCCGGCUAAUUUUUGUGUGUUUUUUAUAGUGAUGGAGGUUUUACUGUGUUCUCCAGGCUUGUCUCGAACUUCUGGGCUCAAGUGACCCACCUGCCUUGGCCUCCUAAAGUGCUGGGAAUAAAGGUGUAAGCUACCACACCUGGCCUGAAACUAGAGUUACUAACCUUUCAUCUUUGGUGGUGGUGAGUGGGAAGGAGUAGAGCCGUUGGGCCUUUGUAUCUUUUUGACUUGAUAGUGGGCUAUAAUUGGCUACCGUUUAUUGAACCCUACUAUAUGCUGGGUGCUUUAUUAUGUUAUUCAGUAUCAAAAGAUUCAUGUGAGAUAGAAGUAUAAUUAACCUCAUUUUACAGAUGAGGAAACCGAAUGCAGGGAGAUGAAGUCGCUUGCCCAAAGUCAUACGAGCCU2000000009UUAGAAGAAGCCACACUCUCUGAAUUAAAAACUGUCCUCAAGAGCUUCCUAAGUCAAGGCCAAGUAUUGAAAUUGGAGGCUAAGACUGAUCCGUCAAUCUUGGGUGGAAUGAUUGUGCGCAUUGGCGAGAAAUAUGUUGACAUGUCUGUCAAGACCAAGAUUCAGAAGCUGGGCAGGGCUAUGCGGGAGAUUGUCUAAAAGUGUUGGUUUUCUGCCAUCAGUGAAAAUUCUUAAACUUGGAGCAACAAUAAAAAGCUUCCAGAACAGAUCA
2207   mRNA  unknown    Homo sapiens    AGAAGCCGGAAGUUGUGUCCCGGACGUGUCAACCGGGGUCUGAGUGCUCAGAGUACAGCUGCAACCGCGACCAUGGGCGGGAAGAACAAGCAGCGAACUAAAGGGAACCUGAGGCCUUCAAACAGUGGCCGAGCUGCAGAACUCCUUGCCAAAGAACAGGGAACAGUGCCUGGAUUUAUUGGUUUUGGAACAUCUCAGAGUGACCUAGGCUAUGUUCCUGCUAUUCAAGGAGCUGAAGAAAUUGACAGUCUUGUAGAUUCUGAUUUCCGAAUGGUGCUGCGGAAACUUUCAAAGAAAGAUGUCACCACAAAAUUAAAAGCUAUGCAGGAAUUUGGAACCAUGUGUACAGAGAGAGACACAGAAACUGUGAAAGGAGUUCUUCCAUAUUGGCCAAGAAUUUUUUGCAAAAUUUCACUUGAUCAUGACCGUCGCGUCCGAGAAGCCACACAACAAGCUUUUGAAAAACUUAUCCUUAAAGUAAAGAAACAGUUGGCUCCCUACUUAAAAAGUUUAAUGGGAUAUUGGCUAAUGGCUCAGUGUGAUACUUACACACCAGCUGCGUUUGCAGCAAAAGAUGCAUUUGAAGCGGCUUUUCCUCCAAGCAAGCAACCUGAAGCCAUAGCAUUUUGUAAGGAUGAAAUUACAAGUGUGCUGCAGGAUCAUCUUAUAAAAGAAACACCUGAUACACUCAGUGACCCGCAAACUGUUCCAGAGGAAGAAAGAGAAGCUAAAUUCUACCGGGUUGUAACUUGUUCCUUAUUGGCAUUAAAGAGAUUACUUUGCCUUUUACCUGAUAAUGAGCUUGAUUCUCUGGAGGAGAAAUUUAAGUCUCUUUUAUCACAGAAUAAGUUUUGGAAGUAUGGAAAACACAGUGUACCUCAGAUUCGCUCAGCUUAUUUUGAGUUAGUCUCUGCAUUGUGCCAGCGCAUUCCACAGUUGAUGAAAGAGGAAGCAUCCAAAGUGAGCCCAUCAGUUCUACUUAGCAUUGAUGACAGUGACCCAAUUGUCUGCCCAGCUCUCUGGGAAGCUGUACUCUAUACACUUACAACUAUUGAGGACUGUUGGCUUCAUGUAAAUGCAAAAAAGAGUGUGUUUCCCAAGCUAUCAACUGUGAUUCGUGAAGGUGGUCGGGGUCUAGCUACUGUCAUAUAUCCUUACCUUCUGCCAUUCAUCAGCAAGCUCCCUCAGUCCAUCACAAAUCCAAAGUUGGAUUUCUUCAAAAAUUUCCUCACGUCUCUAGUUGCUGGGCUGUCAACAGAGAGAACUAAAACCAGCUCUUUAGAGUCCUCGGCAGUAAUAUCUGCUUUUUUUGAAUGCUUACGUUUUAUAAUGCAGCAAAACUUAGGUGAGGAAGAGAUUGAACAGAUGCUCGUCAAUGAUCAGUUGAUCCCUUUUAUUGAUGCAGUUCUCAAAGACCCAGGAUUGCAACAUGGGCAGCUAUUUAACCAUUUAGCAGAAACUCUAAGUUCCUGGGAAGCCAAAGCAGACACGGAAAAAGAUGAAAAAACAGCUCACAACUUGGAGAACGU2000000006ACUGAUACAUUUCUGGGAAAG2000000006ACUGUCAGAGAUCUGUGUUGCGAAAAUCAGUGAGCCAGAAGCUGAUGUUGAGUCCGUUUUGGGUGUAUCUAACCUAUUACAGGUGCUUCAGAAGCCGAAGAGCUCAUUGAAGUCAAGUAAAAAAAAAAAUGGUAAGGUUAGAUUUGCUGAUGAGAUACUUGAAAGCAAUAAAGAGAAUGAAAAAUGUGUAUCUUCAGAAGGAGAGAAGAUUGAAGGCUGGGAAUUAACAACUGAACCUUCUCUCACUCAUAAUUCUUCAGGCCUUUUGUCUCCUCUAAGGAAAAAACCUUUGGAAG2000000006ACUUAGUCUGUAAACUCGCAGAUAUAAGUAUUAAUUAUGUCAAUGAACGAAAGUCAGAGCAACAUCUAAGGUUUCUUUCUACUCUGCUUGACUCCUUUUCUUCAAGCCGAGUAUUUAAAAUGCUACUUGGUGAUGAAAAACAGAGUAUUGUCCAAGCCAAACCUCUUGAAAUAGCCAAGCUUGUACAAAAAAAUCCUGCGGUGCAGUUUUUAUACCAGAA2000000006ACUGAUAGGUUGGCUAAAUGAAGAUCAAAGGAAGGAUUUUGGUUUCCUGGUGG2000000006ACAUUUUGUACAGUGCUCUCCGGUGCUGUGACAAUGAUAUGGAAAGAAAAAAAGUCUUGGAUGAUCUAACCAAGGUGGACUUGAAAUGGAAUUCUCUUCUUAAGAUUAUUGAAAAGGCAUGUCCUAGUUCAGAUAAACAUGCUUUAGUAACUCCUUGGCUCAAAGGCGAUAUCCUUGGUGAGAAAUUGGUCAACUUGGCAGAUUGUCUUUGUAAUGAGGACUUGGAAUCCAGGGUAUCUUCAGAAUCUCACUUCUCAGAAAGAUGGACUCUUCUAAGCUUGGUAUUAUCCCAACAUGUUAAAAAUGAUUACUUGAUUGGAGACGUAUAUGUUGAAAGAAUCAUUGUUAGACUUCAUGAAACUUUAUUCAAAACAAAGAAAUUAUCAGAAGCUGAAAGCAGUGACUCAUCAGUGUCUUUUAUCUGUGAUGUGGCCUAUAACUAUUUCAGCUCAGCGAAAGGAUGCUUGCUAAUGCCAUCAUCUGAAGAUUUAUUAUUAACUCUCUUUCAGUUAUGUGCUCAGAGCAAAGAAAAAACACAUUUGCCAGAUUUUCUUAUCUGUAAACUGAAAAAUACUUGGCUCUCUGGUGUAAAUUUAUUGGUUCAUCAAACUGACAGUUCAUAUAAAGAGAGUACCUUCCUACAUUUGUCUGCUCUGUGGCUGAAGAACCAAGUUCAGGCUUCAUCUUUGGAUAUCAACAGUCUCCAAGUCCUCUUGUCUGCUGUUGAUGAUUUGCUAAAUACACUUCUAGAGAGUGAAGAUUCUUAUCUUAUGGGAGUUUAUAUUGGAAGUGUAAUGCCGAACGACAGUGAAUGGGAAAAGAUGAGGCAGUCUCUUCCUAUGCAGUGGUUACAUAGACCUCUUUUAGAGGGAAGAUUGAGUUUGAAUUAUGAAUGUUUCAAAACAGAUUUUAAGGAACAGGACAUAAAGACACUUCCCAGCCAUUUGUGUACUUCAGCAUUAUUGAGCAAAAUGGUCUUAAUUGCACUGAGAAAGGAAACAGUCUUAGAAAAUAAUGAGCUUGAGAAAAUAAUUGCAGAACUGCUUUAUUCACUGCAGUGGUGUGAAGAAUUAGAUAACCCACCUAUUUUUCUAAUUGGAUUUUGUGAAAUACUUCAAAAAAUGAAUAUUACGUAUGAUAACUUACGUGUACUUGGUAAUACGUCGGGCCUUUUGCAGCUGUUAUUUAACAGGUCCAGAGAACAUGGCACACUGUGGUCUCUUAUUAUUGCUAAGUUGAUCCUUUCCCGAAGCAUUUCAUCUGAUGAAGUAAAACCACAUUAUAAGAGAAAAGAAAGUUUUUUUCCACUAACUGAAGGCAAUUUGCAUACCAUUCAAAGUCUAUGUCCAUUUUUGUCAAAAGAAGAAAAGAAAGAAUUUAGUGCUCAAUGUAUACCUGCUCUUUUGGGCUGGACUAAGAAAGAUCUUUGCAGCACUAAUGGAGGUUUUGGACAUCUUGCCAUUUUCAAUUCUUGUCUGCAAACCAAAAGUAUAGAUGAUGGAGAGCUAUUACAUGGAAUAUUAAAAAUCAUAAUAUCCUGGAAGAAAGAGCAUGAAGAUAUUUUUCUUUUCAGUUGUAAUCUAUCAGAAGCAAGUCCAGAGGUACUGGGUGUAAAUAUAGAAAUAAUCCGGUUUCUUUCCCUAUUUCUGAAAUACUGCUCAUCCCCUUUGGCAGAGAGUGAGUGGGACUUCAUCAUGUGCUCCAUGUUGGCUUGGUUGGAGACAACAAGUGAGAAUCAGGCAUUGUAUUCUAUUCCACUUGUGCAACUGUUUGCCUGUGUCAGCUGUGAUUUGGCCUGUGACCUCAGUGCUUUCUUUGAUUCCACAACUCUGGAUACCAUUGGCAAUCUUCCUGUAAAUCUAAUCAGUGAAUGGAAAGAAUUUUUUUCCCAAGGCAUCCACAGUUUGCUUUUACCUAUUUUGGUGACUGUUACAGGAGAAAACAAAGAUGUGUCUGAAACAUCCUUUCAGAAUGCAAUGCUGAAACCCAUGUGUGAAACAUUAACGUAUAUCUCAAAGGAACAGCUAUUGAGUCACAAACUUCCUGCAAGAUUAGUUGCUGACCAAAAAACAAACUUACCAGAAUAUCUCCAGACUUUGUUAAAUACAUUGGCCCCAUUACUCCUCUUCAGAGCUAGGCCUGUGCAAAUUGCUGUUUAUCAUAUGCUAUACAAAUUGAUGCCUGAAUUACCACAGUAUGAUCAGGAUAAUCUAAAGUCAUACGGAGAUGAAGAAGAAGAGCCAGCCUUGUCACCACCAGCAGCACUGAUGUCUCUUCUUAGCAUUCAAGAGGACUUACUAGAAAAUGUUUUGGGGUGUAUUCCUGUUGGACAGAUAGUUACUAUUAAACCACUGAGUGAAGACUUCUGUUAUGUUCUGGGAUACCUUCUCACUUGGAAAUUAAUACUAACUUUCUUCAAAGCUGCAUCAUCACAGCUUCGGGCUUUGUAUUCCAUGUAUCUUCGGAAAACAAAGAGUUUGAAUAAAUUGCUCUAUCACCUGUUCAGGCUUAUGCCAGAAAAUCCAACCUAUGCAGAGACAGCAGUUGAGGUCCCAAAUAAGGACCCUAAAACAUUCUUUACUGAGGAGCUCCAGCUGAGUAUUAGAGAAACAACAAUGCUUCCAUACCACAUUCCACACUUGGCUUGUUCAGUCUAUCAUAUGACAUUAAAAGACUUGCCUGCCAUGGUUAGGUUGUGGUGGAAUAGCAGUGAGAAGCGUGUUUUCAAUAUUGUGGAUAGAUUUACAAGCAAGUAUGUCAGCAGUGUUCUUUCUUUUCAAGAAAUAUCUUCUGUACAAACAAGUACACAACUAUUUAAUGGCAUGACGGUUAAAGCUCGAGCUACUACUCGAGAGGUAAUGGCUACUUAUACUAUUGAGGACAUAGUUAUUGAACUUAUAAUACAACUGCCUUCAAAUUAUCCACUGGGUUCAAUAAUAGUAGAAAGUGGGAAAAGAGUAGGAGUAGCUGUUCAGCAGUGGCGGAACUGGAUGCUGCAGUUAAGCACUUACCUCACCCAUCAGAAUGGAAGUAUUAUGGAAGGCUUAGCUUUAUGGAAAAAUAACGUAGACAAACGUUUUGAGGGUGUUGAAGAUUGCAUGAUCUGUUUCUCAGUCAUUCACGGUUUCAACUAUUCCCUUCCCAAAAAAGCCUGUAGAACAUGCAAGAAAAAAUUCCAUUCAGCCUGCUUGUACAAAUGGUUUACAUCUAGCAACAAAUCCACUUGUCCACUGUGUCGUGAGACGUUUUUCUGAGAUUUUUUUCACUGGAAGGGAUCCCUGAAGUACAUCAAACAAAGGCAUUGGAUUUGGAUCCGUCUGAAAGUGUGGAUGUGGGGAAGCCAGUGAGCAUUACUUUUAAAUAGGACCUUCUCUGGAAAAUUAUUUUGGUUAAUGUAAUAAUCCUAAAAUCAGGUUUACUUAACUUUAGAUUGCUUUGUAAAUGUUUGGAAACUUUCUUUUACAAAAGAAUAUUACAUAUUUGAGAGAAAAUAUUUCUAUUAAUGGUUUAAUUUCUUUGUAUAUUUAAAAAUAAAUAUGAAAAACCCCUAAAUUACAGAAUUGGAAUUUGUGAAAAGAUUGCACAACUAUAUUAUUGAUAAACCCAUUCCGUUUGUUGAUCUGUGUUUUAGAAUAGUCCAAGUGAAGCAAAACGAACUGAGAGAGCUGAUUUACAUCUAUAGAUAUUUUAAGCCUUAUUUAUUAGUUAUGACAAUAAAUUAGUAUUCUGAUAUUUGUAGAUUAUUUUAAUGAUAAAAAUGACACUAAGCUAUUAAUACGGCUUGUCUUAAGAUAUCUGGAGGCAUGCUCUGAAAUCCUAUAUAAAAGAGUUUAAACUGAACUUUAAGGUGCCUCCAUUUAUCAAGGGUUAUGAAACUCAGAAAAUUAAAUUCUUGAUGCUGACCUUUUUGCUUGUGGGAGAAUUAUUUCUAUAUAUUAGUGAAAUUUGAAUUGUAAACUUGUCAGUGAAUUUAUCACUCUGAGCGAGUCUCUAGAGGGUGAGAAUUUGAGAGAAAUAGUAAUUUGAUUAUUUCAUUCAUGAAGCGGAGUGGUAGUUAUCCUUCUAUUGAGAGGGAAGAAAUAAAUGAGUAUUACUGAAACUUAAAGAUCAGUGGAAAAAAAAAACAUUUAAAAAUGUUGUAGGAGACUUUCAAUUUUGGAAGCAAACUGAGCUAUUCUUACCAGCCAAAGUUAUACUAAAUAAGAGACUUGGGGGAGCAAAUGUUUUUCAGCCUUCAGAAAUGAAAGUUAAGGAUUUUAGCACUAGGUAAAAUUCAGUAUAAUAGGCUGAAGUGGAGUAAGUGAAAACCUGCCUUUUGCCACUCUUAAAAAUUGUGCCCAAAAUAUAAAAGUGUGGAACUUUAGAACUUGGAAUAAUUUUAUUGCAGUCUUCCAUUACAUGGAAAUAGCAUAUCUAAUAUCUAGGUUACUUGAGAGACCAGCUAAUCAUCUCUGUUGCACAUGUUUAAUUGGCAAAAAGCAAUUCAUGAUAAAUAAAAUUACUGCUUUCCAUCUACUGGGUAAAAUGACUAUUGAAAUAGUAUGAAUGUGGUCAGAGGAUUAUAGUUGAGAGUGAAGUACUAUGUGUGAGUUAUAGAUCUCUCGAAUUAUAUUUAUAGAUGCAGUGUCCUGCCCAGUUUUGUUUGCCUCCUACAUUUUACUGUAAAAUAUUUAUUGUCUUCUAGCCUUGAGCCUCUGAGGGUCAGUAAGUGAAGUACAGAUAGCAAAAUUUUACUACCUCGUUAACCCUUUUCUUAAAAUAUUCUCUAUCUUUCUAUGUCUCUUUCUGACAUAGUAAUCCCAAAGGAUUGUGUUACUCCCCGUGAAAGUUAUUACUUUUCCU2000000009UUAAAAAUGGUUUUAUAAUAAGACUGUUUAAAACCUUUCCAGUAUUGGUACAUCUUGGCUUCUGGCCCAAACCCCAAGCAGAAAAGAAAAUGGAAUAAUGGAGCAUUGUUUUUCCACAUUAGUAUUAGGGCAUCAGAUUCUUGGUGAAACACUAUAAUUAAGUAGUUAUAAUUAAAUAACUGUUCUUCAUACUUAGGACUCUUAAUACAUUUCU2000000009UUAAGACUUGUAAGUAUAAUUGUAAAGCUUGUUAACUGUUUAUAUACUAAAGAAAAAGCU2000000009UUACAAGAUAAGACUGAAAUUCAGAAUACCACAUCUGUACAGCGUUGACAACUCUAACUAAAAGGAUUACAGCCCUUAAAAUUUUAGCUUAAGGACAUUUUAAAAUUGCAUGAGAUUAGCAAAAUUAUUAAUUUAAAACCCCAAAGUAAAUUGCAAAUUUUAAAAUUUAUUUUUGACUCUUUUAUCACAUGCUCCAAUGUAUGUACAUAAGUGUCUGUGGCUUAAAUAAUAUGUUGUUAUUUGAUACAUUUUUGUGGUGCAAGUAAUUAAUGUUAUUAUUUGAUUGUUAUACCAUAUGUGCCCAUUAAAAUUCUUUUUAAUUAAAAAUAUUUCAAAUAUGCAGAAAAAUAAUAAUAUAAAUGCCCUUGUACCCUUCACAUACUAUUUUGCCAUAUUUGCUUCUGAUUUUUAAAUAAAUAAAAUGUUACUCUUUUGUACUUCU
2208   mRNA  unknown    Homo sapiens    AGAAGGCAGCCUCGGUCUCUGGGCGGCGGCGGCGGCCCACUCUGCCCUGGCCGCGCUGUGUGGUGACCGCAGGCCCCAGACAUGAGGGCGGCCCGUGCUCUGCUGCCCCUGCUGCUGCAGGCCUGCUGGACAGCCGCGCAGGAUGAGCCGGAGACCCCGAGGGCCGUGGCCUUCCAGGACUGCCCCGUGGACCUGUUCUUUGUGCUGGACACCUCUGAGAGCGUGGCCCUGAGGCUGAAGCCCUACGGGGCCCUCGUGGACAAAGUCAAGUCCUUCACCAAGCGCUUCAUCGACAACCUGAGGGACAGGUACUACCGCUGUGACCGAAACCUGGUGUGGAACGCAGGCGCGCUGCACUACAGUGACGAGGUGGAGAUCAUCCAAGGCCUCACGCGCAUGCCUGGCGGCCGCGACGCACUCAAAAGCAGCGUGGACGCGGUCAAGUACUUUGGGAAGGGCACCUACACCGACUGCGCUAUCAAGAAGGGGCUGGAGCAGCUCCUCGUGGGGGGCUCCCACCUGAAGGAGAAUAAGUACCUGAUUGUGGUGACCGACGGGCACCCCCUGGAGGGCUACAAGGAACCCUGUGGGGGGCUGGAGGAUGCUGUGAACGAGGCCAAGCACCUGGGCGUCAAAGUCUUCUCGGUGGCCAUCACACCCGACCACCUGGAGCCGCGUCUGAGCAUCAUCGCCACGGACCACACGUACCGGCGCAACUUCACGGCGGCUGACUGGGGCCAGAGCCGCGACGCAGAGGAGGCCAUCAGCCAGACCAUCGACACCAUCGUGGACAUGAUCAAAAAUAACGUGGAGCAAGUGUGCUGCUCCUUCGAAUGCCAGCCUGCAAGAGGACCUCCGGGGCUCCGGGGCGACCCCGGCUUUGAGGGAGAACGAGGCAAGCCGGGGCUCCCAGGAGAGAAGGGAGAAGCCGGAGAUCCUGGAAGACCCGGGGACCUCGGACCUGUUGGGUACCAGGGAAUGAAGGGAGAAAAAGGGAGCCGUGGGGAGAAGGGCUCCAGGGGACCCAAGGGCUACAAGGGAGAGAAGGGCAAGCGUGGCAUCGACGGGGUGGACGGCGUGAAGGGGGAGAUGGGGUACCCAGGCCUGCCAGGCUGCAAGGGCUCGCCCGGGUUUGACGGCAUUCAAGGACCCCCUGGCCCCAAGGGAGACCCCGGUGCCUUUGGACUGAAAGGAGAAAAGGGCGAGCCUGGAGCUGACGGGGAGGCGGGGAGACCAGGGAGCUCGGGACCAUCUGGAGACGAGGGCCAGCCGGGAGAGCCUGGGCCCCCCGGAGAGAAAGGAGAGGCGGGCGACGAGGGGAACCCAGGACCUGACGGUGCCCCCGGGGAGCGGGGUGGCCCUGGAGAGAGAGGACCACGGGGGACCCCAGGCACGCGGGGACCAAGAGGAGACCCUGGUGAAGCUGGCCCGCAGGGUGAUCAGGGAAGAGAAGGCCCCGUUGGUGUCCCUGGAGACCCGGGCGAGGCUGGCCCUAUCGGACCUAAAGGCUACCGAGGCGAUGAGGGUCCCCCAGGGUCCGAGGGUGCCAGAGGAGCCCCAGGACCUGCCGGACCCCCUGGAGACCCGGGGCUGAUGGGUGAAAGGGGAGAAGACGGCCCCGCUGGAAAUGGCACCGAGGGCUUCCCCGGCUUCCCCGGGUAUCCGGGCAACAGGGGCGCUCCCGGGAUAAACGGCACGAAGGGCUACCCCGGCCUCAAGGGGGACGAGGGAGAAGCCGGGGACCCCGGAGACGAUAACAACGACAUUGCACCCCGAGGAGUCAAAGGAGCAAAGGGGUACCGGGGUCCCGAGGGCCCCCAGGGACCCCCAGGACACCAAGGACCGCCUGGGCCGGACGAAUGCGAGAUUUUGGACAUCAUCAUGAAAAUGUGCUCUUGCUGUGAAUGCAAGUGCGGCCCCAUCGACCUCCUGUUCGUGCUGGACAGCUCAGAGAGCAUUGGCCUGCAGAACUUCGAGAUUGCCAAGGACUUCGUCGUCAAGGUCAUCGACCGGCUGAGCCGGGACGAGCUGGUCAAGUUCGAGCCAGGGCAGUCGUACGCGGGUGUGGUGCAGUACAGCCACAGCCAGAUGCAGGAGCACGUGAGCCUGCGCAGCCCCAGCAUCCGGAACGUGCAGGAGCUCAAGGAAGCCAUCAAGAGCCUGCAGUGGAUGGCGGGCGGCACCUUCACGGGGGAGGCCCUGCAGUACACGCGGGACCAGCUGCUGCCGCCCAGCCCGAACAACCGCAUCGCCCUGGUCAUCACUGACGGGCGCUCAGACACUCAGAGGGACACCACACCGCUCAACGUGCUCUGCAGCCCCGGCAUCCAGGUGGUCUCCGUGGGCAUCAAAGACGUGUUUGACUUCAUCCCAGGCUCAGACCAGCUCAAUGUCAUUUCUUGCCAAGGCCUGGCACCAUCCCAGGGCCGGCCCGGCCUCUCGCUGGUCAAGGAGAACUAUGCAGAGCUGCUGGAGGAUGCCUUCCUGAAGAAUGUCACCGCCCAGAUCUGCAUAGACAAGAAGUGUCCAGAUUACACCUGCCCCAUCACGUUCUCCUCCCCGGCUGACAUCACCAUCCUGCUGGACGGCUCCGCCAGCGUGGGCAGCCACAACUUUGACACCACCAAGCGCUUCGCCAAGCGCCUGGCCGAGCGCUUCCUCACAGCGGGCAGGACGGACCCCGCCCACGACGUGCGGGUGGCGGUGGUGCAGUACAGCGGCACGGGCCAGCAGCGCCCAGAGCGGGCGUCGCUGCAGUUCCUGCAGAACUACACGGCCCUGGCCAGUGCCGUCGAUGCCAUGG2000000006ACU2000000009UUAUCAACGACGCCACCGACGUCAACGAUGCCCUGGGCUAUGUGACCCGCUUCUACCGCGAGGCCUCGUCCGGCGCUGCCAAGAAGAGGCUGCUGCUCUUCUCAGAUGGCAACUCGCAGGGCGCCACGCCCGCUGCCAUCGAGAAGGCCGUGCAGGAAGCCCAGCGGGCAGGCAUCGAGAUCUUCGUGGUGGUCGUGGGCCGCCAGGUGAAUGAGCCCCACA2000000009UCCGCGUCCUGGUCACCGGCAAGACGGCCGAGUACGACGUGGCCUACGGCGAGAGCCACCUGUUCCGUGUCCCCAGCUACCAGGCCCUGCUCCGCGGUGUCUUCCACCAGACAGUCUCCAGGAAGGUGGCGCUGGGCUAGCCCACCCUGCACGCCGGCACCAAACCCUGUCCUCCCACCCCUCCCCACUCAUCACUAAACAGAGUAAAAUGUGAUGCGAAUUUUCCCGACCAACCUGAUUCGCUAGAUUUUUUUUAAGGAAAAGCUUGGAAAGCCAGG2000000006ACACAACGCUGCUGCCUGCUUUGUGCAGGGUCCUCCGGGGCUCAGCCCUGAGUUGGCAUCACCUGCGCAGGGCCCUCUGGGGCUCAGCCCUGAGCUAGUGUCACCUGCACAGGGCCCUCUGAGGCUCAGCCCUGAGCUGGCGUCACCUGUGCAGGGCCCUCUGGGGCUCAGCCCUGAGCUGGCCUCACCUGGGUUCCCCACCCCGGGCUCUCCUGCCCUGCCCUCCUGCCCGCCCUCCCUCCUGCCUGCGCAGCUCCUUCCCUAGGCACCUCUGUGCUGCAUCCCACCAGCCUGAGCAAGACGCCCUCUCGGGGCCUGUGCCGCACUAGCCUCCCUCUCCUCUGUCCCCAUAGCUGGUUUUUCCCACCAAUCCUCACCUA2000000006ACAGUUACU2000000009UUACAAUUAAACUCAAAGCAAGCUCUUCUCCUCAGCUUGGGGCAGCCAUUGGCCUCUGUCUCGUUUUGGGAA2000000006ACCAAGGUCAGGAGGCCGUUGCAGACA2000000009UAAAUCUCGGCGACUCGGCCCCGUCUCCUGAGGGUCCUGCUGGUGACCGGCCUGGACCUUGGCCCUACAGCCCUGGAGGCCGCUGCUGACCAGCACUGACCCCGACCUCAGAGAGUACUCGCAGGGGCGCUGGCUGCACUCAAGACCCUCGAGAUUAACGGUGCUAACCCCGUCUGCUCCUCCCUCCCGCAGAG2000000006ACUGGGGCCUGG2000000006ACUGG2000000006ACAUGAGAGCCCCUUGGUGCCACAGAGGGCUGUGUCUUACUAGAAACAACGCAAACCUCUCCUUCCUCAGAAUAGUGAUGUGUUCGACGUUUUAUCAAAGGCCCCCUUUCUAUGUUCAUGUUAGUUUUGCUCCUUCUGUGUUUUUUUCUGA2000000006ACCAUAUCCAUGUUGCUGACUUUUCCAAAUAAAGGUUUUCACUCCUC
2209   mRNA  unknown    Homo sapiens    AGAAUCAGCUGUCCUCUCAGACUGUGUGGGUGGUUUCCCCGGCCGCAGCUCCGUACGGGCUUGGAUUGCUGGGCCUCGGUGCACCCCAGCCUCCCCCACUCGGGUUCUGAGCUUGAGCUGGCGGCUCU2000000009UUAACUCUGCUUCACUGUUGCUCUUGGCAACA2000000009UCCACUUCCGGGAGCGAGUGCCGUUUCCCCCGCUCACCGCGGGCUAGGGAGCGUGGGAUUCCGGACUGUGAGCGGCUGUUAGUGCGUCGCAGCUGCUGGCGAUCCGGCGACCCUCGGCCGGCAGGACCCGCGGGCCACGCAGCCGGGGCCUUCUCAACGCCUCAGUACCUCGGCGGGACCGCCAUGGUUCUGCUGCACGUGAAGCGGGGCGACGAGAGCCAGUUCCUGCUGCAGGCGCCUGGGAGUACCGAGCUGGAGGAGCUCACGGUGCAGGUGGCCCGGGUCUAUAAUGGGCGGCUCAAGGUGCAGCGCCUCUGCUCAGAAAUGGAAGAAUUAGCCGAACAUGGCAUAUUUCUCCCUCCUAAUAUGCAAGGACUGACCGAUGAUCAGAUUGAAGAAUUGAAAUUGAAGGAUGAAUGGGGUGAAAAAUGCGUACCCAGCGGAGGUGCAGUGUUUAAAAAGGAUGAUAUUGGACGAAGGAAUGGGCAAGCUCCAAAUGAGAAGAUGAAGCAAGUGUUAAAGAAGACUAUAGAAGAAGCCAAAGCAAUAAUAUCUAAGAAACAAGUGGAAGCCGGUGUCUGUGUUACCAUGGAGAUGGUGAAAGAUGCCUUGGACCAGCUUCGAGGCGCGGUGAUGAUUGUUUACCCCAUGGGGUUGCCACCGUAUGAUCCCA2000000009UCCGCAUGGAGUUUGAAAAUAAGGAAGACUUGUCGGGAACACAGGCAGGGCUCAACGUCAUUAAAGAGGCAGAGGCGCAGCUGUGGUGGGCAGCCAAGGAGCUGAGAAGAACGAAGAAGCUUUCAGACUACGUGGGGAAGAAUGAAAAAACCAAAAUUAUCGCCAAGAUUCAGCAAGUAAGUACUUUUUGCUUUAAUGUGUCAGUAGUUUUUGUUAUUUCCCUUCAAACUGAUAAAAAUGUACAGUGAAUCCGAAAGAUUUAAACUACUGGUACAAAUAUUUUAAUCUUAUUGGCUCGGGUUUAAACUAAAAAUAUCCUCUUCCUGCACACCAACAAAAACUGGAAGAAAAUAUGGAUUGAGUACCAAUAUCUAGAGUUUGUUUUAAUAUGUGGGGGAGAGGAAAUAUACUAUGUUAAUUUCAAGCGUAAAAAUAGGGCUGCAAGUAAACAGAUAUGUUCCUUGAAAUGUAAAAUUUCGCCCGUCACUGAUUUCAGGCUUUUUCAAACUGCUGAUGCUGUGUACAGGAGGGGGAGGAGGAAAGGUUCGAGACCUUUGAAGGACAUCGUGUAGCGCUGUAACCUGAGGGGCCGCCUUGGUUUUGUGGGUGCUCCUACGUCACUAGGCUGUGAUUUUGGGGAAAUGGGGCCCUCCACCUUAUGUAGAUCCAGAGUCCGUGGCUCUGAGCAUCCUCCCUUUCCCACUGGACCUGCCUGCAGUGUCUGCCUUGGGAAUGGUCAAGACAGAGAUGGUAUCGUGCAGCCUCUGGUCUCCACACAGUGAGAGUCCAGGGCUCAGGGCUGCUCAAGACCAAGGCUUCCCUUGAUGCUUCACUUCGGGUGAUCAGACAUGGGGGACCUGUUUAUCUUUAGUAGCCGGCAAAGGCAAUCGUAAAACAUUUGUUGUAACUUCAGGAUUGUCACUCUAAGAACACCUUAAUCCACAAUUUGCUCUGCUCUCCUCUUUGCAGAGGGGACAGGGAGCUCCAGCCCGAGAGCCUAUUAUUAGCAGUGAGGAGCAGAAGCAGCUGAUGCUGUACUAUCACAGAAGACAAGAGGAGCUCAAGGUAGCAGGGGACAGAUGGGCUUUCUGCAGUGCUGGCGCCCACACAUAGCCUGUGUGCCUUACCUGGGGCUGCUGGGGAGCAGUGAGCUCUGCAGAAUGCCGGGGAGGGGUCUUUCUAGAGCUUCUGUCUGCAGGUCUGUCGGGGUCCUGCCAGGUGUCCCCUGGUGUUAGACAUGGCAGUAUCCUGCUCCUAGAGGGCAGGGAGAGGGGGAGGUCAGUCAUGGACUCUUUCUUCAGUCUCUUUAUGUGCAAAACACUUUCCUGAAAUGCCUGCCUGAAUAAAACAUACUUAUUUCCAGAGAUUGGAAGAAAAUGAUGAUGAUGCCUAUUUAAACUCACCAUGGGCGGAUA2000000006ACACUGCUUUGAAAAGACAUUUUCAUGGAGUGAAAGACAUAAAGUGGAG2000000006ACCAAGAUGAAGUUCACCAGCUGAUGACACUUCCAAAGAGAUUAGCUCACCUUUCUCCUAGGCAAUUAUAAUUUAAAAAAAAAAAAAAGGCCACUUACUGCCCUCUGUAAAAGAUGUUA2000000006ACAUUUCUAGUUUUCUUUUAGUGUGAAUUUUUAAAAUAGCAGUUAUUCAAGGUUUUAGAACUUAAUAAAUACCUAGUCAGAAGAAAA
2210   mRNA  unknown    Homo sapiens    AGACAUUGCAGCAGAGCCCCGAACUCGGGAGGCGGCGGCGGAGGAGGCGGCGGCGAGGCGCAGGGACGACCCGGCCCCACGCCCGCCCGCCACCCGCGCGCGCCCGUCCGCCCGUGGCCUCGCGUCCGCCGCUGCGCCGUGAGCGCCGCUGGUCGGAGGGAAGAGCUCGCCGGGGCGCCGGGCCAGGACGGGGCGGCAGGCGCCUUCGCGGACCGAGCCUGACGGAGCCGGAGGCUGGGAGCCGCGGCGGCCUGGGGAAGUGUUUGGAUUGUGAGCUAUUUCAGAACUGUUCUCAGGACUCAUUAUUUUAACAUUUGGGAGAAACACAGCCAGAAGAUGCACACUUGACUGAAGGAGG2000000006ACAGGGAAUCUGAAGACUCCGGAUGACAUCAGAGCUACUUUUCAACAGCCUUCUCAAUUUUCUUUCUCAGAAAGCAGAGGCUCAGAGCUUGGAGACAGACGAACACUGAUAUUUGCAUUUAAUGGGGAACAAAAGAUGAAGAAGGAAAAGGAAUAUAUUCACUAAGGAUUCUAUCUGCUUACUGCUACAGACCUAUGUGUUAAGGAAUUCUUCUCCUCCUCCUUGCGUAGAAGUUGAUCAGCACUGUGGUCAG2000000006ACUGCAUUUAUCUUGUCAUUGCCAGAAGAAAUCUUGG2000000006ACAGAAUGUAACAGUACGUCUCUCUCUGAUUGCGAUGGAAGGUGAUAA2000000006ACUGAUACUCCUUUAUUAAAGUUACAUCGCACUCACCACAGAAAACCAUUCUUUAAAGUGAAUAGAAACCAAGCCCUUGUGA2000000006ACACUUCUAUUGAACAUG2000000006ACUCAUGGAGAAGAGCUUGGCUCUGAUGUGCACCAGGAUUCUAUUGUUUUAACUUACCUAGAAGGAUUACUAAUGCAUCAGGCAGCAGGGGGAUCAGGUACUGCCGUUGACAAAAAGUCUGCUGGGCAUAAUGAAGAGGAUCAGA2000000006ACUUUAACAUUUCUGGCAGUGCAUUUCCCACCUGUCAAAGUAAUGGUCCAGUUCUCAAUACACAUACAUAUCAGGGGUCUGGCAUGCUGCACCUCAAAAAAGCCAG2000000006ACUGUUGCAGUCUUCUGAGG2000000006ACUGGAAUGCAGCAAAGCGGAAGAGGCUGUCUGAUUCUAUCAUGAAUUUAAACGUAAAGAAGGAAGCUUUGCUAGCUGGCAUGGUUGACAGUGUGCCUAAAGGCAAACAGGAUAGCACAUUACUGGCCUCUUUGCUUCAGUCAUUCAGCUCUAGGCUGCAG2000000006ACUGUUGCUCUGUCACAACAAAUCAGGCAGAGCCUCAAGGAGCAAGGAUAUGCCCUCAGUCAUGAUUCUUUAAAAGUGGAGAAGGAUUUAAGGUGCUAUGGUGUUGCAUCAAGUCACUUAAAAACUUUGUUGAAGAAAAGUAAAGUUAAAGAUCAAAAGCCUGAUACGAAUCUUCCUGAUGUGACUAAAAACCUCAUCAGAGAUAGGUUUGCAGAGUCUCCUCAUCAUGUUGGACAAAGUGGAACAAAGGUCAUGAGUGAACCGUUGUCAUGUGCUGCAAGAUUACAGGCUGUUGCAAGCAUGGUGGAAAAAAGGGCUAGUCCUGCCACCUCACCUAAACCUAGUGUUGCUUGUAGCCAGUUAGCAUUACUUCUGUCAAGCGAAGCCCAUUUGCAGCAGUAUUCUCGAGAACACGCUUUAAAAACGCAAAAUGCAAAUCAAGCAGCAAGUGAAAGACUUGCUGCUAUGGCCAGAUUGCAAGAAAAUGGCCAGAAGGAUGUUGGCAGUUACCAGCUCCCAAAAGGAAUGUCAAGCCAUCUUAAUGGUCAGGCAAGAACAUCAUCAAGCAAACUGAUGGCUAGCAAAAGUAGUGCUACAGUGUUUCAAAAUCCAAUGGGUAUCAUUCCUUCUUCCCCUAAAAAUGCAGGUUAUAAGA2000000006ACUCACUGGAAAGAAACAAUAUAAAACAAGCUGCUAACAAUAGUUUGCUUUUACAUCUUCUUAAAAGCCAGACUAUACCUAAGCCAAUGAAUGG2000000006ACACAGUCACAGUGAGAGAGGAAGCAUUUUUGAGGAAAGUAGUACACCUACAACUAUUGAUGAAUAUUCAGAUAACAAUCCUAGUUUUACAGAUGACAGCAGUGGUGAUGAAAGUUCUUAUUCCAACUGUGUUCCCAUAG2000000006ACUUGUCUUGCAAACACCGA2000000006ACUGAAAAAUCAGAAUCUGACCAACCUGUUUCCCUGGAUAACUUCACUCAAUCCUUGCUAAACACUUGGGAUCCAAAAGUCCCAGAUGUAGAUAUCAAAGAAGAUCAAGAUACCUCAAAGAAUUCUAAGCUAAACUCACACCAGAAAGUAACACUUCUUCAAUUGCUACUUGGCCAUAAGAAUGAAGAAAAUGUAGAAAAAAACACCAGCCCUCAGGGAGUACACAAUGAUGUGAGCAAGUUCAAUACACAAAAUUAUGCAAGG2000000006ACUUCUGUGAUAGAAAGCCCCAGUACAAAUCGG2000000006ACUACUCCAGUGAGCACUCCACCUUUACUUACAUCAAGCAAAGCAGGGUCUCCCAUCAAUCUCUCUCAACACUCUCUGGUCAUCAAAUGGAAUUCCCCACCAUAUGUCUGCAGUACUCAGUCUGAAAAGCUAACAAAUACUGCAUCUAACCACUCAAUGG2000000006ACCUUACAAAAAGCAAAGACCCACCAGGAGAGAAACCAGCCCAAAAUGAAGGUGCACAGA2000000006ACUCUGCAACGUUUAGUGCCAGUAAGCUGUUACAAAAUUUAGCACAAUGUGGAAUGCAGUCAUCCAUGUCAGUGGAAGAGCAGAGACCCAGCAAACAGCUGUUAACUGGAAACACAGAUAAACCGAUAGGUAUGAUUGAUAGAUUAAAUAGCCCUUUGCUCUCAAAUAAAACAAAUGCAGUUGAAGAAAAUAAAGCAUUUAGUAGUCAACCAACAGGUCCUGAACCAGGGCUUUCUGGUUCUGAAAUAGAAAAUCUGCUUGAAAGACGUACUGUCCUCCAGUUGCUCCUGGGGAACCCCAACAAAGGGAAGAGUGAAAAAAAAGAGAAAACUCCCUUAAGAGAUGAAAGUACUCAGGAACACUCAGAGAGAGCUUUAAGUGAACAAAUACUGAUGGUGAAAAUAAAAUCUGAGCCUUGUGAUG2000000006ACUUACAAAUUCCUAACACAAAUGUGCACUUGAGCCAUGAUGCUAAGAGUGCCCCAUUCUUGGGUAUGGCUCCUGCUGUGCAGAGAAGCGCACCUGCCUUACCAGUGUCCGAAG2000000006ACUUUAAAUCGGAGCCUGUUUCACCUCAGGAUUUUUCUUUCUCCAAGAAUGGUCUGCUAAGUCGAUUGCUAAGACAAAAUCAAGAUAGUUACCUGGCAGAUGAUUCAGACAGGAGUCACAGAAAUAAUGAAAUGGCACUUCUAGAAUCAAAGAAUCUUUGCAUGGUCCCUAAGAAAAGGAAGCUUUAUACUGAGCCAUUAGAAAAUCCAUUUAAAAAGAUGAAAAACAACAUUGUUGAUGCUGCAAACAAUCACAGUGCCCCAGAAGU2000000006ACUGUAUGGGUCCUUGCUUAACCAGGAAGAGCUGAAAUUUAGCAGAAAUGAUCUUGAAUUUAAAUAUCCUGCUGGUCAUGGCUCAGCCAGCGAAAGUGAACACAGGAGUUGGGCCAGAGAGAGCAAAAGCUUUAAUGUUCUGAAACAGCUGCUUCUCUCAGAAA2000000006ACUGUGUGCGAGAUUUGUCCCCGCACAGAAGUA2000000006ACUCUGUGGCUGACAGUAAAAAGAAAGG2000000006ACACAAAAAUAAUGUGACCAACAGCAAACCUGAAUUUAGCAUUUCUUCUUUAAAUGG2000000006ACUGAUGUACAGUUCCACUCAGCCCAGCAGUUGCAUGGAUAACAGG2000000006ACAUUUUCAUACCCAGGUGUAGUAAAA2000000006ACUCCUGUGAGUCCUACUUUCCCUGAGCACUUGGGCUGUGCAGGGUCUAGACCAGAAUCUGGGCUUUUGAAUGGGUGUUCCAUGCCCAGUGAGAAAGG2000000006ACCCAUUAAGUGGGUUAUCACUGAUGCGGAGAAGAAUGAGUAUGAAAAAG2000000006ACUCUCCAAGAUUGACCAAAACCAACCCAAUACUAUAUUACAUGCUUCAAAAAGGAGGCAAUUCUGUUACCAGUCGAGAAACACAAGACAAGG2000000006ACAUUUGGAGGGAGGCUUCAUCUGCUGAAAGUGUCUCACAGGUCACAGCCAAAGAAGAGUUACUUCCUACUGCAGAAACGAAAGCUUCUUUCUUUAAUUUAAGAAGCCCUUACAAUAGCCAUAUGGGAAAUAAUGCUUCUCGCCCACACAGCGCAAAUGGAGAAGUUUAUGG2000000006ACUUCUGGGAAGCGUGCUAACGAUAAAGAAAGAAUCAGAAUAAAAUGUACCUGCCAUCCAGUUUUGGAUCUUUUUAAAACUAAUGAGUAUGA2000000006ACUUGAGAUCUGUAUAAAUAAGAGCAUGAUUUGAAAAAAAGCAUGGUAUAAUUGAAACUUUUUUCAUUUUGAAAAGUAUUGGUUACUGGUGAUGUUGAAAUAUGCAUACUAAUUUUUGCUUAACAUUAGAUGUCAUGAGGAAACUACUGAACUAGCAAUUGGUUGUUUAACACUUCUGUAUGCAUCAGAUAACAACUGUGAGUAGCCUAUGAAUGAAAUUCUUUUAUAAAUAUUAGGCAUAAAUUAAAAUGUAAAACUCCAUUCAUAGUGGAUUAAUGCAUUUUGCUGCCUUUAUUAGGGUACUUUAUUUUGCUUUUCAGAAGUCAGCCUACAUAACACAUUUUUAAAGUCUAAACUGUUAAACAACUCUUUAAAGGAUAAUUAUCCAAUAAAAAAAAACCUAGUGCUGAUUCACAGCUUAUUAUCCAAUUCAAAAAUAAAUUAGAAAAAUAUAUGCUUACAUUUUUCACUUUUGCUAAAAAGAAAAAAAAAAGGUGUUUAUUUUUAACUCUUGGAAGAGGUUUUGUGGUUCCCAAUGUGUCUGUCCCACCCUGAUCCUUUUCAAUAUAUAUUUCUUUAAACCUUGUGCUACUUAGUAAAAAUUGAUUACAAUUGAGGGAAGUUUGAUAGAUCCUUUAAAAAAAAGGCAGAUUUCCAUUUUUUGUAUUUUAACUACUUUACUAAAUUAAUACUCCUCCUUUUACAGAAUUAGAAAAGUUAACAUUUAUCUUUAGGUGGUUUCCUGAAAAGUUGAAUAUUUAAGAAAUUGUUUUUAACAGAAGCAAAAUGGCUUUUCUUUGG2000000006ACAGUUUUCACCAUCUCUUGUAAAAGUUAAUUCUCACCAUUCCUGUGGUACCUGCGAGUGUUAUGACCAGGAUUCCUUAAACCUGA2000000006ACUCAGACCACUUGCAUUAGAACCAUCUGGAGCACUUGUUUUAAAAUGCAGAUUCAUAGGCAGCAUCUCAGAUCUACAGAACAAGAAUCUCUGCUAAGUGGACCUGGAAUCUUCCAUCUGCAUCUUAACAUGCUCUCUAGGUGUUUCUUGUGUUUGAGAACCAUGACUUAUGACUUUCCUCAGAACAUGAG2000000006ACUGUAAAACAAAAACAAAAAACUAUGUGAUGCCUCUAUUUUCCCCAAUACAGUCACACAUCAGCUCAAAAUUUGCAAUAUUGUAGUUCAUAUAUUACCGUUAUGUCUUUGGAAAUCGGGUUCAGAACACUUUUUAUGACAAAAAUUGGGUGGAGGGGAUAACUUUCAUAUCUGGCUCAACAUCUCAGGAAAAUCUGUGAUUAUUUGUGUGUUCUAAUGAGUAACAUCUACUUAGUUAGCCUUAGGGAUGGAAAAACAGGGCCACUUACCAAACUCAGGUGAUUCCAGGAUGGUUUGGAAACUUCUCCUGAAUGCAUCCUUAACCUUUAUUAAAACCAUUGUCCUAAGAACAAUGCCAACAAAGCUUACAACAUUUAGUUUAAACCCAAGAAGGGCACUAAACUCAGAUUGACUAAAUAAAAAGUACAAAGGGCACAUAUACGUGACAGAAUUGUACACAAUCACUCCAUUGGAUCUUUUACUUUAAAGUAGUGAUGAAAAGUACAUGUUGAUACUGUCUUAGAAGAAAUUAAUAUAUUAGUGAAGCCACAUGGGGUUUCAGUUGCGAAACAGGUCUGUUUUUAUGUUCAGUUUGUACAAUCCACAAUUCAUUCACCAGAUAUUUUGUUCUUAAUUGUGAACCAGGUUAGCAAAUGACCUAUCAAAAAUUAUUCUAUAAUCACUACUAGUUAGGAUAUUGAUUUAAAAUUGUUCUACUUGAAGUGGUUUCUAAGAUUUUUAUAUUAAAAAUAGGUGUGAUUUCCUAAUAUGAUCUAAAACCCUAAAUGGUUAUUUUUCCUCAGAAUGAUUUGUAAAUAGCUACUGGAAAUAUUAUACAGUAAUAGGAGUGGGUAUUAUGCAACAUCAUGGAGAAGUGAAGGCAUAGGCUUAUUCUGACAUAAAAUUCCACUGGCCAGUUGAAUAUAUUCUAUUCCAUGUCCAUACUAUGACAAUCUUAUUGUCAACACUAUAUAAAUAAGCUUUUAA2000000006ACAAGUCAUUUUUCUUGAUCGUUGUGGAAGGUUUGGAGCCUUAGAGGUAUGUCAGAAAAAAUAUGUUGGUAUUCUCCCUUGGGUAGGGGGAAAUGACCUUUUUACAAGAGAGUGAAAUUUAGGUCAGGGAAAAGACCAAGGGCCAGCAUUGCUACUUUUGUGUGUGUGUGUGUGGGUUUUGUUUUGUUUUUUUGGUUGGCUGGUUGUUUUCGUUGUUGUUAACAAAGGAAUGAGAAUAUGUAAUACUUAAAUAAACAUGACCACGAAGAAUGCUGUUCUGAUUUACUAGAGAAUGUUCCCAAUUUGAAUUUAGGGUGAUUUUAAAGAACAGUGAGAAAGGGCAUACAUCCACAGAUUCACUUUGUUUAUGCAUAUGUAGAUACAAGGAUGCACAUAUACACAUUUUCAAGGACUAUUUUAGAUAUCUAGACAAUUUCUUCUAAUAAAGUCAUUUGUGAAAGGGUACUACAGCUUAUUGACAUCAGUAAGGUAGCAUUCAUUACCUGUUUAUUCUCUGCUGCAUCUUACAGAAGAGUAAACUGGUGAGAGUAUAUAUUUUAUAUAUAUAUAUAUAUAUAUAUAUAUAAUAUGUAUAUAUAUAUAUAUUGACUUGUUACAUGAAGAUGUUAAAAUCGGUUUUUAAAGGUGAUGUAAAUAGUGAUUUCCUUAAUGAAAAAUACAUAUUUUGUAUUGUUCUAAUGCAACAGAAAAGCCUUUUAAUCUCUUUGGUUCCUGUAUAUUCCAUGUAUAAGUGUAAAUAUAAUCAGACAGGUUUAAAAGUUGUGCAUGUAUGUAUACAGUUGCAAGUCUGGACAAAUGUAUAGAAUAAACCUUUUAUUUAAGUUGUGAUUACCUGCUGCAUGAAAAGUGCAUGGGGGACCCUGUGCAUCUGUGCAUUUGGCAAAAUGUCUUAACAAAUCAGAUCAGAUGUUCA2000000009UCCUAACAUGACAGUAUUCCAUUUCUGGACAUGACGUCUGUGGUUUAAGCUUUGUGAAAGAAUGUGCUUUGAUUCGAAGGGUCUUAAAGAAUUUUUUUAAUCGUCAACCACUUUUAAACAUAAAGAAUUCACACAACUACUUUCAUGAAUUUUUUAAUCCCAUUGCAAACAUUAUUCCAAGAGUAUCCCAGUAUUAGCAAUACUGGAAUAUAGGCACAUUACCAUUCAUAGUAAGAAUUCUGGUGUUUACACAACCAAAUUUGAUGCGAUCUGCUCAGUAAUAUAAUUUGCCAUUUUUAUUAGAAAUUUAAUUUCUUCAUGUGAUGUCAUGAAACUGUACAUACUGCAGUGUGAAUUUUUUUGUUUUGUUUUUUAAUCUUUUAGUGUUUACUUCCUGCAGUGAAUUUGAAUAAAUGAGAAAAAAUGCAUUGUC
2211   unknown  unknown    Homo sapiens    AGACCAGCCCUUACCUAGUCAUACCGCAGUACAGCGUGGGAAGUGAUGCAAGCCUAGGGCUCCCUGCAGCCUGCCCACCUUCCUAUCCUGGGCUCUCCCUAACCACCAAAGCAAGAGGGCAGACUGCUCUCAUGUGUGGGUACUGCGAUGUUUUGGUUUGGUUUUUAUUAUUUUAACUAGAUGGAUUUUCAAUGGCCUAGGAAGGUUUUAAUUGGAUACUCUAUGAAGGUAAAAAAUGUAAUUUCUCAGGAUCCCUUUCAUUUGCUCUUAUGGUCAAUGGUCCCCCCGGGAAAGGCUGAUGCUGUAAGCUUUGUUACAUUUGGACAAGUCAGUGAAGUUACCCCAUACCCGUCAUUCACUAGGGACACUUGGAAUUGGGAAAGGCACCAGCAAGCUGGUUGGAAUGCAGAGACUGCAUUAGCCAAGCGUCCGGGGUCCAGCCAUGGAGGGUGUCACCGAGGGCUUGUGAUCCCUUGCCUUGCCUUGGUUGAGAAAUCCACAAAGCUUUUUUAAGUCUGUAAUUCCUGUGUCAGCAGCGCUCAGGUUUGGGUGGGAGAAACGGUGAGGAACGAUGAUGAUGAGGCAGAAAUUGGGAGGGGUGCUGCUCUUAGGCCCCUGGGGCAGAGUCUUGAGCGCCUGGGGAAGCUAACAGUGUGUCACUCUGGCAUCUAGGAAGCAGUAUAUCUCAACUCAGUUUUGCGGAGGACAUUUCUGCUGAUGAAGAUGACCAAAUCCUCAGUCAAGGAAAGCAUAAGAAGAAAGGAAAUAAACUUUUAGAGAAAACUA2000000006ACUUGGAAAAGGAGAAAGGAAGCAGAGUCUUUUGUGUAGAGGAAGAGGACAGUGAAAGCAGUCUUCAAAAGAGAAGAAGGAAGAAGAAGAAGAAGCACCACCUGCAGCCUGAAAAUCCAGGCCCAGGGGGUGCAGCCCCAUCCCUGGA2000000006ACAGAACCGGGGCAGGGAGCCCGAGGCCUCUGGGCUGAAAGCCCUGAAGGCACGUGUGGCCGAGCCAGGUGCAGAGGCCACGUCCAGCACUGGGGAGGAGAGUGGCUCCGAGCAUCCUCCAGCCGUCCCCAUGCACAAUAAAAGGAAACGGCCACGGAAGAAGAGCCCGAGGGCCCACAGGGAAAUGUUGGAAUCAGCAGUGUUGCCCCCAGAGG2000000006ACAUGUCUCAGAGUGGCCCGAGUGGCAGUCAUCCUCAGGG2000000006ACCUAGAGGGUCCCCGACAGGUGGAGCCCAACUCCUA2000000006AAAAGGAAGCGGAAACUUGGAGUUGUGCCCGUCAAUGGCAGUGGCCUGUCCACGCCGGCCUGGCCUCCAUUGCAGCAGGAAGGCCCUCCCACAGGCCCCGCAGAGGGGGCGA2000000006ACAGCCACACCACGCUGCCCCAGCGCAGGAGGCUGCAGAAAAAGAAGGCAGGGCCCGGCAGCCUGGAGCUCUGUGGCCUGCCCAGCCAGAAAACAGCAAGUUUGAAAAAGAGGAAGAAAAUGAGAGUGAUGUCAAACUUGGUGGAGCACAACGGGGUGCUGGAGUCCGAAGCUGGGCAACCCCAGGCUCUGGGAAGCAGUGGGACUUGCAGUUCCCUGAAGAAGCAGAAGCUGAGGGCAGAGAGCGACUUUGUGAAGUUUGACACCCCCUUCUUACCAAAGCCCCUGUUCUUCAGAAGAGCCAAGAGCAGCACUGCCACCCACCC2000000009UCCAGGCCCUGCCGUCCAGCUAAACAAGACACCAUCCAGCUCCAAGAAAGUCACCUUUGGGCUGAACAGAAACAUGACUGCCGAAUUCAAGAAGACAGACAAGAGUAUCUUGGUCAGUCCCACGGGCCCUUCUCGAGUGGCCUUCGACCCUGAACAGAAGCCCCUCCACGGGGUGCUGAAGACCCCCACCAGCUCACCUGCCAGCUCACCCCUGGUGGCCAAGAAGCCCCUGACCACCACACCAAGGAGAAGGCCCAGGGCUAUGGAUUUCUUCUGAGGAGCAGCAGAGUCCCUUGUAAAAG2000000006ACUGCUUUUGUACAGAAUGCGCUAUAAAUUAUACCU2000000009UUAAGAAUGUGGGGCCUUUUUUAUGAUUUUGUAAGUUCCCAUAAGUUGUGUGCACGAGGUUCUGAGAGUGCCCGCAGGCUGCUGCGUCCUGGCCCCUCUGUAGUGGCUGCGGGCGUCUUGGUUGAAUCUUUUGCUACAAACCAUGUUUGCGUUUGAGCUCUCCAGGAUUUUACAUUUUUGGGUAACCUCAGUGAUUCCCAUUGGUGUAGGAAAUGAGACCCUCUCUGAAGCUGAGGAGAGCACGUUGAUCUGA2000000006ACU2000000009UUAAAUCAAUCAGUGCUGCUGGCACAAUGAAAGGUGGA2000000006ACUGCACUUCUGUUGAGCUCUCAGUUCUGCGGAAUUUGGUACUCAUUACCGUAUUCGCCGUACUAAGUUGGUUUCUGUUAGUCUUAACAGUCUGUUUUCUUUUAAAAGCAUGUAGGGCUUCAUUGCCAUGUUCUGUGGGUGUUUGGCAGGUUACCGAUGGGGAAGAUUCUUGUCACAGAAUCAGCAAUACCAUAGUUUUUCUACAUGUGCUCAGCUGGGGGUGUGGACAGGUAGGGGUGGGGAAAGAAGAGGCUCUGCGUUCUGGGGGCUUUUUCUUCUCCUCCCCCUACCCGGUUUCCCUCCCUGUUUUCCUACCUCUACGGCAAGCCCAAAGUGUCUUCCCGGGAGCCCAGCGCAGCCCCCGGCUCUUACCCAGGACCCCGCCCCGUGCUGAGCCUUCUGCUGAGGUCCUUGCGUGGAGCACACUCAUUCCUCCAAGCCCUUGCGCUCCCGUUUCUCUCUCUCUCCGUCCACGUUCCAGCCGAGUCACUGCCUG2000000006ACCGGCUCCAUGGCAGCUCCCCAUCUUCCCUAGAGGCUGCCUGCGCAUCUGGAGCCUGCGCUCCGGCUCAGCGACCUUUCCUCUCAAAUGCGGAAGCGUGCACUUACAGUUCAGACCGUUCUCCUGUAAGUUCAUUACAAACACGGGCGGAAGGCACUCAGGCUUUCGUUGGAGAAACAGAAAUAAGGCCUUCUUUUGAGCAGCGAUUGCUGGAUCAUUGAUCUGUUUGAGGAAGUGUCUGACCUGGGCCUGAGAGCUGGAGAAGGUGCAGAUUCAAAGUGAGCGGCUCCUGAGGAGAGCCGCCAAGGCUGCUCGCCUUCUCCGUGGCUUCCGCAGCUACCGUCUGCACGGUGAGAGGGCACGGGCACACGGUUCGGGCUGGCGUGCAGCUCUCCCAGCCAGCCACGCUCUGCUCAGGCCUGGAAGUGAAAGCCGCCUCCUUCCCGUUAUGCCCCCCAUACAGGAGCCUCGGUUUUUCAGCAAAACGCGGCCAGUCCCCUUCUCCACUGCUGCCUCCCAGCAGAGGGCCCCAGGAUCUCCAAGGUCCCAGCUAUGGCUUUGG2000000006ACAACGUGGCUUCGGCCCCUGGGGUUGCAGAGCUUGCAUUGGGUUUACCUCGGUCUCAUUCAUUCAUGGAGCCAAGGGUGGGGUUUCACCUGCGAACAUCAG2000000006ACUGACUUGCUGGCGUCAAGAGCAGUUGACUCACUGAUGAAGGCCCUGGUGAGGAGAAAGCACUCUGUUCUUCGCCUACUCUGUAAUCGUUUUGUCAUAAUGAGCCAUGAAAAAAGUAAUGA2000000006ACUUGUGCUGUUAAUCGUCACUGUAAUGAGAAGUCUUACGUACAACAUAGCUGUGGUGGCUUAAUGGCUGCAUUAGAUAGGAUCCUCACA2000000009UCCCAUUCAGAACCAAAACUGAUACAGUGAAACAAUUAAGGUGAGCAAAUAGUUUUAACUUUUCUUUUUUUUUUUUAAGUUUCAUUCUUCCUAGAAUAUUUUUCUAACAAUUUUUAUUUCAGCU2000000009UUAAAGAUGGGUCAUAUAGCCAAACGGGCCAUAUAAUCCAACAUUGUUGAGAUGUCUUAGGACAUCUAAGGCAAAACUGGCACAUUUGUUCUGCAGACUAUUGCAGGAAUGUUUUUUCCUAGCAUUUCUAUAUUAUCUGUCCAUUCUGAGGAACCAGUGAAUGUCCUAUAAAUGCACCUCCUGUCAAAACCAUGCCUGAGAGGUCCCGGCUGGGAGUGACAGGGUGCUUCUUAGAUUCUAUUGGUCCUUCUCUCAUUCUCCGAACUUACUCCUUUUUAUGGGUAAGUCAACUAGGUUUACAGUCCCUUAUUUUUAAUGCCUAAGUUUUGACAGCAGGAAGAAAACAAUUUUUUAAAAAUUCUCAUUACAUAGACGCACAAGAAUAUGUCACAUAAAGAAAAUGUGUUUAGAAUACUGGUUUUCUAUUUACGCAUGAUAUUUUCCUAAGUAAAAUUGCCAAGUGGACUU2000000090GGAAGUCCAGAAAGGAAAAUAAUUUAAAUUAAUGCUGGUGAUCUUAACAAUAUUUUGUAAAAUGAUGCUUCCCCCUUCUCCAUGGUCUAGUCAAUUUUGUACAAUUAGGUAUCUGACU2000000009UUACAAGUUUGUUAUCCUUUCUAAUUUUUACUGAACUGAAAGCACAAAGAAGACUACACAGAAAAUCUGGAAACAGUUGCAGGUGUUGGGAGGAAGAUGAAAUCGAGCUGUCUUUUA2000000006ACUUUUGUAUGUGUUUUAUCAGAAUUUGCUGG2000000006ACUAUGCUGGCAAGG2000000006ACUUUGUUUACGAUCAAAUUGUACUAGUGUCUGCAGGGUUUGUCAGUACUCGUCAAAGCCAAGUCCAAUUAAAAAAAAAAGUCUUUGCCC2000000009UCC
ID RNA_source_id SO term RNA Type RNA Subtype RNA Feature Organism Cellular localization Sequence (SHORT NAME)
1211 LC530716.1  tRNA  Gly  UCC  Homo sapiens  mitochondrion  ACUCUUUUpm1Apm2GUAUAAAUAGUACCGpYUAACUUCCAApYpYAACUAGUUUUGACAACAUUCAAAAAAGAGUACCA
1212 LC530717.1  tRNA  His  QPG  Homo sapiens  Mitochondrion  GGUAAAUAUpm1Apm2GUUUAACCAAAACApYCAGAUUpQpYGAApYCUGACAApm5CAGAGGCUUACGACCCCUUAUUUACCCCA
1213 LC530718.1  tRNA  Met  >AU  Homo sapiens  Mitochondrion  AGUAAGGUCAGCUAAAUAAGCUApYCGGGCCpf5CAUACCCCGAAAAUGpYUGGUUAUACCCUUCCCGUACUACCA
1214 LC530719.1  tRNA  Asn  QUU  Homo sapiens  Mitochondrion  UAGAUUGApm1Apm2GCCAGUUGApDUAGGGUGCpYUAGCUpQUUpt6AACpYAAGUGUUUGUGGGpm5UpYUAAGUCCCAUUGGUCUAGCCA
1215 LC530720.1  tRNA  Pro  UGG  Homo sapiens  mitochondrion  CAGAGAAUpm1AGUUUAAAUUAGAAUCpYUAGCpYUUGGpm1GpYGCUAAUGGUGGAGpm5UpYAAAGACUUUpYpYCUCUGACCA
1216 LC530721.1  tRNA  Gln  ƕUG  Homo sapiens  Mitochondrion  UAGGAUGGpm1GGUGUGAUAGGpDGGCACGGAGAAUpYptm5s2UUGpm1GApYpYCUCAGGGAUGGGpm5UpYCGAUUCUCAUAGUCCUAGCCA
1217 LC530722.1  tRNA  Arg  UCG  Homo sapiens  mitochondrion  UGGUAUAUpm1Apm2GUUUAApm1ACAAAACpm2GAAUGApYUUCGACpYCAUUAAAUUAUGAUAAUCAUAUUUACCAACCA
1218 LC530723.1  tRNA  Thr  UGU  Homo sapiens  Mitochondrion  GUCCUUGUpm1Apm2GUAUAAACUAAUACACCAGUpm3CUUGUpt6AAACCGGAGAUGAAAACCUUUUUCCAAGGACACCA
1219 LC530724.1  tRNA  Val  UAC  Homo sapiens  Mitochondrion  CAGAGUGUpm1Apm2GCUUAACACAAAGCACCCAACUUACACpYUAGGAGAUUUCAACUUAACUUGACCGCUCUGACCA
1220 LC530725.1  tRNA  Trp  ʭC*  Homo sapiens  Mitochondrion  AGAAAUUUpm1Apm2GGUUAAAUACAGACCAAGAGCCUptm5UCpms2i6AAAGCCCUCAGUAAGUUGCAAUACUUAAUUUCUGCCA
1221 LC530726.1  tRNA  Tyr  QUA  Homo sapiens  Mitochondrion  GGUAAAAUpm1Gpm2GCUGAGUGAAGCApYpYGGACUpQUApms2i6AApYCUAAAGApm5CAGGGGUUAGGCCUCUUUUUACCACCA
1222 KY962518.1  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUpAmUGCUUGpYCpYCAAAGAUUAAGCCAUGCAUGUCUAAGpYACGCACGGCCGGUACAGUGAAACUGCGAApYGGCUCpAmpYUAAApYCAGpYUAUGGUpUmCCpYUpUmGGUCGCUCGCUCCUCUCCUACUUGGAUAACUGUGGUApAmUUCUAGpAmGCpUmAApUmApCmAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGApYGCGUGCApYUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCpYAGApYAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCUAACGUCpUmGCCCUAUCAACpYUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGpYGACGGGGAAUCAGGGUUCGAUpUmCCGGAGApGmGGAGCCUGAGAAACGGCUACCACAUpCmCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCACUCCCGACCCGGGGApGmGUpAmGpYGApCmGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAApYUGGAAUGAGUCCACUpYUAApAmUCCUUUAACGAGGpAmUCCAUUGGAGpGmGCAAGUCpYGGUGCCAGCAGpCmCGCGGpUmAAUUCCAGCUCCAAUApGmCGUApYApYUAAAGUUGCUGCAGUpYpAmAAAAGCUCGUAGpYUpGmGApYCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCpYpYAGCUGAGUGUCCCGCGGGGCCCGAAGpCmGpUmUpYACpYUUGAAAAAApYpYAGAGUGpYUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAApYAApYpGmGAAUAGGACCGCGGUUCUAUUUUGUUGGUpYUUCGGAACUGAGGCCAUGAUpYAAGAGGGACGGCCGGGGGCAUUCCGUAUUGCGCGCUAGAGGUGAAAUpYCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUpYUGCCAAGAAUGUUUUCAUUAAUCAAGApAmCGAAAGUCGGAGGpYpYCGAAGACGApYCAGApYACCGUCGUAGUUCCGACCApYAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCpYUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUApYGGpYUGCAAAGCpYGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCpYGCGGCpYUAAUUpYGACpm1acp3YCAACACGGGAAACCUCACCCGGCpCmCGGACACGGACAGGApUmUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGpUmGpGmUGCAUGGCpac4CGUUCUUAGUpYGGUGGAGCGAUUpYGUCUGGpYUAAUUCCGAUAACGApAmCGAGACUpCmUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAApCmUpUmCUpYApGmAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACApGmGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUpYCGUGAUGGGGAUCGGGGAUUGCAAUUAUpYCCCCAUGAACGAGpm7GAAUpYCCCAGUAAGUGCGGGUCAUAAGCUpUmGCGUUGAUUpAmAGUCCCUGCCCUUpYGUACACACCGpCmCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUpUmGACUAUCUAGAGGAAGUAAAAGUCGUApm6ACAAGGUpYUCpac4CGUAGGUGpm6,6Apm6,6ACCUGCGGAAGGAUCAUUA
1223 7BHP_L5  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAGAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGpAmGpAmGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGCGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCpGmUCUUGpm1ApAmACpAmCGGACCAAGGAGUpCmUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCpGmApAmAGAUGGUGApAmCpYAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGpYAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCpYCAGGApYAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAApYGAUUAGAGGUCUUGGpGmGCCGAAACGAUCpUmCAACCpYApYpYCUCAAACUUpYAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACpYUpYUGGUAAGCpAmGAACUGGCGpCmUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGCGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUpCmUUGGUGGUAGUpAmpGmpCmAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGpAmGAAGGGUUCCAUGpUmGAACAGpCmApGmUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGApYCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUpYUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCpAmUAUCCGCAGCAGGUCUpCmCAAGGUGAACpAmGCCUCUGGpCmAUGUUGGAACAApUmGpYAGGpYAAGGGAAGUCGGCAAGCpCmGGAUCCGUAACUUCpGmGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCCGCGCGCGCCGCUCGCUCCCUCCCCGCCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGGCGGCGGCCCGCCGCGGGGCCCCGGCGGCGGGGGCACGGUCCCCCGCGAGGGGGGCCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGGCGCCGGCGCGCCCCCCCCCCCACCCCACGUCUCGUCGCGCGCGCGUCCGCUGGGGGCGGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGpGmGAAUCCGACpYGpYUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUpYCUGCCpCmAGUGCUCUGAAUGpYCApAmAGUGApAmGAAAUpYCAApYGAAGCGCGGpGmUAAACGGCGGGAGpYApAmCpYApYGACpYCpYCUUAAGGUAGCpm5CAApAmUGCCUCpGmUCAUCUAAUUAGUGApCmGCGCAUGAApYmGGApYGApAmCGAGpAmUUCCCACUGUpCmCCpYACCUACpYApYCCAGCGAAACCACpAmGpCmCAAGGGAACGGGCUpYGGpCmGGAAUCAGCGGpGmGAAAGAAGACCCUGUUGAGCpYUGACpUmCUAGUCUGGCACGGUGAApGmAGACAUGAGAGGUGpYAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCCGGCCCUGCGGGCCGCCpGmGUGAAAUACCApCmUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGGCCGCGCGCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGpGmGGCGGUACACCUGUCAAACGGUApm6ACGCAGGpUmpGmUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGApYCUpYGApYUUUCAGpUmACGAApYACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUpYUGGGUUUpYAAGCAGGApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCpYUGUGGCGGCCAAGCGUpYCApYAGCGACGpYCGCUUUUUGApYCCUUpm5CGAUGUCGGpCmpYCUUCCUAUCAUUGpYGAAGCAGAAUUCACCAAGCGUpYpGmGAUpUmpGmpYUCACCCACUAAUAGGGAACGpYGpAmGCUGGGpm3UUpYAGApCmCGUCGUGAGACAGGUpYAGUUUUACCCUACUGAUGpAmUGUGpYUGpYUGCCAUGGUApAmUCCUGCUCAGUACGAGAGGAACCGCAGpGmUpUmCApGmACAUpYUGGUGUApYpGmUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCApYCUGUGGGAUUAUGACpYGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCCUCCACGCGCCCCGCGCGCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCApYpYCGUAGACGACCUGCUUCUGGGUCGGGGpYUUCGUACGpYAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1224 KY962518.1  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGpUmGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCpYGCGAGAAUUAAUGpYGAAUUpGmCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1225 7O7Y_39  rRNA  LSU-L  28S  Oryctolagus cuniculus  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGUGGGGCGCGGGAAAUGUGGCGUACGGAAGACCCACUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGpAmGpAmGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGUGGUCCGGCCGUGCCGGCGGUCUCGGCGGAUCUUUCCCGCUCCCCGUUCCUCCCGACCCCUCCACCCGCUCCCCCUCCCCCGCCGGUCUUCUCCCUUCACGGGGGGUGGGUCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGCCCCCCGGCCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCCGGCGGGGAAGGUGGCCCGGGGGGACGCCUCGCCGCCGUCGUCCGCGGCGGCGGCGGGCGCGACCCCUCCCCGGGUGUUACAGCCCCGCCCCGGCAGCAGCAGCUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCUGUGUCGCCGCGCUCUCCCCCCUCCCGGCGCUCCCCCCCGCGGGGGUCCCCCGCGAGGGGGCUCCCCCCGCGGGGGCGCGCCGGUGUCGCCGCCCUCGCGGGCGCGGCACGGGGGGGCCGGGCCGCCCCUCCCACGGCGCGACCGCUCUCCCGGCCCCCGCCGCCGCCUCUUCGGGCGUGCGGCGGGGGUGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGUGUCACGCCGUCGGGCUCGGGGGAGAAGUCGGCCACGGCGCGUCGCGCGCCUCCGCGUCCCCCCCUCGCCGUCUCCGGGCGGCGGGGGGGGGUUUCGGCGCGGUGUUCUCGGCGCGCGCGCGCGAGCGAGCGCACGGGGUCGGCGGCGAUGUCGGCUACCCACCCGACCCpGmUCUUGpm1AAACpAmCGGACCAAGGAGUpCmUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGGCGGCUUCCCGCCGUCGUCGGCCGAGGUGGGAUCCCGAGGCCCUUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCpGmApAmAGAUGGUGApAmCpYAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGpYAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCpYCAGGApYAGCUGGCGCUCUCGCAACCCCGCAGUUUUAUCCGGUAAAGCGAApYGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCpYApYpYCUCAAACUUpYAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACpYUpYUGGUAAGCpAmGAACUGGCGpCmUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCUGGCAGUCGGCAGAGCGAGAAAGAGAGUGGAGCGCGCCGCGGGACUCCCCCCGCGGGGGUCCCCGGCCACCCCCCCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUpCmUUGGUGGUAGUpAmpGmpCmAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGpAmGAAGGGUUCCAUGpUmGAACAGpCmApGmUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCAGCCGApYCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUpYUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCpAmUAUCCGCAGCAGGUCUpCmCAAGGUGAACpAmGCCUCUGGpCmAUGUUGGAACAApUmGUAGGUAAGGGAAGUCGGCAAGCpCmGGAUCCGUAACUUCpGmGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCGCCCUCCCCCGGCCGGGUCCGCUCCCUCGCGCGCGCGUGCGCCGUGGCGCGCGCCGCGCGCGCGGCCGAGCCCCGUCUCCCUCCCCCCCUCUCCCCUCCCGGGGCGGGGUGCGGGGAGGGGCGGGCGGGGCCGUCGCUCGCCGCGCGUGCGCGUCGCUGCGCGUGCGCCGCGCGGGGGGUCCGGCGGGCCUCCGGACGGGGGCUCCGGGCACCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCUCGGGGAGCCCGGCGGGCGCCGCGUGCGCGCGCGUGCGCGCCCGGGGUCGGGGGGGUGCGAGGCAGGGGAGGCCCUCUCUCCUCCUCCCCCACCCCGGCGCCGCGGCGCCGCGCGUGCGCGCGCGGUCUCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGpGmGAAUCCGACpYGpYUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUpYCUGCCpCmAGUGCUCUGAAUGpYCApAmAGUGApAmGAAAUpYCAApYGAAGCGCGGpGmUAAACGGCGGGAGpYApAmCpYApYGACpYCpYCUUAAGGUAGCpm5CAApAmUGCCUCpGmUCAUCUAAUUAGUGApCmGCGCAUGAApYmGGApYGApAmCGAGpAmUUCCCACUGUpCmCCpYACCUACpYApYCCAGCGAAACCACpAmGpCmCAAGGGAACGGGCUpYGGpCmGGAAUCAGCGGpGmGAAAGAAGACCCUGUUGAGCpYUGACpUmCUAGUCUGGCACGGUGAApGmAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCUCCCGCCCCCGCGAGGGGGCGGGGCGGGGUCCGCCGGCCUUGCGGGCCGCCGGUGAAAUACCACUACUCUUAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCGGGCCCCGUCGGUCCGCGCGGGCCGGCGGCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGpGmGGCGGUACACCUGUCAAACGGUApm6ACGCAGGpUmpGmUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGApYCUpYGApYUUUCAGpUmACGAApYACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGAGCUUpYUGGGUUUpYAAGCAGGApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCpYUGUGGCGGCCAAGCGUpYCApYAGCGACGpYCGCUUUUUGApYCCUUpm5CGAUGUCGGpCmpYCUUCCUAUCAUUGpYGAAGCAGAAUUCACCAAGCGUUpGmGAUpUmpGmpYUCACCCACUAAUAGGGAACGpYGpAmGCUGGGpm3UUpYAGApCmCGUCGUGAGACAGGUpYAGUUUUACCCUACUGAUGpAmUGUGpYUGpYUGCCAUGGUApAmUCCUGCUCAGUACGAGAGGAACCGCAGpGmUpUmCApGmACAUpYUGGUGUApYpGmUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCApYCUGUGGGAUUAUGACpYGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCGAAGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCGUCCCCGCCGGCGGCCCGCGUCGUGCGUCCGCCUCGGCGGCGUGCGGCGCGCCCCCCGCCGCGCGUCGGGACCGGGGUCCGGUGCGGAGAGCCCUUCGUCCCGGGAAAUGGGGCGCGGCCGGAAAGGGGGCCGCCCUCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCApYUCGUAGACGACCUGCUUCUGGGUCGGGGpYUUCGUACGpYAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGU
1226 7O7Y_1  rRNA  SSU  18S  Oryctolagus cuniculus  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUpAmUGCUUGpYCpYCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAApYGGCUCpAmUUAAApYCAGpYUAUGGUpUmCCpYUpUmGGUCGCUCGCUCCUCUCCUACUUGGAUAACUGUGGUApAmUUCUAGpAmGCUAApUmApCmAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGApYGCGUGCApYUUAUCAGAUCAAAACCAACCCGGUCAGCCUCCCCCCGGCCCCGGCCGGGGGGGUGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCUCCGUGGCGGCGACGACCCAUUCGAACGUCpUmGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGpYGACGGGGAAUCAGGGUUCGAUpUmCCGGAGApGmGGAGCCUGAGAAACGGCUACCACAUpCmCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCACUCCCGACCCGGGGApGmGUpAmGUGApCmGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUpYUAApAmUCCUUUAACGAGGpAmUCCAUUGGAGpGmGCAAGUCpYGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUApGmCGUApYApYUAAAGUUGCUGCAGUUpAmAAAAGCUCGUAGpYUpGmGApYCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUpYACUUUGAAAAAApYpYAGAGUGpYUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAApYAApYpGmGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUpYCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUpYGCCAAGAAUGUUUUCAUUAAUCAAGApAmCGAAAGUCGGAGGpYpYCGAAGACGApYCAGAUACCGUCGUAGUUCCGACCApYAAACGAUGCCGACUGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUApYGGpYUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCpYGCGGCpYUAAUUpYGACB8NCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGApUmUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGpUmGpGmUGCAUGGCpac4CGUUCUUAGUpYGGUGGAGCGAUUUGUCUGGpYUAAUUCCGAUAACGApAmCGAGACUpCmUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUpUmCUpYApGmAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACApGmGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUpYCCCCAUGAACGAGpm7GAAUpYCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUpAmAGUCCCUGCCCUUpYGUACACACCGpCmCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUpUmGACUAUCUAGAGGAAGUAAAAGUCGUApm6ACAAGGUUUCpac4CGUAGGUGpm6,6Apm6,6ACCUGCGGAAGGAUCAUUA
1227 7O7Y_41  rRNA  LSU-S  5.8S  Oryctolagus cuniculus  Cytoplasm  CGACUCUUAGCGGUGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCpYGCGAGAAUUAAUGpYGAAUUpGmCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUUG
1228 7QIZ_43  rRNA  LSU-L  25S  Solanum lycopersicum  Cytoplasm  GCGACCCCAGGUCAGGCGGGAUUACCCGCUGAGUpYUAAGCAUApUmCAApUmAAGCGGAGGAAAAGAAACUpYACAAGGAUUCCCCUAGUAACGGCGAGCGAACCGGGAACAGCCCAGCCUUAGAAUCGGGCGGCUCCGUCGUCCGAApUmUGUAGUCUGGAGAAGCGUCCUCAGCGGCGGACCGGGCCCAAGUCCCCUGGAAGGGGGCGCCGGAGAGGGUGAGAGCCCCGUCGUGCCCGGACCCUGUCGCACCACGAGGCGCUGUCUACGAGUCGGGUUGUUUGGGAAUGCAGCCCAAAUCGGGCGGUGAAUUCCGUCCAAGGCUAAAUACUGGCGAGAGACCGAUAGCGAACAAGUACCGCGAGGGAAAGAUGpAmAAAGGACUpYUGAAAAGAGAGUCAAAGAGUpGmCUUGAAAUUGUCGGGAGGGAAGCGGAUGGGGGCCGGCGAUGCGCCCCGGUCGGAUGUGGAACGGCGACGAGCCGGUCCGCCGAUCGACUCGGGGCGUGGACCAGCGUGGAUUGGGGGGGCGGCCAAAGCCCGGGCUCUCGAUACGCCCGUGGAACGCCGUCUCCCCGAUUGUGGAAGGCAGCGCGCGCCUCCGGCGUGCUUCGGCAUCUGCGCGCUCCGGACGCUGGCCUGUGGGCUCCCCAUUCGACCCGUCUUGpm1AAACpAmCGGACCAAGGAGUpCmpUmGACAUGUGUGCGAGUCAACGGGCGAGUAAACCCGUAAGGCGUAAGGAAGCUGAUUGGUGGGAUCCCCCUGAGGGGUGCACCGCCGACCGACCUUGAUCUUCUGAGAAGGGUUCGAGUGUGAGCAUACCpUmGUCGGGACCCpGmApAmAGAUGGUGApAmCpYAUGCCUGAGCGGGGCGAAGCCAGAGGAAACUCUGGUGGAGGCCCGCAGCGAUACUGpAmCGUGCAAApYCGUUCGUCUGACUUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCGUCUAGUpAmGCUGGUUCCCUCCGAAGUUUCCCpYCAGGAUAGCUGGAGCUCGCGUGCGAGUUCUApYCGGGUAAAGCCAApYGAUUAGAGGCCUCGGGGGCGCAACGCCCUCGACCUAUpYCUCAAACUUpYAAApUmAGGUAGGACGGCGCGGCUGCUUUGUUGAGCCGCGCCACGGAAUCAAGAGCUCCAAGUGGGCCAUpYpYpYUGGUAAGCpAmGAACUGGCGAUGCGGGAUGAACCGGAAGCCGGGUUACGGUGCCAAACUGCGCGCUAACCUAGAUCCCACAAAGGGUGUUGGUCGApYUAAGACAGCAGGACGGUGGUCAUGGAAGUCGAAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCCGAAAAUGGAUGGCGCUUAAGCGCGCGACCUACACCCGGCCGUCGGGGCAAGUGCCAGGCCCCGAUGpAmGUAGGAGGGCGCGGCGGUCGCUGCAAAACCUUGGGCGCGAGCCUGGGCGGAGCGGCCGUCGGUGCAGAUpCmUUGGUGGUAGUpAmpGmCAAAUAUUCAAApYGAGAApCmUpYUGAAGGCCGAAGAGGGGAAAGGUUCCAUGUGAACGGCACUUGCACAUGGGUUAGpUmCGAUCCUAAGGGUCGGGGGAACCCCGACAGAUAGCGCGUUUCGCGCGUACUCCGAAAGGGAAUCGGGUUAAAAUUCCUGAACCGGGACGUGGCGGUUGACGGCAACGUUAGGAAGUCCGGAGACGUCGGCGGGAGCCUCGGGAAGAGUUAUCUUUUCUGUUUAACAGCCUGCCCACCCUGGAAUCGGCUCAGCCGGAGGUAGGGUCCAGCGGCUGGAAGAGCACCGCACGUCGCGUGGUGUCCGGUGCGCUCCCGGCGGCCCUUGAAAAUCCGGAGGACCGAAUGCCGUCCACGCCCGGUCGUACUCAUAApCmCGpCmAUCApGmGUCUpCmCAAGGUGAACAGCCUCUGGUCGAUGGAACAApUmGUAGGCAAGGGAAGpYCGGCAAAAUGGAUCCGUAACUUCGGGAAAAGGAUUGGCUCUGAGGGCUGGGCACGGGGGUCCCAGUCCCGAACCCGUCGGCUGUCGGUGGACUGCUCGAGCUGCUCCCGCGGCGAGAGCGGGUCGCCGCGUGCCGGCCGGGGGACGGACUGGGAACGGUUCCUUCGGGGGCCUUCCCCGGGCGUCGAACAGCCAACUCAGAACUGGpUmACGGACAAGpGmpGmGpAmAUCCGACpYGpYUUAAUUAAAACAAAGCAUUGCGAUGGUCCCAACGGAUGUUUACGCAAUGUGAUUpYCUGCCpCmAGUGCUCUGAAUGpYCAAAGUGApAmGAAApYUCAACCAAGCpGmCGGGUAAACGGCGGGAGpYApAmCpYApYGACpYCpYCUUAAGGUAGCpm5CAApAmUGCCUCpGmUCAUpCmUAAUUAGUGACGCGCAUGAApYGGApYUApAmCGAGpAmUUCCCACUGUpCmCCUGUCUACpUmApYCCAGCGAAACCACAGpCmCAAGGGAACGGGCUUGGCAGAAUCApGmCGGpGmGAAAGAAGACCCUpGmpUmUGAGCpYUGACpUmCUAGUCCGACpYUUGUGAAAUGACUUGAGAGGUGUAGUAUAAGUGGGAGCCGAAAGGCGAAAGUGAAAUACCACUACUUUUAACGUUAUUUUACUUApYUCCGUGAAUCGGAAGCGGGGCACUGCCCCUCUUUUUGGACCCAAGGCUCGCUUCGCGGGCCGAUCCGGGCGGAAGACAUUGUCAGGUGGGGAGUUpYGGCUGpGmGGCGGCACAUCUGUUAAAAGpAmUAACGCAGGpUmpGmUCCUAAGAUGAGCUCAACGAGAACAGAAAUpCmUCGUGUGGAACAGAAGGGUAAAAGCUCGUpYUGAUpUmCUGAUUUCCAGpUmACGAApUmACGAACCGpYGAAAGCGUGGCCUAACGAUCCUUUAGACCUUCGGAAUUCGAAGCUApGmApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCpYUGUGGCAGCpCmAAGCGUpYCAUAGCGACGpYUGCUUUUUGApYCCUUpm5CGAUGUCGGpCmpYCUpUmCCUAUCAUUGpYGAAGCAGAAUUCACCApAmGUGUUpGmGAUpUmpGmpYUCACCCACCAAUAGGGAACGpYGpAmGpCmUGGGpm3UUpYAGApCmCGUCGUGAGACAGGUpYAGUUUUACCCUACUGApYGACAGUGUCGCAAUAGUAAUUCAACCUAGUACGAGAGGAACCGUUGAUUCACACAAUUGGCCAUCGCGCUUGGUUGAAAAGCCAGUGGCGCGAAGCUACCGUGUGCUGGAUUAUGACpYGAACGCCUCUAAGUCAGAAUCCGGGCUAGAAGCGACGCAUGCGCCCGCCGUCCGCUUGCCGACCCGCAGUAGGGGCCUUUGGCCCCCAAGGGCACGUGUCGUUGGCUAAGUCGCCGCGACGGAAGCGUCGCGGUGACCGCCUUGAAGUACAAUUUCCAUCGAGCGGCGGGUAGAAUCCUUUGCAGACGACpUmUAAAUACGCGACGGGGUAUUGUAAGUGGCAGAGUGGCCUUGCUGCCACGAUCCACUGAGAUUCAGCCCUUUGUCGCUCCGAUUCGU
1229 7QIZ_46  rRNA  SSU  18S  Solanum lycopersicum  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGUCAUpAmUGCUUGUCUpCmAAAGAUUAAGCCAUGCAUGUGUAAGUAUGAACAAAUUCAGACUGUGAAACUGCGAAUGGCUCAUpYAAAUCAGpYUAUAGUUUGpYUpUmGAUGGUAUCUACUACUpCmGGAUAACCGUAGUAAUUCUAGpAmGCUAAUACGUGCAACAAACCCCGACUUCUGGAAGGGAUGCAUUUApYUAGAUAAAAGGUCGACGCGGGCUCUGCCCGUUGCUGCpGmAUGAUUCApYGApYAACUCGACGGAUCGCACGGCCAUCGUGCCGGCGACGCAUCApYUCAAApYUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUGGUGACGGGpYGACGGAGAAUUAGGGUUCGApYUCCGGAGApGmGGAGCCUGAGAAACGGCUACCACAUpCmCAAGGAAGGCAGCAGGCGCGCpAmAAUUACCCAApYCCUGACACGGGGAGGUpAmGUGApCmAAUAAAUAACAAUACCGGGCUCUAUGAGUCUGGUAAUUGGAAUGAGUACAAUCUAAAUCCCUUAACGAGGpAmUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGpUmAApYUCCAGCUCCAAUApGmCGUApYmApYUUAAGUUGpUmUGCAGUUpAmAAAAGCUCGUAGpYUGGACUUUGGGAUGGGCCGGCCGGUCCGCCCUAGGUGUGCACCGGUCGUCUCGUCCCUUCUGUCGGCGAUGCGCUCCUGGCCUUAAUUGGCCGGGUCGUGCCUCCGGCGCUGUUACUpYUGAAGAAApYUAGAGUGCUCAAAGCAAGCCUACGCUCUGUAUACAUUpAmGCAUGGGApYAACAUUAUAGGAUUUCGGUCCUAUUACGUUGGCCUUCGGGAUCGGAGUAAUGAUUAACAGGGACAGUCGGGGGCAUUCGUAUUUCAUAGUCAGAGGUGAAAUpYCUUGGAUUUAUGAAAGACGAACAACUGCGAAAGCAUpYpYGCCAAGGAUGUUUUCAUUAAUCAAGApAmCGAAAGUUGGGGGCUCGAAGACGApYCAGAUACCGpUmCCUAGUCUCAACCApYAAACGAUGCCGACCAGGGAUCGGCGGAUGUUGCUUUUAGGACUCCGCCGGCACCUUAUGAGAAAUCAAAGUUUUUGGGpYUCCGGGGGGAGUApYGGUCGCAAGGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCpYGCGGCpYUAAUUpYGACxUCAACACGGGGAAACUpYACCAGGpYpCmCAGACAUAGUAAGGAUUGACAGACUGAGAGCUCUUUCUUGAUUCpUmApUmGGGUGGpUmGpGmUGCAUGGCpac4CGUUCUUAGUpYGGUGGAGCGApYUUGpYCUGGpYUAAUUCCGUUAACGApAmCGAGACCUCAGCCUGCUAACUAGCUAUGCGGAGGUAUCCCUUCGCGGCCAGCUpUmCUUAGAGGGACUACGGCCUUUUAGGCCGCGGAAGUUUGAGGCAAUAACApGmGUCUGUGAUGCCCpUmUAGAUGUUCUGGGCCGCACGCGCGCUACACUGAUGUApYUCAACGAGCUUAUAGCCUUGGCCGACAGGCCCGGGUAAUCUUUGAAAUUpYCApYCGUGAUGGGGAUAGAUCAUUGCAAUUGUpYGGUCUUCAACGpAmGpm7GAAUUCCUAGUAAGCGCGAGUCAUCAGCUCGCGUUGACUACGUCCCUGCCCUUpYGUACACACCGpCmCCGUCGCUCCUACCGAUUGAAUGAUCCGGUGAAAUGUUCGGAUCGCGGCGACGUGGGCGGUUCGCUGCCCGCGACGUCGCGAGAAGUCCAUUGAACCUUAUCAUUUAGAGGApAmGGAGAAGUCGUApm6ACAAGGUUUCpac4CGUAGGUGpm6,6Apm6,6ACCUGCGGAAGGAUCAUUG
1230 7QIZ_45  rRNA  LSU-S  5.8S  Solanum lycopersicum  Cytoplasm  ACAAACGACUCUCGGCAACGGApYAUCUCGGCUCUCGCAUCGAUGAAGpAmACGUAGCGAAAUGCGAUACUUGGUGUGAAUpYpGmCAGAAUCCCGUGAACCAUCGAGUCUUUGAACGCAAGUUGCGCCCGAAGCCAUUUGGCCGAGGGCACGUCUGCCUGGGCGUCACGC
1231 7PZY_1  rRNA  LSU-L  25S  Candida albicans  Cytoplasm  UGACCUCAAAUCAGGUAGGACUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACCAACAGGGAUUGCCUCAGUAGCGGCGAGUGAAGCGGCAAAAGCUCAAAUUUGAAAUCUGGCGUCUUUGGCGUCCGAGUUGUAAUUUGAAGAAGGUAUCUUUGGGCCCGGCUCUUGUCUAUGUUCCUUGGAACAGGACGUCACAGAGGGUGAGAAUCCCGUGCGAUGAGAUGACCCGGGUCUGUGUAAAGUUCCUUCGACGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGGGUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUGAUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGGGAAGGGCUUGAGAUCAGACUUGGUAUUUUGCAUGCUGCUCUCUCGGGGGCGGCCGCUGCGGUUUACCGGGCCAGCAUCGGUUUGGAGCGGCAGGAUAAUGGCGGAGGAAUGUGGCACGGCUUCUGCUGUGUGUUAUAGCCUCUGACGAUACUGCCAGCCUAGACCGAGGACUGCGGUUUUUACCUAGGAUGUUGGCAUAAUGAUCUUAAGUCGCCCGUCUUGAAACACGGACCAAGGAGUCUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCGUACGCGUAAUGAAAGUGAACGAAGGUGGGGGCCCAUUAGGGUGCACCAUCGACCGAUCCUGAUGUGUUCGGAUGGAUUUGAGUAAGAGCAUAGCUGUUGGGACCCGAAAGAUGGUGAACUAUGCCUGAAUAGGGUGAAGCCAGAGGAAACUCUGGUGGAGGCUCGUAGCGGUUCUGACGUGCAAAUCGAUCGUCGAAUUUGGGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUUUCCCUCAGGAUAGCAGAAGCUCGUAUCAGUUUUAUGAGGUAAAGCGAAUGAUUAGAAGUCUUGGGGUUGAAAUGACCUUAACUUAUUCUCAAACUUUAAAUAUGUAAGAAGUCCUUGUUGCUUAAUUGAACGUGGACAAUUGAAUGAAGAGCUUUUAGUGGGCCAUUUUUGGUAAGCAGAACUGGCGAUGCGGGAUGAACCGAACGUGAAGUUAAAGUGCCGGAAUGCACGCUCAUCAGACACCACAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGCGUGCUACUUAUACUUCACCGUGAUUGCUGUUUUGACGCUUUCACGAGUAGGCAGGCGUGGAGGUCAGUGACGAAGCCUUUGCUGUAAAGCUGGGUCGAACGGCCUCUAGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCAUGUCAACAGCAGUUGGACAUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAACGUGCUUGAUUUUUCAGGCCAACCAUCGAAAGGGAAUCCGGUUAAAAUUCCGGAACUUGGAUAUGGAUUCUUCACGGCAACGUAACUGAAUGUGGAGACGUCGGCGUGAGCCCUGGGAGGAGUUAUCUUUUCUUCUUAACAGCUUAUCACCCUGGAAUUGGUUUAUCCGGAGAUGGGGUCUUAUGGCUGGAAGAGCGCGGUAAUUUUGCCGCGUCCGGUGCGCUUACGACGGUCCUUGAAAAUCCACAGGAAGGAAUAGUUUUCAUGCCAAGUCGUACUCAUAACCGCAGCAGGUCUCCAAGGUUAACAGCCUCUAGUUGAUAGAAUAAUGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGAUCGGGUGUCUUGGGCCUUGUGUAGACGCGGCGGUGACUGUUGGCGGGCUGUUUUACGACGGACUGCUGGUGGAUGCUGCUGUAGACACGCUUGGUAGGUCUUUAUGGCCGUCCGGGGCACGUUUAACGAUCAACUUAGAACUGGUACGGACAAGGGGAAUCUGACUGUCUAAUUAAAACAUAGCAUUGUGAUGGUCAGAAAGUGAUGUUGACACAAUGUGAUUUCUGCCCAGUGCUCUGAAUGUCAAAGUGAAGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUAACUAUGACUCUCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGAUUAACGAGAUUCCCACUGUCCCUAUCUACUAUCUAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCUUGACUCUAGUUUGACAUUGUGAAAAGACAUGGAGGGUGUAGAAUAAGUGGGAGCUUCGGCGCCGGUGAAAUACCACUACCUCUAUAGUUUUUUUACUUAUUCAAUGAAGCGGAGCUGGAGGUCAAACUCCACGUUCUAGCAUUAAGCCCUCUGGGCGAUCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUGGGGCGGCACAUCUGUUAAACGAUAACGCAGGUGUCCUAAGGGGGACUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGGUAAAAGUCCCCUUGAUUUUGAUUUUCAGUGUGAAUACAAACCAUGAAAGUGUGGCCUAUCGAUCCUUUAGUCCCUCGGAAUUUGAGGCUAGApGmGUGCCAGAAAAGUUACCACAGGGAUAACUGGCUUGUGGCAGUpCmAAGCGUUCAUAGCGACAUUGCUUUUUGAUUCUUCGAUGUCGGCUCUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAUUGUUCACCCACUAAUAGGGAACGUGAGCUGGGUUUAGACCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGAAUGUUAUCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACCGUUCAUUCAGAUAAUUGGUUUUUGCGGCUGUCUGAUCAGGCAACGCCGCGAAGCUACCAUCUGCUGGAUUAUGGCUGAACGCCUCUAAGUCAGAAUCCAUGCUAGAACGCGAUGAUUUUUGCCCUGCACAUUUUAGAUGGAUACGAAUAAGACUUUUUAGUCGCUGGACCAUAGCAGGCUGGCAACGGUGCGCUUAGCGGAAAGGCUUUGUGCGCUUGCCGGCGGAUAGCAAUGUCAACAUGCGCGGGGAUAAAUCCUUUGCAUACGACUUAGAUGUACAACGGAGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUACGAUCUGCUGAGAUUAAGCUCUUGUUGUCUGAUUUGU
1232 7K00_22  rRNA  LSU  23S  Escherichia coli  Prokaryotic Cytosol  GGUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCAUCCCGACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCUU
1233 7K00_1  rRNA  SSU  16S  Escherichia coli  Prokaryotic Cytosol  AAAUUGAAGAGUUUGAUCAUGGCUCAGAUUGAACGCUGGCGGCAGGCCUAACACAUGCAAGUCGAACGGUAACAGGAAGAAGCUUGCUUCUUUGCUGACGAGUGGCGGACGGGUGAGUAAUGUCUGGGAAACUGCCUGAUGGAGGGGGAUAACUACUGGAAACGGUAGCUAAUACCGCAUAACGUCGCAAGACCAAAGAGGGGGACCUUCGGGCCUCUUGCCAUCGGAUGUGCCCAGAUGGGAUUAGCUAGUAGGUGGGGUAACGGCUCACCUAGGCGACGAUCCCUAGCUGGUCUGAGAGGAUGACCAGCCACACUGGAACUGAGACACGGUCCAGACUCCUACGGGAGGCAGCAGUGGGGAAUAUUGCACAAUGGGCGCAAGCCUGAUGCAGCCAUGCCGCGUGUAUGAAGAAGGCCUUCGGGUUGUAAAGUACUUUCAGCGGGGAGGAAGGGAGUAAAGUUAAUACCUUUGCUCAUUGACGUUACCCGCAGAAGAAGCACCGGCUAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGUGCAAGCGUUAAUCGGAAUUACUGGGCGUAAAGCGCACGCAGGCGGUUUGUUAAGUCAGAUGUGAAAUCCCCGGGCUCAACCUGGGAACUGCAUCUGAUACUGGCAAGCUUGAGUCUCGUAGAGGGGGGUAGAAUUCCAGGUGUAGCGGUGAAAUGCGUAGAGAUCUGGAGGAAUACCGGUGGCGAAGGCGGCCCCCUGGACGAAGACUGACGCUCAGGUGCGAAAGCGUGGGGAGCAAACAGGAUUAGAUACCCUGGUAGUCCACGCCGUAAACGAUGUCGACUUGGAGGUUGUGCCCUUGAGGCGUGGCUUCCGGAGCUAACGCGUUAAGUCGACCGCCUGGGGAGUACGGCCGCAAGGUUAAAACUCAAAUGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAUpm2Gpm5CAACGCGAAGAACCUUACCUGGUCUUGACAUCCACGGAAGUUUUCAGAGAUGAGAAUGUGCCUUCGGGAACCGUGAGACAGGUGCUGCAUGGCUGUCGUCAGCUCGUGUUGUGAAAUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCUUAUCCUUUGUUGCCAGCGGUCCGGCCGGGAACUCAAAGGAGACUGCCAGUGAUAAACUGGAGGAAGGUGGGGAUGACGUCAAGUCAUCAUGpm2GCCCUUACGACCAGGGCUACACACGUGCUACAAUGGCGCAUACAAAGAGAAGCGACCUCGCGAGAGCAAGCGGACCUCAUAAAGUGCGUCGUAGUCCGGAUUGGAGUCUGCAACUCGACUCCAUGAAGUCGGAAUCGCUAGUAAUCGUGGAUCAGAAUGCCACGGUGAAUACGUUCCCGGGCCUUGUACACACCGpm4CmCCGUpm5CACACCAUGGGAGUGGGUUGCAAAAGAAGUAGGUAGCUUAACCUUCGGGAGGGCGCUUACCACUUUGUGAUUCAUGACUGGGGUGAAGUCGpm3UAACAAGGUAACCGUAGGpm2GGpm6,6Apm6,6ACCUGCGGUUGGAUCACCUCCUUA
1234 RIBOMAP_EC23S  rRNA  LSU  23S  Escherichia coli  Prokaryotic Cytosol  GGUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm7GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCAUCCCGACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAACpm3YApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCACpCmUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCUU
1235 RIBOMAP_EC16S  rRNA  SSU  16S  Escherichia coli  Prokaryotic Cytosol  AAAUUGAAGAGUUUGAUCAUGGCUCAGAUUGAACGCUGGCGGCAGGCCUAACACAUGCAAGUCGAACGGUAACAGGAAGAAGCUUGCUUCUUUGCUGACGAGUGGCGGACGGGUGAGUAAUGUCUGGGAAACUGCCUGAUGGAGGGGGAUAACUACUGGAAACGGUAGCUAAUACCGCAUAACGUCGCAAGACCAAAGAGGGGGACCUUCGGGCCUCUUGCCAUCGGAUGUGCCCAGAUGGGAUUAGCUAGUAGGUGGGGUAACGGCUCACCUAGGCGACGAUCCCUAGCUGGUCUGAGAGGAUGACCAGCCACACUGGAACUGAGACACGGUCCAGACUCCUACGGGAGGCAGCAGUGGGGAAUAUUGCACAAUGGGCGCAAGCCUGAUGCAGCCAUGCCGCGUGUAUGAAGAAGGCCUUCGGGUUGUAAAGUACUUUCAGCGGGGAGGAAGGGAGUAAAGUUAAUACCUUUGCUCAUUGACGUUACCCGCAGAAGAAGCACCGGCUAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGUGCAAGCGUUAAUCGGAAUUACUGGGCGUAAAGCGCACGCAGGCGGUUUGUUAAGUCAGAUGUGAAAUCCCCGGGCUCAACCUGGGAACUGCAUCUGAUACUGGCAAGCUUGAGUCUCGUAGAGGGGGGUAGAAUUCCAGGUGUAGCGGUGAAAUGCGUAGAGAUCUGGAGGAAUACCGGUGGCGAAGGCGGCCCCCUGGACGAAGACUGACGCUCAGGUGCGAAAGCGUGGGGAGCAAACAGGAUUAGAUACCCUGGUAGUCCACGCCGUAAACGAUGUCGACUUGGAGGUUGUGCCCUUGAGGCGUGGCUUCCGGAGCUAACGCGUUAAGUCGACCGCCUGGGGAGUACGGCCGCAAGGUUAAAACUCAAAUGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAUpm2Gpm5CAACGCGAAGAACCUUACCUGGUCUUGACAUCCACGGAAGUUUUCAGAGAUGAGAAUGUGCCUUCGGGAACCGUGAGACAGGUGCUGCAUGGCUGUCGUCAGCUCGUGUUGUGAAAUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCUUAUCCUUUGUUGCCAGCGGUCCGGCCGGGAACUCAAAGGAGACUGCCAGUGAUAAACUGGAGGAAGGUGGGGAUGACGUCAAGUCAUCAUGpm2GCCCUUACGACCAGGGCUACACACGUGCUACAAUGGCGCAUACAAAGAGAAGCGACCUCGCGAGAGCAAGCGGACCUCAUAAAGUGCGUCGUAGUCCGGAUUGGAGUCUGCAACUCGACUCCAUGAAGUCGGAAUCGCUAGUAAUCGUGGAUCAGAAUGCCACGGUGAAUACGUUCCCGGGCCUUGUACACACCGpm4CmCCGUpm5CACACCAUGGGAGUGGGUUGCAAAAGAAGUAGGUAGCUUAACCUUCGGGAGGGCGCUUACCACUUUGUGAUUCAUGACUGGGGUGAAGUCGpm3UAACAAGGUAACCGUAGGpm2GGpm6,6Apm6,6ACCUGCGGUUGGAUCACCUCCUUA
1236 RIBOMAP_TT16S  rRNA  SSU  16S  Thermus thermophilus  prokaryotic cytosol  UUUGUUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCGCGAGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCACCUCCpYpYUCU
1237 RIBOMAP_TT23S  rRNA  LSU  23S  Thermus thermophilus  Prokaryotic Cytosol  GGUCAAGAUGGUAAGGGCCCACGGUGGAUGCCUCGGCACCCGAGCCGAUGAAGGACGUGGCUACCUGCGAUAAGCCAGGGGGAGCCGGUAGCGGGCGUGGAUCCCUGGAUGUCCGAAUGGGGGAACCCGGCCGGCGGGAACGCCGGUCACCGCGCUUUUGCGCGGGGGGAACCUGGGGAACUGAAACAUCUCAGUACCCAGAGGAGAGGAAAGAGAAAUCGACUCCCUGAGUAGCGGCGAGCGAAAGGGGACCAGCCUAAACCGUCCGGCUUGUCCGGGCGGGGUCGUGGGGCCCUCGGACACCGAAUCCCCAGCCUAGCCGAAGCUGUUGGGAAGCAGCGCCAGAGAGGGUGAAAGCCCCGUAGGCGAAAGGUGGGGGGAUAGGUGAGGGUACCCGAGUACCCCGUGGUUCGUGGAGCCAUGGGGGAAUCUGGGCGGACCACCGCCUAAGGCUAAGUACUCCGGGUGACCGAUAGCGCACCAGUACCGUGAGGGAAAGGUGAAAAGAACCCCGGGAGGGGAGUGAAAUAGAGCCUGAAACCGUGGGCUUACAAGCAGUCACGGCCCCGCAAGGGGUUGUGGCGUGCCUAUUGAAGCAUGAGCCGGCGACUCACGGUCGUGGGCGAGCUUAAGCCGUUGAGGCGGAGGCGUAGGGAAACCGAGUCCGAACAGGGCGCAAGCGGGCCGCACGCGGCCCGCAAAGUCCGCGGCCGUGGACCCGAAACCGGGCGAGCUAGCCCUGGCCAGGGUGAAGCUGGGGUGAGACCCAGUGGAGGCCCGAACCGGUGGGGGAUGCAAACCCCUCGGAUGAGCUGGGGCUAGGAGUGAAAAGCUAACCGAGCCCGGAGAUAGCUGGUUCUCCCCGAAAUGACUUUAGGGUCAGCCUCAGGCGCUGACUGGGGCCUGUAGAGCACUGAUAGGGCUAGGGGGCCCACCAGCCUACCAAACCCUGUCAAACUCCGAAGGGUCCCAGGUGGAGCCUGGGAGUGAGGGCGCGAGCGAUAACGUCCGCGUCCGAGCGCGGGAACAACCGAGACCGCCAGCUAAGGCCCCCAAGUCUGGGCUAAGUGGUAAAGGAUGUGGCGCCGCGAAGACAGCCAGGAGGUUGGCUUAGAAGCAGCCAUCCUUUAAAGAGUGCGUAAUAGCUCACUGGUCGAGUGGCGCCGCGCCGAAAAUGAUCGGGGCUUAAGCCCAGCGCCGAAGCUGCGGGUCUGGGGGAUGACCCCAGGCGGUAGGGGAGCGUUCCCGAUGCCGAUGAAGGCCGACCCGCGAGGCGGCUGGAGGUAAGGGAAGUGCGAAUGCCGGCAUGAGUAACGAUAAAGAGGGUGAGAAUCCCUCUCGCCGUAAGCCCAAGGGUUCCUACGCAAUGGUCGUCAGCGUAGGGUUAGGCGGGACCUAAGGUGAAGCCGAAAGGCGUAGCCGAAGGGCAGCCGGUUAAUAUUCCGGCCCUUCCCGCAGGUGCGAUGGGGGGACGCUCUAGGCUAGGGGGACCGGAGCCAUGGACGAGCCCGGCCAGAAGCGCAGGGUGGGAGGUAGGCAAAUCCGCCUCCCAACAAGCUCUGCGUGGUGGGGAAGCCCGUACGGGUGACAACCCCCCGAAGCCAGGGAGCCAAGAAAAGCCUCUAAGCACAACCUGCGGGAACCCGUACCGCAAACCGACACAGGUGGGCGGGUGCAAGAGCACUCAGGCGCGCGGGAGAACCCUCGCCAAGGAACUCUGCAAGUUGGCCCCGUAACUUCGGGAGAAGGGGUGCUCCCUGGGGUGAUGAGCCCCGGGGAGCCGCAGUGAACAGGCUCUGGCGACUGUUUACCAAAAACACAGCUCUCUGCGAACUCGUAAGAGGAGGUAUAGGGAGCGACGCUUGCCCGGUGCCGGAAGGUCAAGGGGAGGGGUGCAAGCCCCGAACCGAAGCCCCGGUGAACGGCGGCCGpYAACxUApYAApCmGGUCCUAAGGUAGCGAAAxUUCxCUUGUCGGGUAAGUUCCGACxCUGCACGAAAAGCGUAACGACCGGAGCGCUGUCUCGGCGAGGGACCCGGUGAAAUUGAACUGGCCGUGAAGAUGCGGCCUACCCGUGGCAGGACGAAAAGACCCCGUGGAGCUUUACUGCAGCCUGGUGUUGGCUCUUGGUCGCGCCUGCGUAGGAUAGGUGGGAGCCUGUGAACCCCCGCCUCCGGGUGGGGGGGAGGCGCCGGUGAAAUACCACCCUGGCGCGGCUGGGGGCCUAACCCUCGGAUGGGGGGACAGCGCUUGGCGGGCAGUUUGACUGpGmGGCGGUCGCCUCCUAAAAGGUAACGGAGGCGCCCAAAGGUCCCCUCAGGCGGGACGGAAAUCCGCCGGAGAGCGCAAGGGUAGAAGGGGGCCUGACUGCGAGGCCUGCAAGCCGAGCAGGGGCGAAAGCCGGGCCUAGUGAACCGGUGGUCCCGUGUGGAAGGGCCAUCGAUCAACGGAUAAAAGUUACCCCGGGGAUAACAGGCUGAUCUCCCCCGAGCGUCCACAGCGGCGGGGAGGUUUGGCACCUCGxAUGUCGGCUCGUCGCAUCCUGGGGCUGAAGAAGGUCCCAAGGGUUGGGCpUmGUUCGCCCAUUAAAGCGGCACGCGAGCUGGGUUCAGAACGUCGUGAGACAGUUCGGUCUCUApYCCGCCACGGGCGCAGGAGGCUUGAGGGGGGCUCUUCCUAGUACGAGAGGACCGGAAGGGACGCACCUCUGGUUUCCCAGCUGUCCCUCCAGGGGCAUAAGCUGGGUAGCCAUGUGCGGAAGGGAUAACCGCUGAAAGCAUCUAAGCGGGAAGCCCGCCCCAAGAUGAGGCCUCCCACGGCGUCAAGCCGGUAAGGACCCGGGAAGACCACCCGGUGGAUGGGCCGGGGGUGUAAGCGCCGCGAGGCGUUGAGCCGACCGGUCCCAAUCGUCCGAGGUCUUGACCCC
1238 RIBOMAP_HC23S  rRNA  LSU  23S  Haloarcula marismortui  Prokaryotic Cytosol  AACCCCGAGAACUGAAACAUCUCAGUAUCGGGAGGAACAGAAAACGCAAUGUGAUGUCGUUAGUAACCGCGAGUGAACGCGAUACAGCCCAAACCGAAGCCCUCACGGGCAAUGUGGUGUCAGGGCUACCUCUCAUCAGCCGACCGUCUCGACGAAGUCUCUUGGAACAGAGCGUGAUACAGGGUGACAACCCCGUACUCGAGACCAGUACGACGUGCGGUAGUGCCAGAGUAGCGGGGGUUGGAUAUCCCUCGCGAAUAACGCAGGCAUCGACUGCGAAGGCUAAACACAACCUGAGACCGAUAGUGAACAAGUAGUGUGAACGAACGCUGCAAAGUACCCUCAGAAGGGAGGCGAAAUAGAGCAUGAAAUCAGUUGGCGAUCGAGCGACAGGGCAUACAAGGUCCCUCGACGAAUGACCGACGCGCGAGCGUCCAGUAAGACUCACGGGAAGCCGAUGUUCUGUCGUACGUUUUGpm1AAAAACGAGCCAGGGAGUGUGUCUGCAUGGCAAGUCUAACCGGAGUAUCCGGGGAGGCACAGGGAAACCGACAUGGCCGCAGGGCUUUGCCCGAGGGCCGCCGUCUUCAAGGGCGGGGAGCCAUGUGGACACGACCCGAAUCCGGACGAUCUACGCAUGGACAAGAUGAAGCGUGCCGAAAGGCACGUGGAAGUCUGUUAGAGUUGGUGUCCUACAAUACCCUCUCGUGAUCUAUGUGUAGGGGUGAAAGGCCCAUCGAGUCCGGCAACAGCUGGUUCCAAUCGAAACAUGUCGAAGCAUGACCUCCGCCGAGGUAGUCUGUGAGGUAGAGCGACCGAUUGGUGUGUCCGCCUCCGAGAGGAGUCGGCACACCUGUCAAACUCCAAACUUACAGACGCCGUUUGACGCGGGGAUUCCGGUGCGCGGGGUAAGCCUGUGUACCAGGAGGGGAACAACCCAGAGAUAGGUUAAGGUCCCCAAGUGUGGAUUAAGUGUAAUCCUCUGAAGGUGGUCUCGAGCCCUAGACAGCCGGGAGGUGAGCUUAGAAGCAGCUACCCUCUAAGAAAAGCGUAACAGCUUACCGGCCGAGGUUUGAGGCGCCCAAAAUGAUCGGGACUCAAAUCCACCACCGAGACCUGUCCGUACCACUCAUACUGGUAAUCGAGUAGAUUGGCGCUCUAAUUGGAUGGAAGUAGGGGUGAAAACUCCUAUGGACCGAUUAGUGACGAAAAUCCUGGCCAUAGUAGCAGCGAUAGUCGGGUGAGAACCCCGACGGCCUAAUGGAUAAGGGUUCCUCAGCACUGCUGAUCAGCUGAGGGUUAGCCGGUCCUAAGUCAUACCGCAACUCGACUAUGACGAAAUGGGAAACGGGUUAAUAUUCCCGUGCCACUAUGCAGUGAAAGUUGACGCCCUGGGGUCGAUCACGCUGGGCAUUCGCCCAGUCGAACCGUCCAACUCCGUGGAAGCCGUAAUGGCAGGAAGCGGACGAACGGCGGCAUAGGGAAACGUGAUUCAACCUGGGGCCCAUGAAAAGACGAGCAUAGUGUCCGUACCGAGAACCGACACAGGUGUCCAUGGCGGCGAAAGCCAAGGCCUGUCGGGAGCAACCAACGUUAGGGAAUUCGGCAAGUUAGUCCCGUACCUUCGGAAGAAGGGAUGCCUGCUCCGGAACGGAGCAGGUCGCAGUGACUCGGAAGCUCGGACUGUCUAGUAACAACAUAGGUGACCGCAAAUCCGCAAGGACUCGUACGGUCACUGAAUCCUGCCCAGUGCAGGUAUCUGAACACCUCGUACAAGAGGACGAAGGACCUGUCAACGGCGGGpGmGUAACpYApYGACCCUCUUAAGGUAGCGUAGUACCUUGCCGCAUCAGUAGCGGCUUGCAUGAAUGGAUUAACCAGAGCUUCACUGUCCCAACGUUGGGCCCGGUGAACUGUACAUUCCAGUGCGGAGUCUGGAGACACCCAGGGGGAAGCGAAGACCCUAUGGAGCUUUACUGCAGGCUGUCGCUGAGACGUGGUCGCCGAUGUGCAGCAUAGGUAGGAGACACUACACAGGUACCCGCGCUAGCGGGCCACCGAGUCAACAGUGAAAUACUACCCGUCGGUGACUGCGACUCUCACUCCGGGAGGAGGACACCGAUAGCCGGGCAGUUUGACUGGGGCGGUACGCGCUCGAAAAGAUAUCGAGCGCGCCCUAUGGCUAUCUCAGCCGGGACAGAGACCCGGCGAAGAGUGCAAGAGCAAAAGAUAGCUUGACAGUGUUCUUCCCAACGAGGAACGCUGACGCGAAAGCGUGGUCUAGCGAACCAAUUAGCCUGCUUGAUGCGGGCAAUUGAUGACAGAAAAGCUACCCUAGGGAUAACAGAGUCGUCACUCGCAAGAGCACAUAUCGACCGAGUGGCUUGCUACCUCGAUGUCGGUUCCCUCCAUCCUGCCCGUGCAGAAGCGGGCAAGGGUGAGGUpUmpGmUUCGCCUAUUAAAGGAGGUCGUGAGCUGGGpm3UUpYAGACCGUCGUGAGACAGGUCGGCUGCUAUCUACUGGGUGUGUAAUGGUGUCUGACAAGAACGACCGUAUAGUACGAGAGGAACUACGGUUGGUGGCCACUGGUGUACCGGUUGUUCGAGAGAGCACGUGCCGGGUAGCCACGCCACACGGGGUAAGAGCUGAACGCAUCUAAGCUCGAAACCCACUUGGAAAAGAGACACCGCCGAGGUCCCGCGUACAAGACGCGGUCGAUAGACUCGGGGUGUGCGCGUCGAGGUAACGAGACGUUAAGCCCACGAGCACUAACAGACCAAAGCCAUCA
1239 RIBOMAP_SC25S  rRNA  LSU-L  25S  Saccharomyces cerevisiae  Cytoplasm  GUUUGACCUCAAAUCAGGUAGGAGUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACCAACCGGGAUUGCCUUAGUAACGGCGAGUGAAGCGGCAAAAGCUCAAAUUUGAAAUCUGGUACCUUCGGUGCCCGAGUUGUAAUUUGGAGAGGGCAACUUUGGGGCCGUUCCUUGUCUAUGUUCCUUGGAACAGGACGUCAUAGAGGGUGAGAAUCCCGUGUGGCGAGGAGUGCGGUUCUUUGUAAAGUGCCUUCGAAGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGGGUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUGAUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGGGAAGGGCAUUUGAUCAGACAUGGUGUUUUGUGCCCUCUGCUCCUUGUGGGUAGGGGAAUCUCGCAUUUCACUGGGCCAGCAUCAGUUUUGGUGGCAGGAUAAAUCCAUAGGAAUGUAGCUUGCCUCGGUAAGUAUUAUAGCCUGUGGGAAUACUGCCAGCUGGGACUGAGGACUGCGACGUAAGUCAAGGAUGCUGGCAUAAUGGUUAUAUGCCGCCCGUCUUGpm1AAACpAmpCmGGACCAAGGAGUpCmUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCAUACGCGUAAUGAAAGUGAACGUAGGUUGGGGCCUCGCAAGAGGUGCACAAUCGACCGAUCCUGAUGUCUUCGGAUGGApYUUGAGUAAGAGCAUAGCUGUUGGGACCCpGmApAmAGAUGGUGApAmCUAUGCCUGAAUAGGGUGAAGCCAGAGGAAACUCUGGUGGAGGCUCGUApGmCGGUUCUGpAmCGUGCAAAUCGAUCGUCGAAUpUmUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUUpm5UCCCpYCAGGApYAGCAGAAGCUCGUAUCAGUpYUUApYGAGGUAAAGCGAApYGAUUAGAGGUUCCGGGGUCGAAAUGACCUUGACCUAUpYCUCAAACUUpYAAApYAUGUAAGAAGUCCUUGUUACUUAAUUGAACGUGGACAUUUGAAUGAAGAGCUUpYUAGUGGGCCAUUUpYUGGUAAGCpAmGAACUGGCGAUGCGGGAUGAACCGAACGUAGAGUUAAGGUGCCGGAAUACACGCUCAUCAGACACCACAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGCGUGUUACCUAUACUCUACCGUCAGGGUUGAUAUGAUGCCCUGACGAGUAGGCAGGCGUGGAGGUCAGUGACGAAGCCUAGACCGUAAGGUCGGGUCGAACGGCCUCUAGUGCAGAUpCmUUGGUGGUAGUpAmpGmCAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCACGUCAACAGCAGUUGGACGUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAAAGGCCUGAUUUUAUGCAGGCCACCAUCGAAAGGGAAUCCGGUUAAGAUUCCGGAACCUGGAUAUGGAUUCUUCACGGUAACGUAACUGAAUGUGGAGACGUCGGCGCGAGCCCUGGGAGGAGUUAUCUUUUCUUCUUAACAGCUUAUCACCCCGGAAUUGGUUUAUCCGGAGAUGGGGUCUUAUGGCUGGAAGAGGCCAGCACCUUUGCUGGCUCCGGUGCGCUUGUGACGGCCCGUGAAAAUCCACAGGAAGGAAUAGUUUUCAUGCCAGGUCGUACUGAUAACCGCAGCAGGUCUCCAAGGUGAACAGCCUCUAGUUGAUAGAAUAApUmGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGUCGGGUAGUGAGGGCCUUGGUCAGACGCAGCGGGCGUGCUUGUGGACUGCUUGGUGGGGCUUGCUCUGCUAGGCGGACUACUUGCGUGCCUUGUUGUAGACGGCCUUGGUAGGUCUCUUGUAGACCGUCGCUUGCUACAAUUAACGAUCAACUUAGAACUGGUACGGACAAGGGGAAUCpYGACpYGUCUAAUUpm1AAAACAUAGCAUUGCGAUGGUCAGAAAGUGAUGUUGACGCAAUGUGAUUpYCUGCCpCmAGUGCUCUGAAUGUCAAAGUGApAmGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUApAmCpYApYGACpYCpYCUUAAGGUAGCpm5CApAmpAmUGCCUCpGmUCAUCUAAUUAGUGACGCGCAUGAApYGGAUUAACGAGAUUCCCACUGUpCmCCpYAUCUACpUmApYCpYAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCpYpUmGACpUmCUAGUUUGACAUUGUGAAGAGACAUAGAGGGUGUAGAAUAAGUGGGAGCUUCGGCGCCAGUGAAAUACCACUACCUUUAUAGUUUCUUUACUUAUUCAAUGAAGCGGAGCUGGAAUUCAUUUUCCACGUUCUAGCAUUCAAGGUCCCAUUCGGGGCUGAUCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUGpGmGGCGGCACAUCUGUpm3UAAACGpAmUAACGCAGAUGUCCUAAGGGGGGCUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGGUAAAAGCCCCCUUGAUUUUGAUUpUmUCAGpUmGUGAApYACAAACCAUGAAAGUGUGGCCUAUCGAUCCUUUAGUCCCUCGGAAUUUGAGGCUApGmApGmGUGCCAGAAAAGUUACCACAGpGmGAUAACUGGCpYUGUGGCAGUCAAGCGUpm3UCAUAGCGACAUUGCUUUUUGApYUCUUCGAUGUCGGCpYCUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAUpUmpGmpYpm5UCACCCACUAAUAGGGAACGpYGpAmGpCmUGGGUUUAGApCmCGUCGUGAGACAGGUpYAGUUUUACCCUACUGAUGAAUGUUACCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACAGUUCAUUCGGAUAAUUGGUUUUUGCGGCUGUCUGAUCAGGCAUUGCCGCGAAGCUACCAUCCGCUGGAUUAUGGCUGAACGCCUCUAAGUCAGAAUCCAUGCUAGAACGCGGUGAUUUCUUUGCUCCACACAAUAUAGAUGGAUACGAAUAAGGCGUCCUUGUGGCGUCGCUGAACCAUAGCAGGCUAGCAACGGUGCACUUGGCGGAAAGGCCUUGGGUGCUUGCUGGCGAAUUGCAAUGUCAUUUUGCGUGGGGAUAAAUCAUUUGUAUACGACUUAGAUGUACAACGGGGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUACGAUCUGCUGAGAUUAAGCCUUUGUUGUCUGAUUUGU
1240 RIBOMAP_SC18S  rRNA  SSU  18S  Saccharomyces cerevisiae  Cytoplasm  UAUCUGGUUGAUCCUGCCAGUAGUCAUpAmUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUAUAAGCAAUUUAUACAGUGAAACUGCGAAUGGCUCpAmUUAAApYCAGUUAUCGUUUApYUUGAUAGUUCCUUUACUACAUGGUAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCUUAAAAUCUCGACCCUUUGGAAGAGAUGUAUUUApYUAGAUAAAAAAUCAAUGUCUUCGGACUCUUUGAUGAUUCAUAAUAACUUUUCGAAUCGCAUGGCCUUGUGCUGGCGAUGGUUCAUUCAAApYUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUUUCAACGGGUAACGGGGAAUAAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUpCmCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCAAUCCUAAUUCAGGGAGGUAGpYGACAAUAAAUAACGAUACAGGGCCCAUUCGGGUCUUGUAAUUGGAAUGAGUACAAUGUAAAUACCUUAACGAGGpAmACAAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUAGCGUAUAUUAAAGUUGUUGCAGUUpAmAAAAGCUCGUAGpYUGAACUUUGGGCCCGGUUGGCCGGUCCGAUUUUUUCGUGUACUGGAUUUCCAACGGGGCCUUUCCUUCUGGCUAACCUUGAGUCCUUGUGGCUCUUGGCGAACCAGGACUUUUACUUUGAAAAAAUpYAGAGUGpYUCAAAGCAGGCGUAUUGCUCGAAUAUAUUpAmGCAUGGAAUAAUAGAAUAGGACGUUUGGUUCUAUUUUGUUGGUUUCUAGGACCAUCGUAAUGAUUAAUAGGGACGGUCGGGGGCAUCAGUAUUCAAUUGUCAGAGGUGAAAUUCUUGGAUUUAUUGAAGACUAACUACUGCGAAAGCAUUUGCCAAGGACGUUUUCAUUAAUCAAGApAmCGAAAGUUAGGGGAUCGAAGAUGApYCAGAUACpCmGUCGUAGUCUUAACCAUAAACUAUGCCGACUAGGGAUCGGGUGGUGUUUUUUUAAUGACCCACUCGGCACCUUACGAGAAAUCAAAGUCUUUGGGUUCUGGGGGGAGUAUGGUCGCAApGmGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCpYUAAUUpYGACpm1acp3YCAACACGGGGAAACUCACCAGGUCCAGACACAAUAAGGAUUGACAGAUUGAGAGCUCUUUCUUGAUUUUGUGGGUGGpUmGpGmUGCAUGGCCGUUCUUAGUpYGGUGGAGUGAUUUGUCUGCUUAAUUGCGAUAACGAACGAGACCUUAACCUACUAAAUAGUGGUGCUAGCAUUUGCUGGUUAUCCACUUCUUAGAGGGACUAUCGGUUUCAAGCCGAUGGAAGUUpYGAGGCAAUAACApGmGUCUGUGAUGCCCUUAGACGUUCUGGGCCGCACGCGCGCUACACUGACGGAGCCAGCGAGUCUAACCUUGGCCGAGAGGUCUUGGUAAUCUUGUGAAACUCCGUCGUGCUGGGGAUAGAGCAUUGUAAUUAUUGCUCUUCAACpGmAGpm7GAAUUCCUAGUAAGCGCAAGUCAUCAGCUUGCGUUGAUUACGUCCCUGCCCUUUGUACACACCGpCmCCGUCGCUAGUACCGAUUGAAUGGCUUAGUGAGGCCUCAGGAUCUGCUUAGAGAAGGGGGCAACUCCAUCUCAGAGCGGAGAAUUUGGACAAACUUGGUCAUUUAGAGGAACUAAAAGUCGUAACAAGGUUUCCGUAGGUGpm6,6Apm6,6ACCUGCGGAAGGAUCAUUA
1241 RIBOMAP_SC58S  rRNA  LSU-S  5.8S  Saccharomyces cerevisiae  Cytoplasm  AAACUUUCAACAACGGAUCUCUUGGUUCUCGCAUCGAUGAAGAACGCAGCGAAAUGCGAUACGUAAUGUGAApYUGCAGAAUUCCGUGAAUCAUCGAAUCUUUGAACGCACAUUGCGCCCCUUGGUAUUCCAGGGGGCAUGCCUGUUUGAGCGUCAUUU
1242 RIBOMAP_SC5S  rRNA  LSU  5S  Saccharomyces cerevisiae  Mitochondrion  GGUUGCGGCCAUAUCUACCAGAAAGCACCGUUUCCCGUCCGAUCAACUGpYAGUUAAGCUGGUAAGAGCCUGACCGAGUAGUGUAGUGGGUGACCAUACGCGAAACUCAGGUGCUGCAAUCU
1243 RIBOMAP_AT25S  rRNA  LSU-L  25S  Arabidopsis thaliana  Cytoplasm  GCGACCCCAGGUCAGGCGGGAUUACCCGCUGAGUUUAAGCAUAUCAAUAAGCGGAGGAAAAGAAACUAACAAGGAUUCCCUUAGUAACGGCGAGCGAACCGGGAAGAGCCCAGCUUGAAAAUCGGACGUCUUCGGCGUUCGAAUUGUAGUCUGGAGAAGCGUCCUCAGCGACGGACCGGGCCUAAGUUCCCUGGAAAGGGGCGCCAGAGAGGGUGAGAGCCCGUCGUGCCCGGACCCUGUCGCACCACGAGGCGCUGUCUACGAGUCGGGUUGUUUGGGAAUGCAGCCCCAAUCGGGCGGUAAAUUCCGUCCAAGGCUAAAUACGGGCGAGAGACCGAUAGCGAACAAGUACCGCGAGGUAAAGAUGAAAAGGACUUUGAAAAGAGAGUCAAAGAGUGCUUGAAAUUGUCGGGAGGGAAGCGGAUGGGGGCCGGCGAUGCGUCCUGGUCGGAUGCGGAACGGAGCAAUCCGGUCCGCCGAUCGAUUCGGGGCGUGGACCGACGCGGAUUACGGUGGCGGCCUAAGCCCGGGCUUUUGAUACGCUUGUGGAGACGUCGCUGCCGUGAUCGUGGUCUGCAGCACGCGCCUAACGGCGUGCCUCGGCAUCAGCGUGCUCCGGGCGUCGGCCUGUGGGCUCCCCAUUCGACCCGUCUUGAAACpAmCGGACCAAGGAGUpCmUGACAUGUGUGCGAGUCAACGGGUGAGUAAACCCGUAAGGCGCAAGGAAGCUGAUUGGCGGGAUCCUCGCGGGUGCACCGCCGACCGACCUUGAUCUUCUGAGAAGGGpYpUmCGAGUGUGAGCAUGCCUGUCGGGACCCpGmApAmAGAUGGUGApAmCpYAUGCCUGAGCGGGGUAAAGCCAGAGGAAACUCUGGUGGAAGCCCGCAGCGAUACUGpAmCGUGCAAAUCGUUCGUCUGACUUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGAGCUCGGACGCGAGUUCUApYCGGGUAAAGCCAApYGAUUAGAGGCAUUGGGGGCGCAACGCCUCGACCUAUUCUCAAACUUUAAAUAGGUAGGACGUGUCGGCUGCUUUGUUGAGCCGUCACACGGAAUCGAGAGCUCCAAGUGGGCCAUUUUUGGUAAGCpAmGAACUGGCGAUGCGGGAUGAACCGGAAGCCGGGUUACGGUGCCCAACUGCGCGCUAACCUAGAACCCACAAAGGGUGUUGGUCGAUUAAGACAGCAGGACGGUGGUCAUGGAAGUCGAApAmUCCGCUAAGGAGUGpUmGUAACAACUCACCUGCCGAAUCAACUAGCCCCGAAAAUGGAUGGCGCUUAAGCGCGACCUAUACCCGGCCGUCGGGGCAAGAGCCAGGCCUCGAUGAGUAGGAGGGCGCGGCGGUCGCUGCAAAACCUAGGGCGCGAGGCGCGGAGCGGCCGUCGGUGCAGAUpCmUUGGUGGUAGUpAmpGmCAAAUAUUCAAAUGAGAACUUUGAAGGCCGAAGAGGGGAAAGGUUCCAUGUGAACGGpCmACUUGCACAUGGGUUAGUCGAUCCUAAGAGUCGGGGGAAACCCGUCUGAUAGCGCUUAAGCGAACUUCGAAAGGGGAUCCGGUUAAAAUUCCGGAACCGGGACGUGGCGGUUGACGGCAACGUpUmAGGGAGUCCGGAGACGUCGGCGGGGGCCUCGGGAAGAGUUAUCUUUUCUGUUUAACAGCCUGCCCACCCUGGAAACGGCUCAGCCGGAGGUAGGGUCCAGCGGCUGGAAGAGCACCGCACGUCGCGUGGUGUCCGGUGCGCCCCCGGGCGCCCUUGAAAAUCCGGAGGACCGAGUGCCGCUCACGCCCGGUCGUACUCAUAACCGpCmAUCApGmGUCUpCmCAAGGUGAACpAmGCCUCUGGUCGAUGGAACAApUmGUAGGCAAGGGAAGUCGGCAAAAUGGAUCCGUAACpUmUCGGGAAAAGGAUUGGCUCUGAGGGCUGGGCUCGGGGGUCCCAGUUCCGAACCCGUCGGCUGUCAGCGGACUGCUCGAGCUGCUUCCGCGGCGAGAGCGGGUCGCCGGCUGCCGGCCGGGGGACGACUGGGAACGGCUCUCUCGGGAGCUUUCCCCGGGCGUCGAACAGUCAGCUCAGAACUGGUACGGACAAGGpGmGpAmAUCCGACUGpYUUAAUUAAAACAAAGCAUUGCGAUGGUCCCUGCGGAUGCUAACGCAAUGUGAUUUCUGCCCAGUGCUCUGAAUGpYCApAmAGUGApAmGAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGpYAACpYApYGACUCUCUUAAGGUAGCCAApAmUGCCUCpGmUCAUCUAAUUAGUGACGCGCAUGAApYGGAUUApAmCGAGpAmUUCCCACUGUpCmCCUGUCUACUApYCCAGCGAAACCACAGpCmCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAGAAGACCCUGpUmUGApGmCUUGACpUmCUAGUCCGACUUUGUGAAAUGACUUGAGAGGUGUAGGAUAAGUGGGAGCUUCGGCGCAAGUGAAAUACCACUACUUUUAACGUUAUUUUACUUACUCCGUGAAUCGGAGGCCGGGGUACAACCCCUGUUUUUGGUCCCAAGGCUCGCUUCGGCGGGUCGAUCCGGGCGGAGGACAUUGUCAGGUGGGGAGUUUGGCUGpGmGGCGGCACAUCUGUUAAAAGpAmUAACGCAGGpUmpGmUCCUAAGAUGAGCUCAACGAGAACAGAAAUCUCGUGUGGAACAAAAGGGUAAAAGCUCGUUUGApYUCUGAUUUUCAGUACGAAUACGAACCGUGAAAGCGUGGCCUAUCGAUCCUUUAGACUUCGGAAUUpYGAAGCUApGmApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCpYUGUGGCAGCpCmAAGCGUUCAUAGCGACGUUGpCmUUUUUGAUpCmCUUCGAUGUCGGpCmpYCUpUmCCUAUCAUUGUGAAGCAGAAUUCACCAAGUGUUpGmGAUUGpYUCACCCACCAAUAGGGAACGUGGpCmUGGpGmpUmUUAGApCmCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGCCCGCGUCGCGAUAGUAAUUCAACCUAGUACGAGAGGAACCGUUGAUUCGCACAAUUGGUCAUCGCGCUUGGUUGAAAAGCCAGUGGCGCGAAGCUACCGUGCGCUGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCGGGCUAGAAGCGACGCAUGCGCCCGCCGCCCGAUUGCCGACCCUCAGUAGGAGCUUAGGCUCCAAAGGCACGUGUCGUUGGCUAAGUCCGUUCGGCGGAACGGUCGUUCGGACCGCCUUGAAUUAUAAUUACCACCGAGCGGCGGGUAGAAUCCUUUGCAGACGACUUAAAUACGCGACGGGGUAUUGUAAGUGGCAGAGUGGCCUUGCUGCCACGAUCCACUGAGAUUCAGCCCUUUGUCGCUAAGAUUCGA
1244 RIBOMAP_AT18S  rRNA  SSU  18S  Arabidopsis thaliana  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGUCAUpAmUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUGUAAGUAUGAACGAAUUCAGACUGUGAAACUGCGAAUGGCUCAUUAAAUCAGpYUAUAGUUUGUUUGAUGGUAACUACUACUCGGAUAACCGUAGUAAUUCUAGpAmGCUAAUACGUGCAACAAACCCCGACUUAUGGAAGGGACGCAUUUAUUAGAUAAAAGGUCGACGCGGGCUCUGGCUUGCUCUGAUGAUUCAUGAUAACUCGACGGAUCGCAUGGCCUCUGUGCUGGCGACGCAUCAUUCAAAUUUCUGCCCUAUCAACUUUCGAUGGUAGGAUAGUGGCCUACCAUGGUGGUAACGGGpYGACGGAGAAUUAGGGUUCGAUUCCGGAGApGmpGmGAGCCUGAGAAACGGCUACCACAUpCmCAAGGAAGGCAGCAGGCGCGCpAmAAUUACCCAAUCCUGACACGGGGAGGUpAmGUGApCmAAUAAAUAACAAUACCGGGCUCUUUCGAGUCUGGUAAUUGGAAUGAGUACAAUCUAAAUCCCUUAACGAGGpAmUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUApGmCGUAUApYUUAApGmUUGUUGCAGUUpAmAAAAGCUCGUAGpYUGAACCUUGGGAUGGGUCGGCCGGUCCGCCUUUGGUGUGCAUUGGUCGGCUUGUCCCUUCGGUCGGCGAUACGCUCCUGGUCUUAAUUGGCCGGGUCGUGCCUCCGGCGCUGUUACUUUGAAGAAApYUAGAGUGCUCAAAGCAAGCCUACGCUCUGGAUACAUUpAmGCAUGGGAUAACAUCAUAGGAUUUCGAUCCUAUUGUGUUGGCUUCGGGAUCGGAGUAAUGAUUAACAGGGACAGUCGGGGGCAUUCGUAUUUCAUAGUCAGAGGUGAAAUUCUUGGAUUUAUGAAAGACGAACAACUGCGAAAGCAUUpYGCCAAGGAUGUUUUCAUUAAUCAAGApAmCGAAAGUUGGGGGCUCGAAGACGApYCAGAUACCGpUmpCmCUAGUCUCAACCAUAAACGAUGCCGACCAGGGAUCAGCGGAUGUUGCUUAUAGGACUCCGCUGGCACCUUAUGAGAAAUCAAAGUUUUUGGGUUCCGGGpGmGGAGUApYGGUCGCAAGGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGGAAACUUACCAGGUCCAGACAUAGUAAGGApUmUGACAGACUGAGAGCUCUUUCUUGAUUCUApUmGGGUGGpUmpGmpGmUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGUUAACGApAmCGAGACCUCAGCCUGCUAACUAGCUACGUGGAGGCAUCCCUUCACGGCCGGCUpUmCUUAGAGGGACUAUGGCCGUUUAGGCCAAGGAAGUUUGAGGCAAUAACApGmGUCUGUGAUGCCCpUmUAGAUGUUCUGGGCCGCACGCGCGCUACACUGAUGUAUUCAACGAGUUCACACCUUGCCGACAGGCCCGGGUAAUCUUUGAAAUUUCAUCGUGAUGGGGAUAGAUCAUUGCAAUUGUUGGUCUUCAACGAGGAAUUCCUAGUAAGCGCGAGUCAUCAGCUCGCGUUGACUACGUCCCUGCpCmCUUUGUACACACCGpCmCCGUCGCUCCUACCGAUUGAAUGAUCCGGUGAAGUGUUCGGAUCGCGGCGACGUGGGUGGUUCGCCGCCCGCGACGUCGCGAGAAGUCCACUAAACCUUAUCAUUUAGAGGApAmGGAGAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUG
1245 RIBOMAP_AT58S  rRNA  LSU-S  5.8S  Arabidopsis thaliana  Cytoplasm  AAAACGACUCUCGGCAACGGAUAUCUCGGCUCUCGCAUCGAUGAAGpAmACGUAGCGAAAUGCGAUACUUGGUGUGAAUUpGmCAGAAUCCCGUGAACCAUCGAGUCUUUGAACGCAAGUUGCGCCCCAAGCCUUCUGGCCGAGGGCACGUCUGCCUGGGUGUCACAA
1246 RIBOMAP_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUUGpm1AAACpAmCGGACCAAGGAGUpCmUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCpGmApAmAGAUGGUGApAmCpYAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGpYAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCpYCAGGApYAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAApYGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCpYAUpYCUCAAACUUpYAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACpYUpYUGGUAAGCpAmGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUpCmUUGGUGGUAGUpAmpGmpCmAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGAGAAGGGUUCCAUGpUmGAACAGpCmApGmUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGApYCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCpAmUAUCCGCAGCAGGUCUpCmCAAGGUGAACpAmGCCUCUGGpCmAUGUUGGAACAApUmGUAGGUAAGGGAAGUCGGCAAGCpCmGGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGACpYGpYUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUpYCUGCCpCmAGUGCUCUGAAUGpYCApAmAGUGApAmGAAAUpYCAApYGAAGCGCGGpGmUAAACGGCGGGAGpYApAmCpYApYGACpYCpYCUUAAGGUAGCpm5CAApAmUGCCUCGUCAUCUAAUUAGUGApCmGCGCAUGAApYmGGApYGApAmCGAGpAmUUCCCACUGUpCmCCpYACCUACpYApYCCAGCGAAACCACAGpCmCAAGGGAACGGGCUpYGGpCmGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCpYUGACpUmCUAGUCUGGCACGGUGAApGmAGACAUGAGAGGUGpYAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCCpGmGUGAAAUACCApCmUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGpGmGGCGGUACACCUGUCAAACGGUpm6AACGCAGGpUmpGmUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGApYCUpYGApYUUUCAGpUmACGAApYACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUpYUGGGUUUpYAAGCAGGApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCpYUGUGGCGGCCAAGCGUpYCApYAGCGACGpYCGCUUUUUGApYpm5CCUUCGAUGUCGGpCmpYCUUCCUAUCAUUGpYGAAGCAGAAUUCGCCAAGCGUUpGmGAUpUmpGmpYUCACCCACUAAUAGGGAACGpYGpAmGCUGGGpm3UpYUAGApCmCGUCGUGAGACAGGUpYAGUUUUACCCUACUGAUGpAmUGUGpYUGpYUGCCAUGGUApAmUCCUGCUCAGUACGAGAGGAACCGCAGpGmUpUmCApGmACAUpYUGGUGUApYpGmUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCApYCUGUGGGAUUAUGACpYGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCApYUCGUAGACGACCUGCUUCUGGGUCGGGGpYUUCGUACGpYAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1247 RIBOMAP_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUpAmUGCUUGpYCpYCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAApYGGCUCpAmUUAAApYCAGpYUAUGGUpUmCCpYUpUmGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUApAmUUCUAGpAmGCUAApUmApCmAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGApYGCGUGCApYUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGpYGACGGGGAAUCAGGGUUCGAUpUmCCGGAGApGmGGAGCCUGAGAAACGGCUACCACAUpCmCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCACUCCCGACCCGGGGApGmGUpAmGUGApCmGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUpYUAApAmUCCUUUAACGAGGpAmUCCAUUGGAGpGmGCAAGUCpYGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUApGmCGUApYApYUAAAGUUGCUGCAGUUpAmAAAAGCUCGUAGpYUpGmGApYCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGpCmGpUmUpYACUUUGAAAAAApYpYAGAGUGpYUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAApYAApYpGmGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUpYAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUpYCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUpYGCCAAGAAUGUUUUCAUUAAUCAAGApAmCGAAAGUCGGAGGUUCGAAGACGApYCAGAUACCGUCGUAGUUCCGACCApYAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUApYGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCpYUAAUUpYGACpm1acp3YCAACACGGGAAACCUCACCCGGCpCmCGGACACGGACAGGApUmUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGpYmGpGmUGCAUGGCCGUUCUUAGUpYGGUGGAGCGAUUUGUCUGGpYUAAUUCCGAUAACGApAmCGAGACUpCmUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUpUmCUpYAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACApGmGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUpYCCCCAUGAACGAGpm7GAAUpYCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUpAmAGUCCCUGCCCUUpYGUACACACCGpCmCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUpUmGACUAUCUAGAGGAAGUAAAAGUCGUApm6ACAAGGUUUCCGUAGGUGpm6,6Apm6,6ACCUGCGGAAGGAUCAUUA
1248 RIBOMAP_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGpUmGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCpYGCGAGAAUUAAUGpYGAAUUpGmCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1249 KROGH_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGpAmGpAmGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCpGmUCUUGApAmACpAmCGGACCAAGGAGUpCmUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCpGmApAmAGAUGGUGApAmCUAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAUGAUUAGAGGUCUUGGpGmGCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACUUUUGGUAAGCpAmGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUpCmUUGGUGGUAGUpAmpGmpCmAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGpAmGAAGGGUUCCAUGpUmGAACAGpCmApGmUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCpAmUAUCCGCAGCAGGUCUpCmCAAGGUGAACpAmGCCUCUGGpCmAUGUUGGAACAApUmGUAGGUAAGGGAAGUCGGCAAGCpCmGGAUCCGUAACUUCpGmGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGpGmGAAUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCCpCmAGUGCUCUGAAUGUCApAmAGUGApAmGAAAUUCAAUGAAGCGCGGpGmUAAACGGCGGGAGUApAmCUAUGACUCUCUUAAGGUAGCCAApAmUGCCUCpGmUCAUCUAAUUAGUGApCmGCGCAUGAApUmGGAUGApAmCGAGpAmUUCCCACUGUpCmCCUACCUACUAUCCAGCGAAACCACpAmGCCAAGGGAACGGGCUUGGpCmGGAAUCAGCGGpGmGAAAGAAGACCCUGUUGAGCUUGACpUmCUAGUCUGGCACGGUGAApGmAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCCpGmGUGAAAUACCApCmUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGpGmGGCGGUACACCUGUCAAACGGUACGCAGGpUmpGmUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAGpUmACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGGpCmUCUUCCUAUCAUUGUGAAGCAGAAUUCGCCAAGCGUUpGmGAUpUmpGmUUCACCCACUAAUAGGGAACGUGpAmGCUGGGUUUAGApCmCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGpAmUGUGUUGUUGCCAUGGUApAmUCCUGCUCAGUACGAGAGGAACCGCAGpGmUpUmCApGmACAUUUGGUGUAUpGmUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1250 MOTORIN_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGpAmGpAmGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCpGmUCUUGApAmACpAmCGGACCAAGGAGUpCmUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCpGmApAmAGAUGGUGApAmCUAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGpGmGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAGGAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAAUGAUUAGAGGUCUUGGpGmGCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACUUUUGGUAAGCpAmGAACUGGCGpCmUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUpCmUUGGUGGUAGUpAmpGmpCmAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGpAmGAAGGGUUCCAUGpUmGAACAGpCmApGmUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCpAmUAUCCGCAGCAGGUCUpCmCAAGGUGAACpAmGCCUCUGGpCmAUGUUGGAACAApUmGUAGGUAAGGGAAGUCGGCAAGCpCmGGAUCCGUAACUUCpGmGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGpGmGAAUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCCpCmAGUGCUCUGAAUGUCApAmAGUGApAmGAAAUUCAAUGAAGCGCGGpGmUAAACGGCGGGAGUApAmCUAUGACUCUCUUAAGGUAGCCAApAmUGCCUCpGmUCAUCUAAUUAGUGApCmGCGCAUGAApUmGGAUGApAmCGAGpAmUUCCCACUGUpCmCCUACCUACUAUCCAGCGAAACCACpAmGCCAAGGGAACGGGCUUGGpCmGGAAUCAGCGGpGmGAAAGAAGACCCUGUUGAGCUUGACpUmCUAGUCUGGCACGGUGAApGmAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCCpGmGUGAAAUACCApCmUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGpGmGGCGGUACACCUGUCAAACGGUACGCAGGpUmpGmUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAGpUmACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGApGmGUGUCAGAAAAGUUACCACAGpGmGAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGGpCmUCUUCCUAUCAUUGUGAAGCAGAAUUCGCCAAGCGUUpGmGAUpUmpGmUUCACCCACUAAUAGGGAACGUGpAmGCUGGGUUUAGApCmCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGpAmUGUGUUGUUGCCAUGGUApAmUCCUGCUCAGUACGAGAGGAACCGCAGpGmUpUmCApGmACAUUUGGUGUAUpGmUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1251 MARCHAND_HS28S  rRNA  LSU-L  28S  Homo sapiens  Cytoplasm  CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAAAAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGAAUCCCCGCCCCGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGCCGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCGGUAGCGGCCGGCGCGCGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCAGCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAACAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAACCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGCGGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCUCCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCGGCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGCGGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGGGGCGGCGGGACCGAAACCCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCGCGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGGGGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGGUCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGGGGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUUGAAACACGGACCAAGGAGUCUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCGUGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCUCCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCACGAGCGCACGUGUUAGGACCCGAAAGAUGGUGAACpYAUGCCUGGGCAGGGCGAAGCCAGAGGAAACUCUGGUGGAGGUCCGpYAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCpYCAGGApYAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGCGAApYGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCpYApYpYCUCAAACUUpYAAAUGGGUAAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACpYUpYUGGUAAGCAGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGCGGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCUCCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGCAGGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGGAGAAGGGUUCCAUGUGAACAGCAGUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGApYCGAAAGGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUpYUCUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCAUAUCCGCAGCAGGUCUCCAAGGUGAACAGCCUCUGGCAUGUUGGAACAAUGpYAGGUAAGGGAAGUCGGCAAGCCGGAUCCGUAACUUCGGGAUAAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGCGCCGCGGCUGGACGAGGCGCGCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCCUCCCCCGCCCCACCCGCGCGCGCCGCUCGCUCCCUCCCCACCCCGCGCCCUCUCUCUCUCUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGCGGCGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGCGCGGCGGCCGCCGGGGCGGCCGGCGGGGGCAGGUCCCCGCGAGGGGGGCCCCGGGGACCCGGGGGGCCGGCGGCGGCGCGGACUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCCGCCCCCGGGGAGCCCGGCGGCGGCGCGGCGCGCCCCCCACCCCCACCCCACGUCUCGGUCGCGCGCGCGUCCGCUGGGGGCGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGGGGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUCCUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGCCGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGCGCCUCGCCUCGGCCGGCGCCUAGCAGCCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGACpYGpYUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUpYCUGCCCAGUGCUCUGAAUGpYCAAAGUGAAGAAAUpYCAApYGAAGCGCGGGUAAACGGCGGGAGpYAACpYApYGACpYCpYCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGApYGAACGAGAUUCCCACUGUCCCpYACCUACpYApYCCAGCGAAACCACAGCCAAGGGAACGGGCUpYGGCGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCpYUGACUCUAGUCUGGCACGGUGAAGAGACAUGAGAGGUGpYAGAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCGGCCCUGCGGGCCGCCGGUGAAAUACCACUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGCCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGGGGCGGUACACCUGUCAAACGGUACGCAGGUGUCCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGApYCUpYGApYUUUCAGUACGAApYACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGACCUUpYUGGGUUUpYAAGCAGGAGGUGUCAGAAAAGUUACCACAGGGAUAACUGGCpYUGUGGCGGCCAAGCGUpYCApYAGCGACGpYCGCUUUUUGApYCCUUCGAUGUCGGCpYCUUCCUAUCAUUGpYGAAGCAGAAUUCGCCAAGCGUpYGGAUUGpYUCACCCACUAAUAGGGAACGpYGAGCUGGGUUpYAGACCGUCGUGAGACAGGUpYAGUUUUACCCUACUGAUGAUGUGpYUGpYUGCCAUGGUAAUCCUGCUCAGUACGAGAGGAACCGCAGGUUCAGACAUpYUGGUGUApYGUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCApYCUGUGGGAUUAUGACpYGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCCCCCCCUCCACGCGCCCCGCCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAAAGGCGGCCGCCCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCApYUCGUAGACGACCUGCUUCUGGGUCGGGGpYUUCGUACGpYAGCAGAGCAGCUCCCUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGUC
1252 INCARNATO_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUpAmUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCpAmUUAAAUCAGUUAUGGUpUmCCUUpUmGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUApAmUUCUAGAGCUAApUmApCmAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCACUCCCGACCCGGGGApGmGUpAmGUGApCmGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAApAmUCCUUUAACGAGGpAmUCCAUUGGAGGGCAAGUCUGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUApGmCGUAUAUUAAAGUUGCUGCAGUUpAmAAAAGCUCGUAGUUpGmGAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGpCmGpUmUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAUpGmGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGApAmCGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGApUmUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGpUmGGUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGApAmCGAGACUpCmUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUpUmCUUApGmAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACApGmGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUpAmAGUCCCUGCCCUUUGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUpUmGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1253 KROGH_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUpAmUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCpAmUUAAAUCAGUUAUGGUpUmCCUUpUmGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUApAmUUCUAGpAmGCUAApUmApCmAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCpUmGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUpUmCCGGAGApUmGGAGCCUGAGAAACGGCUACCACAUpGmCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCACUCCCGACCCGGGGApGmGUpAmGUGApCmGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAApAmUCCUUUAACGAGGpAmUCCAUUGGAGpGmGCAAGUCUGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUApGmCGUAUAUUAAAGUUGCUGCAGUUpAmAAAAGCUCGUAGUUpGmGAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGpCmGpUmUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAUpGmGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGApAmCGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCpCmCGGACACGGACAGGApUmUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGpUmGpGmUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGApAmCGAGACUpCmUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAApCmUpUmCUUApGmAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACApGmGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUpAmAGUCCCUGCCCUUUGUACACACCGpCmCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUpUmGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1254 MOTORIN_HS18S  rRNA  SSU  18S  Homo sapiens  Cytoplasm  UACCUGGUUGAUCCUGCCAGUAGCAUpAmUGCUUGUCUCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCpAmUUAAAUCAGUUAUGGUpUmCCUUpUmGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUApAmUUCUAGpAmGCUAApUmApCmAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGAUGCGUGCAUUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCUAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCpUmGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGUGACGGGGAAUCAGGGUUCGAUpUmCCGGAGApUmGGAGCCUGAGAAACGGCUACCACAUpGmCAAGGpAmAGGCAGCAGGCGCGCpAmAAUUACCCACUCCCGACCCGGGGApGmGUpAmGUGApCmGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUUUAApAmUCCUUUAACGAGGpAmUCCAUUGGAGpGmGCAAGUCUGGUGCCAGCAGCCGCGGpUmAAUUCCAGCUCCAAUApGmCGUAUAUUAAAGUUGCUGCAGUUpAmAAAAGCUCGUAGUUpGmGAUCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGpCmGpUmUUACUUUGAAAAAAUUAGAGUGUUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAAUAAUpGmGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUUAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUUCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUUGCCAAGAAUGUUUUCAUUAAUCAAGApAmCGAAAGUCGGAGGUUCGAAGACGAUCAGAUACCGUCGUAGUUCCGACCAUAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUAUGGUUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCpCmCGGACACGGACAGGApUmUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGpUmGpGmUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGApAmCGAGACUpCmUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAApCmUpUmCUUApGmAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACApGmGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUUCCCCAUGAACGAGGAAUUCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUpAmAGUCCCUGCCCUUUGUACACACCGpCmCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUpUmGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1255 MARCHAND_HS18S  rRNA  SSU  18S  Homo sapiens  eukaryotic cytosol  UACCUGGUUGAUCCUGCCAGUAGCAUAUGCUUGpYCpYCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAApYGGCUCAUUAAApYCAGpYUAUGGUUCCpYUUGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGApYGCGUGCApYUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCpYAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGpYGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGAAGGCAGCAGGCGCGCAAAUUACCCACUCCCGACCCGGGGAGGUAGUGACGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUpYUAAAUCCUUUAACGAGGAUCCAUUGGAGGGCAAGUCpYGGUGCCAGCAGCCGCGGUAAUUCCAGCUCCAAUAGCGUApYApYUAAAGUUGCUGCAGUUAAAAAGCUCGUAGpYUGGApYCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUpYACUUUGAAAAAApYpYAGAGUGpYUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAApYAApYGGAAUAGGACCGCGGUUCUAUUUUGUUGGUpYUUCGGAACUGAGGCCAUGAUpYAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUpYCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUpYGCCAAGAAUGUUUUCAUUAAUCAAGAACGAAAGUCGGAGGpYpYCGAAGACGApYCAGAUACCGUCGUAGUUCCGACCApYAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCpYUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUApYGGpYUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCpYGCGGCpYUAAUUpYGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAUUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGUGGUGCAUGGCCGUUCUUAGUpYGGUGGAGCGAUUUGUCUGGpYUAAUUCCGAUAACGAACGAGACUCUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUUCUpYAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACAGGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUpYCCCCAUGAACGAGGAAUpYCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUAAGUCCCUGCCCUUpYGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUUGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1256 CARLILE_HS18S  rRNA  SSU  18S  Homo sapiens  eukaryotic cytosol   UACCUGGUUGAUCCUGCCAGUAGCAUAUGCUUGpYCpYCAAAGAUUAAGCCAUGCAUGUCUAAGUACGCACGGCCGGUACAGUGAAACUGCGAAUGGCUCAUUAAAUCAGpYUAUGGUUCCpYUUGGUCGCUCGCUCCUCUCCCACUUGGAUAACUGUGGUAAUUCUAGAGCUAAUACAUGCCGACGGGCGCUGACCCCCUUCGCGGGGGGGApYGCGUGCApYUUAUCAGAUCAAAACCAACCCGGUCAGCCCCUCUCCGGCCCCGGCCGGGGGGCGGGCGCCGGCGGCUUUGGUGACUCpYAGAUAACCUCGGGCCGAUCGCACGCCCCCCGUGGCGGCGACGACCCAUUCGAACGUCUGCCCUAUCAACUUUCGAUGGUAGUCGCCGUGCCUACCAUGGUGACCACGGGpYGACGGGGAAUCAGGGUUCGAUUCCGGAGAGGGAGCCUGAGAAACGGCUACCACAUCCAAGGAAGGCAGCAGGCGCGCAAAUUACCCACUCCCGACCCGGGGAGGUAGUGACGAAAAAUAACAAUACAGGACUCUUUCGAGGCCCUGUAAUUGGAAUGAGUCCACUpYUAAAUCCUUUAACGAGGAUCCAUUGGAGGGCAAGUCpYGGUGCCAGCAGCCGCGGUAAUUCCAGCUCCAAUAGCGUAUAUUAAAGUUGCUGCAGUUAAAAAGCUCGUAGUUGGApYCUUGGGAGCGGGCGGGCGGUCCGCCGCGAGGCGAGCCACCGCCCGUCCCCGCCCCUUGCCUCUCGGCGCCCCCUCGAUGCUCUUAGCUGAGUGUCCCGCGGGGCCCGAAGCGUUUACUUUGAAAAAAUpYAGAGUGpYUCAAAGCAGGCCCGAGCCGCCUGGAUACCGCAGCUAGGAApYAApYGGAAUAGGACCGCGGUUCUAUUUUGUUGGUUUUCGGAACUGAGGCCAUGAUpYAAGAGGGACGGCCGGGGGCAUUCGUAUUGCGCCGCUAGAGGUGAAAUpYCUUGGACCGGCGCAAGACGGACCAGAGCGAAAGCAUUpYGCCAAGAAUGUUUUCAUUAAUCAAGAACGAAAGUCGGAGGUpYCGAAGACGApYCAGAUACCGUCGUAGUUCCGACCApYAAACGAUGCCGACCGGCGAUGCGGCGGCGUUAUUCCCAUGACCCGCCGGGCAGCUUCCGGGAAACCAAAGUCUUUGGGUUCCGGGGGGAGUApYGGpYUGCAAAGCUGAAACUUAAAGGAAUUGACGGAAGGGCACCACCAGGAGUGGAGCCUGCGGCUUAAUUUGACUCAACACGGGAAACCUCACCCGGCCCGGACACGGACAGGAUUGACAGAUUGAUAGCUCUUUCUCGAUUCCGUGGGUGGUGGUGCAUGGCCGUUCUUAGUUGGUGGAGCGAUUUGUCUGGUUAAUUCCGAUAACGAACGAGACUCUGGCAUGCUAACUAGUUACGCGACCCCCGAGCGGUCGGCGUCCCCCAACUUCUpYAGAGGGACAAGUGGCGUUCAGCCACCCGAGAUUGAGCAAUAACAGGUCUGUGAUGCCCUUAGAUGUCCGGGGCUGCACGCGCGCUACACUGACUGGCUCAGCGUGUGCCUACCCUACGCCGGCAGGCGCGGGUAACCCGUUGAACCCCAUUCGUGAUGGGGAUCGGGGAUUGCAAUUAUpYCCCCAUGAACGAGGAAUpYCCCAGUAAGUGCGGGUCAUAAGCUUGCGUUGAUUAAGUCCCUGCCCUUpYGUACACACCGCCCGUCGCUACUACCGAUUGGAUGGUUUAGUGAGGCCCUCGGAUCGGCCCCGCCGGGGUCGGCCCACGGCCCUGGCGGAGCGCUGAGAAGACGGUCGAACUUGACUAUCUAGAGGAAGUAAAAGUCGUAACAAGGUUUCCGUAGGUGAACCUGCGGAAGGAUCAUUA
1257 INCARNATO_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGpUmGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUUpGmCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1258 KROGH_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGpUmGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUUpGmCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1259 MOTORIN_HS58S  rRNA  LSU-S  5.8S  Homo sapiens  Cytoplasm  CGACUCUUAGCGGpUmGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAGAAUUAAUGUGAAUUpGmCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCGGGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
1260 1ASZ_A  tRNA  Asp  QUC  Saccharomyces cerevisiae  Cytoplasm  UCCGUGAUAGUUpYAApDGGpDCAGAAUGGGCGCpYUGUCpm1GCGUGCCAGAUpm5CGGGGpm5UpYCAAUUCCCCGUCGCGGAGCCA
1261 1ASZ_B  tRNA  Asp  QUC  Saccharomyces cerevisiae  Cytoplasm  UCCGUGAUAGUUpYAApDGGpDCAGAAUGGGCGCpYUGUCpm1GCGUGCCAGAUpm5CGGGGpm5UpYCAAUUCCCCGUCGCGGAGCCA
1262 1B23_A  tRNA  Cys  GCA  Escherichia coli  Cytoplasm  GCGCGUps4UAACAAAGCGGpDpDAUGUAGCGGApYUGCApms2i6AApYCCGUCUAGUCCGGpm5UpYCGACUCCGGAACGCGCCUCCA
1263 1C0A_A  tRNA  Asp  QUC  Escherichia coli  Cytoplasm  GAGCGGps4UAGUUCAGpDCGGpDpDAGAAUACCUGCCUxGUCACGCAGGGGpm7GUCGCGGGpm5UpYCGAGUCCCGpYCCGUUCCGCCA
1264 1F7U_A  tRNA  Arg  ICG  Escherichia coli  Cytoplasm  UCCUCGUpm1Gpm2,2GCCCAApDGGpDCACGGCpm2,2GpYCUGGCUpICGAACCAGAAGApDUpm5CCAGGpm5UpYCApm1AGUCCUGGCGGGGAAGCCA
1265 1F7V_A  tRNA  Arg  ICG  Escherichia coli  Cytoplasm  UCCUCGUpm1Gpm2,2GCCCAApDGGpDCACGGCpm2,2GpYCUGGCUpICGAACCAGAAGApDUpm5CCAGGpm5UpYCApm1AGUCCUGGCGGGGAAG
1266 1OB2_B  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  CGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyWApYpm5CUGGAGpm7GUCpm5CUGUGUpYCGpm1AUCCACAGAAUUCGCACC
1267 1OB5_B  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  CGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGCAC
1268 1OB5_D  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  GCGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGCAC
1269 1OB5_F  tRNA  Phe  #AA  Escherichia coli  Cytoplasm  GCGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGCAC
1270 1QF6_A  tRNA  Thr  CGU  Escherichia coli  Cytoplasm  CCGAUAUAGCUCAGpDpDGGpDAGAGCAGCGCAUUCGUpm6t6AAUGCGAAGpm7GUCGUAGGpm5UpYCGACUCCUAUUAUCGGCACCA
1271 1TTT_A  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  CGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGCACCA
1272 1TTT_B  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  GCGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGCACCA
1273 1TTT_C  tRNA  Phe  #AA  Thermus aquaticus  Cytoplasm  GCGGAUUUApm2,2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGCACCA
1274 3B0V_A  tRNA  Phe  #AA  Thermus thermophilus  Cytoplasm  CCGAGGUAGCUCAGUUGGpDAGAGCAUGCGACUGAAAAUCGCAGUGUCGGCGGUUCGAUUCCGCCCCUCGGCA
1275 3B0V_B  tRNA  Phe  #AA  Thermus thermophilus  Cytoplasm  GCCGAGGUAGCUCAGUUGGpDAGAGCAUGCGACUGAAAAUCGCAGUGUCGGCGGUUCGAUUCCGCCCCUCGGCA
1276 3V11_D  tRNA  Sec  UCA  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGpDAGCUCGUCGGGpCmUCAUAACCCGAAGAUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1277 4DR1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1278 4DR2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1279 4DR3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1280 4DUY_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUCUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1281 4DUZ_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUCUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1282 4DV0_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCGGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1283 4DV1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCGGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1284 4DV2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUAAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1285 4DV3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUAAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1286 4DV4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAGAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1287 4DV5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAGAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1288 4DV6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAGGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1289 4DV7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAGGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1290 4JI0_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1291 4JI1_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1292 4JI2_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1293 4JI3_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCpYpYUCU
1294 4JI4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGUGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1295 4JI5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1296 4JI6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1297 4JI7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1298 4JI8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1299 4JYZ_B  tRNA  Gln  㑆UG  Escherichia coli  Cytoplasm  GGGUAps4UCGCCAAGCpGmGpDAAGGCACCGGUpUmU1RNUGpm2ApYACCGGCACGCAGGpm5UpYCGAAUCCUGCUACCCCAGCCA
1300 4KVB_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCACpYpYUCU
1301 4LF4_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCACpYpYUCU
1302 4LF5_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCACpYpYUCU
1303 4LF6_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCAUCU
1304 4LF7_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCpYUCU
1305 4LF8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGAAGGUGCGGCUGGAUCpYUCU
1306 4LF9_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1307 4LFA_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1308 4LFB_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1309 4LFC_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1310 4NXM_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCGCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1311 4NXN_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCGCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1312 4P5J_A  tRNA  Ser  CGA  White bream virus  Cytoplasm  GCUCGCCAGUUAGCGAGGUCUGUCUCGACACGACAGAUAAUCGGGUGCAACUCCCGCCCCUCUUCCGAGGGUCAUCGGAACCpA2'3'cp
1313 4WPO_FB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1314 4WPO_MD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1315 4WQF_DB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGUCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1316 4WQF_EB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1317 4WQF_JD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGUCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1318 4WQF_KD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1319 4WQU_DB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGUCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1320 4WQU_EB  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1321 4WQU_KD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGUCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1322 4WQU_LD  tRNA  Ile  *AP  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1323 4WQY_DB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1324 4WQY_ID  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1325 4WRA_ZB  tRNA  Tyr  GUA  Escherichia coli  Cytoplasm  GUGGGGUUCCCGAGCGGCCAAAGGGAGCAGACUGUApms2i6AApYCUGCCGUCAUCGACUUCGAAGGUUCGAAUCCUUCCCCCACCACCA
1326 4WSD_AC  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGUCGGUAGAGCAGGGGApYUGAAAAUCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1327 4WZO_YB  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCCGGUAGCUCGUCGGGpCmUCAUAACCCGAAGpm7GUCGUCGGUpYCAAAUCCGGCCCCCGCAACCA
1328 4Y4O_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1329 4Y4O_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1330 4Y4P_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1331 4Y4P_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1332 4YBB_VB  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1333 4Z3S_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1334 4Z3S_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1335 4Z8C_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1336 4Z8C_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1337 5BR8_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1338 5CCX_C  tRNA  Lys  !UU  Homo sapiens  Cytoplasm  GCCCGGAUAGCUCAGUCGGUAGAGCAUCAGACUUUUAAUCUGAGGGUCCAGGGUUCApm1AGUCCCUGUUCGGGCGCCA
1339 5DFE_LA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1340 5DFE_GB  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1341 5DOX_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1342 5DOX_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1343 5DOY_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1344 5DOY_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1345 5E7K_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGUUGGUAGAGCAGUUGACUUUUAApYCAAUUGGUCGCAGGpm5UpYCGAAUCCUGCACGACCCACCA
1346 5EL4_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGGGUAGAGCAGUUGACUUUUAApYCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1347 5EL5_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCUCAGUUGGUAGAGCAGUUGACUUUUAApYCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1348 5EL7_AC  tRNA  Lys  !UU  Escherichia coli  Cytoplasm  GGUCGUUAGCCAGUUGGUAGAGCAGUUGACUUUUpt6AApYCAAUUGGUCGCAGGUUCGAAUCCUGCACGACCCACCA
1349 5F8K_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1350 5F8K_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1351 5FDU_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1352 5FDU_HC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1353 5FDV_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1354 5FDV_IC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1355 5HCP_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1356 5HCP_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1357 5HCQ_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1358 5HCQ_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1359 5HCR_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1360 5HCR_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1361 5HD1_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1362 5HD1_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1363 5IB8_YB  tRNA  Lys  !UU  Thermus thermophilus  Cytoplasm  GGUCGUUAGCUCAUGGAGCAGUUGACUUUUAAUCAAUUGCGCAGGpm5UpYCGAAUCCUGCACGACCCA
1364 5IBB_YB  tRNA  Lys  !UU  Thermus thermophilus  Cytoplasm  GGUGAUUAGCUCAUGGAGCACCUCCCUUACAAGGAGGGGCGGCGGpm5UpYCGAUCCCGUCAUCACCCACCA
1365 5IT8_JB  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1366 5J4B_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1367 5J4B_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1368 5J4C_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1369 5J4C_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1370 5J5B_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1371 5J7L_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1372 5J88_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1373 5J8A_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1374 5J8B_FB  tRNA  Phe  GAA  Thermus thermophilus  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUGUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1375 5J91_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1376 5JC9_AD  rRNA  LSU  23S  Escherichia coli  Cytoplasm  GUUAAGCGACUAAGCGUACACGGUGGAUGCCCUGGCAGUCAGAGGCGAUGAAGGACGUGCUAAUCUGCGAUAAGCGUCGGUAAGGUGAUAUGAACCGUUAUAACCGGCGAUUUCCGAAUGGGGAAACCCAGUGUGUUUCGACACACUAUCAUUAACUGAAUCCAUAGGUUAAUGAGGCGAACCGGGGGAACUGAAACAUCUAAGUACCCCGAGGAAAAGAAAUCAACCGAGAUUCCCCCAGUAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCUGAAUCAGUGUGUGUGUUAGUGGAAGCGUCUGGAAAGGCGCGCGAUACAGGGUGACAGCCCCGUACACAAAAAUGCACAUGCUGUGAGCUCGAUGAGUAGGGCGGGACACGUGGUAUCCUGUCUGAAUAUGGGGGGACCAUCCUCCAAGGCUAAAUACUCCUGACUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGUGAAAAAGAACCUGAAACCGUGUACGUACAAGCAGUGGGAGCACGCUUAGGCGUGUGACUGCGUACCUUUUGUAUAAUGGGUCAGCGACUUAUAUUCUGUAGCAAGGUUAACCGAAUAGGGGAGCCGAAGGGAAACCGAGUCUUAACUGGGCGUUAAGUUGCAGGGUAUAGACCCGAAACCCGGUGAUCUAGCCAUGGGCAGGUUGAAGGUUGGGUAACACUAACUGGAGGACCGAACCGACUAAUpm1GpYpm5UGAAAAAUUAGCGGAUGACUUGUGGCUGGGGGUGAAAGGCCAAUCAAACCGGGAGAUAGCUGGUUCUCCCCGAAAGCUAUUUAGGUAGCGCCUCGUGAAUUCAUCUCCGGGGGUAGAGCACUGUUUCGGCAAGGGGGUCACUUACCAACCCGAUGCAAACUGCGAAUACCGGAGAAUGUUAUCACGGGAGACACACGGCGGGpYGCUAACGUCCGUCGUGAAGAGGGAAACAACCCAGACCGCCAGCUAAGGUCCCAAAGUCAUGGUUAAGUGGGAAACGAUGUGGGAAGGCCCAGACAGCCAGGAUGUUGGCUUAGAAGCAGCCAUCAUUUAAAGAAAGCGUAAUAGCUCACUGGUCGAGUCGGCCUGCGCGGAAGAUGUAACGGGGCUAAACCAUGCACCGAAGCUGCGGCAGCGACGCUUAUGCGUUGUUGGGUAGGGGAGCGUUCUGUAAGCCUGCGAAGGUGUGCUGUGAGGCAUGCUGGAGGUAUCAGAAGUGCGAAUGCUGACAUAAGUAACGAUAAAGCGGGUGAAAAGCCCGCUCGCCGGAAGACCAAGGGUUCCUGUCCAACGUUAAUCGGGGCAGGGUGAGUCGACCCCUAAGGCGAGGCCGAAAGGCGUAGUCGAUGGGAAACAGGUUAAUAUUCCUGUACUUGGUGUUACUGCGAAGGGGGGACGGAGAAGGCUAUGUUGGCCGGGCGACGGUUGUCCCGGUUUAAGCGUGUAGGCUGGUUUUCCAGGCAAAUCCGGAAAAUCAAGGCUGAGGCGUGAUGACGAGGCACUACGGUGCUGAAGCAACAAAUGCCCUGCUUCCAGGAAAAGCCUCUAAGCAUCAGGUAACAUCAAAUCGUACCCCAAACCGACACpm6AGGUGGUCAGGUAGAGAAUACCAAGGCGCUUGAGAGAACUCGGGUGAAGGAACUAGGCAAAAUGGUGCCGUAACUUCGGGAGAAGGCACGCUGAUAUGUAGGUGAGGUCCCUCGCGGAUGGAGCUGAAAUCAGUCGAAGAUACCAGCUGGCUGCAACUGUUUAUUAAAAACACAGCACUGUGCAAACACGAAAGUGGACGUAUACGGUGUGACGCCUpm2,2GCCCGGUGCCGGAAGGUUAAUUGAUGGGGUUAGCGCAAGCGAAGCUCUUGAUCGAAGCCCCGGUAAACGGCGGCCGpYAAC3TDApYAACGGUCCUAAGGUAGCGAAApm5UUCCUUGUCGGGUAAGUUCCGACpm5CUGCACGAAUGGCGUAAUGAUGGCCAGGCUGUCUCCACCCGAGACUCAGUGAAAUUGAACUCGCUGUGpm6AAGAUGCAGUGUACCCGCGGCAAGACGGAAAGACCCCGUpm7GAACCUUUACUAUAGCUUGACACUGAACAUUGAGCCUUGAUGUGUAGGAUAGGUGGGAGGCUUUGAAGUGUGGACGCCAGUCUGCAUGGAGCCGACCUUGAAAUACCACCCUUUAAUGUUUGAUGUUCUAACGUUGACCCGUAAUCCGGGUUGCGGACAGUGUCUGGUGGGUAGUUUGACUGpGmGGCGGUCUCCUCCUAAAGAGUAACGGAGGAGCACGAAGGUUGGCUAAUCCUGGUCGGACAUCAGGAGGUUAGUGCAAUGGCAUAAGCCAGCUUGACUGCGAGCGUGACGGCGCGAGCAGGUGCGAAAGCAGGUCAUAGUGAUCCGGUGGUUCUGAAUGGAAGGGCCAUCGCUCAACGGAUAAAAGGUACUCCGpm2,2GGGApDAACAGGCpYGAUACCGCCCAAGAGUUCAUAUCGACGGCGGUGUUUGGCApCmCUCGpm2ApYGUCGGCUCAUCACAUCCUGGGGCUGAAGUAGGUCCCAAGGGUAUGGCpUmGUUCGCCAUUUAAAGUGGUACGCGAGCpYGGGUUUAGAACGUCGUGAGACAGpYpYCGGUCCCUAUCUGCCGUGGGCGCUGGAGAACUGAGGGGGGCUGCUCCUAGUACGAGAGGACCGGAGUGGACGCAUCACUGGUGUUCGGGUUGUCAUGCCAAUGGCACUGCCCGGUAGCUAAAUGCGGAAGAGAUAAGUGCUGAAAGCAUCUAAGCACGAAACUUGCCCCGAGAUGAGUUCUCCCUGACCCUUUAAGGGUCCUGAAGGAACGUUGAAGACGACGACGUUGAUAGGCCGGGUGUGUAAGCGCAGCGAUGCGUUGAGCUAACCGGUACUAAUGAACCGUGAGGCUUAACCU
1377 5L4O_A  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGpDAGCUCGUCGGGpCmUCAUAACCCGAAGAUCGUCGGpm5UpYCAAAUCCGGCCCCCGCUACC
1378 5V8I_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1379 5V8I_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGAGGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1380 5VPP_ZC  tRNA  Glu  UUC  Escherichia coli  Cytoplasm  GGUGAUUGGCGCAGCCUGGUAGCGCACUUCGUUCGGpm1GGACGAAGGGGUCGGAGGUUCGAAUCCUCUAUCACCGACCA
1381 5VPP_BD  tRNA  Glu  UUC  Escherichia coli  Cytoplasm  CGGUGAUUGGCGCAGCCUGGUAGCGCACUUCGUUCGGpm1GGACGAAGGGGUCGGAGGUUCGAAUCCUCUAUCACCGACCA
1382 5W4K_JC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAU
1383 5WIS_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1384 5WIS_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1385 5WIT_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1386 5WIT_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1387 5WNQ_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1388 5WNR_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1389 5WNS_A  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  GGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUUUUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUCCpYpYUCU
1390 6CAE_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1391 6CAE_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1392 6CFJ_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1393 6CFJ_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1394 6CFK_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1395 6CFK_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1396 6CFL_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1397 6CFL_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1398 6CZR_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1399 6CZR_FC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1400 6FKR_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1401 6FKR_HC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1402 6GSJ_ZB  tRNA  Thr  GGU  Escherichia coli  Cytoplasm  CUGAUAUAGCUCAGUAGAGCGCACCCUUGGUAAGGGUGAGGUCGGCAGpm5UpYCGAAUCUGCCUAUCAGCACCA
1403 6N9E_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1404 6N9E_FD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1405 6N9F_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1406 6N9F_FD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1407 6ND5_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1408 6ND5_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1409 6ND6_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1410 6ND6_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1411 6O97_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1412 6O97_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1413 6OF1_DB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1414 6OF1_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1415 6QNQ_AC  tRNA  Met  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpCmUCAUAACCCGAAGpm7GUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1416 6QNR_CC  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGpDCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GxXCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1417 6UO1_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1418 6UO1_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1419 6XHV_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1420 6XHV_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1421 6XHW_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1422 6XHW_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1423 6XHX_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1424 6XHX_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1425 6XHY_DB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1426 6XHY_HD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1427 6XQD_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1428 6XQD_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1429 6XQE_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1430 6XQE_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1431 7AZO_ZB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAUAGCUCAGUCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUGUCCUUGGpm5UUCGAUUCCGAGUCCGGGCACCA
1432 7AZS_ZB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAUAGCUCAGUCGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUGUCCUUGGpm5UUCGAUUCCGAGUCCGGGCACCA
1433 7JQL_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1434 7JQL_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1435 7JQM_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1436 7JQM_ED  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1437 7MD7_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1438 7MD7_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1439 7RQ8_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1440 7RQ8_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1441 7RQ9_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1442 7RQ9_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1443 7U2H_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCGps4UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGpm5UpYCGAUUCCCUUCGCCCGCUCCA
1444 7U2H_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCGps4UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGpm5UpYCGAUUCCCUUCGCCCGCUCCA
1445 7U2I_DB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCGps4UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGpm5UpYCGAUUCCCUUCGCCCGCUCCA
1446 7U2I_HD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCGps4UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGpm5UpYCGAUUCCCUUCGCCCGCUCCA
1447 7U2J_EB  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  CGGGCGps4UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGpm5UpYCGAUUCCCUUCGCCCGCUCCA
1448 7U2J_JD  tRNA  Gly  CCC  Escherichia coli  Cytoplasm  GCGGGCGps4UAGUUCAAGGUAGAACGAGAGCUUCCCAAGCUCUAUACGAGGGpm5UpYCGAUUCCCUUCGCCCGCUCCA
1449 7VNV_A7  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGCCps4UACGps4UCpm2,2GUCpYApG+CpCmUGGUUAGGACpm2,2GCCGCCpCmUpUmACAAGGCGGAGGxXpm5Cpm5CUGGGps2UpYpCmpm1Ipm1AGUCCCAGCGGGCCCACCA
1450 7VNV_B  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGGCCps4UACGps4UCpm2,2GUCpYApG+CpCmUGGUUAGGACpm2,2GCCGCCpCmUpUmACAAGGCGGAGGxXpm5Cpm5CUGGGps2UpYpCmpm1Ipm1AGUCCCAGCGGGCCCACCA
1451 7VNW_A  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGCCps4UACGUCpm2,2GUCpYApG+CpCmUGGUUAGGACpm2,2GCCGCCpCmUpUmACAAGGCGGAGGUpm5Cpm5CUGGGUpYpCmpm1Ipm1AGUCCCAGCGGGCCCACCA
1452 7VNW_B  tRNA  Val  JAC  Sulfolobus tokodaii  Cytoplasm  GGGCCps4UACGUCpm2,2GUCpYApG+CpCmUGGUUAGGACpm2,2GCCGCCpCmUpUmACAAGGCGGAGGUpm5Cpm5CUGGGUpYpCmpm1Ipm1AGUCCCAGCGGGCCCACCA
1453 8CVJ_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1454 8CVJ_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1455 8CVK_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1456 8CVK_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1457 8CVL_EB  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  CCCGGAps4UAGCUCAGGGUAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1458 8CVL_JD  tRNA  Phe  GAA  Escherichia coli  Cytoplasm  GCCCGGAps4UAGCUCAGGGAGAGCAGGGGApYUGAApms2i6AApYCCCCGUpm7GUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
1459 8EKB_BB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1460 8EKB_DD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1461 8EV6_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1462 8EV6_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1463 8EV7_CB  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1464 8EV7_GD  tRNA  Ile  CAU  Escherichia coli  Cytoplasm  GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1465 8FC1_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1466 8FC1_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1467 8FC2_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1468 8FC2_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1469 8FC3_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1470 8FC3_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1471 8FC4_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1472 8FC4_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1473 8FC5_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1474 8FC5_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1475 8FC6_FA  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1477 8FC6_GC  rRNA  SSU  16S  Thermus thermophilus  Cytoplasm  UUGGAGAGUUUGAUCCUGGCUCAGGGUGAACGCUGGCGGCGUGCCUAAGACAUGCAAGUCGUGCGGGCCGCGGGGUACUCCGUGGUCAGCGGCGGACGGGUGAGUAACGCGUGGGUGACCUACCCGGAAGAGGGGGACAACCCGGGGAAACUCGGGCUAAUCCCCCAUGUGGACCCGCCCCUUGGGGUGUGUCCAAAGGGCUUUGCCCGCUUCCGGAUGGGCCCGCGUCCCAUCAGCUAGUUGGUGGGGUAAUGGCCCACCAAGGCGACGACGGGUAGCCGGUCUGAGAGGAUGGCCGGCCACAGGGGCACUGAGACACGGGCCCCACUCCUACGGGAGGCAGCAGUUAGGAAUCUUCCGCAAUGGGCGCAAGCCUGACGGAGCGACGCCGCUUGGAGGAAGAAGCCCUUCGGGGUGUAAACUCCUGAACCCGGGACGAAACCCCCGACGAGGGGACUGACGGUACCGGGGUAAUAGCGCCGGCCAACUCCGpYGCCAGCAGCCpm7GCGGUAAUACGGAGGGCGCGAGCGUUACCCGGAUUCACUGGGCGUAAAGGGCGUGUAGGCGGCCUGGGGCGUCCCAUGUGAAAGACCACGGCUCAACCGUGGGGGAGCGUGGGAUACGCUCAGGCUAGACGGUGGGAGAGGGUGGUGGAAUUCCCGGAGUAGCGGUGAAAUGCGCAGAUACCGGGAGGAACGCCGAUGGCGAAGGCAGCCACCUGGUCCACCCGUGACGCUGAGGCGCGAAAGCGUGGGGAGCAAACCGGAUUAGAUACCCGGGUAGUCCACGCCCUAAACGAUGCGCGCUAGGUCUCUGGGUCUCCUGGGGGCCGAAGCUAACGCGUUAAGCGCGCCGCCUGGGGAGUACGGCCGCAAGGCUGAAACUCAAAGGAAUUGACGGGGGCCCGCACAAGCGGUGGAGCAUGUGGUUUAAUUCGAApm2,2Gpm5CAACGCGAAGAACCUUACCAGGCCUUGACAUGCUAGGGAACCCGGGUGAAAGCCUGGGGUGCCCCGCGAGGGGAGCCCUAGCACAGGUGCUGCAUGGCCGUCGUCAGCUCGUGCCGUGAGGUGUUGGGUUAAGUCCCGCAACGAGCGCAACCCCCGCCGUUAGUUGCCAGCGGUUCGGCCGGGCACUCUAACGGGACUGCCCGCGAAAGCGGGAGGAAGGAGGGGACGACGUCUGGUCAGCAUGpm2,2GCCCUUACGGCCUGGGCGACACACGUGCUACAAUGCCCACUACAAAGCGAUGCCACCCGGCAACGGGGAGCUAAUCGCAAAAAGGUGGGCCCAGUUCGGAUUGGGGUCUGCAACCCGACCCCAUGAAGCCGGAAUCGCUAGUAAUCGCGGAUCAGCCAUGCCGCGGUGAAUACGUUCCCGGGCCUUGUACACACpm5CGpm4CmCpm5CGUpm5CACGCCAUGGGAGCGGGCUCUACCCGAAGUCGCCGGGAGCCUACGGGCAGGCGCCGAGGGUAGGGCCCGUGACUGGGGCGAAGUCGpm3UAACAAGGUAGCUGUACCGGpm6,6Apm6,6AGGUGCGGCUGGAUC
1478 8JOZ_B  tRNA  Ser  NGA  Escherichia coli  Cytoplasm  GAAGUGps4UGGCCGAGCpGmGpDpDGAAGGCACCGGUpCmUxXGApYmpUmpmnm5s2UAACCGGCGACCCGAAAGGGUUCCAGAGpm5UpYCGAAUCUCUGCGCUUCCGCCA
1479 1D4R_C  other      synthetic construct    ppGGUGACCUCCCGGGAGCGGGGGACCACUA
1480 1DUH_A  other      synthetic construct    UCUGUUUACCAGGUCAGGUCCGGAAGGAAGCAGCCAAGGCAGApGp
1481 1DUL_A  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGCxX
1482 1F1T_A  other      synthetic construct    GA5BUCCCGAC5BUGGCGAGAGCCAGG5BUAACGAA5BUGGA5BUCC
1483 1HQ1_A  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGCxX
1484 1I7J_A  other      synthetic construct    pGmpCmpGmpCmpGm
1485 1I7J_B  other      synthetic construct    pCmpGmpCmpGmpCmpGm
1486 1JBS_A  other      synthetic construct    pGmpCmpUmpCmpCmUCAGUACGAUAGGAACCpGmpGmpAmpGmpCmpGm
1487 1JBS_B  other      synthetic construct    pCmpGmpCmpUmpCmpCmUCAGUACGAUAGGAACCpGmpGmpAmpGmpCmpGm
1488 1JID_A  other      synthetic construct    G5BUGACC5BUCCCGGGAGCGGGGGACCACUpA2'3'cp
1489 1JZV_B  other      synthetic construct    AGUACG5ICC
1490 1JZV_D  other      synthetic construct    CAGUACG5ICC
1491 1K8W_A  other      synthetic construct    GCAACGGUFHUCGAUCCCGUUGC
1492 1KFO_A  other      synthetic construct    AAUGCCUGCGAGCA5BUCCC
1493 1L9A_A  other      synthetic construct    ACACUAAGUUCGGCAUCAAUAUGGUGACCUCCCGGGAGCGGGGGACCACCAGGUUGCCUAGAGGGGUGAACCGGCCCAGGUCGGAAACGGAGCAGGUCAAAACUCCCGUGCUGAUCAGUAGUGUxX
1494 1LNT_B  other      synthetic construct    GGAAGCAGCBVGC
1495 1MFQ_A  other      synthetic construct    ACACUAAGUUCGGCAUCAAUAUGGUGACCUCCCGGGAGCGGGGGACCACCAGGUUGCCUAAGGAGGGGUGAACCGGCCCAGGUCGGAAACGGAGCAGGUCAAAACUCCCGUGCUGAUCAGUAGUGUxX
1496 1NJM_B  other      synthetic construct    GGGCUAAGCCGCUUAGCUCCACCPPU
1497 1NJP_B  other      synthetic construct    GGGCUAAGCCGCUUAGCUCCACCPPU
1498 1QBP_A  other      synthetic construct    GCBVCBVAGUUCGCUGGC
1499 1QBP_B  other      synthetic construct    UGCBVCBVAGUUCGCUGGC
1500 1QBP_C  other      synthetic construct    UGCBVCBVAGUUCGCUGGC
1501 1QBP_D  other      synthetic construct    UGCBVCBVAGUUCGCUGGC
1502 1QBP_E  other      synthetic construct    UGCBVCBVAGUUCGCUGGC
1503 1QBP_F  other      synthetic construct    UGCBVCBVAGUUCGCUGGC
1504 1QZW_A  other      synthetic construct    GCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUxX
1505 1QZW_B  other      synthetic construct    Gpm5UpYGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUxX
1506 1QZW_C  other      synthetic construct    Gpm5UpYGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUxX
1507 1QZW_D  other      synthetic construct    Gpm5UpYGCCGGGGGAACCGGCCAGGCCCGGAAGGGAGCAACCGUGCCCGGUxX
1508 1RLG_A  other      synthetic construct    C5BUC5BUGACCGAAAGGCGUGA5BUGAGC
1509 1RLG_B  other      synthetic construct    GC5BUC5BUGACCGAAAGGCGUGA5BUGAGC
1510 1S77_C  other      synthetic construct    CACGGCGA3DA
1511 1VQ4_C  other      synthetic construct    C5AAps2Upm1IpYpYpm1Ips2UpDACC
1512 1VQ5_C  other      synthetic construct    pDC5AAps2Upm1IpYpYpm1Ips2UACC
1513 1VQ7_C  other      synthetic construct    C5AAps2Upm1IpYpYApm6t6AACC
1514 1VQL_C  other      synthetic construct    CPPUpm5Upmnm5s2Upm6t6ApDACC
1515 1VQM_C  other      synthetic construct    CPPUpYpm1Ips2UpDACC
1516 1VQP_C  other      synthetic construct    pDCPPUxApm5s2UApYpm1Ips2UACC
1517 1XMO_C  other      synthetic construct    ACUpmnm5UUUpt6AAUC
1518 1XMQ_C  other      synthetic construct    ACUUUUpt6AAUC
1519 1Y27_A  other      synthetic construct    GAUCAUAUAAUCGCGUGGAUAUGGCACGCAAGUUUCUACCGGGCACCGUAAAUGUCCGACUAUGGUxX
1520 1Y3O_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1521 1Y3O_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1522 1Y3S_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1523 1Y3S_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1524 1Y90_A  other      synthetic construct    5BUUGCUGAGGUGCACACAGCAAG
1525 1Y90_B  other      synthetic construct    C5BUUGCUGAGGUGCACACAGCAAG
1526 1YVP_B  other      synthetic construct    IUGACIUAGCC
1527 1YVP_D  other      synthetic construct    IUIUGACIUAGCC
1528 1YXP_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1529 1YXP_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1530 1YY0_B  other      synthetic construct    CAGAM5MUUAAAUCUGC
1531 1YZD_A  other      synthetic construct    CAGAA5MUUAAGUCUGC
1532 1YZD_B  other      synthetic construct    GCAGAA5MUUAAGUCUGC
1533 1YZD_C  other      synthetic construct    GCAGAA5MUUAAGUCUGC
1534 1Z79_A  other      synthetic construct    CAGAA5MUUAAAUCUGC
1535 1Z79_B  other      synthetic construct    GCAGAA5MUUAAAUCUGC
1536 1Z79_C  other      synthetic construct    GCAGAA5MUUAAAUCUGC
1537 1ZCI_A  other      synthetic construct    5BUUGCUGAAGUGCACACAGCAAG
1538 1ZCI_B  other      synthetic construct    C5BUUGCUGAAGUGCACACAGCAAG
1539 1ZCI_C  other      synthetic construct    C5BUUGCUGAAGUGCACACAGCAAG
1540 1ZCI_D  other      synthetic construct    C5BUUGCUGAAGUGCACACAGCAAG
1541 1ZE2_A  other      synthetic construct    GCCACGGUFHUCGAAUCCGUGGC
1542 1ZE2_B  other      synthetic construct    GGCCACGGUFHUCGAAUCCGUGGC
1543 1ZL3_A  other      synthetic construct    GCAACGGUxUCGAUCCCGUUGC
1544 2A0P_A  other      synthetic construct    CS4CCGGGG
1545 2A0P_B  other      synthetic construct    CCS4CCGGGG
1546 2AB4_A  other      synthetic construct    CACGGUFHUCGAAUCCGUGGC
1547 2ANR_A  other      synthetic construct    5BUCGCGGAUCAGUCACCCAAGCGAG
1548 2AO5_A  other      synthetic construct    GCG5BUGCGCU
1549 2AO5_B  other      synthetic construct    GGCG5BUGCGCU
1550 2AO5_C  other      synthetic construct    GGCG5BUGCGCU
1551 2AO5_D  other      synthetic construct    GGCG5BUGCGCU
1552 2AZ0_A  other      synthetic construct    CA5BUGGACGCG5BUCCA5BUGC
1553 2AZ0_B  other      synthetic construct    GCA5BUGGACGCG5BUCCA5BUGC
1554 2AZ2_A  other      synthetic construct    CA5BUGGACGCG5BUCCA5BUGC
1555 2AZ2_B  other      synthetic construct    GCA5BUGGACGCG5BUCCA5BUGC
1556 2B3J_A  other      synthetic construct    UGACUP5PCGGAUCAA
1557 2B3J_B  other      synthetic construct    UUGACUP5PCGGAUCAA
1558 2B3J_C  other      synthetic construct    GACUP5PCGG
1559 2B3J_D  other      synthetic construct    UUUGACUP5PCGGAUCAA
1560 2B63_A  other      synthetic construct    AGCACUGAU5BUGCGG5BUCGAGGUAGC5BU5BUGAUG
1561 2BU1_D  other      synthetic construct    AUGAGGAU5BUACCCAUG
1562 2BU1_E  other      synthetic construct    CAUGAGGAU5BUACCCAUG
1563 2C4Q_D  other      synthetic construct    AUGAGGAUPYOACCCAUG
1564 2C4Q_E  other      synthetic construct    CAUGAGGAUPYOACCCAUG
1565 2C4Y_D  other      synthetic construct    AUGAGGAUps2UACCCAUG
1566 2C4Y_E  other      synthetic construct    UGAGGAUps2UACCCA
1567 2C4Z_D  other      synthetic construct    AUGAGGAps2Ups2UACCCAUG
1568 2C4Z_E  other      synthetic construct    UGAGGAps2Ups2UACCCA
1569 2CZJ_E  other      synthetic construct    GGGGUGAAACGGUCUCGACAGGGGUUCGCCUUUGGACGUGGGpm5UpYCGACUCCCACCACCUCC
1570 2CZJ_G  other      synthetic construct    GGGGGUGAAACGGUCUCGACAGGGGUUCGCCUUUGGACGUGGGpm5UpYCGACUCCCACCACCUCC
1571 2DLC_A  other      synthetic construct    UCUCGGUApm2GCCAAGUpGmGGAAGGCpm2,2GCAAGAUGpYApi6AApYCUUGAGGUpm5CGGGCGpm5UpYCGpm1ACUCGCCCCCGGGAGACCA
1572 2E9T_B  other      synthetic construct    GGCCCxU
1573 2E9T_D  other      synthetic construct    GGGCCCxU
1574 2FCX_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1575 2FCX_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1576 2FCY_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1577 2FCY_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1578 2FCZ_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1579 2FCZ_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1580 2FCZ_C  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1581 2FCZ_D  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1582 2FD0_A  other      synthetic construct    U5BUGCUGAAGUGCACACAGCAAG
1583 2FD0_B  other      synthetic construct    CU5BUGCUGAAGUGCACACAGCAAG
1584 2FMT_A  other      synthetic construct    GCGGGGps4UGGAGCAGCCUGGpDAGCUCGUCGGGpCmUCAUAACCCGAAGAUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1585 2FMT_B  other      synthetic construct    CGCGGGGps4UGGAGCAGCCUGGpDAGCUCGUCGGGpCmUCAUAACCCGAAGAUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1586 2GCS_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1587 2GCV_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1588 2GDI_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
1589 2GDI_B  other      synthetic construct    Gpm5UpYGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
1590 2H0S_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1591 2H0W_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1592 2H0X_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1593 2HO6_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1594 2HO7_B  other      synthetic construct    GCUUUAAGUUGACGAGGGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1595 2HOJ_A  other      synthetic construct    CGACUCGGGGUGCCCUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
1596 2IZ9_D  other      synthetic construct    UGAGGAUONEACCCAU
1597 2IZ9_E  other      synthetic construct    AUGAGGAUONEACCCAU
1598 2JLT_B  other      synthetic construct    GAGCCUGGGAGC5BUCC
1599 2OEU_B  other      synthetic construct    GCGUpCmCUGG5BUAUCCAAUCpDC
1600 2PN3_B  other      synthetic construct    CG5BUGUCGUGCAGCC5BUCCGG
1601 2PN4_B  other      synthetic construct    CG5BUGUCGUGCAGCC5BUCCGG
1602 2PN4_D  other      synthetic construct    GCG5BUGUCGUGCAGCC5BUCCGG
1603 2R1S_A  other      synthetic construct    CGUU5BUGAAACGC
1604 2R1S_B  other      synthetic construct    GCGUU5BUGAAACGC
1605 2R20_A  other      synthetic construct    CGUU5BUGAAACGC
1606 2R20_B  other      synthetic construct    GCGUU5BUGAAACGC
1607 2R21_A  other      synthetic construct    CGUU5BUGAAACGC
1608 2R21_B  other      synthetic construct    GCGUU5BUGAAACGC
1609 2X2Q_B  other      synthetic construct    LCGTLNLCGLCALCGLCG
1610 2X2Q_D  other      synthetic construct    LCGLCGTLNLCGLCALCGLCG
1611 2XD0_D  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1612 2XD0_E  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1613 2XD0_F  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1614 2XD0_G  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1615 2XD0_H  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1616 2XD0_I  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1617 2XDB_B  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1618 2XDD_D  other      synthetic construct    UUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1619 2XDD_E  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1620 2XDD_F  other      synthetic construct    AUUCAGGUGAUUUGCUACCUUUAAGUGCAGCUAGApA2'3'cp
1621 310D_A  other      synthetic construct    pGmpCmpGmpCmpGm
1622 310D_B  other      synthetic construct    pCmpGmpCmpGmpCmpGm
1623 3B4A_B  other      synthetic construct    GCUUUAAGUUGACGAGAGCAGGGUUUAUCGAGACAUCGGCGGGUGCCCUGCGGUCUCCUGCGACCGUUAGAGGACUGGUAAAACCACAGGCGACUGUGGCAUAGAGCAGUCCGGGCAGGApA2'3'cp
1624 3B5F_C  other      synthetic construct    CGUGGUN6GCAUUACCUGCC
1625 3B5S_C  other      synthetic construct    CGUGGUN6GCAUUACCUGCC
1626 3B91_C  other      synthetic construct    CGUGGUMTUCAUUACCUGCC
1627 3BBI_C  other      synthetic construct    CGUGGUMTUCAUUACCUGCC
1628 3BNO_A  other      synthetic construct    CGUCACC5BUCGAACAAGUCGC
1629 3BNO_B  other      synthetic construct    GCGUCACC5BUCGAACAAGUCGC
1630 3BNO_C  other      synthetic construct    GCGUCACC5BUCGAACAAGUCGC
1631 3BNO_D  other      synthetic construct    GCGUCACC5BUCGAACAAGUCGC
1632 3BNQ_D  other      synthetic construct    CGUCACC5BUCGAGCAAGUCGC
1633 3BNR_D  other      synthetic construct    CGUCACC5BUCGAGCAAGUCGC
1634 3BNS_D  other      synthetic construct    CGUCACC5BUCGAGCAAGUCGC
1635 3BNT_A  other      synthetic construct    GCGUCACC5BUCGAGCAAGUCGC
1636 3BO4_A  other      synthetic construct    GCCGUGUGCCUUGCGCCGGGAAACCACGCAAGGGAUGGUGUCAAAUUCGGCGAAACCUAAGCGCCCGCCCGGGCGUAUGGCAACGCCGAGCCAAGCUUCGCAGCCAUUGCACUCCGGCUGCGAUGAAGGUGUAGAGACUAGACGGCACCCACCUAAGGCAAACGCUAUGGUGAAGGCAUAGUCCAGGGAGUGGCGpA2'3'cp
1637 3BSN_C  other      synthetic construct    GCCCGGGN5M
1638 3BT7_C  other      synthetic construct    CUGUGpm5UUCGAUCCACAGC
1639 3BT7_D  other      synthetic construct    GCUGUGpm5UUCGAUCCACAGC
1640 3CJZ_A  other      synthetic construct    GACGpm2,2GACGUCCU
1641 3CJZ_B  other      synthetic construct    GGACGpm2,2GACGUCCU
1642 3DH3_B  other      synthetic construct    GAACGUCGUGAGACAGFHUUCGG
1643 3DH3_D  other      synthetic construct    AGAACGUCGUGAGACAGFHUUCGG
1644 3DH3_F  other      synthetic construct    AGAACGUCGUGAGACAGFHUUCGG
1645 3DH3_H  other      synthetic construct    AGAACGUCGUGAGACAGFHUUCGG
1646 3DIG_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1647 3DIL_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1648 3DIM_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1649 3DIO_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1650 3DIQ_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1651 3DIR_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1652 3DIS_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1653 3DIX_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1654 3DIY_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1655 3DIZ_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1656 3DJ0_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1657 3DJ2_A  other      synthetic construct    GCCGACGGAGGCGCGCCCGAGAUGAGUAGGCUGUCCCAUCAGGGGAGGAAUCGGGGACGGCUGAAAGGCGAGGGCGCCGAAGGGUGCAGAGUUCCUCCCGCUCUGCAUGCCUGGGGGUAUGGGGAAUACCCAUACCACUGUCACGGAGGUCUCUCCGUGGAGAGCCGUCGGUxX
1658 3DVV_A  other      synthetic construct    UpUmGCUGAAGUGCACACAGCAAG
1659 3DVV_B  other      synthetic construct    CUpUmGCUGAAGUGCACACAGCAAG
1660 3DW4_A  other      synthetic construct    GCpUmCCUAGUACGAGAGGACCGGAGUG
1661 3DW5_A  other      synthetic construct    GCUCCUAGpUmACGAGAGGACCGGAGUG
1662 3F2Q_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUxX
1663 3F2T_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUxX
1664 3F2W_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUxX
1665 3F2X_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUxX
1666 3F2Y_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUxX
1667 3F30_A  other      synthetic construct    GAUCUUCGGGGCAGGGUGAAAUUCCCGACCGGUGGUAUAGUCCACGAAAGUAGCUUUGAUUUGGUGAAAUUCCAAAACCGACAGUAGAGUCUGGAUGAGAGAAGAUUxX
1668 3HAX_E  other      synthetic construct    UAAUUFHUGACUCAA
1669 3HAY_F  other      synthetic construct    UAAUUFHUGACUCAA
1670 3HGA_A  other      synthetic construct    US5CGCG
1671 3HHN_B  other      synthetic construct    CCAGUAGGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGCUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGpA2'3'cp
1672 3HHN_D  other      synthetic construct    UCCAGUAGGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGCUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGpA2'3'cp
1673 3HJW_E  other      synthetic construct    AGCGFHUGCGGUUU
1674 3I5Y_B  other      synthetic construct    UU5BUUUUUUU
1675 3IBK_B  other      synthetic construct    5BUAGGGUUAGGGU
1676 3IIN_B  other      synthetic construct    GCCGUGUGCCUUGCGCCGGGAAACCACGCAAGGGAUGGUGUCAAAUUCGGCGAAACCUAAGCGCCCGCCCGGGCGUAUGGCAACGCCGAGCCAAGCUUCGCAGCCAUUGCACUCCGGCUGCGAUGAAGGUGUAGAGACUAGACGGCACCCACCUAAGGCAAACGCUAUGGUGAAGGCAUAGUCCAGGGAGUGGCGpA2'3'cp
1677 3LOA_B  other      synthetic construct    GG5BUGGUGAAGUCGUAACGCGGC
1678 3LQX_B  other      synthetic construct    GCUCUGUUUACCAGGUCAGGUCCGAAAGGAAGCAGCCAAGGCAGAGCxX
1679 3LWO_E  other      synthetic construct    AGCG5BUGCGGUUU
1680 3LWQ_E  other      synthetic construct    AGCGpm3UGCGGUUU
1681 3MEI_A  other      synthetic construct    CGCCGCGCCA5BUGCCUGUGGCGG
1682 3MEI_B  other      synthetic construct    CCGCCGCGCCA5BUGCCUGUGGCGG
1683 3MJ0_B  other      synthetic construct    GUUACGCpUm
1684 3NCU_D  other      synthetic construct    ppGACGCUAGCGUC
1685 3O6E_B  other      synthetic construct    CGAAUAUUCGCUpUm
1686 3O7V_B  other      synthetic construct    CGAAUAUUCGCUpUm
1687 3O8C_B  other      synthetic construct    5BUUUUU
1688 3O8R_B  other      synthetic construct    5BUUUUU
1689 3OWI_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1690 3OWW_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1691 3OWZ_B  other      synthetic construct    GCUCUGGAGAGAACCGUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1692 3OX0_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1693 3OXB_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCCCAGGCAAAAGGACAGAGUxX
1694 3OXD_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAUCGGUCGCCGAACGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUGAGGCAAAAGGACAGAGUxX
1695 3OXE_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1696 3OXJ_A  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1697 3OXJ_B  other      synthetic construct    ppGGCUCUGGAGAGAACCGUUUAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1698 3OXM_B  other      synthetic construct    GCUCUGGAGAGAACCGUUUAAUCGGUCGCCGAAGGAGCAAGCUCUGCGGAAACGCAGAGUGAAACUCUCAGGCAAAAGGACAGAGUxX
1699 3R1D_A  other      synthetic construct    CGRBGCGGCGGC
1700 3R1D_B  other      synthetic construct    GCGRBGCGGCGGC
1701 3R1D_C  other      synthetic construct    GCGRBGCGGCGGC
1702 3R1D_D  other      synthetic construct    GCGRBGCGGCGGC
1703 3R1D_E  other      synthetic construct    GCGRBGCGGCGGC
1704 3R1E_A  other      synthetic construct    CGRBGCGGC
1705 3R1E_B  other      synthetic construct    GCGRBGCGGC
1706 3R1H_C  other      synthetic construct    GAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGpA2'3'cp
1707 3R1H_F  other      synthetic construct    Gpm5UpYGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGpA2'3'cp
1708 3R1L_C  other      synthetic construct    GAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGpA2'3'cp
1709 3R1L_F  other      synthetic construct    Gpm5UpYGAACACUAUACUACUGGAUAAUCAAAGACAAAUCUGCCCGAAGGGUUUGAGAACAUACCCAUUGCACUCCGGGUAUGCAGAGGUGGCAGCCUCCGGUGGGUUAAAACCCAACGUUCUCAACAAUAGUGpA2'3'cp
1710 3RW6_B  other      synthetic construct    GCACUAACCUAAGACAGGAGGGCCGGGAAACCUGCCUAAUCCAAUGACGGGUAAUAGUGUxX
1711 3RW6_C  other      synthetic construct    Gpm5UpYGCACUAACCUAAGACAGGAGGGCCGGGAAACCUGCCUAAUCCAAUGACGGGUAAUAGUGUxX
1712 3S49_A  other      synthetic construct    UAUAxXAC
1713 3S49_B  other      synthetic construct    GUAUAxXAC
1714 3S49_C  other      synthetic construct    GUAUAxXAC
1715 3S49_D  other      synthetic construct    GUAUAxXAC
1716 3S49_E  other      synthetic construct    GUAUAxXAC
1717 3S49_F  other      synthetic construct    GUAUAxXAC
1718 3S49_G  other      synthetic construct    GUAUAxXAC
1719 3SKI_B  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1720 3SKL_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1721 3SKL_B  other      synthetic construct    Gpm5UpYGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1722 3SKR_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1723 3SKR_B  other      synthetic construct    Gpm5UpYGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1724 3SKT_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1725 3SKT_B  other      synthetic construct    Gpm5UpYGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1726 3SKW_A  other      synthetic construct    GCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1727 3SKW_B  other      synthetic construct    Gpm5UpYGCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGUxX
1728 3SKZ_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1729 3SKZ_B  other      synthetic construct    Gpm5UpYGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1730 3SLM_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1731 3SLM_B  other      synthetic construct    Gpm5UpYGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1732 3SLQ_A  other      synthetic construct    GCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1733 3SLQ_B  other      synthetic construct    Gpm5UpYGCCUUAUACAGGGUAGCAUAAUGGGCUACUGACCCCGCCUUCAAACCUAUUUGGAGACUAUAAGGUxX
1734 3SUH_A  other      synthetic construct    GACAGAGUAGGUAAACGUGCGUAAAGUGCCUGAGGGACGGGGAGUUGUCCUCAGGACGAACACCGAAAGGUGGCGGUACGUUUACCGCAUCUCGCUGUUxX
1735 3SUX_A  other      synthetic construct    GACAGAGUAGGUAAACGUGCGUAAAGUGCCUGAGGGACGGGGAGUUGUCCUCAGGACGAACACCGAAAGGUGGCGGUACGUUUACCGCAUCUCGCUGUUxX
1736 3T1H_W  other      synthetic construct    ACUxUUUxAApYC
1737 3T1Y_W  other      synthetic construct    ACUxUUUxAApYC
1738 3T3N_B  other      synthetic construct    pUmpCmpCmpGmpUm
1739 3T4B_A  other      synthetic construct    CUCCCGGGAGAGCCGCUAAGGGGGAAACUCUAUGCGGUACUGCCUGAUAGGGUGCUUGCGAGUGCCCCGGGAGGUCUCGUAGpA2'3'cp
1740 3TD0_A  other      synthetic construct    CGUCGCG5BUCGACGAAGUCGC
1741 3TD0_B  other      synthetic construct    UUGCGUCGCG5BUCGACGAAGUCGC
1742 3TD1_A  other      synthetic construct    GCGUCGCG5BUCGACGAAGUCGC
1743 3TD1_B  other      synthetic construct    UUGCGUCGCG5BUCGACGAAGUCGC
1744 3ZD4_B  other      synthetic construct    GCGUpCmCUGGUAUCCAAUCpDC
1745 3ZD5_B  other      synthetic construct    GCGUpCmCUGG5BUAUCCAA5BUCpDC
1746 3ZP8_B  other      synthetic construct    GCGUpCmCUGGUAUCCAAUCpDC
1747 406D_A  other      synthetic construct    ACCGGAUGGU5BUCGGUG
1748 406D_B  other      synthetic construct    CACCGGAUGGU5BUCGGUG
1749 430D_A  other      synthetic construct    GGUGCUCAGUACGAGAGGAACCGCACBVCC
1750 464D_B  other      synthetic construct    GGGCIUA
1751 464D_D  other      synthetic construct    GGGGCIUA
1752 4ATO_B  other      synthetic construct    AAUUGGUGUAACCUUACCGUAGUAGGUGCUAApA2'3'cp
1753 4E58_A  other      synthetic construct    CCLCGCCGC
1754 4E58_B  other      synthetic construct    GCCLCGCCGC
1755 4E58_C  other      synthetic construct    GCCLCGCCGC
1756 4E78_B  other      synthetic construct    ACCGGDO
1757 4G6P_C  other      synthetic construct    CGUGGUP5PCAUUACCUGCC
1758 4G6S_C  other      synthetic construct    CGUGGUP5PCAUUACCUGCC
1759 4GKJ_W  other      synthetic construct    CCpf5CAUACC
1760 4GXY_A  other      synthetic construct    GCGGCAGGUGCUCCCGACGUCGGGAGUUAAAAGGGAAGCCGGUGCAAGUCCGGCACGGUCCCGCCACUGUGACGGGGAGUCGCCCCUCGGGAUGUGCCACUGGCCCGGCCGGGAAGGCGGAGGGGCGGCGAGGAUCCGGAGUCAGGAAACCUGCCUGCCGUxX
1761 4JAH_A  other      synthetic construct    UGUAxXAC
1762 4JAH_B  other      synthetic construct    GUGUAxXAC
1763 4JAH_C  other      synthetic construct    GUGUAxXAC
1764 4JAH_D  other      synthetic construct    GUGUAxXAC
1765 4JAH_E  other      synthetic construct    GUGUAxXAC
1766 4JAH_F  other      synthetic construct    GUGUAxXAC
1767 4LGT_B  other      synthetic construct    GAACGUCGUGAGACAGUFHUCG
1768 4LGT_D  other      synthetic construct    GAACGUCGUGAGACAGUFHUCG
1769 4NFP_A  other      synthetic construct    CAGA7ECUUAAGUCUGC
1770 4NFP_B  other      synthetic construct    GCAGA7ECUUAAGUCUGC
1771 4NFP_C  other      synthetic construct    GCAGA7ECUUAAGUCUGC
1772 4NFQ_A  other      synthetic construct    CAG7ATCUUAAGUCUGC
1773 4NFQ_B  other      synthetic construct    GCAG7ATCUUAAGUCUGC
1774 4NFQ_C  other      synthetic construct    GCAG7ATCUUAAGUCUGC
1775 4NYA_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
1776 4NYA_B  other      synthetic construct    Gpm5UpYGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
1777 4NYB_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
1778 4NYC_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
1779 4NYD_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
1780 4NYG_A  other      synthetic construct    CGACUCGGGGUGCCCUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
1781 4P3S_A  other      synthetic construct    CGUCCCG5BUCGACGAAGUCGC
1782 4P3S_B  other      synthetic construct    UGCGUCCCG5BUCGACGAAGUCGC
1783 4P3T_A  other      synthetic construct    UGCGUCCCG5BUCGACGAAGUCGC
1784 4P3T_B  other      synthetic construct    UUGCGUCCCG5BUCGACGAAGUCGC
1785 4P3U_A  other      synthetic construct    CGUCUCG5BUCGACGAAGUCGC
1786 4P3U_B  other      synthetic construct    UGCGUCUCG5BUCGACGAAGUCGC
1787 4P3U_C  other      synthetic construct    UGCGUCUCG5BUCGACGAAGUCGC
1788 4P3U_D  other      synthetic construct    GCGUCUCG5BUCGACGAAGUCGC
1789 4PCJ_A  other      synthetic construct    UGCpYGGCUAAGGCAUGAAAGUGCUAUGCCUGCUG
1790 4PLX_A  other      synthetic construct    GAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUCUUAAAAAAAAAAAAAGCAAApA2'3'cp
1791 4PLX_B  other      synthetic construct    Gpm5UpYGAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUCAAAAAAAAAAAAGCAAApA2'3'cp
1792 4PLX_C  other      synthetic construct    Gpm5UpYGAAGGUUUUUCUUUUCCUGAGGCGAAAGUCUCAGGUUUUGCUUUUUGGCCUUUAAAAAAAAAAAGCAAApA2'3'cp
1793 4RMO_B  other      synthetic construct    AGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1794 4RMO_D  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1795 4RMO_F  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1796 4RMO_H  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1797 4RMO_J  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1798 4RMO_L  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1799 4RMO_N  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1800 4RMO_P  other      synthetic construct    AAGUUUACCACUGACCGAUAUGUGGUAUAUAAAUGGUCGGGUUGpA2'3'cp
1801 4TS0_B  other      synthetic construct    CAGCCGGCUUGUUGAGUAGAGUGUGAGCUCCGUAACUGGUCGCGUxX
1802 4TS2_B  other      synthetic construct    CAGCCGGCUUGUUGAGUAGAGUGUGAGCUCCGUAACUGGUCGCGUxX
1803 4UYJ_E  other      synthetic construct    GGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGUAAGGGUUCCCACCCUCGGGCGUGCCUxX
1804 4UYJ_F  other      synthetic construct    GGGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGUAAGGGUUCCCACCCUCGGGCGUGCCUxX
1805 4UYK_C  other      synthetic construct    GGGCUAGGCCGGGGGGUUCGGCGUCCCCUGUAACCGGAAACCGCCGAUAUGCCGGGGCCGAAGCCCGAGGGGCGGUUCCCGAAGCCGCCUCUGUAAGGAGGCGGUGGAGGGUUCCCACCCUCGGGCGUGCCUxX
1806 4V8X_EC  other      synthetic construct    AAAUGpUmpAmpAmA
1807 4WFL_A  other      synthetic construct    GCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUUCGGUAACGAAUCGACAGAAGGUGCACGGUxX
1808 4WFM_A  other      synthetic construct    GCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUGGUAACAUCGACAGAAGGUGCACGGUxX
1809 4WFM_B  other      synthetic construct    Gpm5UpYGCCGUGCUAAGCGGGGAGGUAGCGGUGCCCUGUACCUGCAAUCCGCUCUAGCAGGGCCGAAUCCCUUCUCGAGGUGGUAACAUCGACAGAAGGUGCACGGUxX
1810 4X62_W  other      synthetic construct    ACUxUUUxAApYC
1811 4X64_W  other      synthetic construct    ACUxUUUxAApYC
1812 4X65_W  other      synthetic construct    ACUxUUUxAApYC
1813 4X66_W  other      synthetic construct    ACUxUUUxAApYC
1814 4XW0_A  other      synthetic construct    CCULCGCCUGC
1815 4XW0_B  other      synthetic construct    GCCULCGCCUGC
1816 4XW1_A  other      synthetic construct    CCULCGCCUG
1817 4Y27_A  other      synthetic construct    GCUCCUAGUACGApGm45AGGACCGGAGUG
1818 4Z4F_C  other      synthetic construct    AAUGUGAN6GA
1819 5AOX_F  other      synthetic construct    ppGGCCGGGCGCGGUGGCUCACGCCUGUAAUCCCAGCACUUUGGGAGGCCGAGGCGGGAGGAUCGCGAACACGCGAGACCCCGUCUCUA
1820 5BJO_A  other      synthetic construct    GCGCGAGGAAGGAGGIUCUGAGGAGGUCACUGCGCC
1821 5BJO_B  other      synthetic construct    GGCGCGAGGAAGGAGGIUCUGAGGAGGUCACUGCGCC
1822 5BTE_B  other      synthetic construct    U37U37UUU
1823 5BTE_C  other      synthetic construct    UU37U37UUU
1824 5D8T_B  other      synthetic construct    CBVGAAUpmo5Upac4CUCG
1825 5DGV_GF  other      synthetic construct    C8ANpYpm2,2Gpm1IpYpm2,2Gpm1I
1826 5DGV_HF  other      synthetic construct    CC8ANpYpm2,2Gpm1IpYpm2,2Gpm1I
1827 5DHB_A  other      synthetic construct    TLNLCGUACA
1828 5DHB_B  other      synthetic construct    pm2GCCTLNLCGUACA
1829 5DHB_C  other      synthetic construct    pm2GCCTLNLCGUACA
1830 5DHB_D  other      synthetic construct    pm2GCCTLNLCGUACA
1831 5DHC_A  other      synthetic construct    pm2GCCLCALCGACUUAAGUCU
1832 5DHC_B  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1833 5DHC_C  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1834 5DHC_D  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1835 5DO5_A  other      synthetic construct    GCGAAUUApm5s2Ups2U2SGCG
1836 5DUN_A  other      synthetic construct    UUUpUmAAUGAAGCCACAGGCUGUGAGGGUCCUAAGCCCCUAAUUCAGAAGGGAA
1837 5GUH_B  other      synthetic construct    AUUUUUpUm
1838 5HAU_EB  other      synthetic construct    CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1839 5HAU_KD  other      synthetic construct    GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1840 5HBW_A  other      synthetic construct    TLNLCGUACA
1841 5HBW_B  other      synthetic construct    pm2GCCTLNLCGUACA
1842 5HBX_A  other      synthetic construct    pm2GCCLCALCGACUUAAGUCU
1843 5HBX_B  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1844 5HBX_C  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1845 5HBX_D  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1846 5HBY_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUC
1847 5HN2_A  other      synthetic construct    UApf5CGUAC
1848 5HN2_B  other      synthetic construct    GUApf5CGUAC
1849 5HN2_C  other      synthetic construct    GUApf5CGUAC
1850 5HN2_D  other      synthetic construct    GUApf5CGUAC
1851 5HN2_E  other      synthetic construct    GUApf5CGUAC
1852 5HN2_F  other      synthetic construct    GUApf5CGUAC
1853 5HNJ_A  other      synthetic construct    UApf5CGUAC
1854 5HNJ_B  other      synthetic construct    GUApf5CGUAC
1855 5HNJ_C  other      synthetic construct    GUApf5CGUAC
1856 5HNJ_D  other      synthetic construct    GUApf5CGUAC
1857 5HNJ_E  other      synthetic construct    GUApf5CGUAC
1858 5HNJ_F  other      synthetic construct    GUApf5CGUAC
1859 5HNQ_A  other      synthetic construct    UApf5CGUAC
1860 5HNQ_B  other      synthetic construct    GUApf5CGUAC
1861 5HNQ_C  other      synthetic construct    GUApf5CGUAC
1862 5HNQ_D  other      synthetic construct    GUApf5CGUAC
1863 5HNQ_E  other      synthetic construct    GUApf5CGUAC
1864 5HNQ_F  other      synthetic construct    GUApf5CGUAC
1865 5HNQ_G  other      synthetic construct    GUApf5CGUAC
1866 5HNQ_H  other      synthetic construct    GUApf5CGUAC
1867 5HNQ_I  other      synthetic construct    GUApf5CGUAC
1868 5HNQ_J  other      synthetic construct    GUApf5CGUAC
1869 5HNQ_K  other      synthetic construct    GUApf5CGUAC
1870 5HNQ_L  other      synthetic construct    GUApf5CGUAC
1871 5HNQ_M  other      synthetic construct    GUApf5CGUAC
1872 5J4D_HA  other      synthetic construct    AAAUGpYAAAA
1873 5J4D_LC  other      synthetic construct    AAAAUGpYAAAA
1874 5KRG_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGG
1875 5KRG_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1876 5KRG_C  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1877 5KRG_D  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1878 5L00_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGG
1879 5L00_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1880 5L00_C  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1881 5L00_D  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1882 5LQO_A  other      synthetic construct    CBVCGGACGGC
1883 5LQO_B  other      synthetic construct    GCBVCGGACGGC
1884 5LQT_A  other      synthetic construct    CBVCGGpm6ACGGC
1885 5LQT_B  other      synthetic construct    GCBVCGGpm6ACGGC
1886 5LR3_A  other      synthetic construct    CBVCGGAUGGC
1887 5LR3_B  other      synthetic construct    GCBVCGGAUGGC
1888 5LR4_A  other      synthetic construct    CBVCGGpm6AUGGC
1889 5LR4_B  other      synthetic construct    GCBVCGGpm6AUGGC
1890 5LR4_C  other      synthetic construct    GCBVCGGpm6AUGGC
1891 5LR4_D  other      synthetic construct    GCBVCGGpm6AUGGC
1892 5LR5_A  other      synthetic construct    Gpm6ACUAGUCBVC
1893 5LR5_B  other      synthetic construct    GGpm6ACUAGUCBVC
1894 5LR5_C  other      synthetic construct    GGpm6ACUAGUCBVC
1895 5LR5_D  other      synthetic construct    GGpm6ACUAGUCBVC
1896 5LYS_A  other      synthetic construct    GGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCxX
1897 5LYS_B  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCxX
1898 5LYU_A  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCxX
1899 5LYU_B  other      synthetic construct    GGGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCxX
1900 5LYV_A  other      synthetic construct    GGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCxX
1901 5LYV_B  other      synthetic construct    GGGAUCUGUCACCCCAUUGAUCGCCUUCGGGCUGAUCUGGCUGGCUAGGCGGGUCCxX
1902 5MRX_A  other      synthetic construct    GCUphm5CCUAGUACGAGAGGACCGGAGUG
1903 5NDH_A  other      synthetic construct    CBVGGGGACGACCCCGC
1904 5NDH_B  other      synthetic construct    GCBVGGGGACGACCCCGC
1905 5NDH_C  other      synthetic construct    GCBVGGGGACGACCCCGC
1906 5NDH_D  other      synthetic construct    GCBVGGGGACGACCCCGC
1907 5NDI_A  other      synthetic construct    UUGCAGGACGACCUGCBVAAA
1908 5NDI_B  other      synthetic construct    UUUGCAGGACGACCUGCBVAAA
1909 5NDI_C  other      synthetic construct    UUUGCAGGACGACCUGCBVAAA
1910 5NDI_D  other      synthetic construct    UUUGCAGGACGACCUGCBVAAA
1911 5NEF_A  other      synthetic construct    GUGGGGACGACCCCACBVC
1912 5NEO_A  other      synthetic construct    GUGGGGACGACCCCACBVC
1913 5NEP_A  other      synthetic construct    GUGGGGACGACCCCACBVC
1914 5NEQ_A  other      synthetic construct    GUGGGGACGACCCCACBVC
1915 5NEX_A  other      synthetic construct    GUGGGGACGACCCCACBVC
1916 5NOM_A  other      synthetic construct    GUGGGGACGACCCCACBVC
1917 5NQI_A  other      synthetic construct    GCUphm5CCUAGUACGAGAGGACCGGAGUG
1918 5NWQ_A  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1919 5NWQ_B  other      synthetic construct    CCGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1920 5NY8_A  other      synthetic construct    CGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1921 5NY8_B  other      synthetic construct    CCGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1922 5NZ3_A  other      synthetic construct    CBVGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1923 5NZ3_B  other      synthetic construct    CCBVGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1924 5NZ6_A  other      synthetic construct    CBVGGACGAGGUGCGCCGUACCCGGUCACGACAAGACGGCBVGC
1925 5NZD_A  other      synthetic construct    CBVGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1926 5NZD_B  other      synthetic construct    CCBVGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1927 5O62_A  other      synthetic construct    CBVGGACGAGGUGCGCCGUACCCGGUCAGGACAAGACGGCBVGC
1928 5O62_B  other      synthetic construct    CCBVGGACGAGGUGCGCCGUACCCGGAGACGGCBVGC
1929 5O69_B  other      synthetic construct    CBVGGACGAGGUGCGCCGUACCCGGAGCAAGACGGCBVGC
1930 5T16_G  other      synthetic construct    C73WAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1931 5T16_H  other      synthetic construct    GC73WAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1932 5T16_O  other      synthetic construct    GC73WAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1933 5T16_P  other      synthetic construct    GC73WAUGUCAUGUCAUGAGUCCAUGGCAUGGCAUG
1934 5T3K_B  other      synthetic construct    AGCGxUCACACCACCC
1935 5T3K_D  other      synthetic construct    CAGCGxUCACACCACCC
1936 5UZ6_D  other      synthetic construct    xGCACCUCA
1937 5UZ6_F  other      synthetic construct    xGCACCUCA
1938 5UZA_A  other      synthetic construct    GGAAGAUAUAAUCCIUAAIUGAUAUGGUUUGGGAGUUUCUACCAAGAGCCUUAAACUCUUGAUUAUCUUCCC
1939 5V0H_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGG
1940 5V0H_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1941 5V0J_A  other      synthetic construct    pm2GCCLCALCGACUUAAGUCU
1942 5V0J_B  other      synthetic construct    pm2GCCpm2GCCLCALCGACUUAAGUCU
1943 5V0K_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUC
1944 5V1K_A  other      synthetic construct    GCGAA5BUpmanQpm2,2GpUmAGCG
1945 5V1K_B  other      synthetic construct    CGCGAA5BUpmanQpm2,2GpUmAGCG
1946 5V2H_B  other      synthetic construct    CBVGAApYmpm5UxAUCG
1947 5V2H_C  other      synthetic construct    CBVGAApYmpm5UxAUCG
1948 5V2H_D  other      synthetic construct    CBVGAApYmpm5UxAUCG
1949 5VJB_A  other      synthetic construct    CGGGGACGACCC5BUGC
1950 5VJB_B  other      synthetic construct    GCGGGGACGACCC5BUGC
1951 5VJB_C  other      synthetic construct    GCGGGGACGACCC5BUGC
1952 5VJB_D  other      synthetic construct    GCGGGGACGACCC5BUGC
1953 5VP2_CB  other      synthetic construct    CGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1954 5VP2_GD  other      synthetic construct    GCGGGGps4UGGAGCAGCCUGGUAGCUCGUCGGGpm5CUCAUAACCCGAAGGUCGUCGGpm5UpYCAAAUCCGGCCCCCGCAACCA
1955 5VPO_CD  other      synthetic construct    UUCGUUCGGpm1GGACGAAG
1956 5VPO_DD  other      synthetic construct    CUUCGUUCGGpm1GGACGAAG
1957 5VSU_I  other      synthetic construct    AUUUGAAACAAUACAGAGAUGAUCAGCGGUUCCCCUGCAUAAGGAGAACCGUUUUACAAAGAGAUUUGUUUxU
1958 5WNP_W  other      synthetic construct    AGACUxUUUxAApYCUA
1959 5WNT_W  other      synthetic construct    AGACUxUUUxAApYCUA
1960 5WNU_W  other      synthetic construct    xUUUxAA
1961 5WNV_W  other      synthetic construct    AGACUxUUUxAApYCUA
1962 5XWG_A  other      synthetic construct    GCU5BUCGAAAAAGUC
1963 5ZEG_A  other      synthetic construct    UGCGUCpm1ACGUCGACGAAGUCGC
1964 5ZEG_B  other      synthetic construct    UUGCGUCpm1ACGUCGACGAAGUCGC
1965 5ZEG_C  other      synthetic construct    UUGCGUCpm1ACGUCGACGAAGUCGC
1966 5ZEI_B  other      synthetic construct    CGUCpm1ACGUCGACGAAGUCGC
1967 5ZEJ_A  other      synthetic construct    GCGUCpm1ACGUCGACGAAGUCGC
1968 5ZEJ_B  other      synthetic construct    UGCGUCpm1ACGUCGACGAAGUCGC
1969 5ZEM_A  other      synthetic construct    GCGUCpm1ACGUCGACGAAGUCGC
1970 5ZEM_B  other      synthetic construct    GCGUCpm1ACGUCGACGAAGUCGC
1971 6A6J_D  other      synthetic construct    CAUpm5CU
1972 6ASO_I  other      synthetic construct    AAUUUGAAACAAUACAGAGAUGAUCAGCGGUUCCCCUGCAUAAGGGGAACCGUUUUACAAAGAGUUUUxU
1973 6C8D_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1974 6C8D_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1975 6C8E_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1976 6C8E_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1977 6C8I_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1978 6C8I_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1979 6C8J_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1980 6C8J_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1981 6C8K_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1982 6C8K_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1983 6C8L_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1984 6C8L_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1985 6C8M_B  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1986 6C8N_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGG
1987 6C8N_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1988 6C8O_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGG
1989 6C8O_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGG
1990 6CAB_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
1991 6CAB_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
1992 6CY0_B  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1993 6CY0_C  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1994 6CY0_D  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1995 6CY0_E  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1996 6CY0_F  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1997 6CY0_G  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1998 6CY0_H  other      synthetic construct    CBVGAAUpm5s2UpCmUCG
1999 6CY2_B  other      synthetic construct    CBVGAAUpm1IAUCG
2000 6CY4_B  other      synthetic construct    CBVGAAUpm1IpCmUCG
2001 6CY4_C  other      synthetic construct    CBVGAAUpm1IpCmUCG
2002 6CY4_D  other      synthetic construct    CBVGAAUpm1IpCmUCG
2003 6CY4_E  other      synthetic construct    CBVGAAUpm1IpCmUCG
2004 6CY4_F  other      synthetic construct    CBVGAAUpm1IpCmUCG
2005 6CY4_G  other      synthetic construct    CBVGAAUpm1IpCmUCG
2006 6CY4_H  other      synthetic construct    CBVGAAUpm1IpCmUCG
2007 6DLQ_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUxX
2008 6DLR_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUxX
2009 6DLS_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUxX
2010 6DLT_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUxX
2011 6DMC_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUxX
2012 6DMC_B  other      synthetic construct    Gpm5UpYGAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUxX
2013 6DMD_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUxX
2014 6DMD_B  other      synthetic construct    Gpm5UpYGAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUxX
2015 6DME_A  other      synthetic construct    GAAGUGUACCUAGGGAUCCACCUCGAGAGAGGAAGGACCAAGCGGUACAGGCCUACUUCGGUAGGUUACACCGUGGGGAUAAAAGACCCGUGGCAAGUUUxX
2016 6DNR_A  other      synthetic construct    GAAAGUGUGUCUAGGGUUCCGCGUGCUUCGGCACGGACUGGUCCAAGUGACACAGACGCAUUCGUGCGUUACACCGGAGGGAUAGAAGCCCAGGCGGGUAGGUUUxX
2017 6FZ0_A  other      synthetic construct    GGCBVGCAUUUGAACUGUAUUGUACGCCUUGCAGCAAAAGUACUAAAAA
2018 6HBT_A  other      synthetic construct    GUGGGGACGACCCCACBVC
2019 6HBX_A  other      synthetic construct    GUGGGGACGACCCCACBVC
2020 6HC5_A  other      synthetic construct    GUGGGGACGACCCCACBVC
2021 6LVR_C  other      synthetic construct    CGGAUUUApm2GCUCAGpDpDGGGAGAGCpm2,2GCCAGApCmUpGmAApyWApYpm5CUGGAGpm7GUCpm5CUGUGpm5UpYCGpm1AUCCACAGAAUUCGC
2022 6N1D_GB  other      synthetic construct    GUGGGGUUCCCGAGCGGCCAAAGGGAGCAGACUpQUApms2i6AApYCUGCCGUCAUCGACUUCGAAGGpm5UpYCGAAUCCUUCCCCCACCACCA
2023 6Q8U_A  other      synthetic construct    GGCGAAGpm6AACCGGGGAGCCG
2024 6Q8U_B  other      synthetic construct    CGGCGAAGpm6AACCGGGGAGCCG
2025 6Q8V_A  other      synthetic construct    GCGAAGpm6AACCGGGGAGCC
2026 6TF0_A  other      synthetic construct    GCBVUUCAACAACCCCGUAGGUUGGGCCGAAAGGCAGCGAAUCUACUGGAGCC
2027 6TFH_A  other      synthetic construct    GCBVUUCAACAACCCCGUAGGUUGGGCCGAAAGGCAGCGAAUCUACUGGAGCC
2028 6TQA_B  other      synthetic construct    GUGCCUAAUAUUUAGGCACxX
2029 6TQA_D  other      synthetic construct    GGUGCCUAAUAUUUAGGCACxX
2030 6TQA_F  other      synthetic construct    GGUGCCUAAUAUUUAGGCACxX
2031 6TQA_H  other      synthetic construct    GGUGCCUAAUAUUUAGGCACxX
2032 6U6J_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGppG
2033 6U6J_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCGppG
2034 6U89_A  other      synthetic construct    TLNLCGUACA
2035 6U89_B  other      synthetic construct    pm2GCCTLNLCGUACA
2036 6U8U_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
2037 6U8U_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
2038 6UFG_B  other      synthetic construct    GCAUCGAUCCGGCGAUCACCGGGGAGCCUUCGGAAGAACGGCCAGGCCCAGUAGAACCGAACGGGUUGGCCCGUCACAGCCUCAAGUCGAGCGGCCGCGCGAAAGCGUGGCAAGCGGGGUGGCACCGCGGCGUUCGCGCGAAAGCGUGGCGUCGUCCCCGxX
2039 6UFH_B  other      synthetic construct    GCAUCGAUCCGGCGAUCACCGGGGAGCCUUCGGAAGAACGGCCGGAAACGGCCCAGUAGAACCGAACGGGUUGGCCCGUCACAGCCUCAAGUCGAGCGGCCGCGCGAAAGCGUGGCAAGCGGGGUGGCACCGCGGCGUUCGCGCGAAAGCGUGGCGUCGUCCCCGxX
2040 6WY2_A  other      synthetic construct    CGGpm4CGCCGG
2041 6WY2_B  other      synthetic construct    CCGGpm4CGCCGG
2042 6WY2_C  other      synthetic construct    CCGGpm4CGCCGG
2043 6WY2_D  other      synthetic construct    CCGGpm4CGCCGG
2044 6WY2_E  other      synthetic construct    CCGGpm4CGCCGG
2045 6WY3_A  other      synthetic construct    CGGpm4,4CGCCGG
2046 6WY3_B  other      synthetic construct    CCGGpm4,4CGCCGG
2047 6WY3_C  other      synthetic construct    CCGGpm4,4CGCCGG
2048 6WY3_D  other      synthetic construct    CCGGpm4,4CGCCGG
2049 6XUR_A  other      synthetic construct    GCGO2ZAUUAGCG
2050 6XUS_A  other      synthetic construct    GCGAO2ZUUAGCG
2051 6Y3G_A  other      synthetic construct    CCCGGAps4UAGCUCAGpDCGGpDAGAGCAGGGGApYUGAAAApYCCCCGUGxUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACC
2052 6Y4B_A  other      synthetic construct    CCCGGAps4UAGCUCAGpDCGGpDAGAGCAGGGGApYUGAAAApYCCCCGUGUCCUUGGpm5UpYCGAUUCCGAGUCCGGGCACCA
2053 6YL5_A  other      synthetic construct    GUCBVACAACGGCUUCCUGGCGUGACC
2054 6YL5_C  other      synthetic construct    GGUCBVACAACGGCUUCCUGGCGUGACC
2055 6YL5_E  other      synthetic construct    GGUCBVACAACGGCUUCCUGGCGUGACC
2056 6YL5_G  other      synthetic construct    GGUCBVACAACGGCUUCCUGGCGUGACC
2057 6YL5_I  other      synthetic construct    GGUCBVACAACGGCUUCCUGGCGUGACC
2058 6YL5_K  other      synthetic construct    GGUCBVACAACGGCUUCCUGGCGUGACC
2059 6Z18_A  other      synthetic construct    CGGpm4,4CGCCGG
2060 6Z18_B  other      synthetic construct    CCGGpm4,4CGCCGG
2061 7BAI_D  other      synthetic construct    ppGACGCUAGCGUC
2062 7BAI_F  other      synthetic construct    ppGACGCUAGCGUC
2063 7BPF_A  other      synthetic construct    CUGC5BUG
2064 7BPF_B  other      synthetic construct    GCUGC5BUG
2065 7BPG_A  other      synthetic construct    CUGC5BUGC
2066 7BPG_B  other      synthetic construct    GCUGC5BUGC
2067 7BPG_C  other      synthetic construct    GCUGC5BUGC
2068 7BPG_D  other      synthetic construct    GCUGC5BUG
2069 7EDT_A  other      synthetic construct    GACUCCGG5BUCC
2070 7EDT_B  other      synthetic construct    GGACUCCGG5BUCC
2071 7F3I_D  other      synthetic construct    GUpm5CUpm5C
2072 7F3J_D  other      synthetic construct    UCAUpm5C
2073 7F3J_F  other      synthetic construct    UCAUpm5C
2074 7F3J_H  other      synthetic construct    UCAUpm5C
2075 7F3K_B  other      synthetic construct    CAUpm5CU
2076 7JJD_A  other      synthetic construct    GCUCCUAGUACGAxGAGGACCGGAGUG
2077 7JJE_A  other      synthetic construct    GCUCCUAGUACGA2SGAGGACCGGAGUG
2078 7JJU_A  other      synthetic construct    GAACUAGCUCAGCAUACACGAGUUGCAAGCAUGGGAAGUUCAAGCCUCGpU2'3'cp
2079 7JJU_B  other      synthetic construct    Gpm5UpYGAACUAGCUCAGCAUACACGAGUUGCAAGCAUGGGAAGUUCAAGCCUCGpU2'3'cp
2080 7JNH_B  other      synthetic construct    GGCUGAGUUUUUACAUGACAAAGUUUUUAACGAGGCAGCGGCGAAAGUCGCUGUACUCUUUUCUUUGUCAUGGUUUUCUCAGCCxX
2081 7JZ0_F  other      synthetic construct    pac4Cpm7GGpAmUUA
2082 7KUK_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
2083 7KUK_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCG
2084 7KUM_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCLCG
2085 7KUM_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCLCG
2086 7KUN_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGpm5s2Ups2U
2087 7KUN_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCGpm5s2Ups2U
2088 7KUO_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGpm5s2Upm2G
2089 7KUO_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCGpm5s2Upm2G
2090 7KUP_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCpGm
2091 7KUP_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCpGm
2092 7L6R_C  other      synthetic construct    pAmUUAA
2093 7LO9_A  other      synthetic construct    GCGxAA5BUUAGCG
2094 7LO9_B  other      synthetic construct    CGCGxAA5BUUAGCG
2095 7LO9_C  other      synthetic construct    CGCGxAA5BUUAGCG
2096 7LO9_D  other      synthetic construct    CGCGxAA5BUUAGCG
2097 7TDA_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
2098 7TDB_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
2099 7TDC_A  other      synthetic construct    CGACUCGGGGUGCCCUUCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUCGCpA2'3'cp
2100 7TZR_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
2101 7TZR_B  other      synthetic construct    Gpm5UpYGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
2102 7TZS_A  other      synthetic construct    GACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
2103 7TZS_B  other      synthetic construct    Gpm5UpYGACUCGGGGUGCCCUUCUGCGUGAAGGCUGAGAAAUACCCGUAUCACCUGAUCUGGAUAAUGCCAGCGUAGGGAAGUUxX
2104 7U87_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCxGxG
2105 7U87_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCxGxG
2106 7U88_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCxGxG
2107 7U88_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCxGxG
2108 7U89_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGxG
2109 7U89_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCGxG
2110 7U8A_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGxG
2111 7U8A_B  other      synthetic construct    pm2Gpm1GCpm2GCCpm2GCCLCGACUUAAGUCGxG
2112 7U8B_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCGxG
2113 7U8B_B  other      synthetic construct    TLNpm2GCCpm2GCCLCGACUUAAGUCGxG
2114 7V9E_A  other      synthetic construct    GGGCUGACCGACCCCCCGAGUUCGCUCGGGGACAACUAGACAUACAGUAUGAAAAUACUGpm1AGCCCGC
2115 7VNV_A  other      synthetic construct    GGCCps4UACGps4UCpm2GUCpYApG+CpCmUGGUUAGGACpm2,2GCCGCCpCmUpUmACAAGGCGGAGGxUpm5Cpm5CUGGGps2UpYpCmpm1Ipm1AGUCCCAGCGGGCCCACCA
2116 7WL0_B  other      synthetic construct    GGpm6ACUGC
2117 7WL0_D  other      synthetic construct    UGGpm6AC
2118 7WL0_F  other      synthetic construct    UGGpm6ACUGC
2119 8CLM_B  other      synthetic construct    pUmpAmpGmpGmpAmpGmpAmpCm
2120 8CLM_D  other      synthetic construct    UpYmpm2GpUmpAmpGmpGmpAmpGmpAmpCm
2121 8CLM_F  other      synthetic construct    UpYmpm2GpUmpAmpGmpGmpAmpGmpAmpCm
2122 8DZK_H  other      synthetic construct    xGUGUU
2123 8SWG_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
2124 8SWG_B  other      synthetic construct    pm2GCCpm2GCCpm2GCCLCGACUUAAGUCG
2125 8SWO_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
2126 8SWO_B  other      synthetic construct    TLNpm2GCCpm2GCCLCGACUUAAGUCG
2127 8SX5_A  other      synthetic construct    TLNpm2GCCLCGACUUAAGUCG
2128 8SX5_B  other      synthetic construct    pm2GCCTLNpm2GCCLCGACUUAAGUCG
2129 8SX6_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
2130 8SX6_B  other      synthetic construct    TLNpm2GCCpm2GCCLCGACUUAAGUCG
2131 8SXL_A  other      synthetic construct    TLNLCALCGACUUAAGUCU
2132 8SXL_B  other      synthetic construct    TLNTLNLCALCGACUUAAGUCU
2133 8SY1_A  other      synthetic construct    pm2GCCpm2GCCLCGACUUAAGUCG
2134 8SY1_B  other      synthetic construct    TLNpm2GCCpm2GCCLCGACUUAAGUCG
2135 8SY1_C  other      synthetic construct    TLNpm2GCCpm2GCCLCGACUUAAGUCG
2136 8SY1_D  other      synthetic construct    TLNpm2GCCpm2GCCLCGACUUAAGUCG
2137 tdbR00000643  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGxCAUAGCUCAGxUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCAAAUCCAGGUGCCCCCUCCA
2138 tdbR00000644  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGxGGGUAGAGCACUUGACUGCAGAUCAAGxAAGUCCUUGGUUCAAAUCCAGGUGCCCCCUCCA
2139 tdbR00000646  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGxUGUAGCUCAGUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCxAAAUCCAGGUGCCCCCUCCA
2140 tdbR00000650  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGGGGUAGAGCAUUUGACUGCAGAUCAAxGAGGUCCCUGGUUCAAAUCCAGGUGCCCCCCCCA
2141 tdbR00000652  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGxUAUAGCUCAGGGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCCGGUUCAxAAUCCGGGUGCCCCCUCCA
2142 tdbR00000660  SO:0000258 tRNA  Cys  GCA  Homo sapiens  Cytoplasm  GGGGGUAUAGCUCAGUGGUAGAGCAUUUGACUGCAGAUCAAGAGGUCCCUGGUUCAxAAUCCGGGUGCCCCCUCCA
2143 tdbR00000662  SO:0000257 tRNA  Asp  GUC  Homo sapiens  Cytoplasm  UCCUCGUUxAGUAUAGUGGUUAGUAUCCCCGCCUGUCACGCGGGAGACCGGGGxUUCxAxAUUCCCCGACGGGGAGCCA
2144 tdbR00000665  SO:0000257 tRNA  Asp  GUC  Homo sapiens  Cytoplasm  UCCUCGUUAGUAUAGUGGUGAGUxGUCCCCGxUCUGUCACGCGGGAGACCGGGGUUCxGxAUUCCCCGACGGGGAGCCA
2145 tdbR00000692  SO:0000263 tRNA  Ile  IAU  Homo sapiens  Cytoplasm  GGCCGGUUAGCUCAGUCGGCUAGAGCxGUGGUGCUpIAUAACGCCAAGGUCGCGGGUUCGAxUCCCCGUACxGGGCCACCA
2146 tdbR00000693  SO:0000263 tRNA  Ile  IAU  Homo sapiens  Cytoplasm  GGCCGGUUAGCUCAGUUGGUUAGAGCxGUGGUGCUpIAUAACGCCAAGGUCGCGGGUUCGxAxUCCCCGUACxGGGCCACCA
2147 tdbR00000739  SO:0000268 tRNA  Pro  ѴGG  Homo sapiens  Cytoplasm  GGCUCGUUGGUCUAGGGGxUAUGAUUCUCGCUUxCGGGUGxUGAGAGGUCCCGGGUUCAAAUCCCGGACGAGCCCCCA
2148 tdbR00000820  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAACGGUAGCGCGUCUGACUCCAGAUCAGAAGGUUGCGUGUUCAAAUCACGUCGGGGxUCACCA
2149 tdbR00000822  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAACGGUAGCGCGUCUGACUCCAGAUCAGAAGGCUGCGUGUUCGAAUCACGUCGGGGxUCACCA
2150 tdbR00000824  SO:0000271 tRNA  Trp  CCA  Homo sapiens  Cytoplasm  GACCUCGUGGCGCAAUGGUAGCGCGUCUGACUCCAGAUCAGAAGGUUGCGUGUUCAxAGUCACGUCGGGGxUCACCA
2151   mRNA  unknown    Homo sapiens    AAAAAAGAAAAAAGCCAAAUGUGGUUGCUCACACCUGUGAUCUGAGCACUUUGGGAGGCCAAGGUGAGAGGAUCGCUUAAGCCUAGGAGUUCAAAACCAGCCUCGGCAACAUGGUGAGAACCCAUCUGUACAAAUCAUUUAAAAGCUAGCUGGGUGUGCUGCUGCAUGCCUGUGGUCUCAGCCACUUGGGAGGGUGAGGCAGGAGGAUCGCCCGAGCCUGGAAGAUCGAGGUUGCAGUGAACCAUGAUUGCACCACUGCACUCCAGCCUGGACAACAGAGCAAGACCCUGUCUUAAAAAAAGAAGAAAGAAAUGUGGAGGGUUUCUUACUCGUCAGCUGUAGCCUUUGCUGAUAAGAUGCCCUUGUGUCUCUGCAGUGUGUGAUCCAGUCUUGGGUGACAAGUGGGACGGCGAAGGCUCGAUGUACGUCCCGGAGGACCUCCUUCCCGUCUACAAAGAAAAAGUGGUGCCGCUUGCAGmACAUUAUCACGCCCAACCAGUUUGAGGCCGAGUUACUGAGUGGCCGGAAGAUCCACAGCCAGGAGGAAGCCUUGCGGGUGAUGGACAUGCUGCACUCUAUGGGCCCCGACACCGUGGUCAUCACCAGCUCCGACCUGCCCUCCCCGCAGGGCAGCAACUACCUGAUUGUGCUGGGGAGUCAGAGGAGGAGGAAUCCCGCUGGCUCCGUGGUGAUGGAACGCAYCCGGAUGGACAUUCGCAAAGUGGACGCCGUCUUUGUGGGCACUGGGGACCUGUUUGCUGCCAUGCUCCUGGCGUGGACACACAAGCm6ACCCCAAUAACCUCAAGGUGGCCUGUGAGAAGACCGUGUCUACCUUGCACCACGUUCUGCAGAGGACCAUCCAGUGUGCAAAAGCCCAGGCCGGGGAAGGAGUGAGGCCCAGCCCCAUGCAGCUGGAGCUGCGGAUGGUGCAGAGCAAAAGGGACAUCGAGGACCCAGAGAUCGUCGUCCAGGCCACGGUGCUGUGAGGGCCCCGCCGCUUGCCCGUGACACGCAGCGCGUUGGUGUCUCCGUGUUUGUCCCUGUGAAAACAUGUAACGUCUGCCUUAGAGCCAUGACCGAAm6ACUUGAUAUUUUUUU
2152   mRNA  unknown    Homo sapiens    AAAAAGUUCGCGCUGCUGGUCCCGCGCGGGCGGCCCCUGGGCUUUGUGUCCACCAGGACAGCGGGCCGGGCUCCCUGCAGGCGCGGGCGGCGCCGAACGGUGCUCAGCAACCACCCGGACAGGGCCAGGCCGUUUUCUCCCGCUCAGGCAUUAGUCGUUGGCUGUGGGCCGCCGCGGGAAGUUGAGGCCUACCACGGAGGAGGCUGCUGAGGUGGAUCUCAGGGGAUCCGCAAGGGCUCCCUCACCCUUGCCGGGACCCUGGGAACCCGAAACAAAAUCCUACGCCACCAGCCCGCCGAAUGCGCCCCCUCGGCCGGGGGUCCUGGGUCUUCAGAGAAGAACUCGGCCGAAUGCGGUCAGAAAGCCCGCGAACCGCCUGGACCUGCAGGCCCCGCCGCUUGGAGCUCCCGCCUUUCCCGACCGAGCCCGUGUCUGCUCGUGUGUCUCACUGAUGUCUUAGGUCUCAAAAAAAAAAGAAAAGAAAAGGUUUUUAGUAGACAGAAGAGAAAUGGGGCCGUGGGUUCGUGGUCCCAGGGGGAAACUGACGUCGCAUGAGGUCGUCGUCCCUCAGCUUGAGCUCAGCGGAACAUAAGCUUGCAGAGGUGGAAACCACGGAAGGUUUGGGUGUCUUGGAGCUCUCUGGACACCGAAGCCCGGm6ACACAGUCCCGGGGUCCGCACCGCCUGUGACCUGUGGCGGGm6ACCGCCGGGGUGGGCGUUUUCUCAGCUGGCGCGCGCGUAGGUGGAm6ACUUGGGAAACUAm6ACUGGAGCGAAGUGGCAAAAAACCAAGACAGGGCCGGUGACCUCGCGCAGGCCGUCCUUAm6ACUGUGGAGUAUUCCUUCAGCUAACCCCUUUAUUUCAUGUGUCCAAGUCUGGUUUCUGGGUUUCUUUGUAGUCCUCCGGGCCUGUUCGUGCGCCUUCACUUGCAAAAGGUUCGUCGUGGAGGGCCGUGUGCUUGUUUGCAGCAGUAACGAUGCCCUUCCCGAGCGUGCUGGAGUGGCUCCUCGCUGACGCAAGCUCACCUUGCAGCCUCCUCAGCAACUGCAACUUAAACGCGCCCUCAGGAAGCCCUGGAAUCUCGCUCAGAAUUUUUUUUCUUUUUUUGAGm6ACAGUCUCGCUGCGACGCCCAGGCUAUAGCGCAAUGGCGCGAUCUCGGCUCCCUGCAACCUCCCUCAGGAAGCCGUGGAAGCUCGACCGCCAGAAm6ACUUCCUUCUCCUGACUCAGGCCACAGUCUUCUGUGUGGCUGGUCUCCAGGAGGUAAGGCCCGCCCUGCAGGCAACACCGGUGCUUGGGCUCCUGCUGAGCAGUUCUUUCCUGCGAGUAACAGAACCAGGGAGGGAGGUGGGCUGUGGCCUCCCCUGCCCCUACAGUCGUCUCCUGCAGCUCCCACCAUGCUGGACUCAUCAGCAGCAGAGCAAGUGACCCGACUGACGCUGAAGCUCUUGGGACAGAAGCUGGAGCAAGAACGGCAGAACGUGGAAGGGGGACCUGAGGGCCUCCACCUCGAGCCAGGAAAUGAGGACCGGCCGGACGAUGCCCUGCAGACUGCUCUGAAGAGAAGGAGGGACCUUCUGCAGAGACUCCGGGAACAACACCUCCUGGACGAGCUCUCUCGGGCCCAGGCCUGGAGCGGGCCAAGCAGAGGAGCCCUCGGGUCAGCCCUGCCCCCAGAGCUGCCCCCCACGGGCAUCCUACCCACUGCCUCCCCAUCCCCGCUGGCCCCAGACCCGCCAAGGAUCAUCCUGCCUACGGUCCCCCAGCCUCCUGCCACCAUCAUUCAGCAGCUCCCUCAGCAGCCACUCAUAGCACAGAUUCCUCCUCCCCAGGCCUUCCCUACUCAACGGUCAGGAAGUAUUAAGGAAGACAUGGUGGAGCUGCUGCUGCUGCAGAACGCACAGGUGCACCAGUUGGUCCUGCAGAACUGGAUGCUCAAGGCCCUGCCCCCAGCCCUGCAGGACCCGCCACAUGUGCCCCCGAGGGUCCCACGAGCUGCCAGGCCAAGGCUGCCUGCCGUGCACCACCACCACCACCACCACCAUGCUGUGUGGCCACCUGGGGCUGCCACUGUCCUCCAGCCCGCCCCCAGCCUGUGGACGCCUGGCCCACCCUGAGUGUGAGUCACAGAGACCCUGGCCGGGGCACCCUCCACCCCCAGGCUUCCUCAGGGCUGUGGGCUGUGGCGGGACUAUGGAAGGGAGCAGGGAGAGACCCUGCCACCACCCGGAGUGGCUACGCGAGUGUGGACUGCAGGCUCCUCCUGGGGAAGCUGGGCAGGCUCGCUUUCUGGUCACGGGGCCAUUCCAGGGGGCAUCCCUUGCUCCGGGUCCCCUGCAGUGAGGGGCCUGUGAACCCCACCAGGGCAACAGCCCCUCCCAGGGACCCCUCCUUUCCUGUAGGGCGGCGCCGGCCCACCUGGGAGCCUCAGAUCCCCCUCUUCCAUCACGGAGGUAAAGUUGAGGCCGUGGACGCCACCAGCCUGAUGAAAUAAAGAUUUCAUCCAGAAAGAGUUUAAGAAAAUCUCAGCUCAGGAGCCAGAACAGAAAAGAUCAAUAGCUUUAGCCACAUGGAAGUGUGAACAUCCUGAUGGGGAAAAUACCACAAAGUCUAAUUUAAUAACUAGGGACACCUGUGUCCACAGCUGUGGCACAGACUCCCACUAAAGAAGUAGGGGUGCAUGGCUCAUGCCUGUAAUCCCAGCACUUUAAGAGGCUGAGGCAGGAGGAUCACUUGAGCUCAGGAAUUCGAGACCAGCCUGGGUCACAUAGCAAGACCCCGUCUCUACAAAAAAUAAAUUUAAAAAACUAGCCAGGUGUGGUGAUAUGCGCCUGUUAUCUCAGCAGCUCUGGGGGCUGAGGUGGGAGGAUUGCUUGAGCCCAGGAGUUAGAAGCUGCAGUGAGCUCUGAUGGAACCACUGCACUAUAGCCUGGACCACAGAGCAGGCCCCUGUCUCAAAAAUAAAAUAAAAAAGUGAAAGAAGCAA
2153   mRNA  unknown    Homo sapiens    AAAAAUAACUCAUAUUGUCUCUGAGGUUCUUUUCCAGUGAAGUGUUUAGUAUUGCUGCUAUUUGGAGUACAAAGUUGGAGCUUUUAAAGAACCUGGGAGUUCAAAAGUAUAAGGAGAAAUAAAUGAAAAGCAGAAAUAUUUUGAGGCAAUAAGUAUAGACUCAAAUCUAUAUUAUGACCCACUUGUAGCACCACUUGGAAUUCUACCAAUAAGAGAUUUAUUUGGGCAAACUAUAAUGGUUGUUGGAAAUUGCAAAUCUUAGUGUGAAUUAUUUUAGUCCAGUUGGUUUCUUUCUUUCUCUUACCUGAAAUGAACUAUACUGAGGCAAUAGGAGCUUUGUAUAGUAAUUUAGGAGUGUAAAACAACUUAGGGAAAAGGAUUAUUAAGCAGGAUGAUUGGGAUGACAUCAUGUGAAAUUUAGGAAUUGGAGGCAUUGGGAAUUGAGAGGGUGCUAACAAAGGAAAACAGCUUAUUUUAGAAUUUGUCUGGAGGAUGUAGAAUUGAAGAAGUUUUGGUAUUUCUUCUGCAGCGGCCCCAGUGCCCUUGACCAGGAACAUCUCUUGGAGUCAGUAGUUUUCAUGAGGCUGACCUAGGAACUUGGCCAACAUAUGCAACAUUGUUCUAUUUAAAAUAUUCCUUGAAUUAAAUUCGAUAGUAUCAAUUUAAAACAUAAAGUUUUCACUCAACUCCUUUAGAAGUUAGAUUUUAGCUUGUACUUGUCUUUACCUCUUCUGCUGAUUAUCAGUUGACAACACUGAGAUUACUUUCAUUUUCCUGUAAGUCAUUAUGAAUUUUUCUGGUCAACCAUGAGUUAUCAGUGGAAGCAAUAAGUAGGAAGUACUGUAAAAGAAUUACAAUAAAAUAAGAGAAACCACUUGGAGAGCAAGAGGGCUUGUGGACUUGGGGGAGCGGUUGUGAGAAAUGUCUCAGAACUUAAUUUACAAAUAACAUUGGUAGAUUGACAUGUUGUCUUUCCUAUAAAGUAACUUUACCUCUGUCUUAAUAGUAAACUACUAUGAAAGUGAAUUCGUGUUCCUCUUGAUUUGUGAACUGAUGAAAAUUACAAAAUGUGGAGUUUUUUCCCCAGAUAAAGUAAAUGGUGGAAUAUUCAGGUUUAUUUGAUACCUAGAAAAUACCUGAAAUUUUCCGUGGUAAUAGGCACAUUUUGAAACUGUUUUUUUUUUCUCUGACAAUUGAAUAUAUUUUAUAUAUAGUUGAUUUUGAUUAUUGAAGACUAAGGAAAAUUUAAGUUUGAAUGUUAGAAAAUGAAUUUUGCAAAUUUGAAGUAAUUUUAUUCUUUAUGUUUUGGGAUUGUAGUUAUGUUAGAUAUUCCUCAGUUGGGGUAAUUGUCUUGCAUCAUUAUCUCUUAUCAUAAUCUGUUUUUCUUCACACAGUGUUAUAGUUUUGCCGCUGGACUCUUCCCUCCCUUCCCCCACCCCAUCAGGAUGAUAUGAGACUUGAAAGAAGACGAUGCAUACAGGAGGAGAGACUUCAGCAUGCAAACCUUCAUCUGUUCGGCUUGCACCGUCAUUUUCAUUCCAUGCUGCUGGCCUUCAGAUGGCUGGACAGAUGCCCCAUUCACAUCAGUACAGUGACCGUCGCCAGCCAAACAUAAGUGACCAACAGGUUUCUGCCUUAUCAUAUUCUGACCAGAUUCAGCAACCUCUAACUAACCAGAGGCGGAUGCCCCAAACCUUCCGUGACCCAGCAACUGCUCCCCUGAGAAAACUUUCUGUUGACUUGAUCAAAACAUACAAGCAUAUUAAUGAGGUUUACUAUGCAAAAAAGAAGCGAAGACACCAACAGGGCCAGGGAGACGAUUCUAGUCAUAAGAAGGAACGGAAGGUUUACAAUGAUGGUUAUGAUGAUGAUAACUAUGAUUAUAUUGUAAAAAACGGAGAAAAGUGGAUGGAUCGUUACGAAAUUGACUCCUUGAUAGGCAAAGGUUCCUUUGGACAGGUUGUAAAGGCAUAUGAUCGUGUGGAGCAAGAAUGGGUUGCCAUUAAAAUAAUAAAGAACAAGAAGGCUUUUCUGAAUCAAGCACAGAUAGAAGUGCGACUUCUUGAGCUCAUGAACAAACAUGACACUGAAAUGAAAUACUACAUAGUGCAUUUGAAACGCCACUUUAUGUUUCGAAACCAUCUCUGUUUAGUUUUUGAAAUGCUGUCCUACAACCUCUAUGACUUGCUGAGAAACACCAAUUUCCGAGGGGUCUCUUUGAACCUAACACGAAAGUUUGCGCAACAGAUGUGCACUGCACUGCUUUUCCUUGCGACUCCAGAACUUAGUAUCAUUCACUGUGAUCUAAAACCUGAAAAUAUCCUUCUUUGUAACCCCAAACGCAGUGCAAUCAAGAUAGUUGACUUUGGCAGUUCUUGUCAGUUGGGGCAGAGGAUAUACCAGUAUAUUCAGAGUCGCUUUUAUCGGUCUCCAGAGGUGCUACUGGGAAUGCCUUAUGACCUUGCCAUUGAUAUGUGGUCCCUCGGGUGUAUUUUGGUUGAAAUGCACACUGGAGAACCUCUGUUCAGUGGUGCCAAUGAGGUAGAUCAGAUGAAUAAAAUAGUGGAAGUUCUGGGUAUUCCACCUGCUCAUAUUCUUGACCAAGCACCAAAAGCAAGAAAGUUCUUUGAGAAGUUGCCAGAUGGCACUUGGAACUUAAAGAAGACCAAAGAUGGAAAACGGGAGUACAAACCACCAGGAACCCGUAAACUUCAUAACAUUCUUGGAGUGGAAACAGGAGGACCUGGUGGGCGACGUGCUGGGGAGUCAGGUCAUACGGUCGCUGACUACUUGAAGUUCAAAGACCUCAUUUUAAGGAUGCUUGAUUAUGACCCCAAAACUCGAAUUCAACCUUAUUAUGCUCUGCAGCACAGUUUCUUCAAGAAAACAGCUGAUGAAGGUACAAAUACAAGUAAUAGUGUAUCUACAAGCCCCGCCAUGGAGCAGUCUCAGUCUUCGGGCACCACCUCCAGUACAUCGUCAAGCUCAGGUGGCUCAUCGGGGACAAGCAACAGUGGGAGAGCCCGGUCGGAUCCGACGCACCAGCAUCGGCACAGUGGUGGGCACUUCACAGCUGCCGUGCAGGCCAUGGACUGCGAGACACACAGUCCCCAGGUGCGUCAGCAAUUUCCUGCUCCUCUUGGUUGGUCAGGCACUGAAGCUCCUACACAGGUCACUGUUGAAACUCAUCCUGUUCAAGAAACAACCUUUCAUGUAGCCCCUCAACAGAAUGCAUUGCAUCAUCACCAUGGUAACAGUUCCCAUCACCAUCACCACCACCACCACCAUCACCACCACCAUGGm6ACAACAAGCCUUGGGUAACCGGACCAGGCCAAGGGUCUACAAUUCUCCAACGAAUAGCUCCUCUACCCAAGAUUCUAUGGAGGUUGGCCACAGUCACCACUCCAUGACAUCCCUGUCUUCCUCAACGACUUCUUCCUCGACAUCUUCCUCCUCUACUGGUAACCAAGGCAAUCAGGCCUACCAGAAUCGCCCAGUGGCUGCUAAUACCUUGGm6ACUUUGGm6ACAGAAUGGAGCUAUGGm6ACGUUAAUUUGACCGUCUACUCCAAUCCCCGCCAAGAGm6ACUGGCAUAGCUGGm6ACAUCCAACAUACCAAUUUUCUGCUAAUACAGGUCCUGCACAUUACAUGm6ACUGAAGGm6ACAUCUGACAAUGAGGCAAGGGGCUGAUAGAGAAGAGUCCCCCAUGACAGGAGUUUGUGUGCAACAGAGUCCUGUAGCUAGCUCGUGACUACAUUGAAACUUGAGUUUGUUUCUUGUGUGUUUUUAUAGAAGUGGUGUUUUUUUUCCAAAAACAAAGUGCAAAGCUGCUUGAAUCAGGAGGAGAUUAACACACUGAACCGCUACAAGAGGGCAAAGCUGAUUUUUUUUUUAACUUGAAAAGAUUGCAAAGGGm6ACAUUGAAGUGUUUAAAAGAGCCAUGUCCAAACCCAUCUUCAUGGAUAGCUCAGAGGUAUCCUCUUUUUGCUCCCCCAUUUUAACUUGCCACAUCCCAGUCACAGUGGGGUUUUUUUGUCUUUCUAUUCAGCAAAAGUUAAUAUUCAGAUGUUGGUCUUGGUCAUUUGCCAACUAAUUUUAAAGUAAAAGGCACUGCACAUAAUUUGCAUAAAGGGCCCCAUGAGGGUGUUUUUUUUUUUUCUUUUUGUCCCCCCCAUCCCCCUUUUUUUUUGUUUUGUUCUGUUUUGUUUUGGGUGGGAGGGUGGGAAAUUUGGGUUUUUAAGUCCUCUAAACACACUUGGGCACGGAAAUGCAGUACUGUAAGGAAGAGGGACCUCCAGCUUCCACAAACACCAUCUUCAGCUGUAUGAAAGGGm6ACGGUUGUGGUGAAGUUUGUCAGGCACAGUAAGCAUGCUGAGUGGCGGGGAUCAGAm6ACUCUCCUAUCUGAACCUACUGAGGAGCAAAGCAGCAAUUACAUGGGAUCCUGUGGCUCUCCCGUUGCAGAGGCCACAGGAAGAUAGGAUGGAACGUGm6ACUGGUCUCCUAACCAAGGUGCACUGAGAAGCAAUCAACGGGUCGGUCGUGGCCAGUCCUGGGGAGGUCUGAGUGGUGGUCUUUGGGAUAACCUUUGGCCUUAUGGm6AUUUGGm6ACUCGAAAUUAGAAGAGCCUACCAUUUCAGAUGCAAUCACUUUUGGm6ACAUGCUUUUGCAGm6ACAGUCCUUAAUGCUGAAAACACAGAGAAUGGGUAAUUCAAGAGGCCUUUCUUUUAAAAUAGm6ACUUUUGUGACCCACUAAUUGUAAGGUAUUGCAAGGUCACUUUGCGUGUGUCAUAAAGUUGACUUCCUUAUUGGUUGAAGGUCACAGAAGUAGUGGUUUGCUUUGAUGGAAAUAGCUACAGCUGUGUCCCUUCCUGCUUUUUACUUUUUCUUUUGCUUUUUCUCGGCACGUGGUAUCUCCACCAUUUCUUCUGCACAAAGAUGUCUUCUGUUCAYCCUGAACAUUUUUAAAAAAUGCAGAAUUUUAUGUGACUGCUUUUUUGC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UAGGGAAAUUAUAUGACAUUUGAAUUUCAGUGUCCAUAAAUGAAGUUUUAUUGGAACAUAACCACAUUCAUUUGCAAGUUGUCCACGGCCACUUUGGUGCUACUGUGGCAGAAUUGAGUAGUUGCUGCAGAGACCGUAUGAUGAGAAUAUGUGGCAUUCUCAUCAUUUUGCCCUGCCGCUCUGUGCAAUGUAAAUUGCAGUGACACAGUUAUAACUCAGCAGCAUUUUGAAUGCCACUUGUAUUCCCAUGCUACAACAUUUUAUUUUUUAUUACCAAUAUAUACAAGAAAAGUGGAUUUCAAAUAUCAUUGUGCUUUUAAGGUACAAUGGAGUAUGAAUUGUUACUGAAUUAGGCAGCAAAGUGCAAUGACAUGGUAGCUGUCCUAAGGAACACAAUACAACCAGGUGCAGUGGCUCAUGCCUGUAAUCCCAACGAUUUGGGUGGCUGAGGUGGGAGAAUCACUUGAACCCAGGAUUUGGAGACCAGCUUGGGUGGUAUAGUGAGACCCCCCAUCUCCACAAAAAGUAAAAAAAAACCAAAAUACAUGUUGUUACUUCCCAUCUUAGCACUCAUCAAGAUAUUUCUAAUUCACAAGAAAGCAAUGGUCAGAAAAAUUAGAAAAUUUAAAAUUGAAUAUCUCAUCACAGAAUUUAUUCACAAAAAUAAAAAAUGAAAAUGAAGCUACAACCAAAGUAAGUUUCAGAUGGCUCAUUUGUUAGCCAAGCAAGGAAAGUCACUUAUGGUGAAUUAAUUAAAUCAUGCUUGAUUACUGCAGCUGAAGAAACAUGCUCAGAGAAAGUAAACUUGUUUAUUGGCCUUUCCACGACAACAGUUGCUCAAAGAGUUGACAUUAGGAAUGACAUCAGUAGUCGACUAAAAAGGCAAAUGGUUUUGAGUGGUUUCCCCUGACUCUCAUGACAGGGGUCACCAUAUGUUAUGCACACUGCUCCGCUAUUGCUCUUUAUUUGAGGAGCCAGUACCAAGUUGGAAGUAACUGAAGAAUUGGCCUCUAUCAAUAGUCUUAUGUGGAACAACUACUGGCAAAAGUAUUUUCAAAGCUGAGAAAACUGGUCAGGUGUGGCGGCUCAUGCCUAUAGUCCCAACACUUUGGGAGGCCAAGGUGGGCAGAUCACCUGAGGUCAGGAGUUUGAGACCUGCCUGGCCAACAUGGUGAAACUACAUCUCUACUAAAAGUACAAAAAUUAGCCGGGCAUGAUGGCAUGCACUGGUAAUUCCAGCUACUCAGGAGGCUGAGGCAGGAGAAUCGCUUGAACCCAGGAGGUGGAGGUUGCAGUGAGCUGAGAUUGCACCACUGUACUCCAGCCUGGAUGACAGAGUGAGAACAUUGUCUCAAAACAAAAAGUUGAGAAAACGAAUUCAGUACACCCUGAAGUGGAAUCUGCUAAGAUGUGUUAUGACUGUUGGUAGUGGAAAUAUAUGUGUGUAUUAGUCCAUUUUCAUACUGCUAUAAAGAAAAGCCUGAGACUGGGUAAUUUAUAAAGAAAAAGAGGUUUAAUGGACUCACAGUCCCGCAUGGUUGGGGAGGCCUCACAAUCGUUGUGGAAGGUAAAGGAGAAGCCAAGGCAAGUCUUAGGUGGCGGCAAGCAAGAGAGUGUGUGCAGGGGAACUGCCCUUUAUAAAACCAUCAGAUCUCAUGAGACUUACUCACUAUUAUGAGAACAGCAUGGUAAAAUCCUGCCUCCAUGAUUCAGUUACCUCCCACUGGGUCCUACCCAUGACACGUGGGGAUUAUGGGGGCUACAAUUCAAUGAGAUUUGGGUGGGGACACAGCUAACUCAUAUCAGUGUGGAAUAGAAAAUGGCUCAGUUGGACAACUUACAAAGCUUGUAAUAAUAUAAGGUGUUAAAGCCUAUAGAUUAUUCAUUGUAUUAUUUAAGUCAACAGAUACUUUGUGAGAAAUAUUUGAAUCUAUCAUGCAUUAUUGAACCAGUAUUGUCAAUAGUGAACUUCCUUUAGCUCUUGUGGACUUCACUAUCAACAGCUCUCAUGAAUUUUUGUCAGAAAUAUUAGCUGAAUAUCCCGACAUGGCCUGUAAUACAGCAGUUCAAUGGUUUAGUAGUGGUAAAGUUUCAUUUAAGUUUUGAGCUCAGGACAAAGAUUGAAAUUUUUCUGAAUGAGAACUGCCCCGAACCACCGUUACUAAACACUGAAUAGUUUUGGAAAUUCACUUUUGCUGCAGACUUGAUAGUGUUUCUUAAGGAAUUCAGCCUAAACCACAAGAUAAAAACAGUGUUUAUGUGAAACUCCUACUGUGUUAAGUGAUUUCAAGAAGAACUAUUGUUUGAAUCACAACUAAUGUUACUGCUUUAAGCUCUUCCCAUGUUGUUAAAAGUUAAAAAAAGAAGAGCUCCAUUCCCACACACAUUUGCCACAGAUACAUUAUCUGAGCCCAAACUACAGUUUGAGCAGUGUGUUAGGGACCUCAAUGCAAACCCAAAAGAAAUUUUUAUAUUUCAGAAUCCAUUGAUCUGCAUUUGAGAAGUGAUUAAUGUGUUGAAAGGCAACUAUCUAAAGAAAAAUUUAAUAGAGUCUAAUAGAAUCUUAUAAAAAUGUAUAAAUGUGUUUUAUGUAAUAAAUAUGCUAAGCUAAA
2154   unknown  unknown    Homo sapiens    AAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCCAAGAUCUUAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCGUGCGCAAUCACUAACACACAGCCAUUCUCAUAAAACACUAGAGCACGCUGCGCAAUCACUAACAUGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCAGUAACACGAGGCAUUCUCAUAAAACACUAGAGCACGCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGUGCAAUCACUAACACAAGGCAUUCUCAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCAGUAACACGAGGCAUUCUCAUAAAACACUAGGGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAACACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCAUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAGUCGUUCUCAUAAAACACUAGAGCACCCUGCGCAAUCACUAACACGAGGCCAAGAUCUUAUAAAACACUAGAGCACCCUGCACAAUCACUAACACAAGGCAUUCUCAUAAAACACUAGAGCACCCUGCACAAUCACUAACACAAGGCGUUCUCAUAAAACUCUAGAGCAGCCUGCGCAAUCACUAACACAAGGCCAAGAUCUUAGAAAACACUAGAGCACCCUGCGCAAUCACUAACACAAAGCAUUGUUAUAAAACACUAAAGCACCCUGCGCAAUGCCAAUACAAGGCCAUUCUCAUAAAACCCUUCUGUAUGGGCGAGUGUUUUUGUGCUUGUGGAGAGAAAAUUGAGACAUCAGAAUUGAGAGGUUGUCCCUGAGUGGUGGAGUUGUGUCUCAGCGUGAAGUUCCCUGGCGUGAGCCUGUUCAGUGCCCCCUGGGGGCCCCUCAACUGCACGUUGGGUCCUGCCUUUAUCCAGCCCACGUCACCUGCCUACCUUCCUCCCCUGCUCCCCAGAGUGGCGCGGGUUGCCACACGGGUCUGCUUUGGGUUGGCCGGGCGUGCCAGCCUCCUCUGCCCCUGGACUGCAGAAGUGUACUGUCCAUCUCUUUCCUGGGGAAUCUCUGUCCAGUAUAUGCUUUACCAUUUUUGGGAUACUCUUGCUCCCCAAGACUGGGCCACAUGCCCUCAUCUGGGUUCUCAGAACACCCCACACUCUGCCUGCCGCCCACCAACUCGCUGGGCUGUGGUGGCCUCUGUCCCAUGCUCCACAGUGAGCCCUCAGGACUGAGUUAAGUGCCUUUAAAAAUUACUUGUCUUGUUCCCAUUUUGAGGGGCAACCUUUGUUUAAAGGGCAUUCAUAGGGUCCACCUCCCCAUCAGUUUUUGGGGUGAAACAGACCGUGGACUCUAUUCUUGCUUGCCCCUGACCCCCCAGAGCCCCCCAGACGUGAGCUGAUGUGAGCACUUGCACCAGGAGGAAGCUGGUCCCCCUUUGGCCUCCUCCCUGUCUCCCUCUCUGUGGACCACAUACAUAAUUACGUGCCACACGUUUCCCUUCGCUCCGGGGAACACGGGUCCUGUGCCGCCUGGUGGGGCGCUGACAGCCGUCAGAGCAAGGUGUCUGGGCUGGUGAAACAAACACACUCCCCAGUUCUCCCCUGGCGAUCAUCCCCCACAGUGGCCGUUCCCUAGGGCAGUGGCUGUUCCCAAGGCGGUGGCCGUUCCUCAGGGCAGUGGCCCACAGCUUGUCUUAUUUCUCUAAGCAUUUUGGGGUCCUUUAGCUUCUGAGGAAUGUCCUCUCAACUUUCCUCACGUGGCCGUCUGUUGGGGAUGCUUGCUCUUGGAUGUCCUGAAUCAUCUGAGAGGCUUUGUCUAAAGACCAGGCUUGGGUUUUCUUUCCCAGACUCUCUCAAUCAGAGUCGCUAAGGGCCGGCCUUUUCGUCUUCACCCUCUCAAGUUCCACAGACUGUCCUGGGAGAUUCAGCCUCCUCAUACAUAAAAUAACAGAUUUUAACAGGAUUAUCUGUACGCCUCCCCCCGGGCUCUAAUUAAACCUGUUUCCACCACAAGGCCACCUACCGUGCACCUCCUGAUCCUGGGAAUGUCACGAUGAUGGCUAUGCUGGUUCUUUUUCCCUAGUAAUCAGGGAACUGGUUAUUUUGUUCAUGCACUUUGUGGAAAUUUGUUGAGCCCGCACUCACUUACAAUUUGUGUUUUUCUGUCUAUGAGUUUGAUGUCAAUCAAAAGUGUCCUUAAAAUAAGCAACAAAACAGUGACACUUCCUGGUCUUGUCCCUGGACCUGGGGAGGGACCCUCCCUACUCUGGGAGGCUCUGGGGGGUUAAGGCCCCUCCCUUGGAAGGUGGAGUCUUAGAAUCCGUGGGCACGAGUGGCCGUGCGGGAGCAAUUGCCACCUCUGGUGUUGGUCUAUUAAAGCAUCCGCUUCUGGCUCCCGUGAGGCCAAUCCAUGAGCCAGGACUGACUGAGUACUUAUCAAAUAUUUUAAAAAGUCAAGGCCGGUCGCAGUGGCUCACGCUUGUAAUCCCAGCACUUUGGGAGGCCGAGGCGGGCGGAUCACGAGGUCAGGAGAUCGAGACCACGGUGAAAGCCCGUCUCUACUAAAAAUACAAAAAAUUAGCUGGGCGUGGUGGCGGGUGCCUGUAGUCCCAGCUACUCAGAGAGGCUGAGGCAGGAGAAUGGCCUGAACCCGGGAAGCGGAGCUUGCAGUGAGCCGAGAUCGCGCCGCUGCACUCCAACCUGGGCAACAGAGUGAGACGCUGUCUCAAAAAAAAAAAAAAAAAAAAAGUCAGGUAAGCUCUAAUUUACCUUUCUGUUGUUAGAGAUGGGGUCUCUCUGUUGCUCAUGCUGGAGUGCAGUGAUGUGAUCACAGCUCAUUGCGGCCUUGAAGUCCUGGGCUCAAGUGAUCCUCCCACCUCAGCUUCUCGAGUAGCUGGGACUACAGGCACACACCAUCAUGCCCGGCUGGUUAUUUUAUUUUAUUUUAUUUUAUUUUAUUUUUGUAGAGACAGGGUCUCGCCAUGUUGCCCAGGCUGGUCUUGAACUCCUGGACUCGAGCGAUCUUCCUUCGGCCUCCCAAAGUGCUGGGAUCACAGGCAUGAGCCACCGUGCCUGGCAUCAGCUCUCAUUUGAAUUAGUCAAGUUUUGAAGAAUCACACUCAUUUUGUCCGAGCACGGCAGUUCUGUUGUCUUUUACGCUUGGCUCGUCUGUGUCCUCCUUGCCAUUGGUCCUGAUUUCAGUUACCAUUUCCUCUCUCAUUGUAAUAUCACAUGUGCUGCCUAAGAGCUUCCUGGACUAAGGGAGGUGUGGAUACAUUAAUGCUUUAAAGAAAUUCCUAUCGUUUUUCUGCUUGUCCACAUGUGGGUUCCACUUUCUGUCUGUGUUUUCAGACAGCCUUUCCCACAUCUCAUGUUUUUUUGAUAUGAAAUGUCACUAUGGAAGCAUAAACUUUCCAAGCCACACUUUGCUGGCCGAGGCUGGGGAUGAGCGUUCAUUGUCUGCUGUCUUCUUGCAAUUCACCUUCUCCUGAAGGCCCUACAGUGCCUGGAACGUGUCAGGGAGAAGACAUGCCCUGAUGUGGACUUACAACACUCAUUAAACGUAGGAAGUUAUGUGCGCCUUUCUCUGCAGGGAUUAAAGAUUUCAUGUGUGAAUUGUGUGGGAAGACAUUCAGCGAGAGGAACACCAUGGAGACCCACAAGCUCAUCCACACAGGUGAGCGGCGCAGCCUGAAGGAGCCUUCGGGGCGCACGCGGCAGGCUGCCGGGGCUGUCUGAGUGCCUGCUGGGGUGGAAACGACUAUUCUAUUAUCUAGACGGUUCCAGCACAUUUAGUGUUGUCUUGGCUUCAUGGUGGCCCCUUGGCCUCUGAAGGUCAACCCGCCACAGCUUUCAAGUAUCCCUUCUUGAAUUUUCUCAUAUUGGUUCCGUGAUGCAGCUGCUGCUGGCAGUGCUCCCCAAGGGACAGAGGCUCUGUGCUCAUGUGUGCUCGGGGACCAGCACCGGCCCUCUCAGGAUGGGCGGGGCGUGACAGGCUUCUUGCCUCGUCCAGCAGGCCAGGGUCAUUGGGAUGGCUGCACUAGUGACCUGCGUGUCUCUUCCUUUCCACGCGCAUGUGUGUCUGCGUGUGUGUGAAAAGUGGGCAAGCAGUGGACGUGCUCCGUGUGCGACAAGAAGUACGUGACCGAGUACAUGCUGCAGAAGCACGUUCAGCUCACACACGACAAGGUGGAGGCGCAGAGCUGCCAGCUGUGCGGGACCAAGGUGUCCACCAGGGCCUCCAUGAGCCGACACAUGCGGCGCAAGCACCCCGAGGUGCUCGCGGUGAGGAUCGAUGACCUGGACCACCUCCCGGAGACCACCACCAUCGACGCCUCCUCCAUUGGCAUCGUCCAGCCUGAGCUGACUCUGGAGCAGGAGGAUUUGGCCGAAGGGAAGCACGGGAAAGCUGCCAAGCGAAGUCACAAGAGAAAGCAGAAGCCAGAAGAGGAGGCGGGUGCUCCGGUGCCCGAGGACGCCACCUUCAGCGAAUACUCAGAGAAAGAGACGGAGUUCACAGGCAGUGUAGGCGACGAGACCAAUUCCGCAGUACAGAGCAUUCAGCAGGUAGUGGUGACCCUGGGUGACCCAAAUGUGACCACACCAUCGAGCUCAGUCGGCUUAACCAACAUCACCGUGACCCCCAUCACCACUGCGGCCGCGACUCAGUUUACCAAUCUCCAGCCGGUGGCCGUGGGGCACCUUACCACCCCUGAACGCCAGUUACAGCUGGm6ACAACUCAAUCCUGACCGUGACCUUUGAUACCGUCAGCGGCUCUGCCAUGUUGCACAACCGCCAAAAUGACGUCCAGAUCCACCCCCAGCCGGAAGCCUCGAACCCACAGUCUGUGGCCCAUUUCAUCAACCUGACGACCCUGGUCAACUCCAUCACGCCCCUGGGGAGCCAGCUUAGUGACCAGCACCCGCUCACGUGGCGGGCAGUGCCCCAGm6ACUGACGUCUUGCCACCCUCGCAGCCGCAGGCACCCCCACAGCAGGCGGCCCAGCCCCAGGUGCAGGCGGAGCAGCAGCAGCAGCAGAUGUACAGCUACUGAGCUGCGUUCCGGGAGm6ACUCGGGGCAAGAm6ACUGCAGAGGGAUGUUUGGGAUUUGUUUAGAUGUGUUUGCUGGAUACCAAACAAACAAAAAGUCAUACAUUGCAAUGUAAGGUUGACUUAGCUUUGCAGAGUAUCUCCAGAUCCCCCGCCAGCAACCAUUACGGUCUGUCAGCUUAACUCUAGAAGGGACCUCUGGCAGGCCAGAGUUUUAAACUGGAUGGGGCUCCACACCAUGCCUUACCAAGGCAGUAAGUCCUGGGCCGGGGCCGCAUCUGCCUCCCCUUACAGAACCAGUGUUCGCCCGACACAGGGUUCGGGAAAGUGAAGCUGAGAGAGAAGCAGGAUUUUAAGAGGCAGGAGAUAAGUUAUUAGGAACACAAAUGGUUCAUUUUCUUUUUUCUUUUAGAGCUCGGUUCCUAUGAGAACACAGACAGUAUUCACAGGUGGCAGCAGGCAGCAGGGAACAUUUUCUCCUCACUUCUGGAUUUUUUUGCAAGCGAGCACAUAGAAGUUAAAGUAACGUGUAUUCUCUUUGAACUAGGAGUGGAGUCGGUUCUUAUACAACUAUGGGCUGAAACCAUGAGGCGUGCUGAGCCGCACCUGAUCCUGCAACCUUCGAGGUCAUCACGGUCAUCAUGUGCAAGGGGUCACGUGAGGUCACUGACUCCAGCUCAAAACGCAUCUUAGUAAUAUCCAUGAAUCGAUUUCCAAUAGAGUUUUUUUCCUUUUUUUUUUUUAACUUUAUUUCAAACAUACAUUAUGUGUUCAAGm6ACUGUUAUGGCCAAUAUUGUGUUUUAGUUUUAUGUUAACAUGAUAAAGUCAUGUGCACUGUAGGACCAUCUGUCCCUGUCCACCCUUCACAGCUGCCCAGAUGCAGAGGGUCGCGCGGCUGUGUGUGAGGAGUGAGCCUCCCUGCUGCCCCCAGGGGCUCCUCCGGGUUGUCUCAGGAUUCUCUGCAAUCCAAAUGUAUCCAUUCUGGCUGAAGCCCAGCCAGAAUCCCGAGUGGAAGAAACGGGGGAAAAGUCAUAUUUUCCUUCUGUUUAAACUUCAAUUCCAAAGGUGCACAGAUGUAUUCAUAAAGGAAGACAUUAGAUCCAGCCAUUGUGGCCACCAGGCUCUGUGGm6ACCCAUCUCAGUGGAGAAUUCGUUUUGGACCCGUGGCUCCGUGCAGCUGUGGm6ACUCGAGUGCCAUCCACUGGUGUGAGUCUUGCGGGGAGGCCACAGGAAAACGUUCUGUGCCAAGUGCCGCCUCGCUGUGUCCGGCAUGGGm6ACUGCGCUGGAGGGUCCGGCGUGGAAGGCAGACCUCCUGUACCUCUAUCGUUCCCAUUUGUGGCAUCCAAAGGCGGAAGGCUCAUGGCUUCCCCACUAGAGGCGGCGUCUUGGGCUUUCCCAUUGGAUUGUGAAAGGCAUUAAGm6ACUGUUUGGAGAUGUUGGCUGUAUUUCCUGUCACAUCAGGUUGUAUGAUGACGAAUAAAAGGUGCUGUGACCCGUGUUUUCAA
2155   mRNA  unknown    Homo sapiens    AAAAGGCCCCGGAACGAGGCCGGCCCGCGAGGGCCCGCGCUCCCCYCCUCCCCGGCGGCCGCACUCACCCACUCCGGAAUCGGCCCUGUCGCCCCCGCCCGCACUCCAGAGCCGGCUGAGAACGGCAGCGGCGAGGGCUCCACGUGCAGCGUCUCUCCGGGUAAGm6ACCUGCAGCUCCCGCGACUAGAAGUGUGAGGUCCCAGGGCCCUUCCCGCGGAAUCGGCGCUGAGAAGCCCCAACCCCCCUCCCGCCUCCCAGGCACCUUCGGGUCCAGGm6ACUACAACUCCCGGCAGGGUGCGCAAAACGACCGCCCAAGGCAACGGAGGCUCACGAGAAUCAGCAUGAUUCUUCAGAGGCUCUUCAGGUUCUCCUCUGUCAUUCGGUCAGCCGUCUCAGUCCAUUUGCGGAGGAACAUUGGUGUUACm6AGCAGUGGCAUUUAAUAAGGAACUUGAUCCUAUACAGAAACUCUUUGUGGACAAGAUUAGAGAAUACAAAUCUAAGCGACAGACAUCUGGAGGACCUGUUGAUGCUAGUUCAGAGUAUCAGCAAGAGCUGGAGAGGGAGCUUUUUAAGCUCAAGCAAAUGUUUGGUAAUGCAGACAUGAAUACAUUUCCCACCUUCAAAUUUGAAGAUCCCAAAUUUGAAGUCAUCGAAAAACCCCAGGCCUGAAGAAAUAAAGUAAAAUUAAUCUGGUAAUUUGUCACGGAUUAGUUGUACAACUAGUUAGAAGUUUCAGAAUAAACAUGCAUUUCAUAACUGUCAAAUGUUCUUUUAAUUCUGAGUCCAAAUAAAUUAUUUGGUGAUGUUGAGUGUGUUCUUGAUGAAUUGA
2156   mRNA  unknown    Homo sapiens    AAAAGUUCGCGCUGCUGGUCCCGCGCGGGCGGCCCCUGGGCUUUGUGUCCACCAGGACAGCGGGCCGGGCUCCCUGCAGGCGCGGGCGGCGCCGAACGGUGCUCAGCAACCACCCGGACAGGGCCAGGCCGUUUUCUCCCGCUCAGGCAUUAGUCGUUGGCUGUGGGCCGCCGCGGGAAGUUGAGGCCUACCACGGAGGAGGCUGCUGAGGUGGAUCUCAGGGGAUCCGCAAGGGCUCCCUCACCCUUGCCGGGACCCUGGGAACCCGAAACAAAAUCCUACGCCACCAGCCCGCCGAAUGCGCCCCCUCGGCCGGGGGUCCUGGGUCUUCAGAGAAGAACUCGGCCGAAUGCGGUCAGAAAGCCCGCGAACCGCCUGGACCUGCAGGCCCCGCCGCUUGGAGCUCCCGCCUUUCCCGACCGAGCCCGUGUCUGCUCGUGUGUCUCACUGAUGUCUUAGGUCUCAAAAAAAAAAGAAAAGAAAAGGUUUUUAGUAGACAGAAGAGAAAUGGGGCCGUGGGUUCGUGGUCCCAGGGGGAAACUGACGUCGCAUGAGGUCGUCGUCCCUCAGCUUGAGCUCAGCGGAACAUAAGCUUGCAGAGGUGGAAACCACGGAAGGUUUGGGUGUCUUGGAGCUCUCUGGACACCGAAGCCCGGm6ACACAGUCCCGGGGUCCGCACCGCCUGUGACCUGUGGCGGGm6ACCGCCGGGGUGGGCGUUUUCUCAGCUGGCGCGCGCGUAGGUGGAm6ACUUGGGAAACUAm6ACUGGAGCGAAGUGGCAAAAAACCAAGACAGGGCCGGUGACCUCGCGCAGGCCGUCCUUAm6ACUGUGGAGUAUUCCUUCAGCUAACCCCUUUAUUUCAUGUGUCCAAGUCUGGUUUCUGGGUUUCUUUGUAGUCCUCCGGGCCUGUUCGUGCGCCUUCACUUGCAAAAGGUUCGUCGUGGAGGGCCGUGUGCUUGUUUGCAGCAGUAACGAUGCCCUUCCCGAGCGUGCUGGAGUGGCUCCUCGCUGACGCAAGCUCACCUUGCAGCCUCCUCAGCAACUGCAACUUAAACGCGCCCUCAGGAAGCCCUGGAAUCUCGCUCAGAAUUUUUUUUCUUUUUUUGAGm6ACAGUCUCGCUGCGACGCCCAGGCUAUAGCGCAAUGGCGCGAUCUCGGCUCCCUGCAACCUCCCUCAGGAAGCCGUGGAAGCUCGACCGCCAGAAm6ACUUCCUUCUCCUGACUCAGGCCACAGUCUUCUGUGUGGUCUGGGCCCCUGCUGCUGACAUCCCCCACAUGUCAGUCUGCCUGCUAGUGGGAUUGACUAACUCAUCAACGUGGAGUUUAAUGCCCAACCAAGUGCAGACCACGCUCCUGUUUUGCGUCACCCUCUGCGAAGCUUCCUGCAAACUUGACUCCCUGCCCAGUGCCCCCAGCCCCAAGGCUGGUCUCCAGGAGGUAAGGCCCGCCCUGCAGGCAACACCGGUGCUUGGGCUCCUGCUGAGCAGUUCUUUCCUGCGAGUAACAGAACCAGGGAGGGAGGUGGGCUGUGGCCUCCCCUGCCCCUACAGUCGUCUCCUGCAGCUCCCACCAUGCUGGACUCAUCAGCAGCAGAGCAAGUGACCCGACUGACGCUGAAGCUCUUGGGACAGAAGCUGGAGCAAGAACGGCAGAACGUGGAAGGGGGACCUGAGGGCCUCCACCUCGAGCCAGGAAAUGAGGACCGGCCGGACGAUGCCCUGCAGACUGCUCUGAAGAGAAGGAGGGACCUUCUGCAGAGACUCCGGGAGGCCACCCUCAUGCACAUAACCCUGGAAGGGUCUUCCAGUCAUGGCCAUCCUGCCCGGAGAGGCGCCUGUACCUGGCCCAGGCUGGCCUGAGCCUGAUGCUGGGGGUGCCUCUGUGGCGUUGGGGCUCCCCGUCCCCGUGUGCAGCAGCUCUGCAUCGGCCUUGCAGGAACAACACC
2157   mRNA  unknown    Homo sapiens    AAAUUAGUCCAUCCCAUUUACAGCUACUUCCAAUGCAGCUGUGUCAGGGGAGAGAGAAGAAAGGACAUGGAAGAGAGCGUAGAGAUGAGCUGCUUCAGAAAGAGCAAAACUAUUCAGAUGACGUCUUGGCCAACAUGAUUAGUGAm6ACCAAGGAUCAGUUACGGAAACGAUGCUCUCAUGCCAUCUUUGACCGAAACGAAAACCACCGUGGAGCUCCUUCCCGUGAAUGGAGAGUUCAGCCUGGACGAUCUCCAGCCGUGGCAUUCUUUUGGGGCUGACUCUGUGCCAGCCAACACAGAAAACGAAGUUGAGCCUGUUGAUGCCCGCCCUGCUGCCGACCGAGGACUGACCACUCGACCAGGUUCUGGGUUGACAAAUAUCAAGACGGAGGAGAUCUCUGAAGUGAAGAUGGAUGCAGAAUUCCGACAUGACUCAGGAUAUGAAGUUCAUCAUCAAAAAUUGGUGUUCUUUGCAGAAGAUGUGGGUUCAAACAAAGGUGCAAUCAUUGGACUCAUGGUGGGCGGUGUUGUCAUAGCGACAGUGAUCGUCAUCACCUUGGUGAUGCUGAAGAAGAAACAGUACm6ACAYCCAUUCAUCAUGGUGUGGUGGAGGUUGACGCCGCUGUCACCCCAGAGGAGCGCCACCUGUCCAAGAUGCAGCAGAACGGCUACGAAAAUCCAACCUACAAGUUCUUUGAGCAGAUGCAGAACUAGACCCCCGCCACAGCAGCCUCUGAAGUUGGACAGCAAAACCAUUGCUUCACUACCCAUCGGUGUCCAUUUAUAGAAUAAUGUGGGAAGAAACAAACCCGUUUUAUGAUUUACUCAUUAUCGCCUUUUGACAGCUGUGCUGUAm6ACACAAGUAGAUGCCUGAACUUGAAUUAAUCCACACAUCAGUAAUGUAUUCUAUCUCUCUYUACAUUUUGGUCUCUAUACUACAUUAUUAAUGGGUUUUGUGUACUGUAAAGAAUUUAGCUGUAUCAAACUAGUGCAUGAAUAGAUUCUCUCCUGAUUAUUUAUCACAUAGCCCCUUAGCCAGUUGUAUAUUAUUCUUGUGGUUUGUGACCCAAUUAAGUCCUACUYUACAUAUGCUYUAAGAAUCGAUGGGGGAUGCUUCAUGUGAACGUGGGAGUUCAGCUGCUUCUCUUGCCUAAGUAUUCCUUUCCUGAUCACUAUGCAUUUUAAAGUUAAm6ACAUUUUUAAGUAUUUCAGAUGCUYUAGAGAGAUUUUUUUUCCAUGACUGCAUUUUACUGUACAGAUUGCUGCUUCUGCUAUAUUUGUGAUAUAGGAAUUAAGAGGAUACACACGUUUGUUUCUUCGUGCCUGUUUUAUGUGCACACAUUAGGCAUUGAGACUUCAAGCUUUUCUUUUUUUGUCCACGUAUCUUUGGGUCUUUGAUAAAGAAAAGAAUCCCUGUUCAUUGUAAGCACUUUUACGGGGCGGGUGGGGAGGGGUGCUCUGCUGGUCUUCAAUUACCAAGAAUUCUCCAAAACAAUUUUCUGCAGGAUGAUUGUACAGAAUCAUUGCUUAUGACAUGAUCGCUUUCUACACUGUAUUACAUAAAUAAAUUAAAUAAAAUAACCCCGGGCAAGACUUUUCUUUGm6AAGGAUGACUACm6AGmACAUUAAAUAAUCGAAGUAAUUUUGGGUGGGGAGAAGAGGCAGAUUCAAUUUUCUYUAACCAGUCUGAAGUUUCAUUUAUGAUACAAAAGAAGAUGAAAAUGGAAGUGGCAAUAUAAGGGGAUGAGGAAGGCAUGCCUGGACAAACCCUUCUUUUAAGAUGUGUCUUCAAUUUGUAUAAAAUGGUGUUUUCAUGUAAAUAAAUACAUUCUUGGAGGAGCA
2158   unknown  unknown    Homo sapiens    AACAUGGUCAUUUUUAUUAAAGUAAAAAAUAAGAUAGUAGUAGCUCUGGACAUUUGGAAAUGUGUAUGUUUGUUUACACCCUGUGAAAAGUAGACAUGGUCUGCAAAAGAGCCAAUCUCCUAAAUAUAUUUCUUUCUCUAGAAAUGUUAUUUUGGGACAAAUGAAUGAAUCCCUGUUGGGAAAAAAGAACCUGCUGCAUAUCAUCCAUAUUUUAUUUUAUUAUUAUUUUUUUUGAGAUGGAGUCUCACUCUGUCUCCCAGGCUGGAGUGGAGUGGCACAAUCUCGGCUCACUGCAACUUCUGCCUCCUGGGUUCAAGCGAUUCUGCUGCCUCAGCAUGCCCAGUAGCUGGGAUUACAGGUGCAUGCCACCACACCCGGCUAAUUUUUGUAUUUUUAGUAGAGACGGGGUUUCACUAUGUUGGCCAUGCUGGUCUUGAACUCCUGACCUCAAGUGAUCCACCCGCCUCGGCUUCUGGAAUUACAGGUGUGAGCCACCGCACCCAGCCAUGAUCCAUACUUUAAUGUGGGUUCUGGAUUGCUUCCUAGGCCACGUGUUUAACAUGCCACAUGAUGAUGCAAAGCAGUGUGCCAGCCUUAAUGGUGUGAACCAGGAUUCCCACAUGAUGGCGUCAAUGCUUUCCAACCUGGACCACAGCCAGCCUUGGUCUCCUUGCAGUGCCUACAUGAUUACAUCAUUUCUGGAUAAUGGUCAUGGGGAAUGUUUGAUGGACAAGCCUCAGAAUCCCAUACAGCUCCCAGGCGAUCUCCCUGGCACCUCGUACGAUGCCAACCGGCAGUGCCAGUUUACAUUUGGGGAGGACUCCAAACACUGCCCCGAUGCAGCCAGCACAUGUAGCACCUUGUGGUGUACCGGCACCUCUGGUGGGGUGCUGGUGUGUCAAACCAAACACUUCCCGUGGGCGGAUGGCACCAGCUGUGGAGAAGGGAAAUGGUGUAUCAACGGCAAGUGUGUGAACAAAACCGACAGAAAGCAUUUUGAUGUGAGUUUUUCUACUGAAACACAUUCAGAAUUGAAAAGAACAAAGUGAUGGUAAAAGAUAUGAUACCAAGUUAAACAUCCCCAUCCGUGUCCUCUAGCAGGAAUGCGAGAUAGCUUAUUUUUAGAACUGAUUCUUUGUCCCAUGUGGCUUUCUUUGAUACCCUAAAAGUUCUCUUUAGAUAAUUCUAAUGCUGAUGAUUUAUGUCUCCAUUUAGACGCCUUUUCAUGGAAGCUGGGGAAUGUGGGGGCCUUGGGGAGACUGUUCGAGAACGUGCGGUGGAGGAGUCCAGUACACGAUGAGGGAAUGUGACAACCCAGUCCCAAAGAAUGGAGGGAAGUACUGUGAAGGCAAACGAGUGCGCUACAGAUCCUGUAACCUUGAGGACUGUCCAGACAAUAAUGGAAAAACCUUUAGAGAGGAACAAUGUGAAGCACACAACGAGUUUUCAAAAGCUUCCUUUGGGAGUGGGCCUGCGGUGGAAUGGAUUCCCAAGUACGCUGGCGUCUCACCAAAGGACAGGUGCAAGCUCAUCUGCCAAGCCAAAGGCAUUGGCUACUUCUUCGUUUUGCAGCCCAAGGUAGUUCGUUUUUACCUUAUUUUUACCUAAAAAUCAAGGCCUGGGCUUGCUACCUUUUCAAACAAUUUUUGUUAUACUUUCUUUGCUUUCCAUAUUAACAUAUCUUCAAUUUCAAAUUUGAACUCCUUUUCUUUUACAUUAAUUGGCAACUGCCUGCUUUGAGUUUAGUGUUUUCAGUUAUGAAUGAAGCUUAAAUCUAACACUUCACAUGCUUGCAAUUGCUCGCUAUUACUCUUUUAUAUGCAAAGAAAAGCUUUUUGGACAGUCAAGCGCUCCUCUGUGCGACUAGGCUUCACAUACAGCUCAUAGUUAGAUACAUUUUAUAUUCACACAGUAACCAGUAGUUUUGGAAAAUAGUCUAUGCAUGGUCCAAAAUACUUGUUACUGGGUAACUAGCAGUAGCAGGUGCAAACAGAAUAAUAGAAGUGGUAGUCUGAGUAUUGAUUAUUUUUAUGUUUGAAAACACAUAUUGAACUAGGAAAAGCAUCAUUUCUUUUGCUGUUUUGCUAAGGGAAUACAUCUGGAUCUGAGACAGAAAAUGGAAUUUAAUGUGAUUGAGAUGAUCGUGUGUCAUUAGCACCAUAGGCUAUGAAAAUAUUCCCAAGUUGCAGAUUCAAUAUUCAGCAAGUGAUUUCUGAAGCACUUACUCUUGCCAGAUACUAAUUAUUCUAGGCUCUGAAGAUACAGCAGUAAACAAAGUGACAAACAGCUCUACUUUCAUUGACCUUAGCUGGAGGAGACAUAGGUCAAUAGAUAAAUAAUUUUUAAAAAUAUCUAAUUUCUUCAGAUGUCUAUACGUAGUACUGAAAAAUAUGCCAAAGUGAAGGGUAAAUGCAUGAAAUGCAUAAUGUGUAGAGGGUACUGUGUUUAAUUAGCAUGGUCAGGAAAGUAGAGAGAAAAUGUUUACACUUAUCAUUGCAGCAUCUCCUUCCUUUGCUUGUAUGUAACACUAGACAUGUGUCCUUUUUUCAGGUUGUAGAUGGUACUCCAUGUAGCCCAGAUUCCACCUCUGUCUGUGUGCAAGGACAGUGUGUAAAAGCUGGUUGUGAUCGCAUCAUAGACUCCAAAAAGAAGUUUGAUAAAUGUGGUGUUUGCGGGGGAAAUGGAUCUACUUGUAAAAAAAUAUCAGGAUCAGUUACUAGUGCAAAACCUGGAUAUCAUGAUAUCAUCACAAUUCCAACUGGAGCCACCAACAUCGAAGUGAAACAGCGGAACCAGAGGGGAUCCAGGAm6ACAAUGGCAGCUUUCUUGCCAUCAAAGCUGCUGAUGGCACAUAUAUUCUUAAUGGUGm6ACUACACUUUGUCCACCUUAGAGCAAGm6ACAUUAUGUACAAAGGUGUUGUCUUGAGGUACAGCGGCUCCUCUGCGGCAUUGGAAAGAAUUCGCAGCUYUAGCCCUCUCAAAGAGCCCUUGACCAUCCAGGUUCUUACUGUGGGCAAUGCCCUUCGACCUAAAAUUAAAUACACCUACUUCGUAAAGAAGAAGAAGGAAUCUUUCAAUGCUAUCCCCACUUUUUCAGCAUGGGUCAUUGAAGAGUGGGGCGAAUGUUCUAAGUCAUGUGAAUUGGGUUGGCAGAGAAGm6ACUGGUAGAAUGCCGAGm6ACAUUAAUGGm6ACAGCCUGCUUCCGAGUGUGCAAAGGAAGUGAAGCCAGCCAGCACCAGACCUUGUGCAGACCAUCCCUGCCCCCAGUGGCAGCUGGGGGAGUGGUCAUCAUGUUCUAAGm6ACCUGUGGGAAGGGUUACAAAAAAAGAAGCUUGAAGUGUCUGUCCCAUGAUGGAGGGGUGUUAUCUCAUGAGAGCUGUGAUCCUUUAAAGAAACCUAAACAUUUCAUAGm6ACUUUUGCACAAUGGCAGAAUGCAGUUAAGUGGUUUAAGUGGUGUUAGCUUUGAGGGCAAGGCAAAGUGAGGAAGGGCUGGUGCAGGGAAAGCAAGAAGGCUGGAGGGAUCCAGCGUAUCUUGCCAGUAACCAGUGAGGUGUAUCAGUAAGGUGGGAUUAUGGGGGUAGAUAGAAAAGGAGUUGAAUCAUCAGAGUAAm6ACUGCCAGUUGCAAAUUUGAUAGGAUAGUUAGUGAGGAUUAUUAACCUCUGAGCAGUGAUAUAGCAUAAUAAAGCCCCGGGCAUUAUUAUUAUUAUUUCUUUUGUUACAUCUAUUACAAGUUUAGAAAAAACAAAGCAAUUGUCAAAAAAAGUUAGAACUAUUACAACCCCUGUUUCCUGGUACUUAUCAAAUACUUAGUAUCAUGGGGGUUGGGAAAUGAAAAGUAGGAGAAAAGUGAGAUUUUACUAAGACCUGUUUUACUYUACCUCACUAACAAUGGGGGGAGAAAGGAGUACAAAUAGGAUCUUUGACCAGCACUGUUUAUGGCUGCUAUGGUUUCAGAGAAUGUUUAUACAUUAUUUCUACCGAGAAUUAAAACUUCAGAUUGUUCAACAUGAGAGAAAGGCUCAGCAACGUGAAAUAACGCAAAUGGCUUCCUCUUUCCUUUUUUGGACCAUCUCAGUCUYUAUUUGUGUAAUUCAUUUUGAGGAAAAAACAACUCCAUGUAUUUAUUCAAGUGCAUUAAAGUCUACAAUGGAAAAAAAGCAGUGAAGCAUUAGAUGCUGGUAAAAGCUAGAGGAGACACAAUGAGCUUAGUACCUCCAACUUCCUUUCUUUCCUACCAUGUAACCCUGCUUUGGGAAUAUGGAUGUAAAGAAGUAm6ACUUGUGUCUCAUGAAAAUCAGUACAAUCACACAAGGAGGAUGAAACGCCGGAACAAAAAUGAGGUGUGUAGAm6ACAGGGUCCCACAGGUUUGGGGACAUUGAGAUCACUUGUCUUGUGGUGGGGAGGCUGCUGAGGGGUAGCAGGUCCAUCUCCAGCAGCUGGUCCAACAGUCGUAUCCUGGUGAAUGUCUGUUCAGCUCUUCUGUGAGAAUAUGAUUUUUUCCAUAUGUAUAUAGUAAAAUAUGUUACUAUAAAUUACAUGUACUYUAUAAGUAUUGGUUUGGGUGUUCCUUCCAAGAAGGACUAUAGUUAGUAAUAAAUGCCUAUAAUAACAUAUUUAUUUUUAUACAUUUAUUUCUAAUGAAAAAAACUUUUAAAUUAUAUCGCUUUUGUGGAAGUGCAUAUAAAAUAGAGUAUUUAUACAAUAUAUGUUACUAGAAAUAAAAGAACACUUUUGGAA
2159   mRNA  unknown    Homo sapiens    AACCCGCUCUGUGGCGGGGCUUCCGGUCGGGAGGGUCCGCCCGCUCUCGCGUCCUUUGCUGGGUCCAGACACCGGUUCCGUUGCAAACAUUUUUAAAGGGCUGGUUAUUCUUCCUGAAAUGAGUUUGGUGAUUAGAAAUCUGCAGCGAGUCAYCCCCAUCAGGAGAGCGCCACUUCGCAGUAAGAUCGAGAUUGUAAGGAGGAUUUUAGGAGUGCAGAAAUUUGACCUGGGGAUCAUCUGUGUUGACAACAAGAAUAUUCAGCACAUUAAUAGAAUCUACAGAGAUAGAAAUGUCCCAACCGAUGUGCUUUCUUUUCCAUUUCAUGAGCAUCUGAAAGCAGGUGAAUUUCCCCAGCCUGAUUUUCCAGAUGACUACAAUUUGGGAGACAUUUUCCUAGGAGUGGAGUAUAUCUUCCAUCAGUGUAAAGAAAAUGAAGAUUACAAUGACGUCCUGACUGUGACGGCCACCCACGGACUCUGUCACUUGCUGGGAUUCACACACGGCACGGAGGCAGAGUGGCAGCAGAUGUUCCAGAAGGAGAAGGCGGUGCUGGACGAGCUGGGCCGACGCACGGGGACCCGGCUGCAGCCCCUGACCCGGGGCCUCUUCGGAGGGAGCUGAGGGCCGCGUUCCUUCUGAAAGCGGGACGCGGGAGGGGUGGAGGCUGCGGGGAGCCGGGGUCGCACACGAAUAAAUAACGAAUGAACGUACGAGGGGAACCUCCUCUUAUUUCCUUCA
2160   mRNA  unknown    Homo sapiens    AACGGCGGAGCCGCCGGCCGGGCGCGGACCGGAGCGCGUGAGGCUCCGGCGCGCAAGCCCGGAGCAGCCCGCUGGGGCGCACAGGGUCGCGCGGGCGCGGGGAUGGAGGACGGCGUGGCCGGUCCCCAGCUCGGGGCCGCGGCGGAGGCGGCGGAGGCGGCCGAGGCGCGAGCGCGGCCCGGGGUGACGCUGCGGCCCUUCGCGCCCCUCUCGGGGGCGGCCGAGGCGGACGAGGGCGGCGGCGACUGGAGCUUCAUUGACUGCGAGAUGGAGGAGGUGGACCUGCAGGACCUGCCCAGCGCCACCAUCGCCUGUCACCUGGACCCGCGCGUGUUCGUGGACGGCCUGUGCCGGGCCAAAUUUGAGUCCCUCUYUAGGACGUAUGACAAGGACAUCACCUUUCAGUAUUUUAAGAGCUUCAAACGAGUCAGAAUAAACUUCAGCAACCCCUUCUCCGCAGCAGAUGCCAGGCUCCAGCUGCAUAAGACUGAGUUUCUGGGAAAGGAAAUGAAGUUAUAUUUUGCUCAGACCUUACACAUAGGAAGCUCACACCUGGCUCCGCCAAAUCCAGACAAGCAGUUUCUGAUCUCCCCUCCCGCCUCUCCGCCAGUGGGAUGGAAACAAGUGGAAGAUGCGACCCCAGUCAUAAACUAUGAUCUCUUAUAUGCCAUCUCCAAGCUGGGGCCAGGGGAAAAGUAUGAAUUGCACGCAGCGACUGACACCACUCCCAGCGUGGUGGUCCAUGUAUGUGAGAGUGAUCAAGAGAAGGAGGAAGAAGAGGAAAUGGAAAGAAUGAGGAGACCUAAGCCAAAAAUUAUCCAGACCAGGAGGCCGGAGUACACGCCGAUCCACCUCAGCUGAm6ACUGGCACGCGACGAGGACGCAUUCCAAAUCAUACUCACGGGAGGAAUCUUUUACUGUGGAGGUGGCUGGUCACGACUUCUUCGGAGGUGGCAGCCGAGAUCGGGGUGGCAGAAAUCCCAGUUCAUGUUGCUCAGAAGAGAAUCAAGGCCGUGUCCCCUUGUUCUAAUGCUGCACACCAGUUm6ACUGUUCAUGGCACCCGGGAAUGACUUGGGCCAAUCACUGAGUUUGUGGUGAUCGCACAAGGm6ACAUYUGGGm6ACUGUCUUGAGAAAACAGAUAAUGAUAGUGUUUUGUACUUGUUCUUUUCUGGUAGGUUCUGUCUGUGCCAAGGGCAGGUUGAUCAGUGAGCUCAGGAGAGAGCUUCCUGUUUCUAAGUGGCCUGCAGGGGCCACUCUCUACUGGUAGGAAGAGGUACCACAGGAAGCCGCCUAGUGCAGAGAGGUUGUGAAAACAGCAGCAAUGCAAUGUGGAAAUUGUAGmCGUUUCCUUUCUUCCCUCAUGUUCUCAUGUUUGUGCAUGUAUAUUACUGAUUUACAAGACUAACCUUUGUUCGUAUAUAAAGUUACACCGUUGUUGUUUUACAUCUUUUGGGAAGCCAGGAAAGCGUUUGGAAAACGUAUCACCUUUCCCAGAUUCUCGGAUUCUCGACUCUUUGCAACAGCACUUGCUUGCGGAm6ACUCUUCCUGGAAUGCAUUCACUCAGCAUCCCCAACCGUGCAACGUGUAm6ACUUGUGCUUUUGCAAAAGAAGUUGAUCUGAAAUUCCUCUGUAGAAUUUAGCUUAUACAAUUCAGAGAAUAGCAGUUUCACUGCCAACUUUUAGUGGGUGAGAAAUUUUAGUUUAGGUGUUUGGGAUCGGACCUCAGUUUCUGUUGUUUCUUUUAUGUGGUGGUUUCUAUACAUGAAUCAUAGCCAAAAACUUUUUUGGAAACUGUUGGUUGAGAUAGUUGGUUCUUUUACCCCACGAAGACAUCAAGAUACACUUGUAAAUAAAGCUGAUAGCAUAUAUUCAUACCUGUUGUACACUUGGGUGAAAAGUAUGGCAGUGGGAGACUAAGAUGUAUUAACCUACCUGUGAAUCAUAUGUUGUAGGAAAAGCUGUUCCCAUGUCUAACAGGm6ACUUGAAUUCAAAGCAUGUCAAGUGGAUAGUAGAUCUGUGGCGAUAUGAGAGGGAUGCAGUGCCUUUCCCCAUUCAUUCCUGAUGGAAUUGUUAUACUAGGUUAm6ACAUUUGUAAUUUUUUUCUAGUUGUAAUGUGUAUGUCUGGUAAAUAGGUAUUAUAUUUUGGCCUUACAAUACCGUAACAAUGUUUGUCAUUUUGAAAUACUUAAUGCCAAGUAACAAUGCAUGCUUUGGAAAUUUGGAAGAUGGUUUUAUUCUUUGAGAAGCAAAUAUGUUUGCAUUAAAUGCUUUGAUUGUUCAUAUCAAGAAAUUGAUUGAACGUUCUCAAACCCUGUUUACGGUACUUGGUAAGAGGGAGCCGGUUUGGGAGAGACCAUUGCAUCGCUGUCCAAGUGUUUCUUGUUAAGUGCUUUUAAACUGGAGAGGCUAACCUCAAAAUAUUUUUUUUAm6ACUGCAUUCUAUAAUAAAUGGGCACAGUAUGCUCCUUACAGAAAAGUUGUCAUUUUAUUUCUAGAAUAAAUCUGUGAACCUUCUAAA
2161   mRNA  unknown    Homo sapiens    Am6ACGUUCCAUGAUGUCAUCUUACGAm6ACGCUCUAUGAUGUCUUAUGAGCGGUCUAUGAUGUCCCCUAUGGCUGAACGCUCUAUGAUGUCAGCCUACGAGCGCUCUAUGAUGUCAGCCUACGAGCGCUCUAUGAUGUCCCCUAUGGCUGAGCGCUCUAUGAUGUCAGCUUAUGAm6ACGCUCCAUGAUGUCAGCUUAUGAm6ACGCUCCAUGAUGUCCCCAAUGGCUGAUCGAUCUAUGAUGUCCAUGGGUGCUGACCGGUCUAUGAUGUCGUCAUACUCUGCUGCUGACCGGUCUAUGAUGUCAUCGUACUCUGCAGCUGACCGAUCUAUGAUGUCAUCUUAUACUGCUGAUCGUUCAAUGAUGUCUAUGGCUGCUGAUUCUUACACCGAUUCUUACACUGm6ACACAUAUACAGAGGCAUAUAUGGUGCCACCUUUGCCUCCUGAAGAGCCCCCAACAAUGCCACCGUUGCCACCUGAGGAGCCACCAAUGACACCACCAUUGCCUCCUGAGGAACCACCAGAGGGUCCAGCAUUGCCCACUGAGCAGUCAGCAUUAACAGCUGAAAAUACUUGGCCUACAGAGGUGCCAUCAUCACCAUCUGAAGAGUCUGUAUCGCAGCCUGAGCCUCCUGUGAGUCAAAGUGAGAUUUCGGAGCCUUCAGCAGUGCCUACUGAUUAUUCAGUGUCAGCAUCAGAUCCCUCAGUUUUAGUAUCAGAGGCUGCUGUGm6ACUGUUCCAGAACCACCACCAGAGCCAGAAUCUUCAAUUACGUUAACACCUGUAGAGUCUGCAGUAGUAGCAGAAGAACAUGAAGUUGUUCCAGAGAGACCAGUGm6ACUUGUAUGGUAUCUGAAACUCCCGCCAUGUCAGCUGAACCAACUGUGUUAGCAUCAGAGCCUCCUGUUAUGUCAGAGm6ACAGCAGAAACAUUUGAUUCCAUGAGAGCCUCAGGm6ACAUGUUGCCUCAGAAGUAUCUACAUCCUUGUUGGUUCCAGCAGUAACUACUCCAGUGCUGGCAGAGAGCAUUCUGGAGCCGCCAGCCAUGGCUGCCCCAGAGUCUUCAGCUAUGGCUGUCCUGGAGUCUUCGGCUGUGACCGUCCUGGAGUCUUCGACUGUGACUGUCCUGGAGUCUUCGACUGUAACUGUCCUGGAGCCUUCGGUUGUGm6ACUGUCCCGGAGCCUCCUGUUGUGGCUGAGCCAGm6ACUAUGUUACCAUUCCUGUGCCAGUUGUUUCUGCGCUGGAGCCUUCUGUGCCUGUUCUGGAACCAGCGGUGUCAGUCCUUCAACCUUCUAUGAUUGUUUCAGAACCAUCUGUUUCUGUCCAGGAAUCGACUGUGACAGUUUCAGAGCCUGCUGUCACAGUCUCAGAGCAGm6ACUCAAGUAAUACCAACUGAGGUGGCUAUAGAGUCCACACCAAUGAUACUGGAAUCUAGUAUCAUGUCAUCACAUGUUAUGAAAGGAAUUAAUCUAUCCUCUGGUGAUCAAAAUCUUGCUCCAGAGAUUGGCAUGCAGGAGAUUGCAUUGCAUUCAGGUGAAGAACCACAUGCUGAGGAACACCUGAAAGGUGm6ACUUUUACGAAAGUGAm6ACAUGGUAUAAAUAUAGm6ACCUUAAUAUAAAUAAUCAUUUAAUUGCUAAAGAGAUGGAACAUAAUACAGUGUGUGCUGCUGGUACUAGUCCUGUUGGGGAAAUUGGUGAAGAGAAAAUUUUGCCCACCAGUGAGACUAAACAGCGCACAGUAUUGGAUACCUACCCUGGUGUUAGUGAAGCUGAUGCAGGAGAAACUCUAUCUUCUACUGGUCCUUUUGCUCUGGAACCUGAUGCAACAGGAACUAGUAAGGGUAUUGAAUUUACCACAGCAUCUACUCUCAGUUUAGUUAAUAAAUAUGAUGUUGAUUUAUCUUUAACUACUCAAGAUACUGAACAUGACAUGGUAAUUUCCACCAGUCCUAGUGGUGGUAGUGAAGCUGACAUUGAAGGGCCUUUGCCUGCUAAAGAUAUUCAUCUUGAUUUACCAUCUAAUAAUAACCUUGUUAGUAAGGAUACAGAAGAACCAUUACCUGUAAAAGAGAGUGACCAGACAUUAGCAGCUCUGCUCAGCCCUAAAGAAAGUAGUGGAGGAGAAAAAGAAGUACCUCCCCCUCCUAAAGAGm6ACACUGCCUGAUUCAGGAUUUUCUGCCAAUAUUGAGGAUAUUAAUGAAGCAGAUUUAGUGAGACCGUUACUUCCUAAGGm6ACAUGGAACGUCUUACAAGCCUUAGAGCUGGCAUUGAAGGm6ACCUUUACUUGCAAGUGAUGUUGGACGUGACAGAUCUGCUGCCAGCCCGGUUGUAAGUAGUAUGCCAGAAAGAGCUUCAGAGUCUUCUUCAGAGGAAAAAGAUGAUUAUGAAAUUUUUGUAAAAGUUAAGGm6ACACUCACGAAAAAAGCAAGAAAAAUAAGAACCGUGAUAAGGGGGAGAAAGAGAAGAAAAGAGm6ACUCUUCAUUAAGAUCUCGAAGUAAGCGUUCCAAAUCUUCUGAACACAAAUCACGCAAGCGUACCAGUGAAUCUCGUUCUAGGGCAAGAAAGAGAUCAUCUAAGUCCAAGUCUCAUCGCUCUCAGACACGUUCACGGUCACGUUCAAGACGCAGGAGGAGAAGCAGCAGAUCAAGAUCAAAGUCUAGAGGAAGAAGAUCUGUAUCAAAAGAGAAGCGCAAAAGAUCUCCAAAGCACAGAUCCAAGUCUAGGGAAAGAAAAAGAAAAAGAUCAAGCUCCAGGGAUAACCGAAAGm6ACAGUUAGAGCUCGAAGUCGAACCCCAAGUCGUCGGAGUCGGAGUCAUACUCCAAGUCGUCGACGAAGGUCUAGAUCUGUGGGUAGAAGAAGGAGCUYUAGCAUUUCCCCAAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGCAGCCGCACCCCCAGCCGCCGGAGCCGCACCCCUAGCCGUCGGAGCCGCACCCCAAGCCGCCGGAGAAGAUCAAGGUCUGUGGUAAGAAGACGAAGCUUCAGUAUCUCACCAGUCAGAUUAAGGCGAUCAAGAACACCCUUAAGAAGAAGGUUUAGCAGAUCUCCCAYCCGUCGUAAAAGAUCCAGGUCUUCUGAACGAGGCAGAUCACCCAAACGUCUGACAGAUUUGGAUAAGGCUCAAUUACUUGAAAUAGCCAAAGCUAAUGCAGCUGCCAUGUGUGCUAAGGCUGGUGUCCCUYUACCACCAAm6ACCUAAAGCCUGCACCUCCACCUACUAUAGAAGAGAAAGUUGCUAAAAAGUCAGGAGGAGCUACUAUAGAAGAACUAACUGAGAAAUGUAAm6ACAGAUCGCACAGAGUAAAGAAGAUGAUGAUGUAAUAGUGAAUAAACCUCAUGUUUCGGAUGAAGAGGAAGAAGAACCUCCUUUUUAUCAUCAYCCCUYUAAACUCAGUGAACCCAAACCUAUUUUUUUCAAUCUGAAUAUUGCUGCAGCAAAACCAACUCCACCAAAAAGCCAGGUAACAUUAACAAAAGAAUUCCCUGUAUCAUCUGGAUCUCAACAUCGGAAAAAAGAAGCGGAUAGUGUUUAUGGAGAAUGGGUUCCUGUGGAGAAAAAUGGUGAAGAAAACAAAGAUGAUGAUAAUGUUUUCAGCAGCAAUUUGCCCUCAGAGCCUGUGGACAUCUCUACAGCAAUGAGUGAACGGGCACUUGCUCAGAAAAGACUCAGUGAGAAUGCAUUUGAUCUUGAAGCCAUGAGCAUGUUAAAUAGAGCUCAGGAAAGGAUUGAUGCCUGGGCUCAGCUGAACUCUAUUCCUGGCCAGUUCACAGGAAGUACAGGAGUACAGGUUUUGACACAAGAACAGUUGGCCAAUACUGGUGCCCAAGCCUGGAUUAAAAAGGAUCAGUUCUUAAGAGCAGCCCCGGUAm6ACUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCAYCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAAm6ACAYCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCUYUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGGm6ACCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCUYUAAUGUUGUAAAUAUUUGGCAAUUUAAGm6ACAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUAm6ACAYCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUAm6ACACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGACAGAUAAUGGGCCAGUGUUAUUGAGGUGAUCAAGAUCUGUUCCACAGGGCUAAUGCCACCAUCUCCCCUCAAAAUUUUGUAGAGGUUCUAAAAAGAAAGUGGUAUGUUGUGUGAUGAUCAGCACUAAGUCCUGCAUUCCUGUUAAAGCCACUUGGGUCAYAAGAAGGGAGUAAAAAAUGAAGUCUGACUAGAAUUCUAUUGCAGAGGCCAGUACAUUUAGUAUGGCAUUGAGUUGUGAUAUAGUUUUACUUUGAUGUGCAUUUUGAAUUUCAGCUACACCUAGAUAGACGUAAAAUGAUAAUUAAAAUGCUGUAACCAACUUAUCUAAUAAAAUUGGCAACCAGCCACUAUUUUGUUGACUAUGAGAAAGUUAAAAGUUUAUGUUAAUUUUUAGGGUCUGAUAGAAUAUUUCAUGUGUAUUACAGUGGUAUUCAUAUGCUAUGUCUCUAAACUYUAUUUUCAAAAGCUUAAGGCCCAAAUACAAACUUCUCUGGAAUAAA
2162   mRNA  unknown    Homo sapiens    AAGACUCAGGGGCUCUCUUGUUGGUGAACAGUAGCAAAAUCUGGAGUAACUGUGCCUGGAAUUUUUUGGCCCCAAGUCUAAACAAAGGAAUAGUUUCCAGAUAAGCGCUGUUUGCAUAGGUGGUGGUCUGUCACGUGGUGGGCCAGGCUAUUCAGUUCUUGGUCAGCGAGACGCCUGCCUUGGGUGCUGGAUGCCGGCUGUACGACAUGCGGCUCUCCCCUUUCCAUUUACAGCUGGAGUUCCACAUGAAGGAGAAGAGAGAGGACCUCCAGAUUAGCUGGUCUUUCAUCAGUGUGCCGGAAAUGGCCGUUAAUAUCCAGCCCAAAGCACUGGGGGAGGACCAGGUGGCUGAGACAAGUGCGAUGUCUGACGUUCUCAAGGACAUCUUGAAGCAUUUGGCUGGUUCUGCCUCUCCAUCAGUGGUUCUGAUUACCAAGCCCACGACUGUAAAGGAAGCUCAGAACUUACAGUGUGCUGCAUCUACUGCUCAGGAAUCCUGUCCUCCUAAACCUCCAAGGGCUCACGAGCUGAAGCUACUGGUGAGGAACAUCCACGUCUUGCUGCUCAGCGAGCCCGGUGCCUCAGGCCACAUUAAUGCAGUGUGCGUCGUGCAGCUGAACGAUCCUGUUCAGAGGUUCUCCAGCACCCUGACGAAAAACACUCCGGACCUCAUGUGGGAAGAGGAAUUCACCUUCGAGUUGAAUGCCAAGUCGAAGGAGUUACACCUGCAGAUUUCAGAGGCUGGGCGAUCCUCAGAAGGUCUGCUGGCGACGGCGACAGUUCCUCUGGACUUAUUUAAGAAGCAGCCUUCUGGGCCACAGAGCUUCACGCUGACCAGCGGGUCUGCCUGCGGCAGCUCGGUGCUGGGCUCGGUCACGGCAGAGUUCUCUUACAUGGAACCUGGUGAAUUGAAAUCCUGGCCCAUCCCUCCCCCUGUUCCUGCUGCAAAAAUAGAAAAGGACCGCACGGUGAUGCCCUGUGGGm6ACUGUGGUCACUACUGUCACUGCUGUGAAGACCAAGCCUCGCGUCGACGUGGGGAGGGCGUCCCCGCUGAGCUCUGAUUCUCCGGUGAAGACUCCCAUCAAGGUGAAGGUGAUCGAGAAGGACAUCUCUGUCCAGGCCAUCGCCUGCCGCAGCGCCCCCGUCAGCAAAACACUCUCUUCUUCAGACACAGAAUUGUUGGUGUUGAAUGGUUCGGAUCCAGUGGCUGAAGUGGCCAUUCGACAGCUCAGUGAAUCUUCAAAGCUGAAACUCAAGUCGCCACGGAAGAAAAGCACUAUUAUCAUAUCAGGGAUCUCCAAGACCUCACUAUCUCAGGACCACGACGCUGCCCUGAUGCAGGGCUACACGGCCUCUGUGGACAGCACCCACCAGGAGGACGCCCCAUCCCAUCCGGAGAGGGCGGCAGCCUCUGCCCCGCCAGAGGAAGCCGAGUCAGCCCAGGCAUCCCUUGCCCCCAAGCCCCAGGAGGACGAGCUAGACUCCUGGGACUUGGAGAAGGAGCCACAGGCCGCGGCAUGGAGCAGCCAGGUCCUGCUGGACCCCGACGGUGAUGAGCUGUCAGAGAGCUCCAUGAGUGUCUUGGAGCCGGGCACUGCCAAAAAGCAUAAAGGAGGAAUUCUAAGGAAAGGUGCAAAGCUGUUCUUCCGCCGGCGGCAUCAACAGAAAGACCCAGGCAUGAGUCAGUCACACAAUGACCUUGUGUUCCUGGAGCAGCCAGAGGGUUCCCGGAGGAAAGGCAUCACCCUCACCAGGAUCCUGAACAAGAAGCUGCUCUCCAGGCACAGAAACAAGAACACCAUGAm6ACGGUGCCCCCGUGGAGCCCUGCACGUAGGGCCUGAGGUCAUCACCUCCAAGCCAGAAGACGUGCACCCAUGUUAACUACCCUCACCAGGACGCAGCCAGUGUGUCCGCCGGAUGUCCAGAUGCCCCGCUUGUCUUGCUGGGUUUCUUCCAACCAUCUCGUCAUUUAAAGGGAAAACAAAAUCUGAGUCUCCAGCCAGGAGGCUUCUCCCAGAGAGGm6ACAAAAAAGCCCAACUUGCCACCAGAUGCUAAAUGAGm6ACUUGACAGCUGCAGAGCUUGGGCUGUGCUCAUAGCUAAGGGUUAGGGUUCAAUAUUAGAAGGAGAUUAACAUUAUAAGUGAAAUAAUAUGCUCUAAUAGAUUGUGGAGGGCAGGUUUGAGGGm6ACUUAGUUUACCUAUUCUACACUAACAAGUGUUGUUUUGGGUCCAUGCCUGGACCAUGUCACAAAAAGGAGGUGCCCCCCUGUGCUGUCACUGUGAAUGGAAAGGAUGGGUCACCUCUCUUCAUCUGCUGCUUGGAAUAAAAAAUGCAGCUGGCCCUGAGUACAGGGAAGUGGAACAUAGGCAGGAUUUUGGAUUAAUAGAGAAAUUUUGAUAAGAAUGGAGACGCUACGACAGAUGUAGGAAGUCAUCUACCUUUGAUAUUAGCCAUAGAACUUGAACACUAACUAUAUCCUAUGCAUAGUAUGCAGAACACUUUUCUAAGUUUACUUUGAGCCUACUUGCAAGUGGAAGAUAUAUAUAUUCUCACAUGGUUUUUACAUUUUUCUCUAUCGUGUUAAAAGCUCUAAUAAUGCUAGUGGAGCAGUUGACAUCCAGGGUUUUUUUUCCUGCCUGUCAUACUUGCUAAACAAGAGCACAGCGGGCCUGUCAGAUGAAGUCAGGAGCCAUACGUGACCGCUCGUAGAACACAGUAACCAAACACAUACAUGGAUUUUGCCAAGUGCUGCCAGUAGCCAAAACAAAGUCUUUUUAGGGCAAUAGAGGAAAUUAUUUUGUGUCUCAGGUGUCAGUCUUAGGAAUGGAAGUUUAAUAACAAAUGGGCCAAACUCGCAGGm6ACAUUCCUUCUAUGAGCGCUUCAGAAUUUUGCUGUGAACAGUCCUCUUGGACACAGGUUGGGGUGCCCUUGUUUGGGUUUGUUUUGGUGGAAAACAUCACAAACCUGGCACACCAUUUGAAUAUCCCUAAUAUCAUUCCAGUCGCUUUCCUCAUCAGUUGCCUUUCUAUUUCAGUUCAUUCACAGAUCUCACUUCUGAAUGUGCCACUUCCAGUAGACAUGCUGGUCAAAGAGCAGUCAUCAUUGGGGUGAAGUGUUCUUGACAGUUUAAUAUGAUUCACUUUUCUCCAAAGACAUGUAAAAGGCUGUUACGAAAGCUUGGCUUCUGUCAUGGAGACGGAAAUGGGCAAGCUUCCUUCCGUAGCCUCUUGUUAAUCCUUAAACAUUAAAUAUUUCGGGGGUAAUAGAGCCACUGGUGAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCGGUAUCAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCUAUAUGAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUGUAUAAAAACCAAAAUUAUAGGAUUUUUUUUUCUUCUUUUUUAGAGAGAGAGAUUAGAAAACGACAUUAGGAAUUUCACUUUAAAAUGCGCAUUACAAACUUCUUAGGUGUUCCAGGAAUUAUCAAGUGACUUUAAAAUGACUUUUCCAACCUGCUUUGUUUUUAAAAAUUAUAUUCCAGUUUUAAUCAUUGUAAAAAAAGCACCUGGAGUUUCAAAACAUGUGAAUACUACCAAGUUUCUGUCCCCAAAGUCAGGCAUCACUGUUAGUCUUUUGGGACAGAUGGGACAGAUGUUCACUUUAAUGUUUUACUUGAAGUUUUACUGCUCUUUGCCAUGUGGUAAAAAGAGGCUGAGACAUAUUUAAGAAUUCCAAGAGGAUAUUAUGUGUCAGAAUUUCAGACACUGAUGAGAAGUUUUUAAUUGUUCUUUUUUAUUUGAUUUUGGAAUUCAGGUGCACUCUAUUCAAGUGCAAGGAUAUCAGAAGUUUUUUUUUAUUUAAAAAAUUUUUUUUUCGAGAUGGAGUUUCACUCUGUUGCCCAGGCUGGAGUGCAAUGGCAGCUUACUGCAACCUCCACCUCCUGGUUCAAGCGAUUCUCCUGCCUCAGCCUCCCAAGUAGCUGGGAUUACAGGCACGCGCCACCACACCUGGCUAAUUCUAUUUAGUAGAAAUGGAGUCUCACCAUGUUGGUCAGGCUGGUCUCGAACUCCUGACCUCAGGUGAUCCACCCACCUUGGCCUCCCAGCGUGCUGGGAUUAUAGGCAUGAGCCACCAGGCCGGCCCCAGGAUUUUAUAUUAAGCCUUCUUGCUCUCAAAAAAAAAAAAAGGUUUUAACUAUUCCAUUUCCAGAUGAAUCCCAUGAGCGCUGCUUACUGUUGAAUACCAAGGUCUAGGGCUCUGCUUCCUGUAGACACGCACACGUUGUCUCCAUCCAAUGGCCUUUUCUGAAGUUACAGAAAACACCAACAUGGGAGGGAGUUUAUGAAGCAAAGGCAAAGGCAACACGUCGGCUAGCUUCAGGGUAGCACCGUGAGAAAUGGGCUGUAUUGAUACUGUGAAUGUUUGUUUUCCAAGCUGUUUUAUACAGGUUUGUUUUUUCAUGGUGUAGGGUAUUUAUGACAAAGUAAAUGUUGUGAAGGUUAAAGAUAAAUUAAGAUUAUCCACCAAAUGCUAAAAAUACUGAUGUGUAAAUCACCUUUAUCGCCUCACCUCUUCUACAAGCUUUUGUGGCUUGAGGGCUUUUGUUUUUGGCUUUUGUCUGGAUGAAAGUUUUGCCCAGUUGUGUUUUAAAAACAAUUCCUCAUGAACACUAAGAUUAAUUGUGUCUGUAUCUCUGGAACUGGGUGCUCAUGUUGGUUUUAAUGAGCUUGCAACCCUUCCCCGUUUGCUUUGUUUAAGGAGGUGCCUCUGUUCUUUGUGGAGGAGUGAAAUGGAGCUUUAAGUGUGUGUGUGUGUUAUGUGUGUUUGCACACACGCGUGUGUUAUUGUAGCAAUAACAAAAAGUAGCCAUCUCCUUGUUCCAGCUGAAAACCUGCUGUGAGAGUUUUGACAGAGCACUYUAUUUUCGUCAAGUUUCAAGUCUGAGUUCAAAACCAGCCCUGAUCCCUUAUGACCAACUGCUACUCGACCAGUCGCCACUCAGUGGCCACCUGGUGCCCGUUUAGAUUUUUGCUUGGGUUUUACUGGCCACCUCUAUAGACGAGAGUUGCAAAGUUGCUUUGAGCAGAGAGGGAAAGAUUAAUUUACACUGCUGGCCACCGAAGGCAGGUGUUUCCUGGGUAGUAAUCUCACGGCUCUUGAUCUGGAAACUUCAGAGUACAAAUUGGUGGAUGGUGGAAGGCAGGm6ACACGUAUCUCUGUCUGACGGAAAACAGACCUCGGGGCUGGCGUAAACCCUGCUGCCAGGCCCUCUCCCCACUGCCCCAAACCGGCCUAGACACGAAGACCAAAGCAGCCUGCACAGGGCAAGGCCCCCGCGGAAUCCUGCAGAGCAAm6ACUCAGGUUAm6ACUUGGGUCCAUGACCGUUUGCAUUCGAAACACAAUACACUGCCUCGUUCUCUCAGUUAGCAGCUGGGCAGCAGCGCACCAUUCAUCAUUUAGGCUUGUGGUUUGUUGUUUACUCUACCAAUGUUAUGUCGAAACUGCAUUGUAAAAAGAGAAGAAAGUGGCAGGUUUUCCAGGUCCACGGAAAGGUUUGGCCUGACGCUGGAGUGCGGUGAUGAm6ACUUACGUGACAAUGAUUGUAUUCCUCAGUAGCACUYUAAACGCCGAAGACAGCCCUGCAGCAAGCCUGCACACGGGCUUGGGUGGGUUCCUUUGGAGAAGAUGUGGCUGGAACACAAACAAUCUUUGAAAGAAAUAAAUGUGCACACAGAACACUA
2163   mRNA  unknown    Homo sapiens    AAGCACUAUUAUCAUAUCAGGGAUCUCCAAGGACCACGACGCUGCCCUGAUGCAGGGCUACACGGCCUCUGUGGACAGCACCCACCAGGAGGACGCCCCAUCCCAUCCGGAGAGGGCGGCAGCCUCUGCCCCGCCAGAGGAAGCCGAGUCAGCCCAGGCAUCCCUUGCCCCCAAGCCCCAGGAGGACGAGCUAGACUCCUGGGACUUGGAGAAGGAGCCACAGGCCGCGGCAUGGAGCAGCCAGGUCCUGCUGGACCCCGACGGUGAUGAGCUGUCAGAGAGCUCCAUGAGUGUCUUGGAGCCGGGCACUGCCAAAAAGCAUAAAGGAGGAAUUCUAAGGAAAGGUGCAAAGCUGUUCUUCCGCCGGCGGCAUCAACAGAAAGACCCAGGCAUGAGUCAGUCACACAAUGACCUUGUGUUCCUGGAGCAGCCAGAGGGUUCCCGGAGGAAAGGCAUCACCCUCACCAGGAUCCUGAACAAGAAGCUGCUCUCCAGGCACAGAAACAAGAACACCAUGAm6ACGGUGCCCCCGUGGAGCCCUGCACGUAGGGCCUGAGGUCAUCACCUCCAAGCCAGAAGACGUGCACCCAUGUUAACUACCCUCACCAGGACGCAGCCAGUGUGUCCGCCGGAUGUCCAGAUGCCCCGCUUGUCUUGCUGGGUUUCUUCCAACCAUCUCGUCAUUUAAAGGGAAAACAAAAUCUGAGUCUCCAGCCAGGAGGCUUCUCCCAGAGAGGm6ACAAAAAAGCCCAACUUGCCACCAGAUGCUAAAUGAGm6ACUUGACAGCUGCAGAGCUUGGGCUGUGCUCAUAGCUAAGGGUUAGGGUUCAAUAUUAGAAGGAGAUUAACAUUAUAAGUGAAAUAAUAUGCUCUAAUAGAUUGUGGAGGGCAGGUUUGAGGGm6ACUUAGUUUACCUAUUCUACACUAACAAGUGUUGUUUUGGGUCCAUGCCUGGACCAUGUCACAAAAAGGAGGUGCCCCCCUGUGCUGUCACUGUGAAUGGAAAGGAUGGGUCACCUCUCUUCAUCUGCUGCUUGGAAUAAAAAAUGCAGCUGGCCCUGAGUACAGGGAAGUGGAACAUAGGCAGGAUUUUGGAUUAAUAGAGAAAUUUUGAUAAGAAUGGAGACGCUACGACAGAUGUAGGAAGUCAUCUACCUUUGAUAUUAGCCAUAGAACUUGAACACUAACUAUAUCCUAUGCAUAGUAUGCAGAACACUUUUCUAAGUUUACUUUGAGCCUACUUGCAAGUGGAAGAUAUAUAUAUUCUCACAUGGUUUUUACAUUUUUCUCUAUCGUGUUAAAAGCUCUAAUAAUGCUAGUGGAGCAGUUGACAUCCAGGGUUUUUUUUCCUGCCUGUCAUACUUGCUAAACAAGAGCACAGCGGGCCUGUCAGAUGAAGUCAGGAGCCAUACGUGACCGCUCGUAGAACACAGUAACCAAACACAUACAUGGAUUUUGCCAAGUGCUGCCAGUAGCCAAAACAAAGUCUUUUUAGGGCAAUAGAGGAAAUUAUUUUGUGUCUCAGGUGUCAGUCUUAGGAAUGGAAGUUUAAUAACAAAUGGGCCAAACUCGCAGGm6ACAUUCCUUCUAUGAGCGCUUCAGAAUUUUGCUGUGAACAGUCCUCUUGGACACAGGUUGGGGUGCCCUUGUUUGGGUUUGUUUUGGUGGAAAACAUCACAAACCUGGCACACCAUUUGAAUAUCCCUAAUAUCAUUCCAGUCGCUUUCCUCAUCAGUUGCCUUUCUAUUUCAGUUCAUUCACAGAUCUCACUUCUGAAUGUGCCACUUCCAGUAGACAUGCUGGUCAAAGAGCAGUCAUCAUUGGGGUGAAGUGUUCUUGACAGUUUAAUAUGAUUCACUUUUCUCCAAAGACAUGUAAAAGGCUGUUACGAAAGCUUGGCUUCUGUCAUGGAGACGGAAAUGGGCAAGCUUCCUUCCGUAGCCUCUUGUUAAUCCUUAAACAUUAAAUAUUUCGGGGGUAAUAGAGCCACUGGUGAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCGGUAUCAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUAUAUAAAAACCAAAAUUAUAGGAUUUUUUCUUUUUUAGUAAAAACCUAUAUGAAAACCAAAAUUAUAGGAUUUUUUUCUUUUUUAGUAAAAACCUGUAUAAAAACCAAAAUUAUAGGAUUUUUUUUUCUUCUUUUUUAGAGAGAGAGAUUAGAAAACGACAUUAGGAAUUUCACUUUAAAAUGCGCAUUACAAACUUCUUAGGUGUUCCAGGAAUUAUCAAGUGACUUUAAAAUGACUUUUCCAACCUGCUUUGUUUUUAAAAAUUAUAUUCCAGUUUUAAUCAUUGUAAAAAAAGCACCUGGAGUUUCAAAACAUGUGAAUACUACCAAGUUUCUGUCCCCAAAGUCAGGCAUCACUGUUAGUCUUUUGGGACAGAUGGGACAGAUGUUCACUUUAAUGUUUUACUUGAAGUUUUACUGCUCUUUGCCAUGUGGUAAAAAGAGGCUGAGACAUAUUUAAGAAUUCCAAGAGGAUAUUAUGUGUCAGAAUUUCAGACACUGAUGAGAAGUUUUUAAUUGUUCUUUUUUAUUUGAUUUUGGAAUUCAGGUGCACUCUAUUCAAGUGCAAGGAUAUCAGAAGUUUUUUUUUAUUUAAAAAAUUUUUUUUUCGAGAUGGAGUUUCACUCUGUUGCCCAGGCUGGAGUGCAAUGGCAGCUUACUGCAACCUCCACCUCCUGGUUCAAGCGAUUCUCCUGCCUCAGCCUCCCAAGUAGCUGGGAUUACAGGCACGCGCCACCACACCUGGCUAAUUCUAUUUAGUAGAAAUGGAGUCUCACCAUGUUGGUCAGGCUGGUCUCGAACUCCUGACCUCAGGUGAUCCACCCACCUUGGCCUCCCAGCGUGCUGGGAUUAUAGGCAUGAGCCACCAGGCCGGCCCCAGGAUUUUAUAUUAAGCCUUCUUGCUCUCAAAAAAAAAAAAAGGUUUUAACUAUUCCAUUUCCAGAUGAAUCCCAUGAGCGCUGCUUACUGUUGAAUACCAAGGUCUAGGGCUCUGCUUCCUGUAGACACGCACACGUUGUCUCCAUCCAAUGGCCUUUUCUGAAGUUACAGAAAACACCAACAUGGGAGGGAGUUUAUGAAGCAAAGGCAAAGGCAACACGUCGGCUAGCUUCAGGGUAGCACCGUGAGAAAUGGGCUGUAUUGAUACUGUGAAUGUUUGUUUUCCAAGCUGUUUUAUACAGGUUUGUUUUUUCAUGGUGUAGGGUAUUUAUGACAAAGUAAAUGUUGUGAAGGUUAAAGAUAAAUUAAGAUUAUCCACCAAAUGCUAAAAAUACUGAUGUGUAAAUCACCUUUAUCGCCUCACCUCUUCUACAAGCUUUUGUGGCUUGAGGGCUUUUGUUUUUGGCUUUUGUCUGGAUGAAAGUUUUGCCCAGUUGUGUUUUAAAAACAAUUCCUCAUGAACACUAAGAUUAAUUGUGUCUGUAUCUCUGGAACUGGGUGCUCAUGUUGGUUUUAAUGAGCUUGCAACCCUUCCCCGUUUGCUUUGUUUAAGGAGGUGCCUCUGUUCUUUGUGGAGGAGUGAAAUGGAGCUUUAAGUGUGUGUGUGUGUUAUGUGUGUUUGCACACACGCGUGUGUUAUUGUAGCAAUAACAAAAAGUAGCCAUCUCCUUGUUCCAGCUGAAAACCUGCUGUGAGAGUUUUGACAGAGCACUYUAUUUUCGUCAAGUUUCAAGUCUGAGUUCAAAACCAGCCCUGAUCCCUUAUGACCAACUGCUACUCGACCAGUCGCCACUCAGUGGCCACCUGGUGCCCGUUUAGAUUUUUGCUUGGGUUUUACUGGCCACCUCUAUAGACGAGAGUUGCAAAGUUGCUUUGAGCAGAGAGGGAAAGAUUAAUUUACACUGCUGGCCACCGAAGGCAGGUGUUUCCUGGGUAGUAAUCUCACGGCUCUUGAUCUGGAAACUUCAGAGUACAAAUUGGUGGAUGGUGGAAGGCAGGm6ACACGUAUCUCUGUCUGACGGAAAACAGACCUCGGGGCUGGCGUAAACCCUGCUGCCAGGCCCUCUCCCCACUGCCCCAAACCGGCCUAGACACGAAGACCAAAGCAGCCUGCACAGGGCAAGGCCCCCGCGGAAUCCUGCAGAGCAAm6ACUCAGGUUAm6ACUUGGGUCCAUGACCGUUUGCAUUCGAAACACAAUACACUGCCUCGUUCUCUCAGUUAGCAGCUGGGCAGCAGCGCACCAUUCAUCAUUUAGGCUUGUGGUUUGUUGUUUACUCUACCAAUGUUAUGUCGAAACUGCAUUGUAAAAAGAGAAGAAAGUGGCAGGUUUUCCAGGUCCACGGAAAGGUUUGGCCUGACGCUGGAGUGCGGUGAUGAm6ACUUACGUGACAAUGAUUGUAUUCCUCAGUAGCACUYUAAACGCCGAAGACAGCCCUGCAGCAAGCCUGCACACGGGCUUGGGUGGGUUCCUUUGGAGAAGAUGUGGCUGGAACACAAACAAUCUUUGAAAGAAAUAAAUGUGCACACAGAACACUA
2164   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGCAAGAUGUGAGUGAGUUUACACACAAAUUAUUAGAUUGGUUAGAAGAUGCCUUCCAAAUGAAAGCUGAAGAGGAGACGGAUGAAGAGAAGCCAAAGAACCCCAUGGUAGAGUUGUUCUAUGGCAGAUUCCUGGCUGUGGGAGUACUUGAAGGUAAAAAAUUUGAAAACACUGAAAUGUUUGGUCAGUACCCACUUCAGGUCAAUGGGUUCAAAGAUCUGCAUGAGUGCCUAGAAGCUGCAAUGAUUGAAGGAGAAAUUGAGUCUUUACAUUCAGAGAAUUCAGGAAAAUCAGGCCAAGAGCAUUGGUUUACUGAAUUACCACCUGUGUUAACAUUUGAAUUGUCAAGAUUUGAAUUUAAUCAGGCAUUGGGAAGACCAGAAAAAAUUCACAACAAAUUAGAAUUUCCCCAAGUUUUAUAUUUGGACAGAUACAUGCACAGAAACAGAGAAAUAACAAGAAUUAAGAGGGAAGAGAUCAAGAGACUGAAAGAUUACCUCACGGUAUUACAACAAAGGCUAGAAAGAUAUUUAAGCUAUGGUUCCGGUCCCAAACGAUUCCCCUUGGUAGAUGUUCUUCAGUAUGCAUUGGAAUUUGCCUCAAGUAAACCUGUUUGCACUUCUCCUGUUGACGAUAUUGACGCUAGUUCCCCACCUAGUGGUUCCAUACCAUCACAGACAUUACCAAGCACAACAGAACAACAGGGAGCCCUAUCUUCAGAACUGCCAAGCACAUCACCUUCAUCAGUUGCUGCCAUUUCAUCGAGAUCAGUAAUACACAAACCAUUUACUCAGUCCCGGAUACCUCCAGAUUUGCCCAUGCAUCCGGCACCAAGGCACAUAACGGAGGAAGAACUUUCUGUGCUGGAAAGUUGUUUACAUCGCUGGAGGACAGAAAUAGAAAAUGACACCAGAGAUUUGCAGGAAAGCAUAUCCAGAAUCCAUCGAACAAUUGAAUUAAUGUACUCUGACAAAUCUAUGAUACAAGUUCCUUAUCGAUUACAUGCCGUUUUAGUUCACGAAGGCCAAGCUAAUGCUGGGCACUACUGGGCAUAUAUUUUUGAUCAUCGUGAAAGCAGAUGGAUGAAGUACAAUGAUAUUGCUGUGACAAAAUCAUCAUGGGAAGAGCUAGUGAGGGACUCUUUUGGUGGUUAUAGAAAUGCCAGUGCAUACUGUUUAAUGUACAUAAAUGAUAAGGCACAGUUCCUAAUACAAGAGGAGUUUAAUAAAGAAACUGGGCAGCCCCUUGUUGGUAUAGAAm6ACAUUACCACCGGAUYUGAGAGAUUUUGUUGAGGAAGACAACCAACGAUYUGAAAAAGAACUAGAAGAAUGGGAUGCACAACUUGCCCAGAAAGCUUUGCAGGAAAAGCUUUUAGCGUCUCAGAAAUUGAGAGAGUCAGAGACUUCUGUGACAACAGCACAAGCAGCAGGAGm6ACCCAGAAUAUCUAGAGCAGCCAUCAAGAAGUGAUUUCUCAAAGCACUUGAAAGAAGAAACUAUUCAAAUAAUUACCAAGGCAUCACAUGAGCAUGAAGAUAAAAGUCCUGAAACAGUUUUGCAGUCGAUCAUGAUGACACCGAACAUGCAAGGUAUUAUCAUGGCGAUAGGUAAAUCCAGGAGUGUAUAUGACAGGUGUGGCCCUGAAGCAGGGUUCUUUAAGGCAAUUAAGUUGGAAUAUGCAAGGUUGGUUAAGUUGGCCCAAGAAGACACCCCACCAGAAACCGAUUAUCGUUUACAUCAUGUAGUGGUCUACUYUAUCCAGAACCAGGCACCAAAGAAAAUUAUUGAGAAAACAUUACUAGAACAAUUUGGAGAUAGAAAUUUGAGUUUUGAUGAAAGGUGUCACAACAUAAUGAAAGUUGCUCAAGCCAAACUGGAAAUGAUAAAACCUGAAGAAGUAAACUUGGAGGAAUAUGAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAAm6ACAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACCYCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGAm6ACUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAAm6ACUGCACACUUUCCCUGAACACACUGUAUAAm6ACUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUAm6ACUUUUUUUUAUUUUAAUAm6ACUGCAAAAGACAAAAUGACUAUACAGm6ACUYUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGAm6ACUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUAUGUGUUUGUAAGCAGGUAUAUUGUAUAUUAGUGUAUUAGUAAUACUAGAUAAAUGAAUUUUGUCUGGGGAUUAAGAUUGGAUAGUUAAUAGAUUAAUACAAUCUUUUAAUUCUGCUCUAAUGCUAGCAAAUUGGAAAAUGUUUAAGUCUUUGACACUUAAAUUUAUCUAUAUUUUUAACAAAGUUCUUGAACUUAGUAUGGCACCGGAACCUGUUUUGAAUUCAGUCAGGUUUUUACUCAAGUAAGUGGUUGAUUUUUUUUAAGUCAAACUACACUGAAACUUUUAUCCUUUUCUUAGAUUAAUCUUACUUUUUAAAUGUAUUUACAAUAUACAGCAAGGUGAUUAUUUCAAGAGAAUCCCAAAGUACUUGAAUAAGGGCUAUUGUAAAAUUUAAAAGAAAUAUUUAUAUAUACACAUAUAUACACAUACACACAUGUAUAUAUAUAUUCUUCAUAAUGGAGGACAAUGUUUUGCAAUAUAUAAAUCAUUCUAUUUUUGUAAAUUGUAUAUCACUUUAAUUGAAAAUGUUCUCUACUAAUUAAUACUGUGAAACAAAAUUGAUGUUGUUUAACUAGAAGUUAUGAGUAUCUUAACUGCCUUUAUUCCUUUUCAAAAAGGAAAAAGCUGUAGAACAUUUUGUAGAUGAAACUACUGUUUAAGAUUAAUGAAUUAAUAUUGUGAAUGAAAAUCAAAAUCCAUACUUUAAAGGUAAUCAUGUUACUAACAACCUAUUUUUGAAUUCAUAAAAAUUUCUUUAUAAAUGAUGUUUUGUGAACAUAGUAAAAUAGACCAUUAUACUAUGUGUAUGUUUGAUACAGCGUCGCCAAAACUAGUGUUCUUUAUUAGUGCCUCUCACAAAAGAUCCUGGAUGGAGGAGUAAGAUGAAAUAUUAUGCUAUUAUAUGAUGCUGUUUGUAAAGGUAUUAAUGUACUAGUAAGGUGUUAAUGACAAGGAAUUAGUACUAUUCCUGUUGUAAAGUUAGAUUUUGCAUAUUGUAUCUAUCAAAAUAUGUUUGGGUUUAGAUUUUAAGUUGUCUACUGAGCAGAUUUCUGCAUUGGUUUUCCAGUCCUGUUAAAAGUUUAGAAACUUCAUAUGUGUCAUCACAGCUUUUGUAAAGAAAGUAUCCUUAAUAUUUUAUGACAUUCU
2165   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGCAAGAUGUGAGUGAGUUUACACACAAAUUAUUAGAUUGGUUAGAAGAUGCCUUCCAAAUGAAAGCUGAAGAGGAGACGGAUGAAGAGAAGCCAAAGAACCCCAUGGUAGAGUUGUUCUAUGGCAGAUUCCUGGCUGUGGGAGUACUUGAAGGUAAAAAAUUUGAAAACACUGAAAUGUUUGGUCAGUACCCACUUCAGGUCAAUGGGUUCAAAGAUCUGCAUGAGUGCCUAGAAGCUGCAAUGAUUGAAGGAGAAAUUGAGUCUUUACAUUCAGAGAAUUCAGGAAAAUCAGGCCAAGAGCAUUGGUUUACUGAAUUACCACCUGUGUUAACAUUUGAAUUGUCAAGAUUUGAAUUUAAUCAGGCAUUGGGAAGACCAGAAAAAAUUCACAACAAAUUAGAAUUUCCCCAAGUUUUAUAUUUGGACAGAUACAUGCACAGAAACAGAGAAAUAACAAGAAUUAAGAGGGAAGAGAUCAAGAGACUGAAAGAUUACCUCACGGUAUUACAACAAAGGCUAGAAAGAUAUUUAAGCUAUGGUUCCGGUCCCAAACGAUUCCCCUUGGUAGAUGUUCUUCAGUAUGCAUUGGAAUUUGCCUCAAGUAAACCUGUUUGCACUUCUCCUGUUGACGAUAUUGACGCUAGUUCCCCACCUAGUGGUUCCAUACCAUCACAGACAUUACCAAGCACAACAGAACAACAGGGAGCCCUAUCUUCAGAACUGCCAAGCACAUCACCUUCAUCAGUUGCUGCCAUUUCAUCGAGAUCAGUAAUACACAAACCAUUUACUCAGUCCCGGAUACCUCCAGAUUUGCCCAUGCAUCCGGCACCAAGGCACAUAACGGAGGAAGAACUUUCUGUGCUGGAAAGUUGUUUACAUCGCUGGAGGACAGAAAUAGAAAAUGACACCAGAGAUUUGCAGGAAAGCAUAUCCAGAAUCCAUCGAACAAUUGAAUUAAUGUACUCUGACAAAUCUAUGAUACAAGUUCCUUAUCGAUUACAUGCCGUUUUAGUUCACGAAGGCCAAGCUAAUGCUGGGCACUACUGGGCAUAUAUUUUUGAUCAUCGUGAAAGCAGAUGGAUGAAGUACAAUGAUAUUGCUGUGACAAAAUCAUCAUGGGAAGAGCUAGUGAGGGACUCUUUUGGUGGUUAUAGAAAUGCCAGUGCAUACUGUUUAAUGUACAUAAAUGAUAAGGCACAGUUCCUAAUACAAGAGGAGUUUAAUAAAGAAACUGGGCAGCCCCUUGUUGGUAUAGAAm6ACAUUACCACCGGAUYUGAGAGAUUUUGUUGAGGAAGACAACCAACGAUYUGAAAAAGAACUAGAAGAAUGGGAUGCACAACUUGCCCAGAAAGCUUUGCAGGAAAAGCUUUUAGCGUCUCAGAAAUUGAGAGAGUCAGAGACUUCUGUGACAACAGCACAAGCAGCAGGAGm6ACCCAGAAUAUCUAGAGCAGCCAUCAAGAAGUGAUUUCUCAAAGCACUUGAAAGAAGAAACUAUUCAAAUAAUUACCAAGGCAUCACAUGAGCAUGAAGAUAAAAGUCCUGAAACAGUUUUGCAGUCGGCAAUUAAGUUGGAAUAUGCAAGGUUGGUUAAGUUGGCCCAAGAAGACACCCCACCAGAAACCGAUUAUCGUUUACAUCAUGUAGUGGUCUACUYUAUCCAGAACCAGGCACCAAAGAAAAUUAUUGAGAAAACAUUACUAGAACAAUUUGGAGAUAGAAAUUUGAGUUUUGAUGAAAGGUGUCACAACAUAAUGAAAGUUGCUCAAGCCAAACUGGAAAUGAUAAAACCUGAAGAAGUAAACUUGGAGGAAUAUGAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAAm6ACAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACCYCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGAm6ACUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAAm6ACUGCACACUUUCCCUGAACACACUGUAUAAm6ACUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUAm6ACUUUUUUUUAUUUUAAUAm6ACUGCAAAAGACAAAAUGACUAUACAGm6ACUYUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGAm6ACUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUA
2166   mRNA  unknown    Homo sapiens    AAGCAGCCCGCGGACCGGCAGCAAAGGAACGUGCGAACGCGUGACGCCGCCCGACUGGCUCGCGCUCUCCCGUGCCCCGGCGUCCUCCGCCCGCUCAUGGCCCGGGCCGCCGCGGACGAGCGGCGCUGAGGCGGGCCGCGUGGAGACGUGAGGCGGCCGCCGUGGCCCUCACAGUCGGCGUUUCGCCGCCUGCCCGCGGUGCCCGCGCACGCCGGCCGCCAUCGCCUUCGCGCCUGGCUGGCGGGGGCGCUGUCCUCCCAGGCCGUCCGCGCCGCUCCCUGGAGCUCGGCGGAGCGCGGCAGCCAGGGCCGGCGGAGGCGCGAGGAGCCGGGCGCCACCGCCGCCGCCGCCGCCGCCGCCGCGGGGGCCAUGACCGUGGAGCAGAACGUGCUGCAGCAGAGCGCGGCGCAGAAGCACCAGCAGACGUUUUUGAAUCAACUGAGAGAAAUUACGGGGAUUAAUGACACCCAGAUACUACAGCAAGCCUUGAAGGAUAGUAAUGGAAACUUGGAAUUAGCAGUGGCUUUCCUUACUGCGAAGAAUGCUAAGACCCCUCAGCAGGAGGAGACAACUUACUACCAAACAGCACUUCCUGGCAAUGAUAGAUACAUCAGUGUGGGAAGCCAAGCAGAUACAAAUGUGAUUGAUCUCACUGGAGAUGAUAAAGAUGAUCUUCAGAGAGCAAUUGCCUUGAGUUUGGCCGAAUCAAACAGGGCAUUCAGGGAGACUGGAAUAACUGAUGAGGAACAAGCCAUUAGCAGAGUUCUUGAAGCCAGCAUAGCAGAGAAUAAAGCAUGUUUGAAGAGGACACCUACAGAAGUUUGGAGGGAUUCUCGAAACCCUUAUGAUAGAAAAAGACAGGACAAAGCUCCCGUUGGGCUAAAGAAUGUUGGCAAUACUUGUUGGUUUAGUGCUGUUAUUCAGUCAUUAUUUAAUCUUUUGGAAUUUAGAAGAUUAGUUCUGAAUUACAAGCCUCCAUCAAAUGCUCAAGAUUUACCCCGAAACCAAAAGGAACAUCGGAAUUUGCCUUUUAUGCGUGAGCUGAGGUAUCUAUUUGCACUUCUUGUUGGUACCAAAAGGAAGUAUGUUGAUCCAUCAAGAGCAGUUGAAAUUCUUAAGGAUGCUUUCAAAUCAAAUGACUCACAGCAGGAGUGGCAUCAGGAUUAUAGGAAAUUCAGGGAAACAACUAUGUAUCUCAUAAUUGGGCUAGAAAAUUUUCAAAGAGAAAGUUAUAUAGAUUCCUUGCUGUUCCUCAUCUGUGCUUAUCAGAAUAACAAAGAACUCUUGUCUAAAGGCUUAUACAGAGGACAUGAUGAAGAAUUGAUAUCACAUUAUAGAAGAGAAUGUUUGCUAAAAUUAAAUGAGCAAGCCGCAGAACUCUUCGAAUCUGGAGAGGAUCGAGAAGUAAm6ACAAUGGUUUGAUUAUCAUGAAUGAGUUUAUUGUCCCAUUUUUGCCAUUAUUACUGGUGGAUGAAAUGGAAGAAAAGGAUAUACUAGCUGUAGAAGAUAUGAGAAAUCGAUGGUGUUCCUACCUUGGUCAAGAAAUGGAACCACACCYCCAAGAAAAGCUGACAGAUUUUUUGCCAAAACUGCUUGAUUGUUCUAUGGAGAUUAAAAGUUUCCAUGAGCCACCGAAGUUACCUUCAUAUUCCACGCAUGAm6ACUCUGUGAGCGAUUUGCCCGAAUCAUGUUGUCCCUCAGUCGAACUCCUGCUGAUGGAAGAUAAm6ACUGCACACUUUCCCUGAACACACUGUAUAAm6ACUCUUUUUAGUUCUUAACCCUUGCCUUCCUGUCACAGGGUUUGCUUGUUGCUGCUAUAGUUUUUAm6ACUUUUUUUUAUUUUAAUAm6ACUGCAAAAGACAAAAUGACUAUACAGm6ACUYUAGUCAGACUGCAGACAAUAAAGCUGAAAAUCGCAUGGCGCUCAGACAUUUUAACCGGAm6ACUGAUGUAUAAUCACAAAUCUAAUUGAUUUUAUUAUGGCAAAACUAUGCUUUUGCCACCUUCCUGUUGCAGUAUUACUUUGCUUUUAUCUUUUCUUUCUCAACAGCUUUCCAUUCAGUCUGGAUCCUUCCAUGACUACAGCCAUUUAAGUGUUCAGCACUGUGUACGAUACAUAAUAUUUGGUAGCUUGUAAAUGAAAUAAAGAAUAAAGUUUUAUUUAUGGCUACCUA
2167   mRNA  unknown    Homo sapiens    AAGCCAUCCCACUGGCCUGGACUCUGCUGGGAUUAUUUUGACCCCCCAGGGCAGAGUGUAGCCAUCUGACUGGCUUUCUCUCUCGGCAGGAGACGGGGCGCACGCCUGCAGGCUUCAGUUUCACAUUCUUGGUACCUCCUGGUGGUGCCUGGGAGGGAGCCACUGCUGUACAGAGAUGCCAAUUCCAGAGGCAUGGUCCGGCACAGAGCGCUGGCUUCCAGCUGAAGGm6ACAUGUGUAACAGCAGGAGAUACCUUUCUCUGGGGUCCCAGGCUCCCGUCCUGGACCUUGGCACCCCGCCCCCCGUGCAUUGUCGUCUUCUGAGUCUGGCUUUGUCUGGCACAUGAAGUUGGAUGGGUAGm6ACUCUGGAAGCGUCCAGACCAGCUUGCGAUGCUGAUGAAUAAGCUGAUUUUGAUGGGGUGUGUGAAACGGAGAUGCCAGCCCAGGGGCUCAGCUUGCUCGUGCUCUCAUUUAAAAGCAGAAAAUAGCGm6ACUUCAUUCUCGGAUACGUUUGCCAGCCCCAAAGGAUUAAUUAUCUACACACCCAGAAGCAGUGGAGCAGAAUAUUUUGGCAGGAUUUUCAGGAUUUGUGUCAUCGUUGCUUAAUAUCUGUUUCUUCACAGUCGGUUUUGGGAUUUGAGAUUGACGCGGUGAACUCUGUCCAGUUUUCAAm6ACCACACAGAGACAAGGUCGGUCUCUGUCGCCCAGGCUGGCGUGAAGUGGCGCAACCAGCUCACUGCAGCCUUGACCUCCUGGGCUGAAGCAAUCUUUCUGCCUCCACCUCCCGAGUGGCUGGGACUAUAGUUGUGCACCAGCACGCCCACCUCCUGCCCAGGGUUGUUACUGGGGUGGUCACGUGGGCAGCUUCUGCCUGGGAUGGGCCACAAAGCCAGACUCCCGGCAGGGACACGGGUGUUCCACACAAGCUGCGUUGUUGGUUCCCUGACGCCCUUCAGGCUGGGGGGUGGGAAAGCCGAUCCCCCAAGUGCCUGCAGAGCCCACCUGGCGCAGGCCUCGCCGCCUCGAGGCUGCUGCUCGCACUUCUGCCCCUUCCCCCGGCCAGGCCCCCGUUCCUUGAGGCCGUACCACAAGGUGCGUUCAUUUUUCCACACCGUGAGCUGGGCUUGGCAGAGCCUCCACCUUGUGGCCAGUAUUCCCAGUGGCCCCUUUGAGAGGAUUUCCUGGAGCUCCCUGUCUGAGCUUCCCGGm6ACUGAGGGCACUGGGAAGGAGCCUGCGGAGCUGGAGGUCAGCGGGUGGACGGGUUGCGCUGUCCUGGCUUUCGGAGUGUAGAGCCAGAGGGGAUGGGm6ACAGGUGCCCUGCUGCUGGGCUUGGUGGUCCCUGCUGCAGGGAAGGGGCAGCUGGUGUGAACACAAGGAGCUGCGGGGCUGGAGAAGGCCAGGGCCAGGAGCCUGCCGACGGACACCAGCGAGGGGCCAGGCCGGGCCAGGAGCCUGCCGACGGACACCAGCGAGGGGCCAGGCCGGGCCAGACUCCCUGGCCGGCUGGGAUCUGACAGGAGUGCCAGGCUCCUUGGGCCGCCCGAGGAACCGCUUGUUUGCCUGUGCUUUUUCAUCUGUAAAUGGAAUGAGUUGGm6ACACAAGAUCCAAGCGCCCUCCCCUGUUGGAGAAGGUUCUUGUGGGCUCUGGGCCCAUCCCACAUCCCACAGUGGGCAGGAGGCCACCAAGAGGUGCAAGACCAUGCCCUCUGUUUCGAUAGGAAGCUGGGCCUCAGAGGGGCCUGGGGCCUGUGUCUGAGACCCGGCCAAGUGCUGGm6ACGUCUCCCCUUCCUCAUGGCUGUUAUGGCUGAAUUACGUCCCCCCAAAUUCUCAUGUUGCAGCCUUAACCCCAGCACCUCAGUGUGGGm6ACUGGGUUUGGAGAUGGAGCCCCUACAGAGGUCAGCAGGUUAAAAGAGGCCAUCAGGGCUCUGGGUGGGCCCUGAUCCAAGCUGCUUGGUGUCCUUGUAAGAAGAAGAGAUGAGGACACAGACACACACAGAGGGACAGCCCCAUGAGGAAACAGGGAGGCAAUGCCGUCUGCAAGCCCAGGGCAGAGGCCUCAGGAACCAGCCCUGGUGACACCUGGm6ACCUUGGACCCCCGUGCCCAGGm6ACAGUAGGAGAAUUGGAGCCGCCUGGCUGCAGUCCUUCCCGAUGGCACCCUGUAUUAGUCCGUUCUCACACUGCUAAUUGUUGGGAAAAGGGCUUGUGGAAUGCCUGUAUAAACUGGCCAUGAAAAUAUGGGACAAUAAGUUGUGGAAAGCCACAAGAGGCCUCUGAGGAGGAAAGCCUCCUAAUUGCCAUCAUGUUCGCAUGCUCAGGGCGAGACCUGCUGUCUUAUCUGUAAACACCGUGUUCAAGGAGAAAGm6ACAUUCCUUCGAAGCACUGGm6ACUGUGGm6ACAGACACACGAGCUCCUGGUUAAGCCCGCUCCCACCAGCUCCUGUCCGAUAAGUUAAAGAUACGCUGUUUGAGCACAAAGGAGAUUCAUUGAAACCGCUAUUGCUGUAGAUUACGCCUGUGACGCACUGCCUCCCUUUCACUGUUUCGCCCUGAAUAUCUGCUUCUCAGAUCUAAGUGACUGUACUCAAUAAAUAGCGUGGAGACCAGA
2168   mRNA  unknown    Homo sapiens    AAGCCGGCGGGGGGCGGGGAGCUGCUGCGGCCAGACCCACGGGCAGCCGGGCGGGCGGACGCCUCCAAGACCAGUCUCUGCCUCCGCAGCGUCAGCGGGAGCGGGCUGCCUCCGAAGAAAGGAGAAUGGCGUUCAGUAAAGGAUUCCGGAUCUAUCACAAAUUGGAUCCCCCACCUUUCAGCCUCAUAGUGGAAACUAGGCAUAAGGAAGAAUGUCUCAUGUUCGAGUCUGGGGCUGUCGCUGUGCUCUCAUCUGCAGAAAAAGAGGCAAUCAAGGGUACAUACUCCAAAGUACUGGAUGCAUAUGGACUCUUAGGUGUUCUGCGGUUAAAUCUUGGUGAUACUAUGUUACAUUAUCUGGUCCUAGUCACUGGAUGUAUGUCUGUUGGAAAAAUUCAAGAAUCUGAAGUUUUCCGAGUUACUUCCACUGAGUUUAUAUCACUGCGAAUCGAUUCUUCAGAUGAGGAUCGCAUUUCAGAAGUGCGGAAAGUUUUGAAUUCAGGAAACUUUUAUUUUGCAUGGUCUGCAUCUGGCAUCAGUUUAGAUUUGAGUCUUAAUGCGCAUCGUAGCAUGCAAGAACAGACAACUGAUAAUAGAUUUUUCUGGAAUCAGUCUUUGCAUUUGCAUCUCAAACACUAUGGCGUGAAUUGUGAUGACUGGUUAUUACGUCUUAUGUGUGGAGGAGUAGAAAUCAGAACAAUUUAUGCUGCUCAUAAACAGGCGAAGGCUUGCCUCAUUUCAAGAUUAAGCUGUGAACGAGCUGGGACCAGGUUUAAUGUCCGGGGAACAAAUGAUGAUGGUCAUGUUGCCAAUUUUGUAGAAACAGAACAGGUUGUGUACUUAGAUGACUCAGUUUCUUCCUUCAUACAAAUCCGAGGAUCUGUUCCAUUGUUCUGGGAGCAACCAGGGUUGCAAGUGGGAUCUCAUCGUGUCCGUAUGUCAAGGGGAUUUGAAGCCAAUGCACCUGCUUUUGACAGGCAUUUUAGAACACUUAAGAACUUAUAUGGUAAACAAAUAAUAGUAAAUUUGCUUGGAUCUAAGGAAGGUGAACAUAUGCUAAGUAAAGCUUUCCAGAGUCAUUUGAAAGCUUCUGAACAUGCUGCUGAUAUCCAGAUGGUGAAUUUUGACUAUCAUCAAAUGGUUAAGGGAGGAAAGGCAGAAAAAUUACAUAGUGUUCUUAAACCUCAAGUCCAGAAGUUUCUAGAUUAUGGAUUUUUUUAUUUCAAUGGAAGUGAAGUUCAAAGAUGCCAGAGUGGUACAGUUCGAACAAACUGCUUGGAUUGUCUUGAUAGAACAAAUAGUGUGCAGGCAUUUCUUGGCUUAGAGAUGCUAGCUAAACAGUUGGAAGCUCUUGGUUUAGCUGAAAAGCCUCAGUUGGUGACUCGCUUUCAAGAAGUUUUUCGGUCAAUGUGGUCCGUGAAUGGUGAUUCAAUCAGUAAGAUAUAUGCAGGAACUGGAGCUCUUGAAGGGAAAGCGAAGUUAAAAGAUGGUGCUCGCUCUGUUACCCGAACAAUUCAGAAUAACUUCUUUGACAGCUCCAAGCAAGAGGCCAUUGAUGUUUUGCUACUGGGAAAUACUCUGAAUAGUGAUUUAGCUGACAAAGCUCGAGCACUUUUAACUACUGGAAGUUUGCGUGUUUCUGAGCAGACAUUACAGUCAGCAUCUUCUAAAGUACUAAAGAGCAUGUGUGAGAAUUUCUACAAAUAUUCAAAGCCUAAGAAAAUUCGAGUAUGUGUCGGAACCUGGAAUGUGAAUGGUGGGAAGCAAUUUCGCAGCAUAGCUUUUAAGAAUCAGACACUCACUGACUGGCUUCUUGAUGCACCCAAGUUAGCUGGCAUCCAGGAGUUUCAAGAUAAAAGAAGUAAGCCAACUGAUAUAUUUGCAAUUGGUUUUGAAGAAAUGGUAGAAUUGAAUGCUGGAAACAUUGUGAGUGCAAGCACAACAAAUCAGAAGCUCUGGGCUGUAGAACUUCAGAAGACAAUCUCCAGAGACAACAAGUAUGUGCUGCUGGCUUCUGAACAGUUGGUGGGCGUCUGUUUGUUUGUUUUUAUCAGACCACAGCAUGCUCCUUUUAUCAGGGAUGUUGCAGUUGAUACUGUGAAGACUGGAAUGGGAGGUGCAACUGGAAAUAAGGGAGCAGUUGCAAUCCGAAUGCUCUUCCAUACAACCAGCCUUUGCUUCGUCUGUAGCCACUUUGCUGCAGGGCAGUCACAAGUCAAAGAAAGAAAUGAAGAUUUUAUAGAAAUAGCACGAAAAUUGAGUUUUCCUAUGGGAAGGAUGCUAUUUUCCCAUGACUAUGUAUUUUGGUGUGGUGAUUUCAACUAUCGAAUCGAUCUCCCUAACGAAGAAGUUAAAGAGCUCAUAAGACAGCAAAAUUGGGAUUCUCUUAUAGCAGGAGAUCAACUUAUCAAUCAGAAAAAUGCUGGACAGGUUUUUAGAGGAUUUUUAGAAGGAAAGGUAACCUUUGCUCCGACAUAUAAGUAUGACUUGUUUUCUGACGACUAUGACACCAGUGAAAAGUGCCGCACCCCUGCCUGGACAGACCGUGUCCUUUGGAGAAGGAGGAAAUGGCCUUUUGAUAGAUCAGCUGAAGAUCUAGAUCUUCUAAAUGCUAGUUUUCAAGAUGAAAGCAAAAUUCUGUACACGUGGACUCCAGGCACUUUGCUGCACUAUGGAAGAGCUGAGCUGAAGACUUCUGACCACAGGCCUGUCGUUGCCCUGAUUGAUAUAGAUAUAUUUGAAGUUGAAGCUGAAGAGAGGCAAAACAUUUAUAAAGAAGUAAUUGCAGUUCAGGGUCCACCAGAUGGUACAGUAUUGGUCUCAAUCAAAAGUUCUUUACCAGAAAAUAAUUUUUUUGAUGAUGCCUUGAUUGAUGAGCUUCUGCAGCAGUUUGCAAGUUUUGGUGAAGUUAUACUUAUAAGAUUUGUAGAAGAUAAAAUGUGGGUUACAUUUUUGGAGGGAAGCUCUGCCUUGAAUGUUCUGAGCCUAAAUGGUAAAGAGUUAUUGAAUCGGACUAUAACUAUUGCUUUAAAAAGUCCAGACUGGAUCAAAAAUUUGGAAGAAGAAAUGAGUUUAGAGAAAAUUAGCAUUGCAUUGCCAUCAUCAACAAGCUCUACCCUGCUUGGUGAAGAUGCAGAGGUUGCAGCAGAUUUUGAUAUGGAAGGUGAUGUUGAUGACUAUAGUGCUGAAGUGGAGGAACUUCUUCCUCAGCAUCUCCAGCCAUCUUCAAGUUCCGGCCUUGGUACUUCCCCCAGCUCUUCACCCCGAACUAGUCCCUGCCAGUCACCUACAAUAUCAGAGGGUCCUGUACCUUCCCUUCCCAUCAGACCAAGCCGAGCACCGUCAAGAACUCCUGGGCCUCCCAGUGCACAGAGUUCUCCUAUUGACGCGCAGCCAGCAACGCCGCUGCCGCAGAAAGACCCCGCCCAGCCCUUGGAGCCCAAGCGGCCGCCGCCGCCCCGCCCGGUCGCCCCUCCCACACGCCCGGCUCCCCCACAGAGACCUCCUCCGCCUUCAGGGGCUAGGAGUCCUGCACCCACUAGAAAGGAAUUUGGAGCACCCAAAAGCCCUGGAACAACAAGGAAAGAUAAUAUAGGACGCAGUCAGCCUUCACCUCAAGCAGGACUUGCAGGCCCAGGACCUGCUGGAUACAGUACAGCCAGACCGACGAUUCCUCCUCGUGCUGGAGUUAUCAGUGCCCCACAGAGCCACGCGCGGGCAUCUGCUGGAAGACUGACUCCUGAAAGCCAAAGCAAAACAUCAGAAACGUCGAAAGGUUCAACUUUCCUUCCUGAACCACUGAAGCCUCAGGCUGCUUUUCCUCCGCAGUCUUCUUUGCCCCCGCCUGCUCAAAGGUUGCAAGAGCCUCUUGUCCCUGUGGCAGCACCUAUGCCUCAGUCUGGCCCCCAGCCAAAUUUGGAAACCCCACCACAACCACCACCUCGAAGCAGGUCAUCCCAUAGCUUGCCUUCAGAAGCUUCCUCACAACCGCAACAGGAGCAACCAUCAGGGUAACAGGUAAAAACAAAUGGAAUCUCUGAUGGCAAAAGAGAAUCACCAUUAAAGAUUGACCCAUUUGAAGAUCUGUCAUUUAAUCUGCUUGCUGUAUCAAAGGCUCAGCUAUCUGUUCAAACGUCACCUGUUCCCACCCCAGACCCAAAGAGGUUGAUUCAGUUGCCUUCUGCAACGCAAAGUAAUGUUUUGAGUUCUGUAAGUUGCAUGCCAACAAUGCCUCCAAUUCCAGCUCGGAGUCAAUCCCAGGAAAAUAUGCGAAGUUCUCCAAACCCAUUUAUUACUGGCUUGACCAGGm6ACAAAUCCUUUCAGUGm6ACAGGm6ACUGCUGCUCCUGGAAACCCAUUUAGAGCCAAGUCUGAAGAAUCAGAGGCAACUUCAUGGUUCUCCAAAGAAGAGCCCGUUACUAUCAGUCCUUUCCCUUCUCUGCAGCCUCUUGGUCAUAACAAAAGCAGGGCUUCAUCUUCACUUGAUGGCUUUAAGGm6ACAGUUUUGAUCUACAGGGCCAGUCUACAUUAAAAAUUAGCAACCCGAAAGGAUGGGUAACCUUCGAGGAAGAAGAGGAUUUUGGUGUGAAAGGGAAGUCAAAGUCAGCUUGUUCAGm6ACUUACUGGGUAAUCAGCCAAGUUCAUUUUCUGGCUCCAACCUGACAUUGAAUGAUGm6ACUGGAAUAAAGGUACAAAUGUCUCCUUCUGUGUGUUGCCGUCAAGAAGACCUCCUCCACCUCCUGUCCCUCUGCUCCCGCCCGGCACCAGCCCUCCAGUAGAUCCUUUCACGACCUUGGCCUCUAAGGCUUCACCCACACUGGm6ACUUUACAGAAAGAUAACGCCAUGCAAUAGAAAACAGUGGGUACUUGCUUUUGGCAGGAUAGAGCUAAGAGAAUUGGGCAUUAGUAUUUCAUUAUGUGCAAUAAGUCAUUGUAAGUGCACUGAUAUCUUCACAAAACACCACUAUUUGAUGUGUACAGAGUUGGm6ACUAUGUGUAUAUUGGAAAUAAGGAAAAACCCUUCUCAUUGUUAACUGGAGUUUUGAUGUAUUUCUCUUUGGAUGAAUAGGAGACAGUAGUAGCCAUAAAAAGUACUUAUACUUUAGAAAACAGUCCUUAUUCAGAAACUUUUCGGUCAGUCUUCUGAAGAAUCUCAAAAAGCCCACCCAACUUUCAGCUGACAUUUCCACCAGCCCUCUCAUACUUGUUAACAAUUGGUAUCUUUGAGUAUUUACCAAAGAGCUGCCAAGGUUACAGUGAACAGAGUUUUGAAAGGCAUUGCUUUAAAGGAAAAAAGUAUAGGUAUGUGUACAUAUAUAAUACAUACAAACACAUGUACUUCUGUAUACAUUUACAUAUUUUUACAAUUCAUACUUUAAUUUCUAGGCUAUAACUCAGACCAAAUUAUACCUAAAAGUUCCAACAAAGUCCCUUUUUCAAUAUCACAUUACCAAAAAGAUGGCUGCAAAUGUAAUUUGGACCUUUCAUUAAUUUUGUUUUCAAAACUAGAAUAAUCUCACCACAGAAUCAGAAUUUUCUACCGUUCCACACCCAACCCCUUCAAAUACACACAACCUUGUUACUUUUCACUCCAGCACCUUCAUACGCUUUUCUCCAGGAGGAGGUUCUUGCAGCUGGAAACAGCCUAUUUUGUGGUCACUGUCAAGUGGAUGGAUAUUCUAGCGCUCCCAAAAAAGCACUAUGGCCUUAUAUGCAGGGAAGGCACAUACCACCAAGUUCAAUGAGAAAUAUUAGAGCUAACCGUACUCUCUUCUCUGCGUACGUUCGAGUAUACGUUGCCCAUAUCCCUCCCAUAUUUUCUUUUUGCUGCUUUUGCUCUGGAACUUUGCUUUUAGCAGGGAAAGCAGCUGUCCCCUGAGUGCUUUGAAUUGGGAAUAUACCCAGUGUGUGUUCUCCCCCCUCUUACGAGGCUACAUAACACAUCUAUGAUGCUGCUUUAAGUUUUUAGAGGCUAUACCUCAAAGUAGCUGCGGAUUUUGUCUCCUGCACUGCCAAUAUGCAACUGAUCCCGCUUUUAUUAAUUUUUUGAAGAAGUACACAGAAUUUUUACAGAAUGUAGUAUUUUGAUAUCAUUAAGUAAACCAAUCAGAAAACUCCUUGAGCAAUAGUUGUUUCUUUGUCAGUUUCAGUUACAAUCAUCUUUACCCAUUAAGACUUACAUUAACAUUCCUUUUAUAUAAAGAGUUGUAUAUGUCCACCUAAAUUCCUAUGUCCACACUUAACCUUUAAAGAUGUACAUUGAGGGAAUAUCAAAAAAUAGCGUUCAUGGCUACGAAUAUGUAGAAUGUUAAAAGCACAGCAAACUGCACUGCACUUAUAAAGCAAAUCUAUUAGAAAAAAAGCAUUUUUCUAAAUGCUCAAAUGUUAUCAAAAUACUAUAUUUAUAGAAGUAAUCUUCUCUGUUAACAGCCAAGAUUUGCUGUUAGAAAUAACUCUUGUGAGUUUUAUAUUGUGCUUUUUGGAGGUUCUAAUCAUUUCAGCAGUAGCGUCUUAAACAGCAGUAUUACUAUAAGCAGUUGCUUCAAAAUGUGAAUUAACUUGUUGAAACUGUGGCUUUAACAYCCAUGUGACUAGUGUAUAUGGUAUUUGCUCUCCAUUAGCAAAAUAAUUCAUUGUUAGGUAAACUUCACUAGUGCAAAUUGCAGAUCUGUGAGCAAUGUUUCCUAUUGAAUAUAAACUACUGUCUAAAAUAUACAUAUCAGCAGCCCAGCCUYUAUCAGGAAAAUUAUACUUGGCAAGUUGCUGAAAAUGCACAAAGUUAUGAAAGUUAAAGGUAUGCUGCAAAUAACUAGCCAUUAUUCUAUGUAUUAUUAAAUAUUUACUAGUUCUGUUAAAAGCAGAGCAGAAGUUAGACACUAAGGAUCUCUUUGUGAACUCUGUGUUCUCUAUAUUAGAUUGCUGUUUAUAUGUAAGAAUUUUAUUGCUUAUGUGGCAUACAAUAUUUAUAACUAUAAACUYUAUAGAAGUACAGUAUUAAAGUCAGUGGUACACAGACAUUCUGUACAUAUCCUGUGAAACGUGCUGUCAUAUGAAAUAAAUAUAUCUGUCUUUACCAUG
2169   mRNA  unknown    Homo sapiens    AAGGAGCCAAGAUGGCCGAAUAGGAACAGCUCUGGUCUACAGCUCCCAGCGUGAGCGACGCAGAAGACGGUGAUUUCUGCAUUUCCAUCUGAGGUACCGGGUUCAUCUCUCUAGGGAGUGCCAGACAGUGGGCGCAGAUGCAGUCGAAGCCCUGUGGCUCCACCCCGAGGGUCCAGCCCUUACCACUGCUAAGAACUACAACUCCCAGCCCGAGGGAGGUCUCUGCGCCUGCGGCCUGACGCCCUACGCCUACACUUCCCAGAGAACCUAGCGGUUACGCCAACGCGCGCGUGCGCCCUUGCGCGUUUCUCUCUUCCCACUCGGGUUUGACCUACAGCCGCCCGGGAGAAGAUGGCUGCCCCAGCAGUGUCCGGGCUCUCCCGGCAGGUGCGAUGCUUCAGUACCUCUGUGGUCAGACCAUUUGCCAAGCUUGUGAGGCCUCCUGUUCAGGUAUACGGUAUUGAAGGUCGCUAUGCCACAGCUCUYUAUUCUGCUGCAUCAAAACAGAAUAAGCUGGAGCAAGUAGAAAAGGAGUUGUUGAGAGUAGCACAAAUCCUGAAGGAACCCAAAGUGGCUGCUUCUGUUUUGAAUCCCUAUGUGAAGCGUUCCAUUAAAGUGAAAAGCCUAAAUGACAUCACAGCAAAAGAGAGGUUCUCUCCCCUCACUACCAAUCUGAUCAAUUUGCUUGCUGAAAAUGGUCGAUUAAGCAAUACCCAAGGAGUCGUUUCUGCCUUUUCUACCAUGAUGAGUGUCCAUCGCGGAGAGGUACCUUGCACAGUGACCUCUGCAUCUACUUCACAUGUAUCAUUCUCCGAGCCUGAUAUUCCGUCCUCAAAAAGUACUGAGUUACCUGUGGACUGGAGUAUUAAAACGCGACUCCUUUUCACCUCUUCUCAACCCUYUACCUGGGCAGAUCAUUUGAAAGCACAGGAAGAAGCUCAAGGUCUUGUCCAGCAUUGUAGGGCAACAGAAGUUACUUUGCCUAAAAGUAUACAGGAUCCCAAACUCUCCUCUGAGCUCCGUUGUACCUUCCAGCAGAGCCUUAUCUAUUGGCUCCACCCUGCUUUGUCUUGGCUAC
2170   mRNA  unknown    Homo sapiens    AAGGCGGGCUCGCCCUGCCGGCGGCGCGGCCAUGCUCAUCACGCUGUGCUACCUGUACCUGUGGGCGCGCUGGGGUCGCCGGCCGGCUGAGCUCGUGCGCGCCACGGUGCGGCGGCUGCGUGCCUCGCGCUGUUCCUUCACCUUCUGCGGCGCGGCCGCGCAGCCCCCGGGCGCCCGCGUGUGCCUGAGCCGUGGCGGCCGCGUCUUCUGCGUCAGCGACAGCCAGUCCAUUGAAGACUUGAACAAGUGGGCCCUAUUUCUUGUGUCUCCUUUUAUACUUGAAGCAGAACACAUAGCAUUUGUGACGGAGAGCAUUUGGGUACAAAGUGAGAAUUUACAGAGAUCAUCCUCUUCAGAAACAAUUGUCAAGUGGUCAGACUGUUGUUUGCCAUUAGCUUGCAGACCUGGGGAUCCUUAUCGGCUAAUUGCUGAAGCAAGUGUGGACAACUUCAGCAAGCUGGGGGUGGCGUUCAUGGAAGAUAGACUCCACAUGGAUAAUGGACUGGUACCCCAAAAGAUUGUGUCGGUGCACUUGCAGGACUCCACUCUGAAGGAAGUUAAGGAUCAGGUCUCAAACAAGCAAGCCCAGAUCCUAGAGCCGAAGCCUGAACCUUCUCUUGAGAUUAAGCCUGAGCAGGACGGUAUGGAGCAUGUUGGCAGAGAUGACCCAAAGGCUCUUGGUGAAGAACCCAAACAAAGGAGAGGCAGUGCCUCUGGGAGUGAGCCUGCUGGGGm6ACAGUGACAGGGGAGGGGGCCCCGUUGAGCAUUAUCACCUCCAUCUGUCUAGUUGCCACGAGUGUCUGGAACUUGAGAACAGCACCAUUGAGUCAGUCAAGUUUGCGUCUGCCGAGAACAUUCCAGACCUUCCCUACGAUUAUAGCAGCAGUUUGGAGAGUGUUGCUGAUGAGACCUCCCCCGAAAGAGAAGGGAGGAGAGUCAACCUCACGGGAAAGGCACCCAACAUCCUCCUCUAUGUGGGCUCCGACUCCCAGGAAGCCCUCGGCCGGUUCCACGAGGUCCGGUCUGUGCUGGCCGACUGUGUGGm6ACAUUGm6ACAGUUAUAUUCUCUACCACCUGCUGGAGGm6ACAGUGCUCUCAGAGACCCGUGGACGGACAACUGUCUGCUGUUGGUCAUUGCUACCAGGGAGUCCAUUCCCGAAGACCUGUACCAGAAGUUCAUGGCCUAUCUUUCUCAGGGAGGGAAGGUGUUGGGCCUGUCUUCAUCCUUCACCUUUGGUGGCUUUCAGGUGACAAGCAAGGGUGCACUGCACAAGACAGUCCAGAm6ACUUGGUUUUCUCCAAGGCUGACCAGAGCGAGGUGAAGCUCAGCGUCUUGAGCAGUGGCUGCAGGUACCAGGAAGGCCCCGUCCGGCUCAGCCCCGGCAGGCUCCAGGGCCACCUGGAGAAUGAGGACAAGGACAGGAUGAUUGUGCAUGUGCCUUUUGGAACUCGCGGGGGAGAAGCUGUUCUUUGCCAGGUGCACUUAGAACUACCUCCCAGCUCCAACAUAGUGCAAACUCCAGAAGAUUUUAACUUGCUCAAGUCAAGCAAUUUUAGAAGAUACGAAGUCCUUAGAGAGAUUCUGACAACCCUUGGCCUCAGCUGUGACAUGAAACAAGUUCCUGCCUUAACUCCUCUUUACUUGCUGUCAGCUGCGGAGGAAAUCAGGGAUCCUCUUAUGCAGUGGCUUGGGAAACAUGUGGACUCCGAGGGAGAAAUAAAAUCCGGCCAGCUCUCUCUUAGAUUUGUUUCAUCCUACGUGUCUGAAGUAGAAAUAACCCCAUCUUGUAUACCUGUGGUGACCAACAUGGAGGCCUUCUCAUCAGAACAUUUCAACUUAGAGAUCUAUCGCCAAAAUCUGCAGACCAAGCAGUUGGGGAAAGUAAUUUUGUUUGCCGAAGUGACCCCCACAACGAUGCGUCUCCUGGAUGGGCUGAUGUUUCAGACACCGCAGGAAAUGGGCUUAAUAGUGAUCGCGGCCCGGCAGACCGAGGGCAAAGGACGGGGAGGGAAUGUGUGGCUGAGCCCUGUGGGAUGUGCUCUUUCUACUCUGCUCAUCUCCAUUCCACUGAGAUCCCAGCUGGGACAGAGGAUCCCGUUUGUCCAGCAUCUGAUGUCCGUGGCUGUCGUGGAAGCAGUGAGGUCCAUUCCCGAGUAUCAGGAUAUCAACUUACGAGUGAAGUGGCCCAACGAUAUUUAUUACAGUGACCUCAUGAAGAUCGGCGGAGUUCUGGUUAACUCAACACUCAUGGGAGAAACAUUUUAUAUACUUAUUGGCUGUGGAUUUAAUGUGACUAACAGUAACCCUACCAUCUGCAUCAACGACCUCAUCACAGAAUACAAUAAACAACACAAGGCAGAACUGAAGCCCUUAAGAGCCGAUUAUCUCAUCGCCAGAGUCGUGACUGUGCUGGAGAAACUGAUCAAAGAGUUUCAGGACAAAGGGCCCAACAGCGUCCUUCCCCUUUAUUACCGAUACUGGGUCCACAGUGGUCAGCAAGUCCAUCUGGGCAGCGCAGAGGGACCAAAGGUGUCCAUCGUUGGCCUGGACGAUUCUGGCUUCCUCCAGGUUCACCAGGAGGGCGGCGAGGUUGUGm6ACUGUGCACCCGGACGGCAACUCCUUCGACAUGCUGAGAAACCUCAUCCUCCCCAAACGGCGGUAAUGCCGGGCGUCCCCGAGACGCGGCUGCCUGUCCGUGCCCAUGCAUCUGGAAAUCUAAUUUAGAGUUGUAGGUGAAUUUUCUUUUCCUCCAAUUCAUUUGUUAAGUCUUUGUUCUUUUUCUGUGUUUCUGUUUGUUUUUAGGUUUGUUUUGUUGUCGUUUUCUUUGGUGUUUGAAGAGGCUCUGGGAUAGAUGGUUAAGAAGUAGAAAAUUUAGUUUAGGGAAAGCCCUCCCACAGGUGGGAAAUUGCUCUCCCCUCUGUGGCUUGGm6ACUUACGUUUAUUGUCAAGGGGAGUUUUUACAUGGAAAUGACAAUGGGAAAAUUCAGAUAUUUUCUUAGUAGUGCAGACCUUUACCCCUAGUCUAUGAAAAAACAAACCAAAAUAUGCUCUUGCGCCCAGGCCAGUGGUGAGUUAGAGGUAUGCUAUCACUGUUUGUAAGCAUCUGGGGAGGUACUGAACUGUAAGAACAUGCUUGGACACUUAGUCAUUGUUCUGUGUUUUUAUUAAUGAAGAAAAGGGAAGACAGACUUCCAAGAGUUACUGUCCACCCGGUGGUGUGGCCCCAUAGCGAAGUCUAAAUGCCUGUAGAGAUAGAGCUAGCUGGUGUGGUUGCAGUGACCUUGUAGAGGAAAUCAGUUCAUUACUUUGACAUCAUUCAGUGAGCUCUCCUUUCCUAAGGAAGUUUAAAUGUCCUUAGUUAGGGACUGACUUUCUUAAGUAAGUUUAAAUUUACUACAUAUUGUGAAGAGACAGGAUCAAGUUCAGAAUCCUUAAAUGUCUGAUUAGGCAUCACUUGGAUGAGGAGGUGGGCGAUUUGGCUCUGACAGCUGGAGAUGAAGGCACACUCAUACCACAUACAAGGGAGGAUUUGGAGCUUUUAAGCCAGUUUCAGAUUUACUCUGAAAUGUGGAGCAUUCCUGCAAGACUGUGCAGCUCACGGAAUAUAGAAGACAUGGCAUUUUACUCAGAAGUCAUAAGUUUUUGCCCCCCUCAUUUACCUCGUAUUACCAAGAAAGAAAAUGUUAUCGAUACUAAACACCAUCAGUUCAGAGGGAGGAUGUGUGUGUGUGCCCGCAUAUGUGUGUGCGUGCGUGUGUGCGCACAUAGCUUUAAAAGAAGACAUUCAAAAUUUGAUGUGCUACAAGCCUCAUGAAAGAACAAAAGAAAUGAAGCCUUUUGAUAUGCAUUCGCUAUUCCCAGAUGUACGCCAUGCCUUUUCCAUGUCCCUCCUAUCUCUGUUGAACUUAUGAAUCAUACUCAUUACUUUUCAGCUUUUUAAAAGGCCAAUUUUUGUCCAGUUUUCUCUCUUCCAGUCCCAGCUGAAAUUAGUGGAAAGAAAGUUUGAUGGAGCUUUCAGCUUUGAACAAAAUCCCUUCAUUGUAAACUAGCACCAUCUYUAUCCAGGUCUUACCCAGUCAGGCUAAUUCCAGAAACUUGUGGUUUUUAGUAUAGUCUGUCUACCUYUAGCCAGGCACAGGACAGCCCUAUGAAAAAAUACCCAAUAUAUAUUUUUUGGAAAUGAAACAUUAAAAGAACUUAAAAAGUAAUUUUUGGAAAUGAGGCUUCAAUUAGAAUUAUUUUUCUCAAAAAACAAACAAACAAAAAACACAAAAAAAACCACUCUUCUCCAAAUGCCCAAGCCUUCUUUCAAAAUUAGUUAGAAACUUAAGUAAAAUACAAGUCCACACCAUCCCCAAAUUACAAAAUGGm6ACUUACCCUUGAGAGGGCAUCUGCAGAAUAUCAUCAGGGACAAAGAUCUCGAGGCUAACGAUGUAGGUUUCAUUUCUCAGACUUUGUAAUAUAAGGCAAGCCCUCUCUCAGAGCUGCCAUCAUCACUUUUUGAAUUUCUUUGGGGGUUAUUUAAUGAAAAACAUGCUAUGUUUUGUUUUAAGCUGAAGUCCUAUUCUGGACACUCUGCUUUGGGAAAAAAUGUUAUCAUUUAAUUUCCUUUCUGCAAAUUAAAACUAAUGAAGUGUGGCCUUGUCAAAGGCUAUGGAGAUGUUCCGGGCAUACUGCUGUGCUCUGUGCUUUCCAGCAGGCGCUCCUCCCUCACGCAGGAGACUCAGUUGUCCUGAGAGAGAUGAAGCAGCCUUGAAGCAGAUGCUGCGUUUUCCAUAAACCUGAUUUUGCCUCACAUGAACCAAAGm6ACUCUCAAAACUCCGCUUCUAUAGAAUUAGCUGAAUAAAGGCAUUUUACUGAUAGCUGUUCGUGUUAGCGAAACCUGUCUACCUGCUAUAGCACACUCUCCGAUUUGGGCCAUUUAUGCACCCCGCAACCUGGGAUCUCAAGGAGCUYUAAAGUCUUAAUGGGAACUUGGCAUUUUCCUGAUGAUCUYUAAAAUGUGGUCACUAAACUCAGGAUUGGCGUGUGCUUUUAGAACACUGGAGUAGCCCUUGUUUUAGAGGCUGUGCAUUGAGUAUCGACCGUAUUUUGUAAAAGGCAAGAUAUCCUCCCUUCCAGGCUGGUAACGGGUUUCAAGGGGACUCUUGAGGAAGUGCCCCCUAAAAUAGAACACAGCAAUAACUGGGCUUCCUGUCCCCACCCCCACCCCAGCAGUGCUCUCUGGCACUGGGAACUCUGCUAGGGAGUGGUGGAAGUAGGAAGGAUUUGUGUGCAAAGGAAAAUCGUGGUUGAGUUUCACUGCAGCAGGCUGACGUUGCCUGAUGUGAGAGCAAGUGGCCGACUGGGGUGCGGGUGCACAGGUCGGGGGAGCACAGGCCACAGAGCGCAGCCUCUGGGGGUCCCCCAAGGCACAGCAUAUACAGCAUGGUCGCCCCUUGCCCUGGAGUCUGGGAACAAAGAGAGGAGCCAGCCUCCCCGCACUGCUUCAGAUGGAAAAGGGAGGCAGGGUGGGCUUCCGUUCUCCAGAUCUGUUUGCUCUUAACAGGCAGAACAUGGGAGAAUCCUUAUUCCUGGUUAAUCACUAUGCAUAUUUGAAAUAAAAGAAAGCGUAAGCCUCUGCAAUUUUAACUUCUCAAAGGAUGUCUCUGAAAAGAAUCACUYUAAACCAAUGCCUAUAAAAAGCAAGUCUACCAAAAUAAACUAAGACUUUCUAUGUGGUUUGGGCUCCCUCUUAUUUUUACAAGUUUCAUUUUUAAAAGUAGGCAACUACUUUGGGUUACAGUAUUUUUAUUCAUAUUUAAACAUUUUUACAAAAUAAAUAAAGUGUUUUACAUAGUAAGGAAUAUGUACGUAUUUCCAAGUAUUAAGAAGCCAAGUGUUUUUUUUUUUGACGUAUUAUUGACAAAUGUAUUCAGCGCCAUACACAAGAGAAAUAUUAUUACUCCAAAGAACGAAAGUUAACAAAACUCCAAAGCAAAAACCCUUUUAAUGGAGGUGAGAAAUAAAUUUAAUGUAACAACAGCUAGAUUGUUUUUAGGAUUUUUCUUUUCUUUUGUGGAAACUUCUUGACUUGACUUUUCAUCUGAACAGUUUUUCCCCCCAAGAUUUUAAUCUUAUAUGUCAUACUUAAGUUUAGGAACAGCUUGAAUAAUUAGCAUUCUAGAUAACACAAGGGCCAUGAUUCACUAAAAUUCCAAGCUACUGUAAUUUUAUGGCAUUUAUUUGCAAAUGUUCUUUGUAUCUCAUUUUAUCUGUAGCAGUCCCCACUAGUCUACCUUAACCAUCUUAUAGCUCUGGUAAAUUAAAACUUACGUAGACUUUAUACAAGAUCCAUUGGCCGUAUUAAACCUCCCCCACUCUUAGGGCUUAGGGCGGAAGGGACGAAGGCAGGGCUGAUAGGACUUUUAAAAGGAUAAAAGGAGUGGGGGCAAGGGAGGCGGAAAAUACAGGCUCUUGCAGAUACCCUCCGCGCUGCCCUCCACACCCAGCCCACUGCUCUACAAAGGUAUGAAUGGAAUGGCUUUUCUAGAAAAGGGCUUCCAAGAACAUAAAGGAAUUCCUUUCCCUGGGAGGCCCCGUGGAGGGCUGAGCCAGCCUUGAAUUGGGCUUAUUUCUCAAAUCCAUUUGAUCUGGCAUUUUUGUCAACAUGGUACAUGUUAGGGCCUACGAUGAUUUUUUUUUCUUUUUUGUAAAAGAGAGGCAUAUGUAUUAAAAUGCUUCCUCUUCCCCUGCCGGAGCCUCACAGAAGUCAAGAAACGCUAUCCCCAGCUUAAAUGUGCAGACUCUUCAAGAUGGAGGUCACAAUAUUAGGUUGCCACAGUAACAGCUCUGCUGACUUCACACUCAGCCCUGGCCGUCCUGAAGCCAGCUCGUGUAAGAAUCUUCCUUCAUGUUCUAGGUUAUGAAAACGAAGUUUGUUUAGACAAGGACGUUUUCACUAGUACACAUUUUCAAGUACAUACACACUCUGUUACGCCUGUCCACGUUGUCACUUGUAAAUCUAUGAUAGGGUCUUUUUUCUCAACAGUAACCUUUGUUAUUGAACUGCUCCGAUAGCCUUGAUUUAUUUUUACUAAAUACAGCCCCAAAAGUUAAUAACAAGGUAGACACAAAAGCAUUUUGCAGUACUUUAUUGAAAAAUGUCGGUGGUAUCUCCUAGUAAUCAAACCUACACCUUUCAAGAAUCACGGUUUAAUUACAAGACUCAUGAACAUAAAAAAAUAAUACCCUCGGCUUAUUUCCUGUGCACACACUCACAAGGAGCUGUGAAUGAGGUAUAGCUGAGUGCGUGGAGAGGCGGGCACAUCCCUUCCUACCAUCCAGCCCCUUCGCUGCAUGACCCACGGUCCUAAAUUUGCAAAUUGUGACUCUUACCAUGAGGCCCACUGACAGACACCCUGUAGGGAUUGUGUCAGGUCCUCACUAAGUGACACAGGGUUGGCAAAAAAAAAAAAAAAAAAGUCAGUUCACAUUUUGAGAGCAGUUGGUGUAGGUGCACUUGAUUUUAGAACGAUGAGUUUAAAACAUUUGUGAAAACCUCUUUCCAUUCAGAAAGGUGGAAAAAGUUUCCUAAAAUAAACCAUUUUGAUAAAGCAGCAAAAUGCUGCAGUGUUGAUAGUGUGAAGAAAAUUGAAGGACGGCGGUUCAAUGCAUUGUGCAGUUCAGAGCCAUGACAGGAUUUUUCCAUGUUGAGAUCUUUAAGCAAAACCCAUAAAAAGUAAAAAUUAAUGGAAGCUCAUUUUUUAAACACUGCUGGUGCUUUAUGAAAGGAUUUCUGUUUACCUGUUGCACACGUAACAUGUUCUUACGAAGUUUUCUCGCUGUGUAGAAAAUGCUUAAAAUGUCUACAUCAUUUUCAUUACACCCCCUUAAGCAUGUUUUUCCUUCACAAGGUGCAGUCCAUUGACAGUGUUCCGUAUUGCACGUGCAAUUUAACUUUAUUAGCACUAUUUGUAGCAAACACGAGCCUAGUGAAUUACAGAUCUGUGUGGGCCAGAGGGAUUUUGCCACGUAAUAAUGAAGCUUGACAGGGUCAUUCUCAUAAACUGUCUGGCUACAUAUAUAUUUUUGCAUUUAAUGCCUAUUCAAUAUAUUCUGAAGGUGCUACUCUUGGUGUUAUCAAGAGUUCAUAGGGGUUAGGGGGAAGUAAGAGCUUGUUAAUGUAUUUGGGAAGCACACCUAUGUUCACAGACACAAAAUGGAAUUGCAUGGUCACCCCCUUAGUCUUGGUUUGUUGGCUUUUUGUAUUGAAGAAAGGGUUAAAUAAAAACAAAAAUAAUGAGA
2171   unknown  unknown    Homo sapiens    AAGUAAGAUUCCUCUUUUUAGAAAGUAAACAAUGAAUCUGUCACCAAGUUCUAACUGUAAAAUGGGGACAUUUUACCUUUCUUUCUUUGGAUAGGAUCAGUUCUUAAGAGCAGCCCCGGUAm6ACUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCAYCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAAm6ACAYCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCUYUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGGm6ACCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCUYUAAUGUUGUAAAUAUUUGGCAAUUUAAGm6ACAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUAm6ACAYCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUAm6ACACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGAC
2172   mRNA  unknown    Homo sapiens    AAGUCUCUGUAGGGCGGCCGGCUACCCUCAGCCGCCGCGCGUCAUGGCCCUUUCGGUGCCCGGCUACUCACCGGGCUUCCGAAAGCCGCCCGAGGUAGUGCGGCUCCGACGGAAAAGGGCCCGGAGCCGUGGAGCUGCCGCCUCCCCGCCCCGUGAGCUGACGGAGCCGGCGGCCCGCCGAGCCGCCCUGGUGGCGGGGCUGCCUCUUCGCCCUUUCCCUGCUGCGGGGGGCAGAGGCGGUGGCAGCGGCGGCGGCCCGGCCGCUGCUCGGAGGAACCCCUUCGCCCGCCUGGACAACCGACCGCGGGUCGCCGCGGAGCCCCCCGACGGGCCGGCCCGCGAGCAGCCGGAGGCCCCGGUCCCGUUUUUAGAUUCUAAUCAAGAAAAUGAUUUGCUAUGGGAAGAGAAGUUUCCUGAAAGAACAACUGUUACUGAAUUACCUCAGACUUCACAUGUAUCAUUCUCCGAGCCUGAUAUUCCGUCCUCAAAAAGUACUGAGUUACCUGUGGACUGGAGUAUUAAAACGCGACUCCUUUUCACCUCUUCUCAACCCUYUACCUGGGCAGAUCAUUUGAAAGCACAGGAAGAAGCUCAAGGUCUUGUCCAGCAUUGUAGGGCAACAGAAGUUACUUUGCCUAAAAGUAUACAGGAUCCCAAACUCUCCUCUGAGCUCCGUUGUACCUUCCAGCAGAGCCUUAUCUAUUGGCUCCACCCUGCUUUGUCUUGGCUACCACUGUUCCCUCGUAUUGGAGCUGAUAGAAAAAUGGCUGGAAAGACAAGUCCUUGGUCAAAUGAUGCAACCCUGCAGCAUGUUUUAAUGAGUGACUGGUCUGUGAGCUYUACUUCUCUAUAUAAUUUGCUGAAGm6ACAAAACUUUGCCCCUAUUUCUACGUUUGUACCUAUCAGUUUACUGUCCUGUUCCGAGCAGCAGGAUUAGCUGGAAGUGACUUAAUCACAGCUCUCAUAUCUCCAACAACUCGAGGUUUAAGAGAAGCUAUGAGAAAUGAAGGUAUUGAAUUUUCUCUGCCUYUAAUAAAAGAAAGUGGCCAYAAGAAGGAGACAGCAUCUGGAACAAGCUUGGGAUAUGGGGAGGAGCAAGCCAUCAGUGAUGAGGAUGAAGAGGAAAGUUUUUCCUGGCUGGAAGAGAUGGGUGUGCAAGAUAAAAUUAAAAAGCCAGACAUACUUUCUAUCAAGCUGCGUAAAGAGAAACAUGAAGUACAAAUGGAUCACAGACCUGAAUCUGUUGUGUUGGUAAAAGGAAUCAACACCUYUACAUUGCUCAAUUUUUUGAUUAACUCUAAGAGUUUAGUUGCUACCUCAGGUCCACAGGCAGGACUUCCYCCAACCCUCUUGUCCCCUGUUGCUUUCCGAGGUGCCACAAUGCAAAUGCUUAAGGCACGGAGUGUGAAUGUGAAGACACAAGCUCUUUCUGGAUACAGAGACCAAUUUAGUUUGGAGAUUACAGGUCCUAUCAUGCCUCAUUCUCUGCAUUCACUGACCAUGCUGCUCAAAUCUUCACAGAGUGGAUCUUUCUCUGCAGUACUGUAUCCACACGAGCCAACUGCUGUAUUUAm6ACAUCUGCCUGCAAAUGGACAAAGUACUUGAUAUGGAGGUUGUUCAUAAGGAGCUUACUAm6ACUGUGGUUUGCACCCUAm6ACACUCUGGAGCAACUUAGUCAAAUACCGUUACUUGGGAAAUCAUCUYUACGGAAUGUGGUGCUGAGAGm6ACUACAUUUAUAAUUGGAGAUCCUGAACACCAAAGUAAGCCUAAAAGGAAUCUUUGAGGAAAAAAGCCUUCUAGCAAGGAAAUUCAAGAUUCUUGAAGUUGAAGGAAUAUACUGAAAUGUUUAUAAACAUAm6ACUUUUACUACm6AGUAGCAUCUAAGGUUUUAAAUGUGUUUUACUAUUUUCAGAUUAGAUUUUUAGAUAUAAAGAUGAAAAACUCAGAUAACUCAAAUGAGAUAUCUAUAUCCCUACAACCUAAUUGUAUAUUGAGCAGAAACUGAAUUAAUAUGCUUCCUUGCAAAUGGGAAAUCACAUAGCAGUUACCCCAUGGCAUUGUGACUAAUGGCAUCAGGGCAAAAAUAUGUUACUYUACGAUUUACCUGUUAGCAGGUUCUUGUUUCAUAAAGGUAGAAAAUAAAUACAGACAACAUCUACUGAGCUAGUUGAUUGGUGAUGCUUCUACCUUAAUAUCUUUCCUACUGAUUUAUAAUUCCUYUAUUUUCACAUAUACUAAAACUUUUUAAAUGCAUGUUAAUUCAGAUAAAAAGGCAUUUUGUAUUCCACAUAGAAUAGUGUUAAGAAUUGUGAAGUACACUGAGCUGUCACGGCAAAGUAGUAUUUAAUGUGCUUAUAGGGGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUGUAGGGGGGGACUGUAUAAUUCACAUUUUUAAAAUAAAAGUGCUUAAAAAUCAAAA
2173   unknown  unknown    Homo sapiens    AAUCCGGUUCCAUCCGGUUCUCCCACCGCCCCCGCUGUGGGUCUCAGCAGCUCGGGCGGCGGGAGGAGUGGCAGCGGCAAGGCAGCCCAGUUUCGCGAAGGCUGUCGGCGCGCCGCGGCCCGCAGGCACCCGGCACGCGCCUUCCCCGCAGGCACCCGGCACGCGCCUUCCCCGCCGCCACGAUGCCCAAGAGGAAGGUCAGCUCCGCCGAAGGCGCCGCCAAGGAAGAGCCCAAGAGGAGAUCGGCGCGGUUGUCAGCUAAACCUCCUGCAAAAGUGGAAGCGAAGCCGAAAAAGGCAGCAGCGAAGGUAAGCCUCGAAACGCGCAUUGGGAUGCAGCGGGGCCUUAGGCUACACUGCUUCUUAAUGCGGGGCUUCCAUUUUGAUUAGCUAUUGGAGCUUUAUUUAUACUUUAAUAAUUACGGUAAAUAAUUUUUCUAGUGGUCGAGGCAAAAAUGUAAUGGAUAUAUUCAUCCUGGUUUAUAGAACUAUAUCACACUAAUGCUGCUGCAGAUGUUAGGAGACUUAGGACGACAAAAAAUAUUAAAUAUUAAGUCUACAAAGGAAAUUUAUUCUUUGCGUUGCGUACAUUGUGGCUGGUGCUUGGCUUUUAAUUCGUGCUUGUACUUCCUUUUUUGACAAUAAAAGAGUCAAGAUAGCACCGAGGCCAGGAGAAAGGGAACGUGUAAGUUUUUAUAUAUACAGUUUCCAAGCCAACUUCGGGAAGCCUUAACCUUUUUACGGGGUGGGGGUGGGGAGGUAAAAAGUUGUGAUCUCUGAGAAAAUAACCGCCACUACUCUGGAAGUGUUCAUCAGCAGUUAUACAAAACCGUGAUUUUGGCUGCUCCCUAACAAAUUCGUGAUUGCAUGAUUCGAAUUGCAGGUCUGUAGAAUGAAGUUGGCUUUGGGUGUACGUGUGUUUGAUAACUUGCAGGGUGGAAAAGCAGAACAUGUGUAAAACAAGUAUAAGCUUUGUGUUUGGAUAUAGCAUUGAAACCUGUAAAGCUCUACm6AUGUUCUUCGCGGGGUGAUUAAUUUUUAUCCAAAACUUAGGUGAGAGUUUGCUAUUUGAAGUCUCAAAAAAAAUUUUUGUUAAUGCCUUCACCUCUUUCCUAAAAGUGUAGGUAGAAGUUUAGCACUGCAGUCAUCAGAAGAGGCAAGAUUAAUUUCCUUGACAUUGAGGAGUUGUUGGAUAAUUACUAAAUUUGUCCUUGUUAAAUAAAGGUAUAAAACAAAGAUGUUUUUUCUUUUUUAAUUUAAAUUUUUUACAGAGCUGAGUGUAAAAAUGUUAACUAUGUUUUCUUUAACAGAAAGUUCUGUUUUUGUGAUCCUUUUAAAAAUAAAGCUUCACGGAAGGUAUGAGAAUAGUAUUUUUCAACUUUAAAUUUCUCAUUACCAGAAGACCAUGUGGUAAUUCUCUGUAUACAGUUAGAACAGCACGGAAACUUGAAGGCCUAAAAAAUUAGCUGACCUUGUUAAAAAUGUUGGCGUGAGCAGUAUAUUAUUACCUAUCUUUUUUUAUUGUGUGUGUGUGUGUGUGUGUGUUUUAAACUAAUUGGCUGAAAUAUCUGCCUGUUUCCCUCUUUACAUUUUUCUUGUUUCUUUCCUUAUUUAUCUUUGUCCAUCUUGAGAUCUACUGUAAAGUGAAUUUUUUAAUGAAAACAGUUCCAAGUUUUACUCUCAGUGGGUUUGGGACAUCAGAUGUAAUUGAGAGGCCAACAGGUAAGUCUUCAUGUCAGUGUUUGUUGAGGAACGAGCCUAUGAGGUCAGUUUUCCCAAAAGGAAAAAGGGCAGAAGGGAUUUGUUCAUUUUUACAUCUCGUUUCUGUAAUACACCUUUGACUUCAUGGUUGAUCAGACUUUGAAGUCUAAACAGAACGUAAGCACUUGGUGUAUCGAUUAUCAUACUACACAGUAGACAUGUUUUCAAGGCAUAUCUUGUCACUGUGUGUGCUUCUGACUUGUAUCUUUCCCUAGAACUAAAUAUUUUGAAGGUCCAAACAUUAUACUUUGGGAAACUUGAUUGAUUUUUUUUUAAUCUAGCUUUUCAGCUGAUAAUGGUUACACGUGGUAUUAUUUCAAGUCCAAGAUAUUAUGUAUUCUAUUUUAACUGUUUCCCAGUUUUGUAUUUUUUGUAUUGGAAUGAUUAUGAAAUUAAUGAGAAAUCUUUAGAAACAGACUACAAAAGAGUAGUUCUUAAAUACAGAAGUGAUUGUGAAACUUUGUGAUAGCAAUGUGUGUAGUAGCAGUUUUGUCUCAAAUACAUUUAUCAUUUGUUACUCAAAGGAUGUUGAAGUAUUAAAAGUCAUUAUGCUGUCUGUGGAAUCCUACUAUUAGUACAGAACACCCUGCAGUGAUUUUUCCGCCCGUGUUAGCAUUGAAGUUGUGAGCUCUACUUGCUUGUCUUUAUGGCCCUYUAAUUCAAGUAAUUGGUCAGUAUCCGUAUGGGUCUUUUAUACCACCCGCUGGGGGCUAAACUAAUUUAGCUGCUGCUGUAUACUUACUAACAAGGAAUAAAUGUUAAGCUUUCUUCUCAGUAUUGAUGGAUGGUAUCUAAAAGUAUUUUUAUGUUUCUUUAACAUGGCUUAAAUUUUGAACUUAAUGUAUCAAGUUAGUAUGGUCAUAUUAAUACCUGUGCUUUUCAGAUUCUUCAAm6ACACCUAAAUGAAAGUGAUAAAUUCAAAACUGAUCCUUUUAGUUCCUCAUUAUAUGAUAUGm6AAGGGAUUAACUGUAGCAGGAUAGUCAACCUGACCGUACGGCAUGGUGCUUUUUUUCAGGUGAUUGGUCUUAAUGUGAGGGUUAAGGUCUUGUGAGGACAGUAUUGUUGAAGUUCACAACAAAUUUGGGGAUGGGUGGGAAUACGGUCGACGAGACUCCUCCGGUAUUCAACUUCAUGACAUUGUCCUGUCAUGUGGAACUGUAGGGAAUAGUGGAUGAUGGCGACAGUGGUGAAAUAUAGCUCGGGCUUUAGGAUUUGUCAUAUGUCUAAUGAGGCUUGACAUGCAAGUACUAUUAAAAUCUCCUUAGCAUACAUUGUUUUCCUGAUUACUGGGGGGGACCUUAAGUUGUCUCAUGUAAUAGGUGUAUCAACUGAUGUGUGAUAGACAUUAAUAUGACAGCUGUUAUGGAUACAGUCUAUACAAAAUGAGAUCCUUUCAUAAGCUUGAAGAUUGGGGUUUCACGCUCAUGUGUGAGAUGUCCCUCUCUCAAACCUUACUAUGAAGUCAGCACCACUGGGCACAUUACUUGUCUGACAUGAAGGGGAAAAAGUAAAACAAAAUGUAAAUAAGGAGUAAAGCAUGUACUUAAAAUAUAUUCUUAUUCUAUCAUAGGAUAAAUCUUCAGACAAAAAAGUGCAAACAAAAGGGAAAAGGGGAGCAAAGGGAAAACAGGCCGAAGUGGCUAACCAAGAAACUAAAGAAGACUUACCUGCGGAAAACGGGGAAACGAAGACUGAGGAGAGUCCAGCCUCUGAUGAAGCAGGAGAGAAAGAAGCCAAGUCUGAUUAAUAACCAUAUACCAUGUCUUAUCAGUGGUCCCUGUCUCCCUUCUUGUACAAUCCAGAGGAAUAUUUUUAUCAACUAUUUUGUAAAUGCAAGUUUUUUAGUAGCUCUAGAAm6ACAUUUUUAAGAAGGAGGGAAUCCCACCUCAYCCCAUUUUUUAAGUGUAAAUGCUUUUUUUUAAGAGGUGAAAUCAUUUGCUGGUUGUUUAUUUUUUGGUACAACCAGAAAAUAGUGUGGGAUAUUGAAUUAUGGGAGGCUCUGACUGUCUCGGGUGUCAGCUUAACAUUCCACAGAUGGGGGGUUAGUUUUUAUAUCCUAUAAUACAAAGCAUAUUAAAUGGCAAUAUGGAGUCAGUCCUGCAUUUAAUGUCUUGAACAUUUUAAAUUACUUCUAUUACCAUGUUGUUUUUUAGUAGAAUUGUUUCCUAAAGAAAACCACUCUUUGAUCAUGGCUCUCUCUGCCAGAAUUGUGUGCACUCUGUAm6ACAUCUUUGUGGUAGUCCUGUUUUCCUAAUAm6ACUUUGUUACUGUGCUGUGAAAGAUUACAGAUUUGAACAUGUAGUGUACGUGCUGUUGAGUUGUGAACUGGUGGGCCGUAUGUAACAGCUGACCAACGUGAAGAUACUGGUACUUGAUAGCCUCUUAAGGAAAAUUUGCUUCCAAAUUUUAAGCUGGAAAGUCACUGGAAUAm6ACUYUAAAAAAGAAUUACAAUACAUGGCUUUUUAGAAUUUCGUUACGUAUGUUAAGAUUUGUGUACAAAUUGAAAUGUCUGUACUGAUCCUCAACCAAUAAAAUCUCAGUUAUGAAAAUA
2174   lncRNA  unknown    Homo sapiens    AAUCUGGCGCGGCCUUUGUCUCACUUCAGCCAGAGAGCGGGGUUAGGGCUUCAUUGCCUUGUGUCCUCUGCUCCGGGAGACUUCGGUGAUUCUGCCACUCCCUCCGUCGCUCUGUGACCUGCUGGCAUUGAAUGAUUUAUAGCUAAGACUCCAGGACACCCCUGAAGCCGAGAAAUGAAAUCCCAAGUUGACCGUCAAGUCCAACGCUCGCUGCAGACAUCUAGUGGACCCGGCGCUCGCGGACGGAAGCGGACAGACCUAGUUGGAUCCUUAUCCCACCAAUCUGGCCCACCUUUGCUGCCAUCUAACUCCGCUGACCGGCCCACCGUUCCUCCACUGUUCGCUGGUUGACCCGGGCAGCGGAGAGAGGAGGGUGUUGUCAAUGGAAAUAUGGAUUCUUCUACAGCAAACAUGUACAUCUAUAUCAUGUGGAACAAGGAUAGUGGGAAAACCUCUGAUUGUGAGGACGUAGAm6ACUGAGAAGAGCAUAUGAAAUGUCAUAAGAAAAACACUUCUGGAGCAUGUCGUCUUCAAGAAAAUGGUGCCCAGACAGUCAGGAUUGUGUUACAUUUUAAUAGGAAUGGGGAUAUUUGUGAUAUACUGACAAACCAAGACAGGUGACUAUAAAm6ACUGCAAUGUAAAGUGUCAGCUUCUCCUCACACCUUUAUAGUAGACAUCUGAGAACCUCACUCCUGUCAGCAUAUUCUUGGGGUUGAAUCUCAAGUGAUCCAUAGAAUCUUAGAUAAAGCAGAUGAAAAUAGGCUUUUCUGUCUUCCUAAGUAAACAGCAAUGAAGUUGAGAGAAAGAAGAUAUUGCUGGAAGUCAUGAUAAAGUCUAUCUUCUGUGACCAUAUGUUUCCUUAGAGAGUUUUAGACAUUGACCCUCAUCUAAAAAAUUGUGAAAAAGGACUCUCACCAGUCUGUUAAUAUGUAUGUAUAUGAAAGAAAUUACUGGUAAACUUCUAAGGCAGGCAUUGGUGUUACUUUUUUUUAUCUUUAUUGUGUCUGUGAAAUGAUUGUGUGUAUUUUUUCUUUGAUUAGACAAUGAGAUUCCCAAAUAAAUUUUAUUAAAGCCAAAAAAACCUUUA
2175   lncRNA  unknown    Homo sapiens    AAUCUGGCGCGGCCUUUGUCUCACUUCAGCCAGAGAGCGGGGUUAGGGCUUCAUUGCCUUGUGUCCUCUGCUCCGGGAGACUUCGGUGAUUCUGCCACUCCCUCCGUCGCUCUGUGACCUGCUGGCAUUGAAUGAUUUAUAGCUAAGACUCCAGGACACCCCUGAAGCCGAGAAAUGAAAUCCCAAGUUGACCGUCAAGUCCAACGCUCGCUGCAGACAUCUAGUGGACCCGGCGCUCGCGGACGGAAGCGGACAGACCUAGUUGGAUCCUUAUCCCACCAAUCUGGCCCACCUUUGCUGCCAUCUAACUCCGCUGACCGGCCCACCGUUCCUCCACUGUUCGCUGGUUGACCCGGGCAGCGGAGAGAGGAGGUUCUUGUGUACUAUGUUUAACAUUGACAAGAAGAUAAUUAGGAAAUAAAUAUAUAUAAAUACAGGAACAUAAAGAGAAAUAAAGAGGAAGCACCACAGUCAACUAAAAAAGAGAGAUUCCCAGCAACCUACACAACCAUUUCUAUAGGCUCUCAGCUGAUGCUUAGUGUUUGGm6ACAACUCACACAUGCAGAUUGACAGAUGACCAACUUAUAAAAGAGAUUUUUAAUAAUUCUUAAUGAUUUCACAGGGUGUUGUCAAUGGAAAUAUGGAUUCUUCUACAGCAAACAUGUACAUCUAUAUCAUGUGGAACAAGGAUAGUGGGAAAACCUCUGAUUGUGAGGACGUAGAm6ACUGAGAAGAGCAUAUGAAAUGUCAUAAGAAAAACACUUCUGGAGCAUGUCGUCUUCAAGAAAAUGGUGCCCAGACAGUCAGGAUUGUGUUACAUUUUAAUAGGAAUGGGGAUAUUUGUGAUAUACUGACAAACCAAGACAGGUGACUAUAAAm6ACUGCAAUGUAAAGUGUCAGCUUCUCCUCACACCUUUAUAGUAGACAUCUGAGAACCUCACUCCUGUCAGCAUAUUCUUGGGGUUGAAUCUCAAGUGAUCCAUAGAAUCUUAGAUAAAGCAGAUGAAAAUAGGCUUUUCUGUCUUCCUAAGUAAACAGCAAUGAAGUUGAGAGAAAGAAGAUAUUGCUGGAAGUCAUGAUAAAGUCUAUCUUCUGUGACCAUAUGUUUCCUUAGAGAGUUUUAGACAUUGACCCUCAUCUAAAAAAUUGUGAAAAAGGACUCUCACCAGUCUGUUAAUAUGUAUGUAUAUGAAAGAAAUUACUGGUAAACUUCUAAGGCAGGCAUUGGUGUUACUUUUUUUUAUCUUUAUUGUGUCUGUGAAAUGAUUGUGUGUAUUUUUUCUUUGAUUAGACAAUGAGAUUCCCAAAUAAAUUUUAUUAAAGCCAAAAAAACCUUUA
2176   mRNA  unknown    Homo sapiens    ACAAGUUGCACUUAAGAAGCUAUGCUAAGAAAACAAACACACAGAAGCCUACAUCAUUACAUGUAUAGAAUGUUCAAGAACUGAUGAAACCAGUCCGUGGUCACAAAAGCCAGAAAGUGGUUGCUUCUGGGGACCAGAAGGGAAAGGGGCAUAAAGGAACCUUUUGAGGUGAAUAGAAGUUUCUGCAUCUUGGUUUGGCACACAUGCCAAAACUCACCAGCUACAGAUUCUCGUUGACACUGGAAGCAGUAm6ACUUUGCCGUGGCAGGAACCCCGCACUCCUACAUAGACACGUACUUUGACACAGAGAGGUCUAGCACAUACCGCUCCAAGGGCUUUGACGUCACAGUGAAGUACACACAAGGAAGCUGGACGGGCUUCGUUGGGGAAGACCUCGUCACCAUCCCCAAAGGCUUCAAUACUUCUUUUCUUGUCAACAUUGCCACUAUUUUUGAAUCAGAGAAUUUCUUUUUGCCUGGGAUUAAAUGGAAUGGAAUACUUGGCCUAGCUUAUGCCACACUUGCCAAGCCAUCAAGUUCUCUGGAGACC
2177   mRNA  unknown    Homo sapiens    ACACGCUUUCAGGAGAGGAGCCGUGUGAUCAUUUGCCAGAGAAGGAUAGGCUGGUGGGUGCUGAGACCAGAAUCUUUAUAGCAGAAACUUGUGAAGCGUUCCAGCUGAAAGUCCAAUCUCUAAACCUCGUCACGUGUUCAAUAUGCUAAAGAAGUAUGUCCGCGCAGAACAGAAGGACAGACAGCACACCCUAAAGCAUUUCGAGCAUGUGCGCAUGGUGGAUCCCAAGAAAGCCGCUCAGAUCCGGUCCCAGGUUAUGACACACCYCCGUGUGAUUUAUGAGCGCAUGAAUCAGUCUCUCUCCCUGCUCUACAACGUGCCUGCAGUGGCCGAGGAGAUUCAGGAUGAAGUUGAUGAGCUGCUUCAGAAAGAGCAAAACUAUUCAGAUGACGUCUUGGCCAACAUGAUUAGUGAm6ACCAAGGAUCAGUUACGGAAACGAUGCUCUCAUGCCAUCUUUGACCGAAACGAAAACCACCGUGGAGCUCCUUCCCGUGAAUGGAGAGUUCAGCCUGGACGAUCUCCAGCCGUGGCAUUCUUUUGGGGCUGACUCUGUGCCAGCCAACACAGAAAACGAAGUUGAGCCUGUUGAUGCCCGCCCUGCUGCCGACCGAGGACUGACCACUCGACCAGGUUCUGGGUUGACAAAUAUCAAGACGGAGGAGAUCUCUGAAGUGAAGAUGGAUGCAGAAUUCCGACAUGACUCAGGAUAUGAAGUUCAUCAUCAAAAAUUGGUGUUCUUUGCAGAAGAUGUGGGUUCAAACAAAGGUGCAAUCAUUGGACUCAUGGUGGGCGGUGUUGUCAUAGCGACAGUGAUCGUCAUCACCUUGGUGAUGCUGAAGAAGAAACAGUACm6ACAYCCAUUCAUCAUGGUGUGGUGGAGGUUGACGCCGCUGUCACCCCAGAGGAGCGCCACCUGUCCAAGAUGCAGCAGAACGGCUACGAAAAUCCAACCUACAAGUUCUUUGAGCAGAUGCAGAACUAGACCCCCGCCACAGCAGCCUCUGAAGUUGGACAGCAAAACCAUUGCUUCACUACCCAUCGGUGUCCAUUUAUAGAAUAAUGUGGGAAGAAACAAACCCGUUUUAUGAUUUACUCAUUAUCGCCUUUUGACAGCUGUGCUGUAm6ACACAAGUAGAUGCCUGAACUUGAAUUAAUCCACACAUCAGUAAUGUAUUCUAUCUCUCUYUACAUUUUGGUCUCUAUACUACAUUAUUAAUGGGUUUUGUGUACUGUAAAGAAUUUAGCUGUAUCAAACUAGUGCAUGAAUAGAUUCUCUCCUGAUUAUUUAUCACAUAGCCCCUUAGCCAGUUGUAUAUUAUUCUUGUGGUUUGUGACCCAAUUAAGUCCUACUYUACAUAUGCUYUAAGAAUCGAUGGGGGAUGCUUCAUGUGAACGUGGGAGUUCAGCUGCUUCUCUUGCCUAAGUAUUCCUUUCCUGAUCACUAUGCAUUUUAAAGUUAAm6ACAUUUUUAAGUAUUUCAGAUGCUYUAGAGAGAUUUUUUUUCCAUGACUGCAUUUUACUGUACAGAUUGCUGCUUCUGCUAUAUUUGUGAUAUAGGAAUUAAGAGGAUACACACGUUUGUUUCUUCGUGCCUGUUUUAUGUGCACACAUUAGGCAUUGAGACUUCAAGCUUUUCUUUUUUUGUCCACGUAUCUUUGGGUCUUUGAUAAAGAAAAGAAUCCCUGUUCAUUGUAAGCACUUUUACGGGGCGGGUGGGGAGGGGUGCUCUGCUGGUCUUCAAUUACCAAGAAUUCUCCAAAACAAUUUUCUGCAGGAUGAUUGUACAGAAUCAUUGCUUAUGACAUGAUCGCUUUCUACACUGUAUUACAUAAAUAAAUUAAAUAAAAUAACCCCGGGCAAGACUUUUCUUUGm6AAGGAUGACUACm6AGmACAUUAAAUAAUCGAAGUAAUUUUGGGUGGGGAGAAGAGGCAGAUUCAAUUUUCUYUAACCAGUCUGAAGUUUCAUUUAUGAUACAAAAGAAGAUGAAAAUGGAAGUGGCAAUAUAAGGGGAUGAGGAAGGCAUGCCUGGACAAACCCUUCUUUUAAGAUGUGUCUUCAAUUUGUAUAAAAUGGUGUUUUCAUGUAAAUAAAUACAUUCUU
2178   mRNA  unknown    Homo sapiens    ACACGUGCGACGGCCGUGAUGAAGUUCGCUUACCGGUUUUCAAAUUUGCUGGGUACGGUGUACCGGCGUGGGAACCUAAAUUUUACCUGCGAUGGAAAUUCAGUUAUCAGUCCCGUGGGCAAUAGAGUCACUGUAUUUGACCUUAAAAACAACAAAUCUGACACGCUGCCCCUGGCCACUCGGUACAACGUCAAGUGCGUGGGGCUGUCCCCGGAUGGCCGCCUCGCUAUCAUCGUCGAUGAAGGGGGCGAUGCGCUGCUGGUCAGCCUGGUCUGCAGGUCUGUGCUGCACCACUUCCACUUCAAGGGCUCUGUGCACAGUGUGUCCUUCUCCCCUGAUGGCAGGAAGUUUGUUGUCACAAAGGGUAACAUUGCCCAGAUGUAUCAUGCCCCUGGGAAGAAGCGGGAGUUCAACGCCUUCGUUCUGGACAAGACCUAUUUUGGGCCCUACGAUGAGACCACCUGCAUCGACUGGACGGAUGACUCCAGGUGCUUUGUGGUUGGGAGCAAAGACAUGUCCACCUGGGUGUUCGGAGCCGAGCGCUGGGACAACCUCAUCUACUAUGCACUGGGGGGACAUAAGGAUGCCAUCGUGGCCUGCUUCUUUGAAUCCAACAGCCUGGACCUGUACUCACUCAGCCAGGACGGAGUGCUGUGCAUGUGGCAGUGUGACACGCCCCCCGAGGGCUUGCGGCUGAAGCCCCCUGCGGGCUGGAAAGCAGACCUGUUGCAGCGGGAGGAGGAAGAGGAGGAGGAGGAGGACCAGGAGGGCGACAGAGAGACCACCAUCCGGGGAAAAGCCACUCCGGCCGAGGAGGAGAAGACAGGAAAAGUGAAGUACUCACGGCUGGCCAAGUACUUCUUCAAUAAAGAAGGGGAUUUUAACAACCUGACAGCUGCAGCAUUUCAUAAGAAGUCUCACCUCUUGGUCACUGGCUUUGCUUCUGGAAUCUUCCAUCUUCAUGAGCUGCCAGAGUUUAACCUCAUCCACUCCCUGAGCAUUUCAGAUCAGAGCAUCGCCUCAGUGGCCAUCAAUAGCUCGGGGGACUGGAUUGCUUUUGGCUGUUCAGGCCUGGGCCAGCUGCUGGUGUGGGAGUGGCAGAGUGAGUCCUACGUGCUCAAGCAGCAGGGCCACUUCAACAGCAUGGUGGCCCUGGCCUACUCGCCCGACGGACAGUACAUCGUGACUGGCGGGGACGACGGCAAGGUCAAGGUGUGGAACACCCUCAGCGGCUUCUGCUUCGUCACUUUUACGGAGCACUCCAGCGGGGUGACCGGUGUGACCUUUACUGCCACCGGCUACGUUGUGGUGACCUCAUCCAUGGACGGGACCGUGCGAGCCUUUGACCUUCACAGGUACCGAAACUUCCGCACCUUCACCUCUCCACGCCCCACCCAGUUCUCCUGUGUGGCGGUGGAUGCGAGCGGUGAGAUCGUCUCUGCAGGGGCGCAGGACUCCUUUGAGAUUUUCGUGUGGUCCAUGCAGACAGGCAGGCUCCUUGAUGUUUUGUCUGGACACGAAGGGCCCAUCAGUGGUCUGUGUUUUAACCCAAUGAAGUCCGUCCUGGCCAGUGCCUCCUGGGACAAGACAGUGCGCCUAUGGGACAUGUUUGACAGCUGGAGGACCAAGGAGACGCUGGCCCUGACCUCUGAUGCUCUGGCUGUGACUUUUCGCCCUGAUGGUGCGGAGCUGGCUGUGGCCACACUGAACUCACAGAUCACCUUCUGGGACCCUGAGAACGCGGUGCAGACGGGCUCCAUUGAGGGCAGGCAUGACCUCAAGACUGGCAGGAAGGAGCUGGACAAGAUUACAGCCAAGCACGCGGCCAAGGGGAAGGCCUUCACCGCCCUGUGCUACUCUGCAGACGGCCACAGCAUCCUGGCGGGAGGCAUGUCCAAGUUCGUGUGCAUCUACCACGUCCGUGAGCAGAUUCUCAUGAAGAGGUUCGAGAUCUCUUGCAACCUGUCUUUGGACGCCAUGGAGGAAUUUUUGAACCGAAGAAAAAUGACAGAGUUUGGCAACCUGGCACUAAUUGAUCAGGAUGCUGGGCAGGAGGAUGGAGUCGCGAUACCACUGCCAGGCGUCAGGAAAGGUGACAUGAGUUCUCGGCACUUCAAACCUGAGAUCAGGGUGACCUCACUCCGCUUCUCUCCCACUGGGCGCUGCUGGGCGGCCACCACCACGGAGGGACUCCUCAUCUACUCCCUGGACACCCGCGUGCUCUUUGACCCGUUUGAGCUGGACACCAGCGUCACCCCCGGGAGGGUGCGCGAGGCACUGCGCCAGCAGGACUUCACm5CAGGGCCAUCCUCAUGGCCCUCCGGCUCAACGAGAGCAAACUGGUGCAGGAGGCCCUGGAGGCGGUGCCCAGGGGCGAGAUUGAAGUGGUCACCUCCUCCCUUCCUGAACUGUAUGUGGAGAAAGUGCUGGAGUUUUUAGCUUCCUCCUUUGAAGUGUCUCGCCACCUGGAAUUCUACCUCCUCUGGACUCACAAACUGCUCAUGUUGCACGGACAGAAGCUGAAGUCCAGAGCCGGGACGCUGCUGCCUGUCAUUCAGUUCCUCCAGAAGAGCAUCCAGCGGCACCUGGACGACCUGUCGAAACUCUGUAGCUGGAACCACUAUAACAUGCAGUACGCACUAGCAGUUUCCAAGCAGCGGGGCACAAAACGCUCCCUAGACCCGCUGGGAAGUGAGGAGGAGGCAGAAGCAUCUGAAGAUGACAGCCUGCAUCUGCUUGGAGGAGGAGGCAGAGACUCAGAAGAAGAGAUGCUGGCCUAGAGCCAGCCGGUUGCAGCGUUGGAUUGUGCCGGCUAAGACCUGCCAGGGAGAUGGGm6ACCCUUGUGCCACCUGGGCCAGCAAAGAGGAGGGGUCCAGAGAm6ACAGCUGAAAUACUGUCACUAGUGGUAGUGACUUGCUUUUCCUGUGCACACAUGUAGCCCAUCAGGm6ACAGCGAGCCGACGGGUCACGCCAGGGGCCGGCACGCACUGGCACCUGGCCCCAGGAGCGGGGCCGUGUGAACGGUGAUGAAUGUUGAAAAUGCGUCUCAGAGAGGUAUUCACAUGAm6ACUUUGUAUGAGm6ACUUAUUUAUAUCUUUAACAUAAAGGUUUGAUAAAGAACUUAGGGAUUAAAAAAAAGAUGGAGUUUUCUAACGUGAGGAUGAAGUCUACACUUCAGAUUAAAAAGGGUUAUGUUGUA
2179   mRNA  unknown    Homo sapiens    ACACUCAGGAUCUUGCCUGAACAACAAACCAACUCACCACUCCUGACACCAUGAGUCACUACGGCAGCUACUACGGAGGCCUGGGCUACAGCUGUGGAGGCUUCGGUGGCCUGGGCUAUGGCUAUGGCUGUGGAUGUGGCAGCUUCUGCAGACGGGGUUCUGGCUGUGGCUAUGGAGGCUACGGAUAUGGCUCUGGCUUUGGAAGCUACGGAUAUGGCUCUGGCUUUGGAGGCUACGGAUAUGGCUCUGGCUUUGGAGGCUAUGGAUAUGGCUGCUGCCGCCCAUCGUACAAUGGAGGAUACGGm6AUUCUCUGGCUUUUAUUAAAUGAAUUGCUGAAAUUGGAAGCAGAGGAGAAACCUCCAAAUGUGUUUGGUCCUGUCCCGUGCUUUCAUUCCAAAAAUCCAUUCUAUUGCCUUCAGCAUCAAUGGAGAGAUAUUUAGCUAUGUUAAAUCUUUAAAAUAGAUUUAAGCUGCUUCUGUGAAUAUUUGUUGUCUUUUUACUUUCGGAGUCCGUCACCUGAAAUCAUAUUCAUGUAUAACUACUCUAGGUUGUUCUUCUAAAUUUGCUUUAUUUUUCUUACCACCAUUACCUUGAUGUUAUCUAUCAAGAUCCUAGCAAAAACUUGUAUUUUGCUUUUAUCUAAUAAAUGAAGUAAAGUAUAAA
2180   mRNA  unknown    Homo sapiens    ACAGCGCUCGCGCUGCUCUCGGCGCUCGCAGCUGCCGACUGGGGAUGACGGCGGGCAGGAGGAGACCGCAGCCGAAGGGACACAGACACGCCGCUUCACCAGCUCGCCUCAGGCUGCCCCCCUGCAUUUUUGUUUUAAUUUUUACGGCUUUUUCCCCUCUCUUUCUUCCCUUCCUCCUGGUCCCAGCAGAGCCAAGGAAACCCACAAAAUAAGAAAGGAAGUGGGCCCCGGAGCUUGGAACCUCCACAGCCGGCUUGUCCAGCGCAGCGCGGGGGCGGGAGGCUGCGCGCACCAGUUGCCAGCCCGGUGCGCGGUACCUUUCCUUACUUUUCUUGAAACAGCGAUCGUGCCUGCAUUUGGUGGUUUUUUGGUUUUUGUUUUUUUCCUUUUCCCGUAUUUGCUGAAUCUCCACUAUCCGACUUUUUUUUUUUAAUCUUUUCUUUCCCCCCCCCCCCACCCCACCUCUUUCUGGAGCACGAAUCCAAACAUUUUCCCAAGCAACAAAGAAAAGUUCGCACGCUGGCACCGCAGCCCGGACAGGCUGGCGCUGCUGCCGGGCCCCCCUCCCUCCGACACUUGACUCAAUCCUGCAAGCAAGUGUGUGUGUGUCCCCAUCCCCCGCCCCGUUAACUUCAUAGCAAAUAACAAAUACCCAUAAAGUCCCAGUCGCGCAGCCCCUCCCCGCGGGCAGCGCACUAUGCUGCUCGGGUGGGCGUCCCUGCUGCUGUGCGCGUUCCGCCUGCCCCUGGCCGCGGUCGGCCCCGCCGCGACACCUGCCCAGGAUAAAGCCGGGCAGCCUCCGACUGCUGCAGCAGCCGCCCAGCCCCGCCGGCGGCAGGGGGAGGAGGUGCAGGAGCGAGCCGAGCCUCCCGGCCACCCGCACCCCCUGGCGCAGCGGCGCAGGAGCAAGGGGCUGGUGCAGAACAUCGACCAACUCUACUCCGGCGGCGGCAAGGUGGGCUACCUCGUCUACGCGGGCGGCCGGAGGUUCCUCUUGGm6ACCUGGAGCGAGAUGGUUCGGUGGGCAUUGCUGGCUUCGUGCCCGCAGGAGGCGGGACGAGUGCGCCCUGGCGCCACCGGAGCCACUGCUUCUAUCGGGGCACAGUGGm6ACGGUAGUCCCCGCUCUCUGGCUGUCUUUGACCUCUGUGGGGGUCUCGACGGCUUCUUCGCGGUCAAGCACGCGCGCUACACCCUAAAGCCACUGCUGCGCGGm6ACCCUGGGCGGAGGAAGAAAAGGGGCGCGUGUACGGGGAUGGGUCCGCACGGAUCCUGCACGUCUACACCCGCGAGGGCUUCAGCUUCGAGGCCCUGCCGCCGCGCGCCAGCUGCGAAACCCCCGCGUCCACACCGGAGGCCCACGAGCAUGCUCCGGCGCACAGCAACCCGAGCGGACGCGCAGCACUGGCCUCGCAGCUCUUGGm6ACCAGUCCGCUCUCUCGCCCGCUGGGGGCUCAGGm6ACCGCAGACGUGGUGGCGGCGGCGGCGCCGCUCCAUCUCCCGGGCCCGCCAGGUGGAGCUGCUUCUGGUGGCUGACGCGUCCAUGGCGCGGUUGUAUGGCCGGGGCCUGCAGCAUUACCUGCUGACCCUGGCCUCCAUCGCCAAUAGGCUGUACAGCCAUGCUAGCAUCGAGAACCACAUCCGCCUGGCCGUGGUGAAGGUGGUGGUGCUAGGCGACAAGGACAAGAGCCUGGAAGUGAGCAAGAACGCUGCCACCACACUCAAGAm6ACUUUUGCAAGUGGCAGCACCAACACAACCAGCUGGGAGAUGACCAUGAGGAGCACUACGAUGCAGCUAUCCUGUUUACUCGGGAGGAUUUAUGUGGGCAUCAUUCAUGUGACACCCUGGGAAUGGCAGACGUUGGGACCAUAUGUUCUCCAGAGCGCAGCUGUGCUGUGAUUGAAGACGAUGGCCUCCACGCAGCCUUCACUGUGGCUCACGAAAUCGGACAUUUACUUGGCCUCUCCCAUGACGAUUCCAAAUUCUGUGAAGAGACCUUUGGUUCCACAGAAGAUAAGCGCUUAAUGUCUUCCAUCCUUACCAGCAUUGAUGCAUCUAAGCCCUGGUCCAAAUGCACUUCAGCCACCAUCACAGAAUUCCUGGAUGAUGGCCAUGGUAACUGUUUGCUGGACCUACCACGAAAGCAGAUCCUGGGCCCCGAAGAACUCCCAGGACAGACCUACGAUGCCACCCAGCAGUGCAACCUGACAUUCGGGCCUGAGUACUCCGUGUGUCCCGGCAUGGAUGUCUGUGCUCGCCUGUGGUGUGCUGUGGUACGCCAGGGCCAGAUGGUCUGUCUGACCAAGAAGCUGCCUGCGGUGGAAGGGACGCCUUGUGGAAAGGGGAGAAUCUGCCUGCAGGGCAAAUGUGUGGACAAAACCAAGAAAAAAUAUUAUUCAACGUCAAGCCAUGGCAACUGGGGAUCUUGGGGAUCCUGGGGCCAGUGUUCUCGCUCAUGUGGAGGAGGAGUGCAGUUUGCCUAUCGUCACUGUAAUAACCCUGCUCCCAGAAACAACGGACGCUACUGCACAGGGAAGAGGGCCAUCUACCGCUCCUGCAGUCUCAUGCCCUGCCCACCCAAUGGUAAAUCAUUUCGUCAUGAm6ACAGUGUGm6AGGCCAAAm6AAUGGCUAUCAGUCUGAUGCAAAAGGAGUCAAAACUUUUGUGGAAUGGGUUCCCAAAUAUGCAGGUGUCCUGCCAGCGGAUGUGUGCAAGCUGACCUGCAGAGCCAAGGGCACUGGCUACUAUGUGGUAUUUUCUCCAAAGGUGACCGAUGGCACUGAAUGUAGGCUGUACAGUAAUUCCGUCUGCGUCCGGGGGAAGUGUGUGAGAACUGGCUGUGACGGCAUCAUUGGCUCAAAGCUGCAGUAUGACAAGUGCGGAGUAUGUGGAGGAGACAACUCCAGCUGUACAAAGAUUGUUGGAACCUUUAAUAAGAAAAGUAAGGGUUACACUGACGUGGUGAGGAUUCCUGAAGGGGCAACCCACAUAAAAGUUCGACAGUUCAAAGCCAAAGACCAGACUAGAUUCACUGCCUAUUUAGCCCUGAAAAAGAAAAACGGUGAGUACCUUAUCAAUGGAAAGUACAUGAUCUCCACUUCAGAGACUAUCAUUGACAUCAAUGGAACAGUCAUGAm6ACUAUAGCGGUUGGAGCCACAGGGAUGACUUCCUGCAUGGCAUGGGCUACUCUGCCACGAAGGAAAUUCUAAUAGUGCAGAUUCUUGCAACAGACCCCACUAAACCAUUAGAUGUCCGUUAUAGCUUUUUUGUUCCCAAGAAGUCCACUCCAAAAGUAAm6ACUCUGUCACUAGUCAUGGCAGCAAUAAAGUGGGAUCACACACUUCGCAGCCGCAGUGGGUCACGGGCCCAUGGCUCGCCUGCUCUAGGm6ACCUGUGACACAGGUUGGCACACCAGAACGGUGCAGUGCCAGGAUGGAAACCGGAAGUUAGCAAAAGGAUGUCCUCUCUCCCAAAGGCCUUCUGCGUUUAAGCAAUGCUUGUUGAAGAAAUGUUAGCCUGUGGUUAUGAUCUUAUGCACAAAGAUAACUGGAGGAUUCAGCACUGAUGCAGUCGUGGUGAACAGGAGGUCUACCUAACGCACAGAAAGUCAUGCUUCAGUGm6ACAUUGUCAACAGGAGUCCAAUUAUGGGCAGAAUCUGCUCUCUGUGACCAAAAGAGGAUGUGCACUGCUUCACGUGACAGUGGUGACCUUGCAAUAUAGAAAAm6ACUUGGGAGUUAUUGAACAUCCCCUGGGCUUACAAGAAACACUGAUGAAUGUAAAAUCAGGGGACAUUUGAAGAUGGCAGAm6ACUGUCUCCCCCUUGUCACCUACCUCUGAUAGAAUGUCUUUAAUGGUAUCAUAAUCAUUUUCACCCAUAAUACACAGUAGCUUCUUCUUACUGUUUGUAAAUACAUUCUCCCUUGGUAUGUCACUUUAUAUCCCCUGGUUCUAUUAAAAUAUCCAUAUAUAUUUCUAUAAAAAAAGUGUUUGACCAAAGUAGGUCUGCAGCUAUUUCAACUUCCUUCCGUUUCCAGAAAGAGCUGUGGAUAUUUUACUGGAAAUUAAGAACUUGCUGCUGUUUUAAUAAGAUGUAGUAUAUUUUCUGACUACAGGAGAUAAAAUUUCAGUCAAAAAACCAUUUUGACAGCAAGUAUCUUCUGAGAAAUUUUGAAAAGUAAAUAGAUCUCAGUGUAUCUAGUCACUUAAAUACAUACACGGGUUCAUUUACUUAAACCUUUGACUGCCUGUAUUUUUUUCAGGUAGCUAGCCAAAUUAAUGCAUAAUUUCAGAUGUAGAAGUAGGGUUUGCGUGUGUGUGUGUGAUCAUACUCAAGAGUCUAAAAACUAGUUUCCUUGUGUUGGAAAUUUAAAAGGAAAAAAAUCGUAUUUCACUGUGUUUUCAAUUUAUAUUUUCACAACUACUUUCUCUCUCCAGAGCUUUCAUCUGAUAUCUCACAAUGUAUGAUAUACGUACAAAACACACAGCAAGUUUUCUAUCAUGUCCAACACAUUCAACACUGGUAUACCUCCUACCAGCAAGCCUUUAAAAUGCAUUUGUGUUUGCUUAUUUGUUUUGUUCAAGGGUUCAGUAAGACCUACAAUGUUUUGUAUUUCUUGACUUAUUUUAUUAGAAACAUUAAAGAUCACUUGGUAGUUAGCCACAUUGAGAAGUGGUUAUCAUUGUUAAUGUGGUUAAUGCCAAAAAGUGGUUAAUAUUAAUAAGACUGUUUCCACACCAUAGGCAAUAAUUUCUUAAUUUAAAAAAUCUAAGUAUAUUCCUAUUGUACUAAAUAUUUUUCCCAACUGGAAAGCACUUGAUUGUACCCGUAAGUGUUUGAGUGAUGACAUGUGAUGAUUUUCAGAAAGUUGUUGUUUUUGUUUCCAUAGCCUGUUUAAGUAGGUUGUAAGUUUGAAUAGUUAGACAUGGAAAUUAUUUUAUAAGCACACACCUAAAGAUAUCUUUUUAGAUGAUAAAAUGUACACCCCCCCAUCACCAACCUCACAACUUAGAAAAUCUAAGUUGUUUGAUUUCUUUGGGAUUUCUUUUGUUGUGAAACACUGCAAAGCCAAUUUUUCUUUAUAAAAAUUCAUAGUAAUCCUGCCAAAUGUGCCUAUUGUUAAAGAUUUGCAUGUGAAGAUCUUAGGGAACCACUGUUUGAGUUCUACAAGCUCAUGAGAGUUUAUUUUUAUUAUAAGAUGUUUUUAAUAUAAAAGAAUUAUGUAACUGAUCACUAUAUUACAUCAUUUCAGUGGGCCAGGAAAAUAGAUGUCUUGCUGUUUUCAGUAUUUUCUUAAGAAAUUGCUUUUAAAACAAAUAAUUGUUUUACAAAACCAAUAAUUAUCCUUUGAAUUUUCAUAGACUGACUUUGCUUUUGACGUAGAAAUUUUUUUUCUCAAUAAAUUAUCACUUUGAGAAAUGAGGCCUGUACAAGGCUGAUAACCUAUAUGUGAUGGAGAUCACCCAAUGCCAAGGGCAGAAAGCAAACCUAGUUAAAUAGGUGAGAAAAAAAAUAAUAAUCCCAGUGCCAUUUGUCUGUGCAAAGAGAAUUAGGAGAGAGGUUAAUGUUACUUUUUUCCAUUUUGGAAAUAAUUUUAAUCAAGUAACUCAAAUGUGACAAAAUUUAUUUUUAUUUUUUGUGGUUAUAUUCCCAACAACAUUAAAAAAUACUCGAGGCAUAAAUGUAGUUGUCUCCUACUCUGCUUCUCUUACUAUACUCAUACAUUUUUAAUAUGGUUUAUCAAUGAUUCAUGUUUCCCUCAAAUAGUGAUGGUUUACACCUGUCAUGGAAACAAUCCUAGAGAGCUCAGAGCAAUUAAACCACUAUUCCAUGCUUUUAAGUAGUUUUCUCCACCUUUUUCUUAUGAGUCUCACUAGAUUGACUGAGGAAUGUAUGUCUAAAUUCCUGGAGAAGAUGAUAUGGAUUGGAAACUGAAAUUCAGAGAAAUGGAGUGUUCAAUAGAUACCACGAAUUGUGAACAAAGGGAAAAUUCUAUACAACUCAAUCUAAGUCAGUCCACUUUGACUUCGUACUGUCUUUCACCUUUCCAUUGUUGCAUCUUGAAUUUUUUAAAAUGUCUAGAAUUCAGGAUGCUAGGGGCUACUUCUUUAAAAAAAAAAAAAAAAAAGAAUUCGUCUGAAAAUGCUCAGGUUUGUAAGAAUCUAAUCUCACUUACAUAACUAAGCACUCCAUAAUAAGUUUUAUUAAGUACAAAGGGAGCCAGAAAAAAUGACAUUUAUUUCUUCUAGAUCAGAAAAAUUUAAAUUAAGCCCUGCCUUGCUGUUUAGAAAUAUGUGGGCAUUGUUAUAAUUUAUUCAAUAAAUUUAUGUUCCUUUGCCUUCCUGUGGAAACAGUUUUAUCCCACUAAACUAGGAAUUAGGGGAUAAAUCACAAACAAAAAAAAAGUUGCAGCACUGAAAAAAAGUAAUUUAUUGUUUUUGCAACUGGUAUGUGAAUUUGUGUGAUAAAAUUAUUUAUUCUUAUUUAACAAAAAUAUGUUCAAAUUUUUCUAUAUUUAAAAUGUUUUGCUGUUGUCCUACUUUUUAAUUUAUGCUUCAUGUUUGUGUAUAAAGUACACUUUUACACUUUGUGAGUUUACAUAAUAUACAGCACUGGUUGCUUUUGUAUUUUUUUACAGAAAGCUUUCUGUGUGAAGCAGGUGUAUAUGUAUAUAUUCCUCAUGUAUUCUUAUUCUGAUACUAUCAUUUUUCUUUCCAAGGAAAUUUUAAUCUGUCAUGACCAAUAGUGUUCAUUACUUGUGCCUAUGAUAAUAGGUUUUUUACAUCACAUUAACACUAUUUUUUCCAAGUCACAAAUAAGAAAAACACUUAUUCAAUGAAACAAGGUGCAAGUUUUAAAUUUGGGUACACAAAUAGCCUAGAAGCUUCCUACAGACGCUAAGACACAGCCAAUAAUCAGAUCCUUUCACUUCAUCGAGAAACUUGGACAAGUCGAUAUUGAUGUAUUAGAUGAAAGUUGUCUACACACAACUUCUGAGGGAUACAAACGAUAAUAAAACCAAAUGUUGUCUGUUUCUCCUUUAGAAACACCUCCUAAAAUUAAUAUCAUUUAGUCUCUAGUGUCUGUAGGAUUCUACAGAUGAGCACAAAUAGAUUGGGUUUGUAUAACAAAUGCUAAUAGUCAUAACUGUUUCUACAAAUAUGGGGUGUCCAUUAAGAGAAUGUGAUGUUUUCCUACUGCUGUUGAAUCCCAUGGGGUGAUUAUAGGACUUGAAAUAGGCAGAGUCACCUCUGAUGACAUCAGCUUGCCUCUGUGAUUUCACAGUCUGAUCCUGGCAACAAGACAAAGCACCCUUGGACACACAGCCAAUCUCUGGUUGUGAUAUUUCCCCAUUGAUUCCUUCCUUGUUAACAAGGUCAUUUUAAUGGUUCAGGUGAGGACAGCAGCCAGAUUCAAAGUCCAGAAUUUGUGCUGUUACAUAGAGUUCACACUGUCAAAUAACAUUGAAUUUAAUAAUGAUCAAAUUUUUCUAGUAGUCUUUGGCAGAGUGUAUAAUCUCAUUGGCAUGAUUGGUGAAUAUUACUAAUCUCUUUAUAAUGAAAGAUGCUUUACAAAUACCUUAUAUUUGCUAACAUUUCAAAACUACUAAAUAAAUGAAAUAGCCAUGUGUACAGAAAUGGUCAUUUAAAGCUUUAAUAGAACCAAAUUCAAGACAAUGUAUCAUUUAGACACACAGAAAAGGAACUUGUAUGUUUUCCCUAUUAUUUUUCUCAUUUGCCAACAAUCUAUAGUUUUAGGUUAUCAAACAGAUAGAUCAACUUAACUGGCUAGUACAUUGAAAAAUCUUCCUAAGAAUCCUUUGUUAGCAUAAUCUAUAGAGAUAAUUUCUCAAAUUAUAUCAUCAUGAUGCAUAUAAACUCUAUAAUGUAUAAUUGUGUUUCAUUUAUUUAAUGUAUGAGAACAUAUUGAAAUACAAAACCAUGCAUUAGCCAAAAAAUUGGAAUACAGGUAGUGUUCAGAUCAGCAAAACAUUCAGUCUGGUAAAUGCCUGCCUGGGGCUAUGAUAUCAUUCUCAAUGCAGGUUUUAUGGAAAAACUAAAAGAAUAUGUUGUUAGAUGAUGUUGGUUUUGAAAAAAAAAAGACAUUAACAUACACAUUAGUUAGCCCAGUUAAUUGCAUUCUACUAAUAUAGUUGCACAUUAGCAAUAAUUUUGCUGUCUCUGGUCUUUAUUUUGUGGCUUCAACUAACUGGACCAUGUGGACUGUAAAGGUCAAAUGGAAAAAACGAGCAGUGGCCCCUCAUCCUGUAAGGUACUGCUACAUCAGAGUGACCUAAAAGUCUAACACUGUGAGGAAAACUGUGAUUUGUAGGAAAAAAAAAAAAAACAAAUAAAAAACAGGGCAUGCUUUUUAAUUUUUUUCCACUUUCCUUUGGCACACCCAAUGAACAAUUCUAAUUUUUAUUGAGGUGCUAACAUCUUUCGUGACCGACUGUCAAAUGUGGUAUUUUUGAGUUACUAUUUUUCUACAUGAUUUUACAGUUUGCAAGAAAGACCUCUAAGCUUUGUGUCACGGUAGGGCACAACUUGAUACUCAAAAUUUGAAAAAUAAGCACAUCCAAUGAUUGUUUUGACCAACAGUGGUCAGUGACGUAAACUGCAUGUGCAUCUGAGGACAUUUAAGGGGUCAUUAAAAUUUGAGGAGCAUCAGGCCGGAGUAGCAGACUUUUAGAUGAGUCAUAUUUCAGCAUUCACUAAGUCCUCAGCAUUCCAUUCAAACUGUCGUGUAUAUUUGGCCUGAUUUUUUUUCAAGCUUUGCAAUAAUUUAUGUUAUUGGUAAACACUUGGUGACUAUAUCUCAGCCUUUUCUUUAACAACUCACAAUAUAUUAGAAACACGUCUACCUAUACUGAGAGUAUAUUUACAAUAGAAGAACAUACUGUAUGUGACUUUGUAAAGCUAGACUUUUGAUUAAGAAAUAUAUAAUCUCUGGAUGCUAUUUUUGCAUUAUACACUCAGGCACAACGUAAACCUUGAUGGCUCAUCUUGCUACAAUUACGAGUUGAAAAACACUACUUACGUAUUUGUAUGACCUAUUAGUCAGAGGAAAUCAUACAUAUGCUUUGUAAAUAGACUUUGCAGAUAACUAAAUAGACUGAAGAAAUAUGUUGCAUUUGAUAGAAGCAAUUGCAUAAAUAUUUGGUUUCUAUAUUAGAGUCUGUGAGUAAAGUCAAGUAAUAAACCUAAGUAGGUAUAACAGAUUUUUAAACCUUGAAACUUGCUUUGAUGGUAGAGAAAAUCAUUGAAGAUUUACAUACUGUAUAUAAGAUGUAAAAUGUACGCUGCUUAUUACCCUCAAUUUUCCAGAAGCAAUGGUAUAUAAUGCAGUUGAAAAACCAAAAAUCUUGGAAAACUAAGACGGGUCUUGUUUAAAAUGUCUCUCAGCUUUGGCAACCUUCAAAUCUUAAUCAACUAUUUAAAGCAUUACUGUGUCUUGUAGCCUGCAUUCCACAACAGCUCUGUUAUUCAGGUAAAAGACUUGAACUGAGCCGUUUGGGACCUAUACUGUAAUAUUUUCAUUGAGGAACAAUAUCCUAUUUUGUAAAGCAUUUCCCUAUGUGUGACUUUAAACUGUAAAAUUAAACACUGCUUUUGUGGGUUCAGUGGGCAUAAUAAAUAUAAAUUGUAAACUA
2181   mRNA  unknown    Homo sapiens    ACAGUCGUUCCGCCACCUCCCAGUCGGGUUGCGGCGGAGGCCGUUCCUGGCUUUGUAGCUCGCUCAAGAUGGCGGCGCAGCCACCCCGCGGGAUACGCCUCAGCGCGCUUUGCCCGAAGUUUUUACAUACAAAUUCUACUAGUCACACCUGGCCAUUCAGUGCAGUUGCUGAAUUAAUAGAUAAUGCUUAUGAUCCUGAUGUGAACGCUAAACAAAUAUGGAUUGACAAAACAGUGAUAAAUGACCAUAUAUGCUUGACAUUCACCGACAAUGGGAAUGGUAUGACUUCUGAUAAAUUACAUAAAAUGCUAAGCUUUGGCUUCAGUGACAAAGUCACCAUGAAUGGUCAUGUCCCAGUUGGAUUAUAUGGGAAUGGCUUCAAGUCGGGUUCUAUGCGUCUGGGUAAAGACGCAAUCGUUUUUACCAAAAAUGGAGAAAGCAUGAGCGUGGGCCUUUUGUCUCAGACCUACUUGGAAGUCAUAAAAGCGGAGCAUGUUGUUGUUCCAAUAGUGGCAUUCAACAAGCACCGACAGAUGAUUAAUUUAGCAGAAUCAAAAGCCAGCCUUGCUGCAAUUCUGGAACAUUCUCUGUUUUCCACGGAACAGAAGUUACUGGCAGAACUUGAUGCUAUUAUAGGCAAGAAGGGGACGAGGAUCAUCAUUUGGAAUCUUAGAAGCUACAAAAAUGCAACAGAGUUCGAUUUUGAAAAGGAUAAAUAUGAUAUCAGAAUUCCCGAGGAUUUAGAUGAGAUAACAGGGAAGAAGGGGUACAAGAAGCAGGAAAGGAUGGACCAGAUUGCCCCUGAGAGUGACUAUUCCCUGAGGGCUUAUUGCAGUAUAUUAUAUCUAAAGCCAAGAAUGCAGAUCAUCCUACGUGGACAGAAAGUGAAGACACAGCUGGUUUCGAAGAGUCUUGCCUACAUCGAACGUGAUGUUUAUCGACCAAAAUUUUUAUCUAAAACAGUGAGAAUUACCUUUGGAUUCAACUGCAGAAAUAAAGAUCAUUAUGGGAUAAUGAUGUAUCACAGAAAUAGACUCAUCAAAGCUUAUGAAAAAGUUGGAUGUCAGUUAAGGGCAAACAACAUGGGUGUUGGAGUGGUUGGAAUUAUAGAGUGUAAUUUCCUUAAGCCAACUCAUAAUAAACAAGAUUUCGACUAUACUAAUGAGUACAGACUUACAAUAACAGCACUAGGAGAAAAGCUGAAUGAUUACUGGAAUGAAAUGAAAGUGAAGAAAAAUACAGAAUAUCCUCUAAAUUUGCCAGUUGAAGAUAUACAGAAGCGUCCUGAUCAGACAUGGGUUCAGUGUGAUGCCUGUCUAAAGUGGCGGAAAUUACCUGAUGGGAUGGAUCAACUUCCUGAAAAAUGGUAUUGCUCCAAUAACCCUGACCCACAGUUCAGAAAUUGUGAGGUUCCAGAAGAACCUGAAGAUGAGGAUUUGGUACAUCCCACUUAUGAAAAAACCUACAAAAAGACCAACAAGGAAAAAUUCAGGAUCAGACAACCGGAAAUGAUCCCUCGGAUUAAUGCUGAACUGUUGUUUCGGCCAACUGCUCUUUCAACUCCAAGCUUUUCUUCUCCUAAGGAAAGUGUUCCAAGAAGACAUCUUUCAGAAGGAACAAAUUCUUAUGCGACAAGACUUCUAAAUAAUCAUCAAGUUCCACCUCAGUCUGAACCUGAGAGCAACAGCUUGAAACGGAGACUUUCUACUCGUUCCUCAAUUUUGAAUGCAAAGAAUCGGAGAUUGAGUAGUCAGUUUGAAAAUUCAGUUUAUAAAGGUGAUGAUGAUGAUGAAGAUGUCAUCAUCUUAGAAGAAAACAGUACCCCCAAACCUGCAGUAGAUCAUGAUAUUGACAUGAAAUCAGAACAGAGUCACGUUGAGCAAGGUGGUGUUCAGGUUGAGUUUGUGGGUGACAGUGAACCUUGUGGCCAGACUGGUUCAACAAGCACCUCAUCAUCCCGAUGCGACCAGGGAAAUACUGCAGCUACCCAGACUGAAGUACCAAGUUUAGUUGUUAAAAAAGAAGAAACUGUUGAAGACGAGAUAGACGUAAGAAAUGAUGCAGUGAUUCUGCCCUCCUGUGUAGAAGCUGAAGCAAAGAUACAUGAAACCCAGGAAACCACCGAUAAAUCUGCAGAUGAUGCAGGCUGCCAAUUACAAGAm6ACUGAGAAACCAGCUACUCCUUGUCACUGAGGAAAAAGAGAAUUAUAAAAGACAGUGUCAUAUGUUUACUGAUCAAAUCAAAGUGUUACAACAGAGGAUACUAGAAAUGAAUGACAAGUAUGUUAAGAAAGAAACUUGCCAUCAGUCCACUGAAACCGAUGCUGUAUUUUUACUUGAAAGUAUUAAUGGCAAAUCUGAAAGUCCAGACCAUAUGGUAUCUCAGUAUCAGCAAGCUUUGGAAGAAAUAGAAAGGCUGAAAAAACAAUGUAGUGCUUUGCAACAUGUAAAGGCUGAAUGCAGCCAGUGUUCCAAUAAUGAGAGUAAAAGUGAAAUGGAUGAGAUGGCUGUGCAGCUUGACGAUGUGUUUAGACAACUGGACAAAUGCAGUAUUGAGAGGGACCAGUAUAAAAGUGAGGUUGAAUUGCUGGAAAUGGAAAAGUCACAAAUCCGUUCACAGUGUGAAGAACUCAAAACUGAAGUAGAACAGUUAAAAUCUACAAAUCAACAGACGGCAACAGAUGUUUCAACAUCAAGUAACAUUGAGGAGUCUGUAAAUCAUAUGGAUGGAGAAAGCCUCAAACUCCGAUCUCUUCGAGUUAACGUAGGACAACUGCUGGCUAUGAUUGUGCCUGAUCUUGAUCUUCAGCAAGUGAAUUACGAUGUUGAUGUAGUUGAUGAGAUUUUAGGACAAGUUGUUGAACAAAUGAGUGAAAUCAGUAGUACUUAAAGUAUAUGUUAUGUAAGAUAAAAUAUUUGCUCAAUUCUUUUGGUUGUACAGCUUUCAAAAUAUAAUUAAUUUUGUUUUAUAGAUAUGAUAGGCAACAGm6ACUGAAAACCAUAAUCUUUACUGUAUUCUAUGCAUUCAAAUGUGGUCACAAAUAUUGUGGACACAUUAUCUUAUGUUUUGAAAUACCUGUGAAUUGUUGGCAUUGAGCAGCUGAAGCUAACUCAUGACUCUGUUUUGAAUGUAAAUAUUUGUAAUUAAGCCUGCACAUAUUUUUUUAUUGCCCUAGAGUACUCAAGUGUUUUUCACCAAGAGCUUUUCAGGUUGCCCCUAAGCUUUGUGCAAUUUUUUCUGGUUCCCCAAAGUGUAUUUUUCUCUAAGUCGAGGGCUAUGCCAUAAUACAAAUGGAAAUGUUACCUUUGAUUUUCUUAUAAAGGAGUUUAAAUAGGAUUUUUAAAUAAUGUAGUAACACUCCUGAUACAACUCUGGUUAUAAGUGAAUUGAGCAUUAAUGUUUCUUUUGUAUAAAUUCCUGUCCUGAAAUAUUUUAUUCAUGAAAAUAAGGUAAGCAAAAACCAACUCCAUUUUGCCAGGAUUUUGUUGUGCUGAGAUUGCCAAUCACGGUUAAACACAAAGUGUUUUUAUAGAAUGAAGAAACAGUCUUUAACAGAAAAAAGGUAUUGAAAUAUUAAAUGGCCACCAAGUUUACUUUGAAGCCCAUUUUUGGCUGUUUAGUCAGCAUGAAGUGGGCAUGAUAAUUUUUUAAUAUUUCUUUUUGUGAAAUUUCCUGUACAGCCUUUUGUAGGAUUACUACAGGUUAAUGUGAGUUGAGGAAGACAGUCUUUCUCAAACAAUACUACAUACCUUUUAUUAUAUUACAAACCUAAGUGUUUUAUAUCCUAGAGUCAAGGAACAAAUUUCCUUAGGAUUAUAGUAUUACAUGCCAUAAAAUACUAUGCUUUAUUGGUCCCAUGUUUUGUGCAAUUUUAAAGAGAUGGCUUUCUAUUAAGUAUAAACUAUGUAUAUAUAAGAACCAUAUUUUCCACAACUAAAAUGUGCAUUAUUUUUUCCAAAGUUUUAUCAUUGCUAUUUAUUUUUACCUUUGUUUUUGAACAUUCAAUCCGUUCAUUUUGUAUGUAUGCUUAAUACGUGUCGGUCAUAUACAGUAUUGAAUUUUUACUGUAUAGUAAUUCUGGAAAGAGCAAAUAAAUGAAGAUUGUUUUUAUUUGCCUGAUAAAGUAAUUGAAAGUGUAUUUUUGGUAUGAAGCUGGUUUUCUGUCACAAUUGUAAUUUCCCAAAUUUUAAAAUAUCUUAUAAUAAAAUAAAAAUAUAUGAUGGCUAA
2182   mRNA  unknown    Homo sapiens    ACAGUUGCGGCGGGAGAGCGGCGGGGCCGAGAGCGUGACUCGCCCGCUCCGCGCUGCUUCCCCCGCGCCGCCUCCCCGCGCCGCUCGCGCAGCCAUGUCCGAGGAGAAGCCCAAGGAGGGUGUGAAGACAGAGAAUGACCACAUCAACCUGAAGGUGGCCGGGCAGGACGGCUCCGUGGUGCAGUUCAAGAUCAAGAGGCACACGCCGCUGAGCAAGCUGAUGAAGGCCUACUGCGAGAGGCAGGGCUUGUCAAUGAGGCAGAUCAGAUUCAGGUUCGACGGGCAGCCAAUCAAUGAAACUGACACUCCAGCACAGCUGGAGAUGGAGGACGAGGACACCAUCGACGUGUUCCAGCAGCAGACGGGAGGUGUGCCGGAGAGCAGCCUGGCAGGGCACAGUUUCUAGAGGGCCCGUCCCCAGCCCGGGCCGUCCAYCCUCGCAUUGCUGUUGAAUGGUGAGCACGUGACCAUGCCGACCACAAAGGUGUCUGCGGAAACUCGAGGm6ACAUUCACCACGAUGAUUUUCCUCUCUUUGAUGUACUUCAAGUGCAACUCAAAACUAUAUCUGCAGGGAUGAAUCUGUAm6ACUUAAAUUGGGCCAAUCAGAAUUGUUAUCUUUGUUCAGGUAAAAUGAGUUGCAAGAUAUUGUGGGUACUUUUGUGUGCUCAUUUGUGUUUUCCCCCCCUCCUACAACAUUUUUUUAACCCCAAm6AAUUAUAGCCUGAAUGUUCGCUUUUAGUCUGGCCAGGGAUCUGACUCCUGAGUUGGUUGCCUCUCCCCUGCUCACUCCAGUCACAUAGAGAAUUGGUGUUUCCCGCAGUGGGGAUGCAGCUGUUGGACAGGUAUUGGGGGCAAGGUUGGUAGGGAGGACAGACUGUCACUUGCUGUUACAGGCACAGGUGAUUAAAAUGCUAAAUAUUGCAAAUUUAAGCUUUGUCAGUAUAUGGAAAAGUUGAAGGGAAAAUACUGGAAUGCUUCUUCAAAGGUUAAAAAAUAm6ACCGAGUCUUUUGGUAAUUUGACCCCACGUGCUCUCUGGCCCUCAAGCAUGUAACCUCGGGGUCUGAGGCCCAGGACCCACCCCCCUGCCACCCCYCCCACCCCACUCCCUGCUCAGUACCUGGCGUUGGUACACAGGCAAGGAUUGGCACAACCAAAAUUGGCCUUUUUCUCCCUCUUAAUAUUGAAGAAAUUCCCACAUUUCUCAUUUGGUAAUGGUGUUGUGGCCUCAGAUUUCUUCUAGUAUUUGCUUCUGAUGAAUGAUUAUGGUCUAUACAUAAAAAAGUAAGACUAAGUAUUGCUGAAUUUGCAGUUAUGUUGUCGUGUAUAAGAGCUACUUCCAAGUGUGGUUACAAAUGAACCCAUGGAAUGAUGACUUCAUGUUCUUCUCGUGGGUUUGUGCCGUGCUGCUUUCCAAAUAGGUAUUGAAUUUAUGCAUUAGUCUGGUGAUUUCAGUUCUGUGAAAUAUUUUGGGAUCUAUACCAAUUAAm6ACAUUUUCAUAGUUCUGCCUAUUGUCCUUCCCUGAGGCUCCAUUGCUGCUUGGUGGCCAUUCUCUGCCUUUUUACAGUCACCUGAACAAUGACCCAUCAUCUCUUGCUUGCUUGAAAUCUUGCUGAAAUGUUCUCAUUUCCUGUUUGCUGUAUGGGCUCGGGUGGGAUGUUUGUUGGCUCUGUUGUGUUUAUUCACCAAUUUGUACAUUAUUUGUUGUCCUYUACUACUGUAAm6ACAGUAAAUAUAGUUUGGUAUUCUGUC
2183   unknown  unknown    Homo sapiens    ACAUACGCAUGCACAGGCACGUGUGUACACACAUGCAGAUACACCCACAGCAUGCCAUCUGUGACACACACAGACGUAGGUACAUGGAGACACAUGCACACACAGGUCUGUGCACACACAUACGCAUGCACAGGCACCUAUGUACACACAUGCAGAUACACCCACAGCAUCCCAUCUGUGCCACACACAGACAUAGGUACAUGAAGACAGAUGCACACACAGGUCUAUGCACACACGUAUGCAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCACAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGCACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCAUACACAGACAUACGUACAUGGAGACAGAUGCACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGUACACACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGUACACACAUGCAGAUGCACCCGCAGUAUCCCAUCUGUGCCACACACAGACAUACGUACAUGGAGACAGAUGCACACACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUAUGCAGAUGCACCCGCAGUAUCGCAUCUGUGCCACACAGACAUACGUACAUGGAGACAGAUGUACAUACAGGUCUAUGCACACAUGUACACAUGCACAGGCACCUGUGCACACAUACAUACAGAUGCACCCGCAACAUCCCGUCUGUGCUGCCCUAUUAGGUUUGUGGCCAUUUGGGGAAUCUUCCUAAAACCCUAAAAGCUAGGGCAGGUCUGCUUGAGCAGGAGCAGCAGGGUCUGGGGGACCCCUGAGGGCAGGACAGUCAGGGACCCACAGUUGAGCUGGGCCCGCUGAGCCCUGGAUCCUUCUUGGUGUCUUAUCCUGGCCAGCAAGCAAGUGUGAGCUCCUGUGGGUCUCCAGAGGCCCAUGAGGACCAGUGGGCCAGUUGGGAACAAGGCUUGGCGUCCUCUUCAGGGGGGAACACCAGGGCAGGCCUGAGGAGGCCUGUGUCCCCAGCCUGUCAUUGCUGUGGCUCCGCUUCUCAGGGAGCCUAGGAAGAAGGUGUGGCAAGAGCCCGAGGCGCUGGCUGCACCUGGCGGGGCCUGUGGGCGUCAGUUUAGACCCAUCCAUUCUCACUGCAGCAUUCCAGGGUUUGCCCUUAUGCUCGGCUGUGUGAGGGUGAGGAUGAUGCUGUGGGGGCAUGCAUGCUGGGUGUGUUUCAGCCUUCUCUUCCACCAGGCAUCCUGACAUCGAGGCCCAGGAGAGAGGAGUCCGGUGUCUACUUGAGAAACAGCUCCCCAAUGGCGACUGGCCGCAGGAAAACAUUGCUGGGGUCUUCAACAAGUCCUGUGCCAUCUCCUACACGAGCUACAGGAACAUCUUCCCCAUCUGGGCCCUCGGCCGCUUCUCCCAGCUGUACCCUGAGAGAGCCCUUGCUGGCCACCCCUGAGAACAUGCCUACCUGCUGGGUGCCGUCUGUGCGUUCCAGUGAGGCCAAGGGGUCCUGGCCGGGUUGGGGAGCCCUCCCAUAACCCUGUCUUGGGCUCCAACCCCUCAACCUCUAUCUCAUAGAUGUGAAUCUGGGGGCCAGGCUGGAGGCAGGGAUGGGGACAGGGUGGGUGGCUUAGACUCUUGAUUUUUACUGUAGGUUCAUUUCUGAAAGUAGCUUGUCGGGCUUGGGUGAGGAAGGGGGCACAGGAGCCGUGACCCCUGAGGAGGCACAGCGCCUUCUGCCACCUCUGGGCACGGCCUCAAGGUAGUGAGGCUAGGAGGUUUUUUCUGACCAAUAGCUGAGUUCUUGGGAGAGGAGCAGCUGUGCCUGUGUGAUUCCUUAGUGUCGAGUGGGCUCUGGGCUGGGGUCGGCCCUGGGCAGGCUUCUCCUGCACCUUUUGUCUGCUGGGCUGAGGGACACGAGGGCAACCCUGUGACAAUGGCAGGUAGUGUGCAUCCGUGAAUAGCCCAGUGCGGGGGUUGCUCAUGGAGCAYCCUGAGGCCGUGCAGCAGGGAGCCCCAUGCCCCUGGGUCGUGAGCUUGCCUGCGUAUGGGGUGGUGUCAUGGAGCCUCAUGCCCCUGGGUCGUGAGCUCGCCUGAGUAUGGGGUGGUGUCAUGGAGCCGCAUACCCCUGGGUUGUGAGCUCGCCUGCAUAUGCAGGGUCUGUCAUGGAACAUCCCAAGUCUGUGCAGCAGGGAGCCCCAUGCCCCUGGGACAUGAACCCACCUGCGUGGAAUGCUGUUUGUGAGGUGUCUACAGGGUUUAUAGUAGUCUUGUGGACACAGAAAUGCACAGGGGACACUUACGGACACAGAAAUGCACAGGGGAGGCCGAGCAYAACCAGGGGUGAGGGGCAGGCAGCAGUUGUAGUUACUGCCGCGGGGCACUGCUAUGUGCAGGGACAGCCAGCACCCAGCCCAUCACCACUCCCUGGGCUGGCUGGCAGGUAUGGCACCCUGGGAGCCCGGCAUAUACCCAGGGCACCCCUACGGCUGCCGCCAGUCUCAUGCCCAGGUGGGUGCUCUGGGCUGGAGCGAGGGCCAGGUUUUGGGCCGAGGCUUCCCCAGGCAAUCCUGUGAGCUCCCUUCUAGCCUCUGACCCAGUCUGGUCUGGCUUGCAUGGAUGUAGGGCUUGGGGUGGGAAGUUCAGGUCCUGGCUUUGCCUUUGCCUGAUGUGGAUGAGCAGCUCACAUGCUCAGGGCCACCUGAGACUGUCACUGCUCUCCCCUGGCUACUGGGAGGAGUCACUGAGAGCUUCGUUACCCCUGCUGCCUUGCCCAGGGCACACCCUAUACCUCCUUAUCUGCUCUUCCCCUCCCUGCCGCCUUCUGGGCAGGUAGCAGUCCCUGGCCUCUCCCCCUGGCUGAUCACUCUCCCUCAGGCAGUGGAGAUCUGCGUCUGGACACCCUCAGAUCCUGUCAUUGCCUGCCCAGAGUCCUUCAGGGGCACCCCUCUGCCUUGGUGUGCAGUCCAGGGCUCUCACCCAGGUGCCGCACCCUCUGGGGUCUUCUGUCCAGCUCCCUUGCCCCAUGUGCUGUCACUGACUCUCCUUGGGm6ACUCGCCUGCCUGCUCAGAGCCCUGCAGGGCUUGGUCAGCUGCCUGUUCAGUGUCAACACUUCCCUGCACAUCUUAAAACUGGGCUYUAUUUUCGCUGAAGGAm6ACUGUGUUGGGACCCUUGACAUCUGUCAGGUUUGCACAUGCUGUUUUUUUUUCUCAGCCCACGUGUYCUCCCCCACGUGGGGUAGCAGCAGGACAGACAGUGAAUCACAGAGUCUGCCCUGAGCAGAGGCUGCUGUCCCUGGGACUCCUAGCCAUGGUCAGACUGUACAAAACGGUUUUCCAGAAAUGAAAUGUAAAUCCAUUUUUAUACUGAAAAUGUUACUGAAAGUCACUUUUAUGAGCAUCUGCCUUAAUAAm6ACAGACAUUGAUUCCCUUAUCAGAA
2184   unknown  unknown    Homo sapiens    ACCACACCCAGCUAAUUUUUGUAUUUUUAGUAGAGAUGGGGUUUCACCAUGUUGGCCAGGCUGGUCUCAAACUCCUGGCUUCAAGUGACCCGCCUGCCUUGGCCUCCCAAAGUGCUGGGAUUACAGGCGUGAGCCACCACACCCAGCCCCAUUGUCUUUUUUUUAAGACACUGGUUCUCACUCUGUCACCUAGGCUGGAGUGCAGUGGUGUGAUCAAGGCUUACUGCAGCCUCAACCUCUUGGGCUCAAGCAGUCCUCCCACUUUAGCCUCCCAUGUUGCUGGGACCACAGGUGCAUGCCACCAAGCCCCACUAAUUAAAACAAAUUUUUUUUUAUAGAGAAUAGGAUGUAGCUAUGUUGCCCAGGCUGGUCUUGAAUUCCUGGGCUCAAGUGAUCCUCCCACCUUGGCCUCCCAAAGUGCUGGGAUUACAGGUAUGAGCUACUGCACCUGGUCUCUGUCUUCUUUUUUUUUUUUUAAGGCUCUUGUUAGAAUGCCGUGAACAGUUGUCUCCAACUAUUAUAUGUCAUUCCACGGGAUUGGUUUCCUGCUGGCAUUCCAUGGUCUCCGGGGUCCUCUGCAGCACCUUCCUGGCCUUUUGUCAUGUGGAUGCUGCACAGCUGACUUCACCUGGUCUUGUUGAUGGm6ACAGUUUGUUUCAUGAUUUCUCUUAUGAAUAAAACCUUCACAAGCCAUCCUUCUCUAUGAGAGUGUUUGCUUGGCACGCAUUCCUGAGCACUGCCCCUGAGCAGACCGCCUAUGAUCUCUAAGCUUGGGUUCCGUGUUGCCAAAGCGCCUUCUGGUGGm6ACUCAGCCCAGGAGGAGCCCAUGUGCCCCACGCUGGCCAUGGCUGUGGUCAUGGGCUGACUGCAUGUGUCUGACUGGGCCUUCGUCUGAGACUGCAGUGAUUUCGCUCCUCCUCUCAGAUCCGCAAGGAUGCUCUCCGGGCGCUCAACUUUGCGUACACGGUGAGCACACAGCGAUCUACCAUCUUUCCCCUGGAUGGUGUGGUGCGCAUGCUGCUGUUCAGAGACUGUGAAGAGGCCACCGACUUCCUCACCUGCCACGGCCUCACCGUUUCCGACGGCUGUGUGGAGCUGAACCGGUCUGCAUUCCUGGAACCAGAGGGAUUAUCCAAGACCAGGAAGUCGGUGUUUAUUACUAGGAAGCUGACGGUGUCAGUCGGGGAAAUUGUGAACGGAGGGCCAUUGCCCCCCGUCCCUCGUCAUACCCCUGUGUGCAGCUUCAACUCCCAGAACAAGUACAUCGGGGAGAGCCUGGCCGCGGAGCUGCCCGUCAGCACCCAGAGACCCGGCUCCGACACAGUGGGCGGAGGGAGAGGAGAGGAGUGUGGUGUAGAGCCGGAUGCACCCCUGUCCAGUCUCCCACAGUCUCUACCAGCCCCUGCGCCCUCACCAGUGCCUCUGCCUCCUGUCCUGGCACUGACCCCGUCUGUGGCGCCCAGCCUCUUCCAGCUGUCUGUGCAGCCUGAm6ACCACCGCCUCCAGAGCCCGUGCCCAUGUACUCUGACGAGGACCUGGCGCAGGUGGUGGACGAGCUCAUCCAGGAGGCCCUGCAGAGGGACUGUGAGGAAGUUGGCUCUGCGGGUGCUGCCUACGCAGCUGCCGCCCUGGGUGUUUCUAAUGCUGCUAUGGAGGAUUUGUUAACAGCUGCAACCACGGGCAUUUUGAGGCACAUUGCAGCUGAAGAAGUGUCUAAGGAAAGAGAGCGAAGGGAGCAGGAGAGGCAGCGGGCUGAAGAGGAAAGGUUGAAACAAGAGAGAGAGCUGGUGUUAAGUGAGCUGAGCCAGGGCCUGGCCGUGGAGCUGAUGGAACGCGUGAUGAUGGAGUUUGUGAGGGAAACCUGCUCCCAGGAGUUGAAGAAUGCAGUAGAGACAGACCAGAGGGUCCGUGUGGCCCGUUGCUGUGAGGAUGUCUGUGCCCACUUAGUGGACUUGUUUCUCGUGGAGGAAAUCUUCCAGACUGCAAAGGAGm6ACCCUCCAGGAGCUUCAGUGCUUCUGCAAGUAUCUACAGCGGUGGAGGGAAGCUGUCACAGCCCGCAAGAAACUGAGGCGCCAAAUGCGGGCUUUCCCUGCUGCGCCCUGCUGCGUGGACGUGAGCGACCGGCUGAGGGCGCUGGCGCCCAGCGCAGAGUGCCCCAUUGCUGAAGAGAACCUGGCCAGGGGCCUCCUGGACCUGGGCCAUGCAGGGAGAUUGGGCAUCUCCUGCACCAGGUUAAGGCGGCUCAGAAACAAGACAGCUCACCAGAUGAAGGUUCAGCACUUCUACCAGCAGCUGCUGAGUGAUGUGGCAUGGGCGUCUCUGGACCUGCCAUCCCUCGUGGCUGAGCACCYCCCUGGGAGGCAGGAGCAUGUGUUUUGGAAGCUGGUGCUGGUGUUGCCGGAUGUAGAGGAGCAGUCCCCAGAGAGUUGUGGCAGAAUUCUAGCAAAUUGGUUAAAAGUCAAGUUCAUGGGAGAUGAAGGCUCAGUGGAUGACACAYCCAGCGAUGCUGGUGGGAUUCAGACGCUUUCGCUUUUCAACUCACUUAGCAGCAAAGGGGAUCAGAUGAUUUCUGUUAACGUGUGUAUAAAGGUGGCCCAUGGCGCCCUCAGUGAUGGUGCCAUUGAUGCUGUGGAGACACAGAAGGACCUCCUGGGAGCCAGUGGGCUCAUGCUGCUGCUUCCCCCCAAAAUGAAGAGUGAGGACAUGGCAGAGGAGGACGUGUACUGGCUGUCGGCCUUGCUGCAGCUCAAGCAGCUCCUGCAGGCUAAGCCCUUCCAGCCUGCGCUUCCUCUGGUGGUUCUUGUGCCUAGCCCAGGAGGGGACGCCGUUGAGAAGGAAGUAGAAGAUGGUUUGUGAAGGAAGUCUCGUUUAUGAAGCAGCAUUGUUUAAUAAAUGGGUGGAGGCCCUGGGUCUGAGGAUGGUCCAGUAGUGUUGGGGUCAGGAAUCACUGAGACAGCAACCCCUGUGGUGACUGUCCACUGCAGGACUGGGUGGGGUCAGCACAGUGAGAUAUGUUAGCAGGUGUGCUGACAGCAGAAUGCAAGUGACCUUCAUCUAUGUCUGUCUUAAAGGUCUGAUGCUACAGGACUUGGUUUCAGCUAAGCUGAUUUCAGAUUACACUGUUACCGAGAUCCCUGAUACCAUUAAUGAUCUACAAGGUUCAACUAAGGUUUUGCAAGCAGUGCAGUGGCUGGUUUCCCACUGCCCCCAUUCCCUUGACCUCUGCUGCCAGACUCUCAUUCAGUACGUCGAAGACGGGAUUGGCCAUGAGUUUAGUGGCCGCUUUUUCCAUGACAGAAGAGAGAGGCGUCUGGGCGGUCUUGCUUCUCAGGAGCCUGGCGCCAUCAUUGAGCUGUUUAACAGUGUGCUGCAGUUCCUGGCUUCUGUGGUGUCCUCUGAACAGCUGUGUGACCUGUCCUGGCCUGUCACUGAGUUUGCUGAGGCAGGGGGCAGCCGGCUGCUUCCUCACCUGCACUGGAAUGCCCCAGAGCACCUGGCCUGGCUGAAGCAGGCUGUGCUCGGGUUCCAGCUUCCGCAGAUGGACCUUCCACCCCUGGGGGCCCCCUGGCUCCCCGUGUGCUCCAUGGUUGUCCAGUACGCCUCCCAGAUCCCCAGCUCACGCCAGACACAGCCUGUCCUCCAGUCCCAGGUGGAGAACCUGCUCCACAGAACCUACUGUAGGUGGAAGAGCAAGAGUCCCUCCCCAGUCCAUGGGGCAGGCCCCUCGGUCAUGGAGAUCCCAUGGGAUGAUCUUAUCGCCUUGUGUAUCAACCACAAGCUGAGAGACUGGACGCCCCCCCGGCUUCCUGUUACAUCAGAGGCGCUGAGUGAAGAUGGUCAGAUAUGUGUGUAUUUUUUUAAAAACGAUUUGAAAAAAUAUGAUGUUCCUUUGUCGUGGGAACAAGCCAGGUUGCAGACGCAGAAGGAGCUACAGCUGAGAGAGGGACGUUUGGCAAUAAAGCCUUUUCAYCCUUCUGCAAACAAUUUUCCCAUACCAUUGCUUCACAUGCACCGUAACUGGAAGAGGAGCACAGAGUGUGCUCAAGAGGGGAGGAUUCCCAGCACAGAGGAUCUGAUGCGAGGAGCUUCUGCUGAGGAGCUCUUGGCGCAGUGUUUGUCGAGCAGUCUGCUGCUGGAGAAAGAAGAGAACAAGAGGUUUGAAGAUCAGCUUCAGCAAUGGUUGUCUGAAGACUCAGGAGCAUUUACGGAUUUAm6ACUUCCCUUCCCCUCUAUCUUCCUCAGACUCUAGUGUCUCUUUCUCACACUAUUGAACCUGUGAUGAAAACAUCUGUAACUm6ACUAGCCCACAGAGUGACAUGAUGAGGGAGCAACUGCAGCUGUCAGAGGCGACAGGAACGUGUCUAGGCGAACGACUAAAGCACCUGGm6AAAGGCUGAUCCGGAGUUCAAGGGAAGAGGAAGUUGCCUCUGAGCUCCAUCUCUCUGCGCUGCUAGACAUGGUGGm6ACAUUUGAGCAGCCUGm6ACCUGUGGGGAGGGGGUCUCUCCCGAAGAGUUUCUGUUUUUACUCAAAAUAAUGUUAUUCUCAGAUGCUUGAUGCACUGUUGGAAAUGUGAUUAAUUUAAUCAUGCAGAUAAACCAUUUAAAUGUCA
2185   mRNA  unknown    Homo sapiens    ACCCGCUCCCUCCCGCCGUCGGCUGACGUGGAGGGCCGGAGGUGGCGGCGGCGGCGGCGGCGGCUGCUGCUGCUGCUGCCCGCGUCCGAGGCUCGCGGGCGGCGGGCCCGGGUGAGUGCACACCCGGCGCGCUGCCGGGCUCCCGGAUGUGUCACCUUGUCCCGCUGCAGCCGAGAUGCCGGGGGAGCGGGGCCUUCCACACCCCCUCCGUGGGUGUGUGACUUGUGCACCAUGGACAAUUUUGCUGAGGGAGAUUUCACUGUGGCGGAUUAUGCCUUGUUAGAAGAUUGCCCUCACGUGGAUGAUUGUGUCUUUGCUGCUGAAUUUAUGAGCAAUGAUUAUGUUCGUGUGACUCAGCUUUACUGUGAUGGGGUGGGUGUGCAAUAUAAAGAUUAUAUCCAAAGUGAGAGGAAUUUGGAAUUUGACAUCUGCAGUAUAUGGUGUAGUAAACCAAUUUCUGUCCUGCAAGAUUAUUGCGAUGCCAUUAAAAUAAACAUCUUCUGGCCACUUCUGUUUCAACAUCAAAACAGUUCCGUAAUAUCACGAUUGCAUCCCUGUGUGGACGCCAACAAUUCACGUGCUUCUGAGAUAAAUUUGAAGAAACUACAACAUCUUGAGUUGAUGGAAGAUAUUGUGGAUUUGGCAAAGAAAGUUGCUAAUGAUUCAUUCCUUAUUGGAGGCUUAUUGAGAAUUGGUUGUAAAAUAGAAAAUAAAAUCUUGGCAAUGGAAGAAGCUCUGAAUUGGAUAAAAUAUGCAGGCGAUGUAACAAUUCUAACUAAAUUAGGAUCAAUUGACAAUUGUUGGCCUAUGUUAAGUAUUUUCUUUACUGAAUACAAGUACCACAUAACUAAAAUUGUAAUGGAAGACUGCAAUUUGCUUGAAGAACUUAAAACUCAAAGUUGUAUGGAUUGUAUAGAGGAAGGAGAACUAAUGAAAAUGAAAGGAAAUGAAGAGUUUUCCAAAGAAAGAUUUGAUAUAGCUAUUAUCUAUUACACCAGAGCCAUUGAAUAUAGACCUGAAAACUACCUUCUUUAUGGUAACCGAGCUCUUUGUUUUCUUCGUACUGGACAGUUUAGAAAUGCACUCGGUGAUGGAAAGAGAGCCACUAUUCUGAAGAACACUUGGCCAAAGGGUCAUUAUCGUUAUUGUGAUGCUCUUUCUAUGCUGGGGGAAUAUGACUGGGCCCUGCAAGCAAACAUAAAAGCUCAAAAACUCUGUAAAAAUGACCCUGAGGGAAUCAAGGAUCUAAUUCAGCAGCAUGUAAAGUUACAAAAACAAAUAGAAGACCUACAAGGUCGAACAGCAAAUAAGGAUCCAAUUAAAGCCUUUUAUGAAAACAGGGCCUACACACCUAGGAGUUUAUCAGCACCUAUAUUUACUACUUCACUUAACUUUGUGGAGAAGGAAAGAGAUUUCAGAAAAAUUAAUCACGAAAUGGCCAACGGUGGUAAUCAGAAUCUAAAGGUGGCGGAUGAGGCGUUGAAGGUAGAUGAUUGUGACUGUCAUCCUGAAUUUUCACCACCAUCAAGUCAGCCUCCAAAACAUAAAGGAAAACAAAAAUCUCGAAACAAUGAAUCAGAAAAGUUCAGUUCUAGUUCACCAUUGACUUUACCAGCAGAUUUGAAGAACAUCUUGGAGAAACAGUUUUCUAAAUCUUCCAGAGCUGCACACCAGGAUUUUGCUAAUAUAAUGAAAAUGCUGAGAAGCUUAAUUCAAGAUGGCUAUAUGGCCUUAUUGGAGCAGCGUUGCCGCAGCGCUGCACAGGCCUUUACAGAGUUGCUGAACGGUUUAGAUCCUCAAAAAAUAAAGCAAUUGAACCUGGCCAUGAUUAACUAUGUUUUGGUCGUCUAUGGACUUGCCAUUUCUCUCCUUGGAAUAGGACAGCCUGAGGAAUUAUCUGAAGCCGAAAACCAGUUUAAGAGGAUUAUUGAACACUACCCCAGUGAGGGCCUUGAUUGCUUGGCCUACUGUGGAAUUGGAAAAGUAUAUUUGAAAAAAAACAGAUUUCUAGAAGCUCUCAAUCACUUUGAGAAAGCAAGAACCUUGAUUUAUCGUCUUCCUGGAGUGUUAACUUGGCCCACGAGUAAUGUGAUUAUUGAAGAGUCUCAGCCACAAAAAAUAAAGAUGCUGUUAGAGAAAUUUGUUGAAGAAUGCAAGUUCCCUCCAGUGCCAGAUGCCAUUUGUUGCUAUCAGAAGUGCCAUGGAUAUUCUAAGAUCCAGAUAUACAUAACUGAUCCAGACUUUAAGGGUUUUAUACGCAUCAGCUGUUGCCAGUACUGUAAAAUAGAAUUUCACAUGAAUUGCUGGAAGAAGUUAAAAACUACAACCUUUAAUGAUAAAAUUGACAAGGAUUUUCUACAAGGAAUAUGUCUUACCCCUGACUGUGAAGGUGUCAUUUCUAAGAUUAUCAUCUUCAGCAGUGGUGGUGAAGUUAAAUGUGAAUUUGAACACAAGGUCAUAAAAGAAAAGGUUCCUCCAAGACCUAUUCUGAAACAGAAAUGUUCUAGCCUAGAGAAACUAAGACUGAAAGAAGACAAAAAAUUGAAGAGAAAGAUCCAAAAAAAAGAAGCAAAAAAGUUAGCACAAGAAAGAAUGGAGGAGGACUUAAGAGAAAGUAAUCCACCCAAAAAUGAAGAGCAGAAAGAAACUGUAGACAAUGUUCAGCGUUGUCAGUUCCUUGAUGACAGAAUUCUACAGUGUAUAAAGCAGUAUGCUGACAAGAUUAAAUCCGGCAUACAGAAUACAGCCAUGCUUCUCAAAGAAUUGCUUUCUUGGAAAGUUUUGAGCACAGAAGACUAUACAACCUGUUUUUCUAGCAGAAAUUUUCUAAAUGAAGCAGUGGm6ACUAUGUUAUUCGCCACUUGAUUCAAGAAAAUAACAGAGUAAAGACAAGAAUAUUUCUGCAUGUUUUGAGUGAGCUUAAAGAAGUGGAGCCCAAAUUAGCCGCCUGGAUCCAAAAACUUAAUAGCUUUGGCUUAGAUGCCACAGGAACUUUCUUUUCUCGUUAUGGAGCAUCUCUUAAACUGCUUGAUUUUAGUAUCAUGACUUUCCUCUGGAAUGAGAAAUAUGGUCACAAACUAGm6ACUCUAUAGAAGGAAAGCAACUUGAUUAUUUCUCUGAGCCAGCAUCAUUGAAGGAAGCCCGUUGUUUAAUAUGGCUGCUAGAAGAACACAGAGACAAGUUCCCAGCAUUGCAUAGUGCUUUAGAUGAAUUCUUUGAUAUAAUGGACAGCCGCUGUACUGUGUUAAGGAAACAAGAUAGUGGUGAAGCACCGUUUAGUUCAACCAAGGUGAAAAACAAAAGCAAGAAAAAGAAGCCAAAGGAUUCAAAGCCUAUGUUAGUUGGGUCUGGAACAACUUCAGUAACUUCAAAUAAUGAGAUCAUCACUUCAAGUGAAGACCAUAGCAAUCGAAAUUCAGAUUCUGCAGGCCCAUUUGCAGUGCCUGACCAUCUUCGGCAAGAUGUAGAAGAAUUCGAAGCUCUCUAUGACCAACACAGUAACGAAUAUGUUGUCCGCAAUAAGAAGCUAUGGGACAUGAACCCAAAACAAAAAUGUUCAACUCUAUAUGAUUACUUCUCUCAGUUUUUGGAGGAACAUGGUCCCUUGGm6ACAUGAGUAACAAGAUGUUCUCUGCAGAAUAUGAGUUUUUCCCAGAAGAAACUCGACAGAUACUAGAAAAAGCAGGAGGUUUAAAACCUUUUCUCUUGGGAUGCCCUCGUUUUGUUGUGAUUGACAACUGUAUUGCACUGAAGAAGGUUGCAUCACGGCUCAAGAAAAAAAGGAAGAAGAAAAACAUUAAAACAAAAGUAGAAGAAAUUUCAAAAGCAGGGGAGUAUGUACGAGUUAAACUACAACUGAAUCCAGCUGCUAGGGAAUUUAAACCAGAUGUAAAGUCUAAACCAGUGUCAGAUUCAUCUUCAGCACCAGCUUUUGAAAAUGUGAAACCCAAACCUGUGUCUGCAAAUUCUCCCAAGCCAGCUUGUGAAGAUGUGAAGGCCAAACCAGUAUCCGACAAUUCUUCUAGACAAGUUUCUGAGGAUGGGCAACCCAAAGGGGUCUCUUCUAAUUCUCCUAAACCAGGCUCUGAGGAUGCAAAUUACAAGCGAGUCUCCUGUAAUUCCCCCAAACCGGUUCUUGAGGAUGUGAAACCAACUUAUUGGGCUCAAUCCCAUUUGGUCACAGGAUACUGUACGUAUCUUCCUUUCCAGAGAUUUGAUAUCACCCAGACACCGCCAGCAUACm6AUAAACGUGUUACCAGGUUUGCCCCAGUACACCAGCAUAUAUACACCCUUGGCCAGCCUUUCUCCUGAAUAUCAGCUACCAAGAUCAGUACCAGUGGUGCCGUCUUUUGUAGCCAAUGm6ACAGAGCAGAUAAAAAUGCUGCUGCCUAUUUUGAGGGUCAUCAUUUGAAUGCUGAGAAUGUUGCUGGUCACCAGAUUGCCUCUGAAACACAGAUCCUUGAGGGCUCUUUGGGAAUAUCUGUAAAGUCACACUGCAGCACAGGUGAUGCUCAUACAGUCCUGAGUGAGUCUAACAGAAAUGAUGAGCACUGUGGAAAUUCUAACAACAAAUGUGAAGUAAUUCCAGAAAGCACCAGUGCAGUAACAAACAUUCCACACGUGCAGAUGGUUGCCAUACAGGUAUCUUGGAACAUAAUACACCAAGAAGUCAAUACUGAGCCAUAUAAUCCUUUUGAGGAACGACAAGGGGAAAUUUCACGGAUUGAAAAGGAGCACCAAGUAUUACAAGACCAACUUCAAGAAGUGUAUGAAAAUUAUGAGCAGAUAAAACUUAAGGGCUUAGAAGAGACCAGGGACCUGGAAGAGAAGUUGAAAAGGCACUUAGAAGAAAACAAGAUCUCAAAGACGGAAUUAGAUUGGUUCCUUCAAGAUUUGGAAAGAGAAAUUAAAAAAUGGCAACAGGAAAAAAAAGAAAUCCAAGAAAGACUAAAAUCACUGAAGAAGAAAAUUAAAAAGGUUUCAAAUGCCAGUGAAAUGUAUACCCAGAAAAAUGAUGGAAAGGAAAAGGAACAUGAAUUACAUCUGGAUCAGUCCCUUGAAAUCAGCAACACACUUACAAAUGAGAAAAUGAAAAUAGAAGAGUAUAUAAAGAAAGGGAAAGAGGAUUAUGAAGAGAGUCAUCAGAGAGCUGUGGCUGCAGAGGUAUCCGUACUUGAAAACUGGAAGGAGAGUGAAGUGUAUAAGCUACAGAUCAUGGAGUCACAAGCAGAAGCCUUUCUGAAGAAGCUGGGGCUGAUUAGCCGUGAUCCUGCAGCAUAUCCUGACAUGGAGUCUGAUAUACGUUCAUGGGAAUUGUUUCUUUCUAAUGUUACAAAAGAAAUUGAGAAAGCAAAGUCUCAGUUUGAAGAACAAAUUAAGGCAAUUAAAAAUGGUUCUCGGCUCAGUGAACUUUCUAAAGUGCAGAUUUCUGAGCUUUCAUUUCCUGCCUGUAACACGGUUCAUCCCGAGUUACUCCCUGAGUCUUCAGGCGACGAUGGCCAAGGGCUUGUGACUUCUGCAAGCGACGUGACUGGAAACCACGCAGCACUUCACAGGGAUCCUAGUGUGUUCUCUGCUGGUGAUUCCCCAGGGGAGGCUCCUUCUGCGCUGUUGCCAGGGCCACCCCCUGGUCAGCCUGAAGCCACUCAGCUGACAGGGCCAAAACGGGCUGGCCAGGCAGCUCUGUCAGAACGAAGCCCUGUGGCUGAUCGGAAGCAGCCUGUUCCUCCAGGACGUGCUGCGCGUUCAAGCCAGUCUCCAAAAAAGCCGUUCAAUAGUAUUAUUGAGCACCUGUCAGUGGUAUUCCCAUGUUACAACAGCACUGAGCUUGCUGGUUUUAUUAAAAAAGUGCGAAGCAAAAACAAGAACUCACUCUCAGGAUUGAGUAUUGAUGAAAUUGUCCAAAGAGUGACAGAACACAUUCUAGAUGAACAGAAAAAGAAAAAGCCAAACCCAGGAAAGGACAAGAGGACUUAUGAGCCCAGCUCUGCCACCCCCGUGACCAGGUCCUCCCAGGGCUCACCCUCGGUGGUUGUUGCACCAUCACCCAAAACCAAGGGGCAGAAAGCAGAAGAUGUCCCUGUGAGGAUUGCACUGGGUGCAAGUUCCUGUGAAAUAUGCCACGAGGUGUUCAAAUCAAAAAACGUGCGUGUGCUCAAAUGUGGGCACAAGUAUCACAAAGGGUGCUYUAAGCAGUGGCUUAAAGGGCAGAGCGCUUGCCCGGCCUGCCAGGGUCGUGAUCUCCUGACAGAAGAGUCACCUUCUGGAAGAGGCUGGCCCAGUCAGAAUCAGGAGCUGCCUUCCUGCUCUUCUAGGUAGUCACACUUCACUAAAGUGUCAYCCACCAGUGUGUUGAAUCCGAAGAAUGACAAUUUUCUACCACUGGUGUAAAAAACAAACAUUUGAAGACCCUUGUGCAUUGUGUGUCACAAAGCUAAAUACAUGGAAAUCGUUAAUAUCGCUGAUAUUAAGUAAUUUCCCCACUCUGAGUGAAUACUUUGAUGAUUGCCAACAGUGGCUAAUAAAAUGACGGCUACCACACUCAUGGGUCACUGGGGCUGCGCAGGGCUCUUUGAGGUGGGUGGCUUCUUUUGGAAAGUACUAUGAACGUCUCGAAGCAGUAUUCUAGUGAUAAGAAUUCUUAm6ACAUAGCCAAGCGCCCCACGUUUGUUCCCCACGUUUGUUCCCCUUUUCUGUUUGAAAAACCUGUUCUGGUAGCUCCACAAGAGAGAUGAUACUGACUUUUUAAAUUUUUUACAAGAGUCUGUAUUCCUGAUAUGCCUAUAUUUUUCCUCAAAGAUUCUGCAUUUUAAGGAUGGGCAUAAGCAAACUAUAUUUUAAUAAUUUAUAGUUAAUGUUAAAAUAUUGGCUGAUUUAGACCAAAAGAUUCAAAUCUCCUCUUUGUGAAAUCCCAUCUGCAUUUGAUUUUUUAUUAUUUUAUGUUCCCCCGUUAGAUUGUUUUAAGUGUUUGCUUUUCAUCUUUUAUAGAUGUAAUCUGAUUUUCAAAAAUCAUUAACACUUUUUAAUUAGUAUCGACUAAGACUUUUUCCCCCUGGAAUCGAGGCUGUGUGUCCGUCAYCCCAGCCCCCGGUUGGAGCCUGCUCUUUGAACUCCGCUGCCUUCCUUAGCAGCUUCUGUCCUCUUCUGUGAGUCAGUCAGCGAGUGCUUGGGAUCCGCAYCCAGCCGUGCUGAGCACACAACAGGCUGUGUGUGGAAAUGGCCACCACCAUUCUCCUUCCCCACCCCACCACAAAAAGAGAAGCUGUGUCUYUAGACAACCCUGAGGUAUCUGUGUUACAAUCGUUCUGUGUUUGAUAUUUGUGUAAAGUAUGCAUGCAGUCUUGUACUGUGACCUAAGAACAAAACUGUAACUGCAUUAGAAACCAUGAAAAAAUUAGAUAUUGUUUUGUGACUUUUAGACAGUGGUAAAUAUAGAm6ACCAUGAAUUCUGGUCACAUUCCAUUUCUCUCCAACAUGAAGGAUCAAAAAAUGUUUUUCAAUGUGUUCUUUGUUCCACUGGAAACUUAGAGUCAUGAGUUUAUGAGCUGAUUUGGUCACCUUCCUCUGCCUUUGUUCACUGUGAGUUCUGAUGUCUUAGUGACUUAGUUCUUAGAAGCUCACGCCUUAGUUUGAAACAGAUUCUCCACGGUGGUCCCCAAAACACUGUCUGCAUAUCCAUAAGAAUUGAGCGCUAUGGGUGUUAACGUGCAUGAGGAUCAGUUUGCAGCAGCAAGUACAAAAGGAGAAGAGGAACAYCCGUUGAAUGAGUGUGUUUUGUACAUAm6ACUUCAGAUACUUGUGAACAUGCCUUAUAUUUGUCCAACAACUGUCAGAAUAAAGAACAUUCUAAAAUGAGAA
2186   lncRNA  unknown    Homo sapiens    ACCCGGAAGCGGCUCGGGCGGGCGCAGGGUCGCGGGUGUAGGGUGGCGGCGCUCCGCCUUUCACCGACGCACCUGGGAGAAACAGACCGGAGGACGCGGGUGGCGCGGAGCACGAGAAACAACGAGUUUCUGUCUAGAUCGUGGGGGACCCAAGCCCGGGGUUGCGUCCAAGGUCGGGGAUGGAGAGGACGCGACCCCCGCGGCAGUCGAGAUGGCCUUUUUAAAAUUCUAUAUUUGAGAAGGAGUCUCGCGCUGUCGCCCAGGCUGGAGCGCAAUGGCGCGAAAUCGGCUCAUUGCAGCCUCGACGUCCAGGm6ACUCGAGCGAUCCUCCCGCCUCAGCCUCUCGAGAAGGAGUGGCCAGAAGGCUCCUCUCCAGGCCUCACAGAGGGAAACACUGGUCUAGUGAGAGACCUGCGUCCUGCCCAUCAGGACCGAAGCGGCACGCGUGAGGAUCCUGCAGGCCAAGAGACAACAGCGAUUACAAACCCCAGUCCCAGCCUUGCAGCUGACCUUGCAGGUGACGCCCUGCCUGGGUGUCUCGGUGCAGCUGCACAUCAGGGGCCUCUGCUGGACAGAAGCUCUGAGUCCACACUUGGCCCCCAGGCGCUGGAGCUGGAGCACUGCCACGAGAGGGGAUGCUGCCGUGGCUGCGCCAGCUUCAGCCCUUUCCCUGCACCGAGAUGUCCCAGUGAGCGGCUGGGUGCUCACAGUUCCCGUUGGGCCAUCAGAGGAAGAUCAAAGAUCAACCCUCCCCCAUGGGCUCCUGCCUGCCUGCCAGGUGGGUUUCCUGCCUGUCUCCCAGCCCCCAAGAGCUCCACGGm6ACUCUGCCAGUAGCUGCUUUAAAGGAGGGAGGGAGUUUUCUGAUCCUCUGGm6ACAUCCCUGGGGCUGGAGCUAUGGGCUGAGCCAUAGGAGAGCCAGCCCAGCUCCCUGGGGGUUGGGGGCUGUGUCUCUCCAUCCCUUAGUAAAAAUACAGCAACUCCCAACUCAAAGUCAAGGGUCAAUAGUCACAAAACCUUGGUGCAGCCUGGAACAGGCAUAGAGGUCUCAGCAGAGCUGCCCAAGGACAAGACCUAAGAUCCAGCAGGGAACUAUGUAGUCACCCCGAGAGGCCCAGCUCUCUCCGUGAGCUCUGGGCCUAGGGUGGGGGUGGUUGUUGGUUCUGCGCGCACUGUUCCCCCUACAUGAUGGGUCCAUCCCAGUUGGCUUCUCUCACUCGCUUCCUCCUGUGGAGAAGCCUGUCCAGGUGUCACUGCCUCCAGGAAGCUGUCUCUGAUUUCUCCAGUUGAACAGUGAGAUUUGCCACACCUCACAUGCAUCGCUCUUGUCCCUGGAAUUGUAACCAUAGGUUUUCCUGUCUCCUGGAGGACAAGGAUGAGGGCUUUCCACUUGAGUCUCCCUGGUGGAGCCCAGCUCCUGACAUACCUGGUAAAAGUUCUCAAGAGAAGAACAUGGAGGAGGAAUGUGGAUAACAACCCUGGCUGCCUGUGUGUUCCAAGCUAGGAAGAUGUAAUGUCCCCACAAACGGGGUAAAUGGCUUGCCUGCGUCACAGCUGUCUCAAGCCCAGGCCCUGGGUGCCAGCCCAAGCCCAAGGm6ACUAGGUCCAGAGCCACACAGCGCCAGGCCACAUCCGCCUCACCUGGGm6ACCUUUUGUGGGGUACAGUCUCCGGCCCCACCCAGACCUGCUGAAGGAGAGACCCCAUGGCAAGGm6ACUCAGCCACCUGCAGUUUCAUAAGCCCCCAGUGGGUUCCUAGGCAUGAAGACCACCGGUUAGAGGCUGAm6ACUGGCAGGAACCUGUCUCCAGCCCCUUCUCACCCCAGCCGGGCCCUGCCUCAGAGGCAGCACCCAGGm6ACGUGGCCAUGACCCGUGGm6ACUCCACUCAAUCCCUCUUCUCCAGGAGCCAUGCAAAGUGUCAGCCAGCCAGGCCCCUGGAAGGCAGUCAUCACCUCUUAAGGCAUUGCGGGUGUCGGUCCUGCAACUGCCAGGUGCAGCACACGACCCAUGUCCGGUGUUCGAUAGCAGGGAGCCAUGACCUGGCAACGAUUCCACGCUCAAAGGGGCACCCGGGGGGCCCUGGGUCGGGGCGGAUCAGCUUUCCCUGGGCACAUCUGCCUCAUUCCAGAUCUCCAGGGCUCAUGUCUGUGACAGGGAGGGAAGGCUCUGCCCUGGCCUUCCGUCAGCUCUGCCAGUGCAGGCUGGGCAGCCUGGGCUUUAGAGCUGGCUUCUGCCCACACUUUCUCCGUGAAAGGAAAACAACUAUGAGUCUGCCAAACGCAUCUCAGAUGCGUUUUAAAAAAUUCUGGUCCCCGCUCUCUGUCCCAUCAUCUGCCUCGGGGm6ACUUCCUCUCUCCGUGGUUCUCACCCCAUACUCUGUCACUGCCACAUUUUCACCUGGGCCUGGCCUUUGUCUCCACCUGAA
2187   mRNA  unknown    Homo sapiens    ACGAGAGGGCGCAGCGCGGCGCGGCAGGGAUUCGCGGGCGACCACCCGGCGCAGGAGCGGCCGCGUUUCGGCCUCAGAAUCCAUUGAAGACUUGAACAAGUGGGCCCUAUUUCUUGUGUCUCCUUUUAUACUUGAAGCAGAACACAUAGCAUUUGUGACGGAGAGCAUUUGGGUACAAAGUGAGAAUUUACAGAGAUCAUCCUCUUCAGAAACAGUUCGGUUUUUGCCCACUAGGGAUGAUGUGGUUUCUCAUGAGGUUACUUGCUCUAAAGGACUUUAUAUUUUGGAACCAUAAGAGCACCCUUGUGGCCCAGGCACUUUAUGGAUGAUCCCUUUUAGUGCUCCCAGUAACCUUCCAAGAUUGUCAAGUGGUCAGACUGUUGUUUGCCAUUAGCUUGCAGACCUGGGGAUCCUUAUCGGCUAAUUGCUGAAGCAAGUGUGGACAACUUCAGCAAGCUGGGGGUGGCGUUCAUGGAAGAUAGACUCCACAUGGAUAAUGGACUGGUACCCCAAAAGAUUGUGUCGGUGCACUUGCAGGACUCCACUCUGAAGGAAGUUAAGGAUCAGGUCUCAAACAAGCAAGCCCAGAUCCUAGAGCCGAAGCCUGAACCUUCUCUUGAGAUUAAGCCUGAGCAGGACGGUAUGGAGCAUGUUGGCAGAGAUGACCCAAAGGCUCUUGGUGAAGAACCCAAACAAAGGAGAGGCAGUGCCUCUGGGAGUGAGCCUGCUGGGGm6ACAGUGACAGGGGAGGGGGCCCCGUUGAGCAUUAUCACCUCCAUCUGUCUAGUUGCCACGAGUGUCUGGAACUUGAGAACAGCACCAUUGAGUCAGUCAAGUUUGCGUCUGCCGAGAACAUUCCAGACCUUCCCUACGAUUAUAGCAGCAGUUUGGAGAGUGUUGCUGAUGAGACCUCCCCCGAAAGAGAAGGGAGGAGAGUCAACCUCACGGGAAAGGCACCCAACAUCCUCCUCUAUGUGGGCUCCGACUCCCAGGAAGCCCUCGGCCGGUUCCACGAGGUCCGGUCUGUGCUGGCCGACUGUGUGGm6ACAUUGm6ACAGUUAUAUUCUCUACCACCUGCUGGAGGm6ACAGUGCUCUCAGAGACCCGUGGACGGACAACUGUCUGCUGUUGGUCAUUGCUACCAGGGAGUCCAUUCCCGAAGACCUGUACCAGAAGUUCAUGGCCUAUCUUUCUCAGGGAGGGAAGGUGUUGGGCCUGUCUUCAUCCUUCACCUUUGGUGGCUUUCAGGUGACAAGCAAGGGUGCACUGCACAAGACAGUCCAGAm6ACUUGGUUUUCUCCAAGGCUGACCAGAGCGAGGUGAAGCUCAGCGUCUUGAGCAGUGGCUGCAGGUACCAGGAAGGCCCCGUCCGGCUCAGCCCCGGCAGGCUCCAGGGCCACCUGGAGAAUGAGGACAAGGACAGGAUGAUUGUGCAUGUGCCUUUUGGAACUCGCGGGGGAGAAGCUGUUCUUUGCCAGGUGCACUUAGAACUACCUCCCAGCUCCAACAUAGUGCAAACUCCAGAAGAUUUUAACUUGCUCAAGUCAAGCAAUUUUAGAAGAUACGAAGUCCUUAGAGAGAUUCUGACAACCCUUGGCCUCAGCUGUGACAUGAAACAAGUUCCUGCCUUAACUCCUCUUUACUUGCUGUCAGCUGCGGAGGAAAUCAGGGAUCCUCUUAUGCAGUGGCUUGGGAAACAUGUGGACUCCGAGGGAGAAAUAAAAUCCGGCCAGCUCUCUCUUAGAUUUGUUUCAUCCUACGUGUCUGAAGUAGAAAUAACCCCAUCUUGUAUACCUGUGGUGACCAACAUGGAGGCCUUCUCAUCAGAACAUUUCAACUUAGAGAUCUAUCGCCAAAAUCUGCAGACCAAGCAGUUGGGGAAAGUAAUUUUGUUUGCCGAAGUGACCCCCACAACGAUGCGUCUCCUGGAUGGGCUGAUGUUUCAGACACCGCAGGAAAUGGGCUUAAUAGUGAUCGCGGCCCGGCAGACCGAGGGCAAAGGACGGGGAGGGAAUGUGUGGCUGAGCCCUGUGGGAUGUGCUCUUUCUACUCUGCUCAUCUCCAUUCCACUGAGAUCCCAGCUGGGACAGAGGAUCCCGUUUGUCCAGCAUCUGAUGUCCGUGGCUGUCGUGGAAGCAGUGAGGUCCAUUCCCGAGUAUCAGGAUAUCAACUUACGAGUGAAGUGGCCCAACGAUAUUUAUUACAGUGACCUCAUGAAGAUCGGCGGAGUUCUGGUUAACUCAACACUCAUGGGAGAAACAUUUUAUAUACUUAUUGGCUGUGGAUUUAAUGUGACUAACAGUAACCCUACCAUCUGCAUCAACGACCUCAUCACAGAAUACAAUAAACAACACAAGGCAGAACUGAAGCCCUUAAGAGCCGAUUAUCUCAUCGCCAGAGUCGUGACUGUGCUGGAGAAACUGAUCAAAGAGUUUCAGGACAAAGGGCCCAACAGCGUCCUUCCCCUUUAUUACCGAUACUGGGUCCACAGUGGUCAGCAAGUCCAUCUGGGCAGCGCAGAGGGACCAAAGGUGUCCAUCGUUGGCCUGGACGAUUCUGGCUUCCUCCAGGUUCACCAGGAGGGCGGCGAGGUUGUGm6ACUGUGCACCCGGACGGCAACUCCUUCGACAUGCUGAGAAACCUCAUCCUCCCCAAACGGCGGUAAUGCCGGGCGUCCCCGAGACGCGGCUGCCUGUCCGUGCCCAUGCAUCUGGAAAUCUAAUUUAGAGUUGUAGGUGAAUUUUCUUUUCCUCCAAUUCAUUUGUUAAGUCUUUGUUCUUUUUCUGUGUUUCUGUUUGUUUUUAGGUUUGUUUUGUUGUCGUUUUCUUUGGUGUUUGAAGAGGCUCUGGGAUAGAUGGUUAAGAAGUAGAAAAUUUAGUUUAGGGAAAGCCCUCCCACAGGUGGGAAAUUGCUCUCCCCUCUGUGGCUUGGm6ACUUACGUUUAUUGUCAAGGGGAGUUUUUACAUGGAAAUGACAAUGGGAAAAUUCAGAUAUUUUCUUAGUAGUGCAGACCUUUACCCCUAGUCUAUGAAAAAACAAACCAAAAUAUGCUCUUGCGCCCAGGCCAGUGGUGAGUUAGAGGUAUGCUAUCACUGUUUGUAAGCAUCUGGGGAGGUACUGAACUGUAAGAACAUGCUUGGACACUUAGUCAUUGUUCUGUGUUUUUAUUAAUGAAGAAAAGGGAAGACAGACUUCCAAGAGUUACUGUCCACCCGGUGGUGUGGCCCCAUAGCGAAGUCUAAAUGCCUGUAGAGAUAGAGCUAGCUGGUGUGGUUGCAGUGACCUUGUAGAGGAAAUCAGUUCAUUACUUUGACAUCAUUCAGUGAGCUCUCCUUUCCUAAGGAAGUUUAAAUGUCCUUAGUUAGGGACUGACUUUCUUAAGUAAGUUUAAAUUUACUACAUAUUGUGAAGAGACAGGAUCAAGUUCAGAAUCCUUAAAUGUCUGAUUAGGCAUCACUUGGAUGAGGAGGUGGGCGAUUUGGCUCUGACAGCUGGAGAUGAAGGCACACUCAUACCACAUACAAGGGAGGAUUUGGAGCUUUUAAGCCAGUUUCAGAUUUACUCUGAAAUGUGGAGCAUUCCUGCAAGACUGUGCAGCUCACGGAAUAUAGAAGACAUGGCAUUUUACUCAGAAGUCAUAAGUUUUUGCCCCCCUCAUUUACCUCGUAUUACCAAGAAAGAAAAUGUUAUCGAUACUAAACACCAUCAGUUCAGAGGGAGGAUGUGUGUGUGUGCCCGCAUAUGUGUGUGCGUGCGUGUGUGCGCACAUAGCUUUAAAAGAAGACAUUCAAAAUUUGAUGUGCUACAAGCCUCAUGAAAGAACAAAAGAAAUGAAGCCUUUUGAUAUGCAUUCGCUAUUCCCAGAUGUACGCCAUGCCUUUUCCAUGUCCCUCCUAUCUCUGUUGAACUUAUGAAUCAUACUCAUUACUUUUCAGCUUUUUAAAAGGCCAAUUUUUGUCCAGUUUUCUCUCUUCCAGUCCCAGCUGAAAUUAGUGGAAAGAAAGUUUGAUGGAGCUUUCAGCUUUGAACAAAAUCCCUUCAUUGUAAACUAGCACCAUCUYUAUCCAGGUCUUACCCAGUCAGGCUAAUUCCAGAAACUUGUGGUUUUUAGUAUAGUCUGUCUACCUYUAGCCAGGCACAGGACAGCCCUAUGAAAAAAUACCCAAUAUAUAUUUUUUGGAAAUGAAACAUUAAAAGAACUUAAAAAGUAAUUUUUGGAAAUGAGGCUUCAAUUAGAAUUAUUUUUCUCAAAAAACAAACAAACAAAAAACACAAAAAAAACCACUCUUCUCCAAAUGCCCAAGCCUUCUUUCAAAAUUAGUUAGAAACUUAAGUAAAAUACAAGUCCACACCAUCCCCAAAUUACAAAAUGGm6ACUUACCCUUGAGAGGGCAUCUGCAGAAUAUCAUCAGGGACAAAGAUCUCGAGGCUAACGAUGUAGGUUUCAUUUCUCAGACUUUGUAAUAUAAGGCAAGCCCUCUCUCAGAGCUGCCAUCAUCACUUUUUGAAUUUCUUUGGGGGUUAUUUAAUGAAAAACAUGCUAUGUUUUGUUUUAAGCUGAAGUCCUAUUCUGGACACUCUGCUUUGGGAAAAAAUGUUAUCAUUUAAUUUCCUUUCUGCAAAUUAAAACUAAUGAAGUGUGGCCUUGUCAAAGGCUAUGGAGAUGUUCCGGGCAUACUGCUGUGCUCUGUGCUUUCCAGCAGGCGCUCCUCCCUCACGCAGGAGACUCAGUUGUCCUGAGAGAGAUGAAGCAGCCUUGAAGCAGAUGCUGCGUUUUCCAUAAACCUGAUUUUGCCUCACAUGAACCAAAGm6ACUCUCAAAACUCCGCUUCUAUAGAAUUAGCUGAAUAAAGGCAUUUUACUGAUAGCUGUUCGUGUUAGCGAAACCUGUCUACCUGCUAUAGCACACUCUCCGAUUUGGGCCAUUUAUGCACCCCGCAACCUGGGAUCUCAAGGAGCUYUAAAGUCUUAAUGGGAACUUGGCAUUUUCCUGAUGAUCUYUAAAAUGUGGUCACUAAACUCAGGAUUGGCGUGUGCUUUUAGAACACUGGAGUAGCCCUUGUUUUAGAGGCUGUGCAUUGAGUAUCGACCGUAUUUUGUAAAAGGCAAGAUAUCCUCCCUUCCAGGCUGGUAACGGGUUUCAAGGGGACUCUUGAGGAAGUGCCCCCUAAAAUAGAACACAGCAAUAACUGGGCUUCCUGUCCCCACCCCCACCCCAGCAGUGCUCUCUGGCACUGGGAACUCUGCUAGGGAGUGGUGGAAGUAGGAAGGAUUUGUGUGCAAAGGAAAAUCGUGGUUGAGUUUCACUGCAGCAGGCUGACGUUGCCUGAUGUGAGAGCAAGUGGCCGACUGGGGUGCGGGUGCACAGGUCGGGGGAGCACAGGCCACAGAGCGCAGCCUCUGGGGGUCCCCCAAGGCACAGCAUAUACAGCAUGGUCGCCCCUUGCCCUGGAGUCUGGGAACAAAGAGAGGAGCCAGCCUCCCCGCACUGCUUCAGAUGGAAAAGGGAGGCAGGGUGGGCUUCCGUUCUCCAGAUCUGUUUGCUCUUAACAGGCAGAACAUGGGAGAAUCCUUAUUCCUGGUUAAUCACUAUGCAUAUUUGAAAUAAAAGAAAGCGUAAGCCUCUGCAAUUUUAACUUCUCAAAGGAUGUCUCUGAAAAGAAUCACUYUAAACCAAUGCCUAUAAAAAGCAAGUCUACCAAAAUAAACUAAGACUUUCUAUGUGGUUUGGGCUCCCUCUUAUUUUUACAAGUUUCAUUUUUAAAAGUAGGCAACUACUUUGGGUUACAGUAUUUUUAUUCAUAUUUAAACAUUUUUACAAAAUAAAUAAAGUGUUUUACAUAGUAAGGAAUAUGUACGUAUUUCCAAGUAUUAAGAAGCCAAGUGUUUUUUUUUUUGACGUAUUAUUGACAAAUGUAUUCAGCGCCAUACACAAGAGAAAUAUUAUUACUCCAAAGAACGAAAGUUAACAAAACUCCAAAGCAAAAACCCUUUUAAUGGAGGUGAGAAAUAAAUUUAAUGUAACAACA
2188   mRNA  unknown    Homo sapiens    ACGAGUCCUCCGCCGCAGUCUCGGCCUGGCCGCGUCUCUGCGCCUGGAGGGUCCGCUUUCGCCGUCCGCUCUCGGCGUCCGCUCCCCGGCUCCGGCGCGCUCCUUGCACUAGAUGGCUGGUCUGCGGUGUUCUUGCCCGGUUAGCGCCGCCGGGUCGCUUCCGGUCUCCGCGGCGCCGGCGGGGACCGGGUAGGUAGAGCACGUGGGGCGACGCUGACCAGUCAGCAAGGCCCGGCCGAACACGCUCUGCAGAACUGGGAAGAAGCGGGUCUCGGGUCUCCCUGUGAUGAUGACAGCCUCUUCAUCUAUGACUGCAGUGCUGCAGAAAAGAAGUCACAAGAAAAUAAAGGGGAGGACGCGCCCUUGGACCAGGGGAGCGGUGCGAUUCUGGCGUCCACCUUCUCCAAGUCUGGCAGCUAUUUUGCUYUAACCGAUGACAGACCGUGGCAAGGAGGUGUACAGCCCUGACUUUCAUAGCCUCGGAGGAGAAGGUCUUGGUGGCCGACAAGUCUGGAGACGUCUACUCCUUUUCGGUGCUGGAGCCACACGGGUGUGGCCGUCUAGAGCUGGGGCACCUGUCUAUGCUGUUAGAUGUGGCUGUGAGUCCUGAUGACCGCUUCAYCCUCACUGCCGACCGGGACGAGAAGAUCCGAGUCAGCUGGGCCGCGGCGCCCCAUAGCAUCGAGUCCUUCUGCUUGGGGCACACAGAGUUUGUGAGCCGUAUCUCCGUGGUGCCAACUCAGCCCGGGCUGCUUCUGUCCUCCUCUGGGGACGGCACCCUGAGGCUCUGGGAGUACAGGAGCGGCCGCCAGCUGCACUGCUGUCACCUGGCCAGUCUGCAGGAGCUGGUGGACCCCCAGGCCCCCCAGAAGUUUGCCGCGUCCAGGAUUGCAUUCUGGUGCCAGGAGAACUGCGUGGCGCUCCUGUGCGACGGCACUCCUGUGGUCUACAUCUUCCAGCUGGACGCCCGCAGACAGCAGUUGGUGUACAGGCAGCAGCUGGCGUUCCAGCACCAAGUGUGGGACGUGGCUUUCGAGGAGm6ACCCAGGGGCUGUGGGUGCUCCAGGACUGCCAGGAAGCCCCCCUGGUGCUCUACAGGCCUGUGGGCGACCAGUGGCAGUCUGUUCCUGAGAGCACCGUGUUAAAGAAAGUCUCUGGUGUUCUUCGUGGGAACUGGGCCAUGCUGGAAGGCUCUGCCGGCGCAGACGCCAGCUUCAGCAGUCUCUACAAGGCCACGUUCGACAACGUGACCUCCUACCUGAAGAAGAAAGAGGAGAGACUGCAGCAGCAGCUAGAGAAGAAGCAGCGGCGCCGGAGUCCCCCGCCUGGGCCCGACGGGCAUGCCAAGAAGAUGAGm6ACCGGGGGAGGCGACGCUAAGUUGCUGAUCGUGGCGGUCAGUGGUGUCUCUCACCUCAAAUUAGGAAAAGCUUUUUAACUUGUUCCCCUGCAUCCUGGCAUGUCCCUUCAAGAAGGAAAAGGUGACAUCAGUUGUGACCAGCUCAGAGGAUGGGGCUGUCCCCUGGGCUCUAGAAAGAm6ACAUUCUGUGUCACCAGCACAGGCUCUUGCUGGGUGCCUGUGCCCCCUUUCUGGUUGAAGGGAAGCCAGACCAGUGGAGUGGAAGCUCUUGAAGCm6ACUUUCUUUUCAUGUCGGAGGCUGCGUGUGAGCCGGUGGUGGCGGCAGCUGUCUGUGUUUCUCCUGUUCUCAUACCGCCCUUCGUGUCCGCUGCAUCUUCCUCUAGGAGCAUCUGUGGGCUGACGUUUCUGGCAUGGUGGAUGUUUUCAUGUUGUUCCGCCGUCUCAGCAUCCAGGUGACGUGCUGUCCCGCAGUAGCUGCUCGCCACACAGGCUGUUGAAm6ACUCAGCACGAAUGCUUGAGCCUGCCCCAGCCCCAGCCGUAGCCCUUGUGCUCAGGAGCUGCUCCUGGAGAGUGGCUCCCUUGUGGGAAGUGAGAAm6ACACGUUUCGGAGUCGCAGGGAGCUCUGUCUGGCAUCGGUGGCACAGAUGGUGAm6ACUUGUUUCAGGAAGUGUGAGCACGGGCCUGGCUGGCACCCGGUUUACAGGGAGGUGAUUGAGGm6ACGUCGUUAUGAUUUGAUUUGm6ACCUUGGCACACACUGCAGAGCCACAGGGAUGUUGCUGAAUUUCAAUCACCGAUCAGCAAGGAUGAm6ACCUUCUCAACUUCCUAGGAAUGUUUAGCAGCAACCGAAUAUACCAGGCAAAACUC
2189   mRNA  unknown    Homo sapiens    ACGCGCAGCCGGAAGUGGCGGCUGCUGCGGAGAAUUGGAGAUGGGGACCGCCCUGGACAUCAAGAUUAAAAGAGCGAAUAAAGUUUAUCACGCCGGGGAAGUGCUCUCUGGCGUGGUGGUCAUAUCGAGUAAGGAUUCAGUCCAACACCAGGGAGUGUCUUUGACCAUGGAAGGAACUGUAAACCUCCAGCUCAGUGCCAAAAGUGUGGGUGUGUUUGAAGCUUUUUAUAAUUCUGUUAAGCCUAUCCAGAUUAUCAACAGCACCAUAGAAAUGGUGAAGCCGGGGAAAUUUCCCAGCGGCAAAACAGAAAUCCCUUUUGAAUUUCCUCUGCACUUGAAGGGUAACAAAGUUCUGUAUGAGACGUAUCAUGGCGUGUUUGUCAACAUUCAGUAUACACUGCGCUGUGACAUGAAGCGGUCUCUGUUGGCCAAGGACUUGACAAAGACCUGUGAAUUUAUCGUUCACUCCGCUCCUCAGAAGGGGAAGUUUACUCCCAGUCCCGUGGACUUCACGAUUACACCUGAAACCUUACAGAACGUCAAAGAGAGAGCUUUGCUUCCCAAAUUUCUCCUUCGAGGACAUCUCAACUCAACAAACUGUGUCAUCACGCAGCCACUAACGGGAGAGCUGGUGGUGGAGAGCUCGGAAGCCGCCAUCAGAAGCGUGGAGCUGCAGCUGGUGCGCGUGGAGACGUGCGGGUGUGCAGAAGGCUAUGCCCGCGACGCCACGGAGAUUCAGAACAUUCAGAUCGCCGACGGGGAUGUGUGCAGGGGCCUCUCUGUCCCCAUCUACAUGGUCUUCCCUAGGCUGUUCACCUGCCCUACACUGGAGACCACCAACUUCAAAGUGGAAUUUGAGGUUAm6ACAUCGUGGUGCUGCUUCACCCUGACCACCUCAUCACGGAGAACUUCCCGCUGAAGCUCUGCAGGAUAUAGCCCGGAGGAGGGAAGCAUAGAGAACGGGAGUGGCCAUCUGGAAAUCCAGCUGGUUAUCCAAAUCCUAAGGGGAGCUACAGCCAGCGGCAUAUACUUGUUUUUGUGAUUAUUCUGUAUCAGAAAUGAAm6ACAGACCCUCAAAUUAm6ACUUUCCUUCCUCAUUUCUUGAGGCUUCUGCUUCCAACAGGCACCUCUAAUCAGACCUUUUCUUUGAAAUUCAACAAGAUUUCUUAAUGCUAUUUGCCAAGACCAUUUCACAGAAAACAUUGm6ACUGUGGCUCUUGCCUUAUCUGUUCCUUUUUAGGUACAGUAAAACAAUUGUGACAGCAGUUUGAGCUUGCUGGAGAGUGGCAUCAUGGGGACAAAAGGAAACCUCUGACUUGCUAAUGGAUGUAGCCAGGGACUCCCCAUAGCAAAGGGUCUGUGGCCAGUUGACAUCCAGGAUGGCUGCAAGCGCACUUGAUGGUCAGGAAGUUUGCAGAUACUCGCCAAGGCAGAGCGCAAAGUGCUAGCCACUGGAAAUGCAUGACUUCCCUCCACCCCUACUCUAUUCUGUAGUUUUUUGGUUUUGUUUCUGAGACGGAGUCUCAGUCUGUCACCCAGGCUGGAGUGAUCUCAGCUCACUGCAACCYCCACCUCCCAGGUUCAAGCGACUCUCCUGCCUCAGCCUCCCGAGUAGUUGGGAUUACAGGUGACUGCCACCGUGCCCGGCUAAUGUUUGUAUUUUUAGUAGAGACGGGGCUUCACCAUCUUGGCCAGGCUGGUCUUGAACUCCUGACCUCGUGACCCACCCGCCUUGGCCUCCCAAAGUGCUGGGAUUACAGGUGUGAGCCACCACACCCAGCCUCUGUAGUUCUUUUUACAACAUUUUUCAUUAUAACUYUAAAUUUUUUAAGCAACUGGAAAAGUGUUCCUUGCUCUCUUGGGGGGAUYUGGCUGGUGCCGAAGUGUUUCUGAAGUCUCAAGAACUGCCAUAAAAUCUCACGCUGCCAUUUCCCUGAACAGAUACAUACAUAGAGAGAGACAGUUUUCCAAACUGUGUCACGCAGGCUGAGUGCACUGGCAGGAUCACAGCUCACGGCAGCCUCAACCUCCCUGGCUCAAGCGAUCCCUCCCCUCAGCCUCCUGAGUAGCUGAGACUACAGGUGAGUGCCACCACACUCAGCUAAUUUUCAAAUUUUUUGUAGACAGGGUCUCCCUAUGUUGCCCAGGCUGGUCUUGAACUCCUAGACUCAAGUGAUCCUCCUGUCUUGGCCUCCCAAAGUGCUGAGAUUACAGGUGUGAGCCACUGUGCCCAGCAGUUUCCCAGAAUAUAUUUAAAUGCAAAGUUACAUGAGGGGAAAACAUGUAUGUUUGCUCCUGUUGUUACUGGGUAGGUUCUGAACAGCAGAAACCCAUGUGCAGGGUGGGCUGGUGAAGGCCCCUCUCCGCAAGGUGGUAGCAGGAAAAGGUCCUUGACUUGAUGAAUUUGGUCUGCCUCUGAGCCACUGGAGGAAGCUGUUUUGAGCCAGGGUUUUUUGGCCUAAAGCCAGCAUUUCCUCAGUCUCCCUUUGUGGUUCGAAGGAUAUGGm6ACUAUUGCAAUACm6AUUUCUUCCUUCAAAUCCUGCCACUGUUUUGUUGGCCCACAACUAAUAGGACCUCAAAAUAAGCCAUGCUGCUUUGCACACACACUAGCCUUCUUUUGUACUUUUCAUUCUGGAUGGGCUUGGCCAAAACAGGCUCAGGCCAAAGm6ACCUCCCAAGCUGUAUGUACUUCCAGUAUCCUGAAACAGUGUUUGGUGACAUAAUGCCAAGGGUAAm6ACAAGCCUGAUUUAGGCACUGCUYUAUCCAGGGGCUUCACCCAUGAAAUUAAUAAAACUUAUCUGAGUCACUUGAAACUUGGUUCCCAGAAAACACAUUUCUGGUUUAUAAUCUCCUUUUAUGCUCACCUGACAUUAAUUAUCUAUCCUUGAUGAUGUGUUUAAACUGAGUAGCAGAAAm6ACAGAGGCCACACUUUCUGGGAAAUUUUAAAGGAAGAAACCAUUUUUAAUGAGAUGAAAAUAUUUAACGAAUUUAAAAAGCUAAUGACAAUUUUGAGAAAAGGUUUGGGAUGUAUAUUGCUAUGUAAUUUAAUAAACUGAUUUUAUGGAUAUAAA
2190   mRNA  unknown    Homo sapiens    ACGUGACGCACCUCGCUUCAACGCCGCCACCCGCUCCCUCCCGCCGUCGGCUGACGUGGAGGGCCGGAGGUGGCGGCGGCGGCGGCGGCGGCUGCUGCUGCUGCUGCCCGCGUCCGAGGCUCGCGGGCGGCGGGCCCGGAAAUGCACUCGGUGAUGGAAAGAGAGCCACUAUUCUGAAGAACACUUGGCCAAAGGGUCAUUAUCGUUAUUGUGAUGCUCUUUCUAUGCUGGGGGAAUAUGACUGGGCCCUGCAAGCAAACAUAAAAGCUCAAAAACUCUGUAAAAAUGACCCUGAGGGAAUCAAGGAUCUAAUUCAGCAGCAUGUAAAGUUACAAAAACAAAUAGAAGACCUACAAGGUCGAACAGCAAAUAAGGAUCCAAUUAAAGCCUUUUAUGAAAACAGGGCCUACACACCUAGGAGUUUAUCAGCACCUAUAUUUACUACUUCACUUAACUUUGUGGAGAAGGAAAGAGAUUUCAGAAAAAUUAAUCACGAAAUGGCCAACGGUGGUAAUCAGAAUCUAAAGGUGGCGGAUGAGGCGUUGAAGGUAGAUGAUUGUGACUGUCAUCCUGAAUUUUCACCACCAUCAAGUCAGCCUCCAAAACAUAAAGGAAAACAAAAAUCUCGAAACAAUGAAUCAGAAAAGUUCAGUUCUAGUUCACCAUUGACUUUACCAGCAGAUUUGAAGAACAUCUUGGAGAAACAGUUUUCUAAAUCUUCCAGAGCUGCACACCAGGAUUUUGCUAAUAUAAUGAAAAUGCUGAGAAGCUUAAUUCAAGAUGGCUAUAUGGCCUUAUUGGAGCAGCGUUGCCGCAGCGCUGCACAGGCCUUUACAGAGUUGCUGAACGGUUUAGAUCCUCAAAAAAUAAAGCAAUUGAACCUGGCCAUGAUUAACUAUGUUUUGGUCGUCUAUGGACUUGCCAUUUCUCUCCUUGGAAUAGGACAGCCUGAGGAAUUAUCUGAAGCCGAAAACCAGUUUAAGAGGAUUAUUGAACACUACCCCAGUGAGGGCCUUGAUUGCUUGGCCUACUGUGGAAUUGGAAAAGUAUAUUUGAAAAAAAACAGAUUUCUAGAAGCUCUCAAUCACUUUGAGAAAGCAAGAACCUUGAUUUAUCGUCUUCCUGGAGUGUUAACUUGGCCCACGAGUAAUGUGAUUAUUGAAGAGUCUCAGCCACAAAAAAUAAAGAUGCUGUUAGAGAAAUUUGUUGAAGAAUGCAAGUUCCCUCCAGUGCCAGAUGCCAUUUGUUGCUAUCAGAAGUGCCAUGGAUAUUCUAAGAUCCAGAUAUACAUAACUGAUCCAGACUUUAAGGGUUUUAUACGCAUCAGCUGUUGCCAGUACUGUAAAAUAGAAUUUCACAUGAAUUGCUGGAAGAAGUUAAAAACUACAACCUUUAAUGAUAAAAUUGACAAGGAUUUUCUACAAGGAAUAUGUCUUACCCCUGACUGUGAAGGUGUCAUUUCUAAGAUUAUCAUCUUCAGCAGUGGUGGUGAAGUUAAAUGUGAAUUUGAACACAAGGUCAUAAAAGAAAAGGUUCCUCCAAGACCUAUUCUGAAACAGAAAUGUUCUAGCCUAGAGAAACUAAGACUGAAAGAAGACAAAAAAUUGAAGAGAAAGAUCCAAAAAAAAGAAGCAAAAAAGUUAGCACAAGAAAGAAUGGAGGAGGACUUAAGAGAAAGUAAUCCACCCAAAAAUGAAGAGCAGAAAGAAACUGUAGACAAUGUUCAGCGUUGUCAGUUCCUUGAUGACAGAAUUCUACAGUGUAUAAAGCAGUAUGCUGACAAGAUUAAAUCCGGCAUACAGAAUACAGCCAUGCUUCUCAAAGAAUUGCUUUCUUGGAAAGUUUUGAGCACAGAAGACUAUACAACCUGUUUUUCUAGCAGAAAUUUUCUAAAUGAAGCAGUGGm6ACUAUGUUAUUCGCCACUUGAUUCAAGAAAAUAACAGAGUAAAGACAAGAAUAUUUCUGCAUGUUUUGAGUGAGCUUAAAGAAGUGGAGCCCAAAUUAGCCGCCUGGAUCCAAAAACUUAAUAGCUUUGGCUUAGAUGCCACAGGAACUUUCUUUUCUCGUUAUGGAGCAUCUCUUAAACUGCUUGAUUUUAGUAUCAUGACUUUCCUCUGGAAUGAGAAAUAUGGUCACAAACUAGm6ACUCUAUAGAAGGAAAGCAACUUGAUUAUUUCUCUGAGCCAGCAUCAUUGAAGGAAGCCCGUUGUUUAAUAUGGCUGCUAGAAGAACACAGAGACAAGUUCCCAGCAUUGCAUAGUGCUUUAGAUGAAUUCUUUGAUAUAAUGGACAGCCGCUGUACUGUGUUAAGGAAACAAGAUAGUGGUGAAGCACCGUUUAGUUCAACCAAGGUGAAAAACAAAAGCAAGAAAAAGAAGCCAAAGGAUUCAAAGCCUAUGUUAGUUGGGUCUGGAACAACUUCAGUAACUUCAAAUAAUGAGAUCAUCACUUCAAGUGAAGACCAUAGCAAUCGAAAUUCAGAUUCUGCAGGCCCAUUUGCAGUGCCUGACCAUCUUCGGCAAGAUGUAGAAGAAUUCGAAGCUCUCUAUGACCAACACAGUAACGAAUAUGUUGUCCGCAAUAAGAAGCUAUGGGACAUGAACCCAAAACAAAAAUGUUCAACUCUAUAUGAUUACUUCUCUCAGUUUUUGGAGGAACAUGGUCCCUUGGm6ACAUGAGUAACAAGAUGUUCUCUGCAGAAUAUGAGUUUUUCCCAGAAGAAACUCGACAGAUACUAGAAAAAGCAGGAGGUUUAAAACCUUUUCUCUUGGGAUGCCCUCGUUUUGUUGUGAUUGACAACUGUAUUGCACUGAAGAAGGUUGCAUCACGGCUCAAGAAAAAAAGGAAGAAGAAAAACAUUAAAACAAAAGUAGAAGAAAUUUCAAAAGCAGGGGAGUAUGUACGAGUUAAACUACAACUGAAUCCAGCUGCUAGGGAAUUUAAACCAGAUGUAAAGUCUAAACCAGUGUCAGAUUCAUCUUCAGCACCAGCUUUUGAAAAUGUGAAACCCAAACCUGUGUCUGCAAAUUCUCCCAAGCCAGCUUGUGAAGAUGUGAAGGCCAAACCAGUAUCCGACAAUUCUUCUAGACAAGUUUCUGAGGAUGGGCAACCCAAAGGGGUCUCUUCUAAUUCUCCUAAACCAGGCUCUGAGGAUGCAAAUUACAAGCGAGUCUCCUGUAAUUCCCCCAAACCGGUUCUUGAGGAUGUGAAACCAACUUAUUGGGCUCAAUCCCAUUUGGUCACAGGAUACUGUACGUAUCUUCCUUUCCAGAGAUUUGAUAUCACCCAGACACCGCCAGCAUACm6AUAAACGUGUUACCAGGUUUGCCCCAGUACACCAGCAUAUAUACACCCUUGGCCAGCCUUUCUCCUGAAUAUCAGCUACCAAGAUCAGUACCAGUGGUGCCGUCUUUUGUAGCCAAUGm6ACAGAGCAGAUAAAAAUGCUGCUGCCUAUUUUGAGGGUCAUCAUUUGAAUGCUGAGAAUGUUGCUGGUCACCAGAUUGCCUCUGAAACACAGAUCCUUGAGGGCUCUUUGGGAAUAUCUGUAAAGUCACACUGCAGCACAGGUGAUGCUCAUACAGUCCUGAGUGAGUCUAACAGAAAUGAUGAGCACUGUGGAAAUUCUAACAACAAAUGUGAAGUAAUUCCAGAAAGCACCAGUGCAGUAACAAACAUUCCACACGUGCAGAUGGUUGCCAUACAGGUAUCUUGGAACAUAAUACACCAAGAAGUCAAUACUGAGCCAUAUAAUCCUUUUGAGGAACGACAAGGGGAAAUUUCACGGAUUGAAAAGGAGCACCAAGUAUUACAAGACCAACUUCAAGAAGUGUAUGAAAAUUAUGAGCAGAUAAAACUUAAGGGCUUAGAAGAGACCAGGGACCUGGAAGAGAAGUUGAAAAGGCACUUAGAAGAAAACAAGAUCUCAAAGACGGAAUUAGAUUGGUUCCUUCAAGAUUUGGAAAGAGAAAUUAAAAAAUGGCAACAGGAAAAAAAAGAAAUCCAAGAAAGACUAAAAUCACUGAAGAAGAAAAUUAAAAAGGUUUCAAAUGCCAGUGAAAUGUAUACCCAGAAAAAUGAUGGAAAGGAAAAGGAACAUGAAUUACAUCUGGAUCAGUCCCUUGAAAUCAGCAACACACUUACAAAUGAGAAAAUGAAAAUAGAAGAGUAUAUAAAGAAAGGGAAAGAGGAUUAUGAAGAGAGUCAUCAGAGAGCUGUGGCUGCAGAGGUAUCCGUACUUGAAAACUGGAAGGAGAGUGAAGUGUAUAAGCUACAGAUCAUGGAGUCACAAGCAGAAGCCUUUCUGAAGAAGCUGGGGCUGAUUAGCCGUGAUCCUGCAGCAUAUCCUGACAUGGAGUCUGAUAUACGUUCAUGGGAAUUGUUUCUUUCUAAUGUUACAAAAGAAAUUGAGAAAGCAAAGUCUCAGUUUGAAGAACAAAUUAAGGCAAUUAAAAAUGGUUCUCGGCUCAGUGAACUUUCUAAAGUGCAGAUUUCUGAGCUUUCAUUUCCUGCCUGUAACACGGUUCAUCCCGAGUUACUCCCUGAGUCUUCAGGCGACGAUGGCCAAGGGCUUGUGACUUCUGCAAGCGACGUGACUGGAAACCACGCAGCACUUCACAGGGAUCCUAGUGUGUUCUCUGCUGGUGAUUCCCCAGGGGAGGCUCCUUCUGCGCUGUUGCCAGGGCCACCCCCUGGUCAGCCUGAAGCCACUCAGCUGACAGGGCCAAAACGGGCUGGCCAGGCAGCUCUGUCAGAACGAAGCCCUGUGGCUGAUCGGAAGCAGCCUGUUCCUCCAGGACGUGCUGCGCGUUCAAGCCAGUCUCCAAAAAAGCCGUUCAAUAGUAUUAUUGAGCACCUGUCAGUGGUAUUCCCAUGUUACAACAGCACUGAGCUUGCUGGUUUUAUUAAAAAAGUGCGAAGCAAAAACAAGAACUCACUCUCAGGAUUGAGUAUUGAUGAAAUUGUCCAAAGAGUGACAGAACACAUUCUAGAUGAACAGAAAAAGAAAAAGCCAAACCCAGGAAAGGACAAGAGGACUUAUGAGCCCAGCUCUGCCACCCCCGUGACCAGGUCCUCCCAGGGCUCACCCUCGGUGGUUGUUGCACCAUCACCCAAAACCAAGGGGCAGAAAGCAGAAGAUGUCCCUGUGAGGAUUGCACUGGGUGCAAGUUCCUGUGAAAUAUGCCACGAGGUGUUCAAAUCAAAAAACGUGCGUGUGCUCAAAUGUGGGCACAAGUAUCACAAAGGGUGCUYUAAGCAGUGGCUUAAAGGGCAGAGCGCUUGCCCGGCCUGCCAGGGUCGUGAUCUCCUGACAGAAGAGUCACCUUCUGGAAGAGGCUGGCCCAGUCAGAAUCAGGAGCUGCCUUCCUGCUCUUCUAGGUAGUCACACUUCACUAAAGUGUCAYCCACCAGUGUGUUGAAUCCGAAGAAUGACAAUUUUCUACCACUGGUGUAAAAAACAAACAUUUGAAGACCCUUGUGCAUUGUGUGUCACAAAGCUAAAUACAUGGAAAUCGUUAAUAUCGCUGAUAUUAAGUAAUUUCCCCACUCUGAGUGAAUACUUUGAUGAUUGCCAACAGUGGCUAAUAAAAUGACGGCUACCACACUCAUGGGUCACUGGGGCUGCGCAGGGCUCUUUGAGGUGGGUGGCUUCUUUUGGAAAGUACUAUGAACGUCUCGAAGCAGUAUUCUAGUGAUAAGAAUUCUUAm6ACAUAGCCAAGCGCCCCACGUUUGUUCCCCACGUUUGUUCCCCUUUUCUGUUUGAAAAACCUGUUCUGGUAGCUCCACAAGAGAGAUGAUACUGACUUUUUAAAUUUUUUACAAGAGUCUGUAUUCCUGAUAUGCCUAUAUUUUUCCUCAAAGAUUCUGCAUUUUAAGGAUGGGCAUAAGCAAACUAUAUUUUAAUAAUUUAUAGUUAAUGUUAAAAUAUUGGCUGAUUUAGACCAAAAGAUUCAAAUCUCCUCUUUGUGAAAUCCCAUCUGCAUUUGAUUUUUUAUUAUUUUAUGUUCCCCCGUUAGAUUGUUUUAAGUGUUUGCUUUUCAUCUUUUAUAGAUGUAAUCUGAUUUUCAAAAAUCAUUAACACUUUUUAAUUAGUAUCGACUAAGACUUUUUCCCCCUGGAAUCGAGGCUGUGUGUCCGUCAYCCCAGCCCCCGGUUGGAGCCUGCUCUUUGAACUCCGCUGCCUUCCUUAGCAGCUUCUGUCCUCUUCUGUGAGUCAGUCAGCGAGUGCUUGGGAUCCGCAYCCAGCCGUGCUGAGCACACAACAGGCUGUGUGUGGAAAUGGCCACCACCAUUCUCCUUCCCCACCCCACCACAAAAAGAGAAGCUGUGUCUYUAGACAACCCUGAGGUAUCUGUGUUACAAUCGUUCUGUGUUUGAUAUUUGUGUAAAGUAUGCAUGCAGUCUUGUACUGUGACCUAAGAACAAAACUGUAACUGCAUUAGAAACCAUGAAAAAAUUAGAUAUUGUUUUGUGACUUUUAGACAGUGGUAAAUAUAGAm6ACCAUGAAUUCUGGUCACAUUCCAUUUCUCUCCAACAUGAAGGAUCAAAAAAUGUUUUUCAAUGUGUUCUUUGUUCCACUGGAAACUUAG
2191   mRNA  unknown    Homo sapiens    ACUAGGGAUUUGAAAGUGCACGGGCUGCGGAGUGGAGCUCGCAUCUGUUCCCGCCGCCCGCGAGCGGAUUAAAUUUCUGCAAAUUCAAACUGAAUGGGGCUUUCUUCUGCUGCCUUCCAGAGGGCGCCGGCAGCCCGCCGCGCGCUUCUCUCCGGCGGGAGCGGCCGCCCAGCGCACGGCUAGGAGCGAUCGCGGGAGCCCGACCCAAGCCCGUGCGGGCCAGACGGCGGCGGCGAGGCGGAGGCUGCGGAGGCACCCGGGCUCCCGGACCCAGGCACCCGGACCCCGGGACCCAGGCGCCGCCGGACCGCGCCCCACCCCGCGCGCCCGAGCAGGGCGACUGUCAUUAGCUUCCUGGACGGGm6ACCCGGGGCGGGAUCCUGGUGUCCUGAAAGGGGCCCGGGCGACCCUAAGAGGAAGAm6ACUUUUGGGGGCGGGGUCCCCGGUCCCGCGUCCCCUGGGCAGCCGCUAUUGUCUACGCGCCUCGCUGGGCGGCGCGGGGGGCGUGAUCGCGGCGGCCCCGGGCUCUGGGUGCGGAGACCCAGGCGGGGCUGGGCCCAGGGCGGCGGCGGGAGAAGCCGGGGAAGCCGAAGAGCCUGGGGAGGAGGAGCUGCGAGCGCGGGAGACGAGCAGGAGCCGCGCGGGCCGCGGCGAGCGCGAUGCCGGCGGCGGCGGGGGACGGGCUCCUGGGGGAGCCGGCGGCGCCUGGGGGCGGCGGCGGCGCGGAGGACGCGGCCAGGCCCGCGGCGGCCUGCGAGGGAAGUUUCCUGCCUGCCUGGGUGAGCGGCGUGCCCCGCGAGCGGCUCCGCGACUUCCAGCACCACAAGCGCGUGGGCAACUACCUCAUCGGCAGCAGGAAGCUGGGCGAGGGCUCCUUUGCCAAGGUGCGCGAGGGGCUGCACGUGCUGACCGGGGAGAAGGUGGCCAUAAAAGUCAUUGAUAAGAAGAGAGCCAAAAAGGACACCUAUGUCACCAAAAACCUGCGGCGAGAGGGUCAGAUCCAGCAGAUGAUCCGCCACCCCAAUAUCACUCAGCUCCUUGAUAUUUUAGAAACGGAAAACAGCUACUACCUGGUCAUGGAGCUGUGCCCUGGGGGCAACCUGAUGCACAAGAUCUAUGAGAAGAAGCGGCUGGAGGAGUCCGAAGCCCGCAGAUACAUCCGACAGCUCAUCUCUGCCGUAGAGCACCUGCACCGGGCCGGGGUGGUCCACAGAGACUUGAAGAUAGAGAAUUUGCUACUAGAUGAAGACAAUAAUAUCAAGCUGAUUGACUUUGGUUUGAGCAACUGCGCAGGGAUCCUGGGUUACUCGGAUCCGUUCAGCACACAGUGUGGCAGCCCUGCCUACGCUGCACCUGAACUGCUCGCCAGGAAGAAAUACGGCCCCAAAAUCGAUGUCUGGUCCAUAGGUGUGAACAUGUAUGCCAUGUUGACCGGGACGCUGCCUUUCACGGUGGAGCCUUUCAGCCUGAGGGCUUUGUACCAGAAGAUGGUAGACAAAGAAAUGAACCCCCUCCCCACUCAGCUCUCCACAGGUGCCAUCAGUUUCCUGCGCUCUCUCCUGGAACCGGAUCCUGUGAAGAGGCCAAAUAUUCAGCAGGCACUGGCGAAUCGCUGGCUUAAUGAGAAUUACACGGGCAAAGUGCCCUGUAAUGUCACCUAUCCCAACAGGAUUUCUCUGGAAGAUCUGAGCCCGAGCGUCGUGCUGCACAUGACCGAGAAGCUGGGUUACAAGAACAGCGACGUGAUCAACACUGUGCUCUCCAACCGCGCCUGCCACAUCCUGGCCAUCUACUUCCUCUUAAACAAGAAACUGGAGCGCUAUUUGUCAGGGAAAUCUGACAUCCAGGACAGCCUCUGCUACAAGACCCGGCUCUACCAGAUAGAAAAGUACAGGGCCCCCAAGGAGUCCUAUGAGGCCUCUCUGGACACCUGGACACGAGAUCUUGAAUUCCAUGCCGUGCAGGAUAAAAAGCCCAAAGAACAAGAAAAAAGAGGGGAUUUUCUUCAUCGACCAUUCUCCAAGAAGUUGGACAAGAACCUGCCCUCGCACAAACAGCCCUCAGGCUCGCUUAUGACACAGAUUCAGAACACCAAAGCCCUCCUGAAGGACCGGAAGGCCUCCAAGUCCAGCUUCCCCGACAAAGAUUCCUUUGGCUGCCGCAAUAUUUUCCGCAAAACCUCAGAUUCCAAUUGUGUGGCUUCUUCUUCCAUGGAGUUCAUCCCCGUGCCACCGCCCAGGACCCCGAGGAUUGUGAAGAAACCGGAGCCCCAUCAGCCAGGGCCCGGAAGCACUGGCAUCCCCCACAAGGAAGACCCCCUGAUGCUGGm6ACAUGGUGCGCUCCUUCGAGUCUGUGGAUCGCGACGACCACGUAGAAGUGCUGUCUCCCUCUCAUCACUACAGGAUUCUGAACUCCCCGGUCAGCUUGGCUCGCAGAAAUUCCAGCGAGAGGACGCUGUCCCCGGGUCUGCCAUCCGGAAGCAUGUCGCCUCUCCAUACUCCUUUGCAUCCAACUCUGGUCUCUUUUGCUCACGAAGAUAAGAm6ACAGCCCCCCAAAAGAGGAGGGCCUGUGUUGCCCACCUCCGGUUCCCAGCAAUGGCCCCAUGCAGCCUCUGGGGAGCCCCAAUUGUGUGAAAAGCCGAGGCCGGUUCCCUAUGAUGGGCAUCGGm6ACAGAUGUUAAGGAAGCGCCAUCAGAGUCUGCAGCCAUCUGCAGAUAGGCCCCUGGAGGCCAGCCUGCCCCCACUGCAGCCCCUAGCCCCUGUGAm6ACCUUGCCUUUGACAUGGCCGAUGGGGUCAAGACCCAGUGCUAACUUGGGCCAGCGGGGUUUGGGGUAUCUCUAGAAAACAGCAm6ACUGAACAGAGCUCCACACAUCUGUCAGGGUGUGAGCACUCCAAGGCCUCGCGUGGAGCAUCCUUAGUCCCACCUGUAGCUGAAUCCACAGACCCAAAGCCUGCACAACCCAACCUCGCUUAGGGACCCCCAGAGAUGCUGGAAUCGCUAGGAGGGUUGGCUCCAGGGGCAGCCAAUUCCUAUCAUUCAGAUCUUCCUUCCUCCCAAGUm6ACUCACCAACCCCUUCCACUUCCCACUUCCCCCAGGCUUGGGGGGAAAACAGGGCAUGAGCCUUCUGGGGCACUCAGAUUAUGGm6ACUGUUACCAGAUCUUUCUUCACGCUGUGCUACAUGUGUGCCUCUCACAGCAGUUGGCCACAGUUACAGGGAGAGAm6ACAAUAUCACAGUCAUUCAUCCAGGCCACGUUUCCUCUGCGGAGUGUAGCAGCCCUGCCUUUCAUAGCAGGGAUUACCUGAAGGCCAGCAGGAGCCGGGGGCAGGCCCAGGAUCCUCAGAGGAAGAUGGAGAGGAGCUUCGGACCAAGAUCAAACCAAACAGUGGGGACCCCAACAGAAGAGAAAGACUGAAGGAGACACUCAUUUCCCAAGCAAGAUUUUGAUAGAUUUUUGUUGUUGUUGUUGUUGAAACAUGCUAAUGAUUGAAUUAUCUUUUCCAAAGAUUUUUUUUAAAUGUGAUGUCGGUAAAUUGAAAUAACAUAAUUUUUUAAAACUUGGAUGGAGAGAUGAGAAGCAAUUCCACCAAACUCAUGUUUUCACAGGAGGGUUCAGUGUGGAGAGCAAAAAAGCUGm6ACUGUGGUGAUUUGCUGAGUGCUGUGGCCCACAGGCAGGGCAAGUCUCGGUGGCCCUGUGUUCAUCCUGUUGUUUAAGGCAUAGCCCUGAUCCUUCUGGAAGGCAUAGAACACGGUUACAGCUGGUUCUGUAGAAAGAGGGAAAAGAUGAUUGUGACAAUUCAGAGCAUAACUCAGAUGGCGAGAAGGCAGCAUUAUCUCUGUGCGAUGCUGAUUUCAAGCUGCCCACAGAm6ACUGGUGCGGCUCAGAGCUCGGCGAGUUUGCUGGGAGCUGGGAGCAGGCUUGCCUGGCAGAGAACCUGUUCAGAUACAGGCCAGUUUCUUCUUCGAGGAAAGCCAAGCUCCUCAAACAGGGUUCAGUCCACGUUGUGUUUUCACACCUUUCUCCAAGGAUCGAACCAAAGAUGUGUCUCCAGUAUUGUGUCUGUGCCCCUGUGUGUGUUUUGUGGm6ACAGCCGUGUUGUCUGm6ACUGUAUCCAGCUGGCACUUGACAGGGUGCAGUCAUUGGUGAGAAGAAUCAGAAAAAGAAGACCCAUCAGCACAGGUUGGAUAGGGGUUAGUGUAGGAGACCAGUUACAGAAUGGCCUGGAGUCUUCAACUUUUGACCGGUGCAGGUGUGACCAGAGACCACCUCUGUGGCCACCUCAGAUAGUCAUCUCAGUCCAAGGAUCCCAAAACACAAAUCUAGAAUUGCAAAGCCAGCCUUUAUUUCCCUGGCAGGCAGCCUUGCCAGAAGGCAGAGAGGCAGUUCUGAAUCAUUCUCUCAUUCACCAGUGGUGACAUCCUUCAGUCCCUCACAUCUCUGACAGAGCGGGACAGAAUGGAUAUUUGGCUGACCUUGGUGAGACCUGGAGCUGCCUGUUUCUUCCCUAGGGGAUCACCACGGCUCUAGGGCAUUCUAGGAUGAGGUCAGACCCCUUGGCCAUUGGUGUUAUUUUUUGUAUAGCUUCAGACUGGGUUCCAGAm6ACUUACCAUUGAAAACAGAGCUUUUAGGCCAGGUGUGGUGGCUCACACCUGUAAUCCCAGCACUUUGGGAGGCCGAGGCAGGUGGAUCGCUUGAGCUCAGGAGUUCGAGAGCAGCCUGGGCAACAUGGUGAAAGCCCGUCUCUACCGAAAAAUACAAAAAAAAAUAGCUGGGUGUGGUGGUACGUGCCUGUAGUCCCAGCUACUUCGGGGm6ACUGAGGUGGGAGGAUCACUUGAACCUAGGAGGUCGAGGCUGCAGUGAGCCAAGAUCAUGCUACUGCACUCCAGCUUAGGUGGCAAAGUGAGACCCUGUCUCCAAAAAAAGAAAAUAGAGCUUUAUAAGCAGAGAGAAGAAAAUAAUCAUCUAAGACCAUCUCUCCAUUCGACAUGAAGUGUACCUUUUCUAAAGm6ACGGUUUCCAGCUGCAACGGCUCCACUUUGCAGGCUUGCAGGGUGUAUACCUGCGCAUUGGGAm6ACUUGCUGGAACCCCUGAUGCAUUUUCCUUGAGAGCAGGGGUACUUCCGCCUUGCCGUUAGCUUGUGGAGAACGUGCUUCUUAUUCCUGGCAGGCUUCAAGAACAGCUGCACAUGUGCCGCUAACUGACCGCGUUGCCAUUGGCGACCUGGm6ACUCUGAm6ACUCAGGUUUAUUCUAAACCCAGUGAGAGGUGAGGGGGAGUGAUGAAAGGGGAUCAGCUGUAUUUGUGUGUGUGUGUGUGUGUGAGCACCUGACAAAUCUAUGAAACCGAGUGAAAGGAGAAAUGUUAGAUUCUUUAUUAUUUUAUUAUAUUUAUAUGGAAAGCUCGACUCUCCCUUUGGUAAGUCCGAAGCAUGUUGUCUGUUCGACCGUGACUGUCUUCCUCAGUCUGUGCCUGUGAUUCCAGUCACCCUGUAGUUACUGACAGAAAUUGACUGGACUGUCAUUGUGUGAAGUCUAGGAGGAAAUGUCCAUUUUAAUUGUAUGAUUUGGUCAUAAGUAAGGACUAUAUUUAUGUCACCAUUAUUAGAUAUAUGUACUUUUGUAAUGACUGUGAAAUACACUUUUCCCUCACUACGACUGCUUCUUUAUUUGCUGAUAAAUCUUAAAACAACUAAGUACGUUGCAAAUAAUAGUACAGGUACCAUCUUUUAUGUGAAGUUCUUUUUCUUUUUUUGAGACAGGGUCUUGCUCUGUCACCCAGGCUGGAGUGCAGUGGCACAAUCACAGUUCACUGCAGCCUCAACCUCUCCAGAUUCAAGUGAUCCUCCCAUCUCAGCCUCCCAAGUAGCUGGGACUACAGUUGUGCACCACAAUGCCUAGCUAAUUUUUUUUGUAUUUUGUAGAAAUGGGGUUUCGCCAUGUUGCUCAGGCUGAUCUCAAACUCCUGGGCUCCAACGAUCUGCCCACCUUGGCCUCCCAAAGUGCUGAGAUUACAGGCGUGAGCCACUGUGCCUGGCCUUAUGUAAAGCUCUUGACCUAGCAUCUGACUGGAAACAAGCGGGAAUUGCAUUGGGGGGCAUUUUCUGGGCCAGUUUCCCUGCCUUAUUUUACCUGCAAUAGGUGUGCCUACAAAAGUCUUUCUGACAUACACACUGCAGGUGGCAGUUCAAGAAGAAUCAACCUUUUUCAUUUGGGGAUAUUAGGAUCUUCCUUGGAGACUCUGAAAAUGGCACACAAAGAAUGGCAGUUAUGAACGUGACUUCUAGAUUUUGUCCUUGUAGGAGGCCUUGGUCAUGGAUAGGGGAAGAGGGAUGAUGGGAUGGAAUGGGAGGGUGGGAUCUAGAUGACCUCUUGAAAUUGUCCCAGUUACUGCUUCCUUCAUAACUGUUCACAAAACGUUUUUCAUAUAUACCACCUUGUUUCCCCUGGGAAGUGAGGGGACGAAGCCUUAGAGGGUGACAUAGCUAGAAAGUGGAGAAGCUCACUGUUCACUGUGCAAAGCCCCAGUAGUCGGAUUCCGGGGAAAAGAACAAGUAUCUAGUUUUGAUGACAAUGUUUUCUUGUAAGAAUCCCAACACUUUAGAAUAGAAAAGGACCUAAGAUUCUCUGGCUCAGCCCCAGCCUUUCUGAAGAAGGGAAAACUAGGGACCCAGAUGGUUUAAGGACACCCCAGAGUCCCCAGAUGAGCUGGCAUUUGAGCUGGUCUGGAGCAGAGUUUCUCCCUCAAAGAACACAGAGAAAUCAGAGAGUGGCUGCCAUGGUCAGAGGGGGAUGUCAACAACAGAUCAAGCCGUCAUCACAACAGGUAUUUCUGAAGUUCCUGCAGGGACUAGGUCUUGCAUUUUUAAGUCCUUUUCAAAACUGUGCAGCUUCCUGAACCUUAUGCUGUUUGUCCCAUCCACUCUUGAAGCUGGGGAAAGACAGCUUUCUUUGGGAACUCUGUCUUUCUCAGUUGACUUCCCAAGUAAGCAGCAAACCCCUGGAUAGCCUUGUUAUCUACUUUAGGUAUUAAGAGGCUAUUGGGUUUUACUAGAUUAAAUCAAUAAAACAUUUCCUAUAGAGCCAUAUCAUACACUGAAGCAAAUUCAGAAAGAAUGCAAAACUGCUAUCUUUUGGGGGAGUCUGGAAGCCUGUUGGUUAGUGUAUUUAUUUUCUUUGUGGGGUCUUCUGUGAGCUACAGGCACAGUAAGAAUAAUUCAGAGCGGUACUGGGAGUUGGUUCAAUUUCAUGUCAUCACUUUUCAAUGAAGGGAGUGCAUUUCCUGAGUAGUAAAUGAGUAUAUUAUUUGUGGCAGCUUUUCUGUUAAGGGAGCUUUCCAGACAUCUGGUUGCAAAGACAAAUAGGAUAUAUAUUUGUACUUCUUCUCUGUGGACAUGUUUUUGUGACACACAGUUAUCUCUAGGAGUUGACGUCUGUGGGCACUAAGGGACUGAGGUUGGGGGAGAAAGCUGAGGAGGCUUUGGAAGAGAAGGUGAGGAGCAUUUCAGGAUUUGCAGUCCCCCUCCACAUGUAUCCACAUCUGAGCUGGUGGUGUUCCAAUAAUGAGGCAUUUGGGGCAACCAAUUUUGGAAGGAUAGAAUAGCUUUAUGUGGAGCAAACUUGAGGAUCAAUUGGAGUUGAGUGGUUUAAAACUUAAAGAUGGCACAGGAAGCUGUAUCAUUUACAGGUGAAAAAAAUAAAUGGGUCUGACUUCA
2192   mRNA  unknown    Homo sapiens    ACUCGCUGAGGCCCCGACGCAGGGCCGGGCCGGGCCCAGGGCCGAGGAGCGCGGCGGCCAGAGCGGGGCCGCGGAGGCGACGCCGGGGACGCCCGCGCGACGAGCAGGUGGCGGCGGCUGCAGGCUUGUCCAGCCGGAAGCCCUGAGGGCAGCUGUUCCCACUGGCUCUGCUGACCUUGUGCCUUGGACGGCUGUCCUCAGCGAGGGGCCGUGCACCCGCUCCUGAGCAGCGCCAUGGGCCUGCUGGCCUUCCUGAAGACCCAGUUCGUGCUGCACCUGCUGGUCGGCUUUGUCUUCGUGGUGAGUGGUCUGGUCAUCAACUUCGUCCAGCUGUGCACGCUGGCGCUCUGGCCGGUCAGCAAGCAGCUCUACCGCCGCCUCAACUGCCGCCUCGCCUACUCACUCUGGAGCCAACUGGUCAUGCUGCUGGAGUGGUGGUCCUGCACGGAGUGUACACUGUUCACGGACCAGGCCACGGUAGAGCGCUUUGGGAAGGAGCACGCAGUCAUCAUCCUCAACCACAACUUCGAGAUCGACUUCCUCUGUGGGUGGACCAUGUGUGAGCGCUUCGGAGUGCUGGGGAGCUCCAAGGUCCUCGCUAAGAAGGAGCUGCUCUACGUGCCCCUCAUCGGCUGGACGUGGUACUUUCUGGAGAUUGUGUUCUGCAAGCGGAAGUGGGAGGAGGACCGGGACACCGUGGUCGAAGGGCUGAGGCGCCUGUCGGACUACCCCGAGUACAUGUGGUUUCUCCUGUACUGCGAGGGGACGCGCUUCACGGAGACCAAGCACCGCGUUAGCAUGGAGGUGGCGGCUGCUAAGGGGCUUCCUGUCCUCAAGUACCACCUGCUGCCGCGGACCAAGGGCUUCACCACCGCAGUCAAGUGCCUCCGGGGGACAGUCGCAGCUGUCUAUGAUGUAACCCUGAACUUCAGAGGAAACAAGAACCCGUCCCUGCUGGGGAUCCUCUACGGGAAGAAGUACGAGGCGGACAUGUGCGUGAGGAGAUUUCCUCUGGAAGACAUCCCGCUGGAUGAAAAGGAAGCAGCUCAGUGGCUUCAUAAACUGUACCAGGAGAAGGACGCGCUCCAGGAGAUAUAUAAUCAGAAGGGCAUGUUUCCAGGGGAGCAGUUUAAGCCUGCCCGGAGGCCGUGGACCCUCCUGAACUUCCUGUCCUGGGCCACCAUUCUCCUGUCUCCCCUCUUCAGUUUUGUCUUGGGCGUCUUUGCCAGCGGAUCACCUCUCCUGAUCCUGACUUUCUUGGGGUUUGUGGGAGCAGCUUCCUUUGGAGUUCGCAGACUGAUAGGAGUAACUGAGAUAGAAAAAGGCUCCAGCUACGGAAACCAAGAGUUUAAGAAAAAGGAAUAAUUAAUGGCUGUGACUGAACACACGCGGCCCUGACGGUGGUAUCCAGUUAACUCAAAACCAACACACAGAGUGCAGGAAAAGm6ACAAUUAGAAm6ACUAUUUUUCUUAUUAm6ACUGGUGACUAAUAUUAACAAAACUUGAGCCAAGAGUAAAGAAUUCAGAAGGCCUGUCAGGUGAAGUCUUCAGCCUCCCACAGCGCAGGGUCCCAGCAUCUCCACGCGCGCCCGUGGGAGGUGGGUCCGGCCGGAGAGGCCUCCCGCGGACGCCGUCUCUCCAGAm6ACUCCGCUUCCAAGAGGGAGCCUUUGGCUGCUUUCUCUCCUUAAACUUAGAUCAAAUUUUUUGGUUUUUAAUCAGUUAUCUUGGGAm6ACUUAACCUGGCCCCUCACCUCUUCUGCACCCCCCGCCCCCGAAm6ACUGUCUCGUAAUGAAUUUCUGCUGUCCUCCUGGGAGUGGACGGCCGGGUCCCGUCCCCCGGGAGCAUCGCUCGGCUCAGCACCUUGGCUCCCAGUGGGGGCCCCGUGGAGGGCGCCCGUAGUGAUAAGCACACCGGCACGAACGUCAGGUCCAUUCCUCGAAGUCGGAGCCCUCACUCUGCCCUGUCCUGGGGCUGGCUGAGGGCGAACGCCCCACCUCACUUUCUAGAGCCCUGUCUGUCCUAGCUCCUAUCUGACCUUGUGUGUAAAUACGUACAUCUGUUUUUAAAGUGGAUGGGCCCCUGAGAACUCAGUGAAAUGCAGAGUUCUCCAUGCACCUAAAGCUCCUUUGUCGCUCUCAUGGCUGUCAGAUCCUGGUCCCUCCACACUGGGUGCUGGGGAGGGAGGACCCUCGGGGCUACCGCGCGCCCCCCCAYCCCACAGAUCAGGAGCCAAGGAGGGAGAACAGGGCAGCCUGUGGGm6ACUCUAGGAUGCUUCAGAAGAAGCGACGGCACCGUCAACCCUCUGUUUUUUAAAGGUGGUUGGAGm6ACUGUUAACACUGAGCUCAUUGACUUCUAGAGAUUUUAUUUUUACUGGUUGAUCUCUUGGUGGUUUUCAACUUCCUGCUGGAAACUAGAGGUGGGGCACCCCCCACCCCCCAGCCUCGCACUGUGUCCUUGGGGAAGGCCCGCCCCCAYCCUGGCCGGUGUCACUGUGGCCCGGCCACCCCUGAGCGCCCAGCUCCCUACCUCCUGGACGUCUCUGAGAGUCCAGGCAGAGCAGAGGGCAGCGCUCGGCCGGUCAUGCUGGCUCCCUUGGCCUUGCAGCGAGCCCCUGGCCCACGCCGAGCGAGGGAUGCUUCUCCCUACAGCAUGUCCACUCCCCCGGCAUGGCCAGGUGGGGCCCCUGGGGCAAUGGCAGUGGUAGAACGCUCAACUUGGUUGCGGUACCAUCAGCCCACCUGCAUUUGGCUUUCGACUUGCUUGUUCUAAGUCACAGCGCCCUCAUCUUUUUAGCAAGGUAAAAAAACCAAAAUGGGUGUUAUCUCUGAUAUCUUGAAACCAGCGUUCUGAAUAGAGGUAGGUUGAGUUUUCUAGGGGAAAACAAAUGGAGAAAAGAGGCAUGAAGAAAAGUAAACCGAGAACAUAAUUAGGCAUCGGGCCUAAGUGUCCUGGGGAGAUUGGAGGGGACGGCAGCGUUCUGCAUGAUGGAGGCGCUGCCGGGCCCCGGGUCUGUGGGGGCCGUGCUCUCAGGGCGUGUGCGGGACGCCACCUGUGCACACCUGCUCAGAGCACGGCUCCUCGCAGGGGUGAAGGGGCAGACCAACGAAACCAGAUGAGACCAACGACACCAUGCGAGACACGCUUGCAGACACUGUUGUUUUGGAAAUGUGCUUCCCUCCAUCUGAAAUCUCAUCCCUCCACCCGCCCACUCGGGCAGCUGUGCCGUGGGCAGGGCAUGCGCUCCCCUGGCUGAGCACCCCAGAGAUUCUCCUGCACCUUCCUCAUGCCGCACGCUGCUCAYCCGUCUCCAUGUGUGUUUAGAUCCAUGCCAUUCACUGACUCACUAm6ACACCUGCAAAAUCUYUAAGGAAAAAAGCUGAAGGGUACGACCAUGCACAUAUGUGACCUGGAAAAUGCAAAUUUAGAUCUUUUAUGAUUUAAUUAUUAUUGUUUCCCAUAGAAGUUCCCUCCCUUUGAAAUUAAUAUAUAAUGUAUAAAUUCUGCACUGAGCCAUGGCGGAGCUGGGCAGCCCCUAGGUUAGAGUGGAGACGGAGGCCCAGGCGCAGGGGUCACACCUCAUCUGGUUUCCUUCCCAUCUCACAGCUUAGCUUGUGCUUCUCAACACCAAGUCUYUAAGAGCAAUAAAAACUACACCAUGAAUGUUUGAAUUUUUUUUUUUUGGGGGGGGGAGGGUGGAUUUUGCUUUUCAUCCAGAAGGAAAAGGGGAGGAGAGCUCCUUUACAUUUUUUAAAUUAAAUUCAUAAAUCCCAGAACAGUCUUUUUUUUUUCUUUUUCCUUUACACCCUACUUCUGAGCUUAAUUCAGUUGAUGUUAUGUCCAAAUUCAGGCUGAGUGCUCAGGCUGAAGCAACUCUGUAGCCCACAGUCCGUGCUGGCCACUGUCGGGGUGAGGCACAUUCUAGGCCUGGCAUCGCUGAUGCCCUCUGCACCCAGUCCUUGAGCCAGGCCGAGGACAGGAAGGGCAUUGCUGGCCUGUAGCUCCUGUUACCCACCCAGAGCCAGGCGCCACACUGGAGGCUCCCAGGCGGGAGGGCCCAGGCCCACCCACGGGCGUCUGGCCGGUCAAGCUCCCAGCCUGGGCCGUGGUCUCCUGGGGACGCCGCUGGCCUCCCAGCUUAGGCCCAGGUGCCAGGUGUCAUGGGGUCUCCUGCCCAUCUUCCCAAGGAUGCCAUUGCUGUCUUCAUCGUCUUCCCCCGUGUGAGACACUGGUUGUCUGGUACUCGGCGACAGUGUACCAGACGCGCACCCUAUGUGAGGUGCUYUAAGGUCCCUGUCCUCAGGAAGCGCAGUCUGGUGGAAGAGAUGAGCGCUGAACAAAUCACUAAAUAACACAAAACAACAAUGUAAGCAGCACUUUCUUGUGUAAAAAAAAAAAAAAAGCACGUCCUGUCGAUGAAUUUUGAGUCUCUCUGCCUUGCCUGUCCCGACUCCCUUUCGCGCACCGUGGCAUGAGAAUCUUUCCUCACGCUGUUCGUUGCGGUAUUGCUGAGCAUUGAUGUUGAUUUGAAGGAAAAGCCGUGGUUGGACCCAGCUGUGUGUUUCACUCACGUGCAAUUGAGUAGCUGUUGCCAGGCUGUCCAUGCCUGUUGUGm6ACUACCGGUUGGGGUCAGAUUUGGGGUGAAGAAUGAGUAAGUUUCUGCAUGCUUUGUCUCUACCUGAGACACUUCUACAACAAGCCAAGUAUAAUCUCUCCAGCCCUGCAGAUUUUCACCUGACUUGUUCAGCCCCAUGCGUAGACUCCCGCUGCAGGCCUCUGGCCUGUGGCUCACUGCAUGCAGCCCCUGGCGUGCAAUACUAGUGCUCCACGGCGCGAUGUGCUUCUAGCCCUUGCACUGCACCUAGGCUCAGGGUUCAAACGGCCAGCCCGAAAAGCCUGCCUGCCUUCUUUCUGGAAACAGCACGUCCCCGGCCGUGUGCCUGCCCCUUUCUCUACUGAGCUAGUCCCCAAACCAAAGGCAAGCCCCCUCGGGCCUCGGGGGAUGGGGCCGGCCACACCCCUGACUCCGCCCUGGCUCUGCCCCAUACCCCUGCCGUGGGGCCGACCUGGGGGAUGCAGACAUCCGGCUCCGUAUUCCUGCCUAUCGGGGCCAGGAUGCAAAAACAAUUUUUGCGUAAAAGAUGUCACACUGAUCUGCUGGAGUGGGGUGGACACAUGAAUUCAGUUUUAUCAUGAACACUCGCCACUGGCUGCUUGUUAAUUCAGGGAUAAUGGUGGCAUUCUUACAAACUGCUCGGGAAAUAGAAUGACGGGAACACUUUUAGGGAGCCCAGGAAGUUACCAGGGm6ACAUUGGUGUCGCCGGCCCAGGCAACAGCAGCGUACGCUUUUCAAAGAUCAUUGAGUUGUCUUAGAAUUUGAAGCUGUGUAAUGACAAUGUCACCUGGAGUUCGUCUCCAUUUCUUAm6ACUUUUUGUUGCACAAGUAUUUGGACAGAAGUCGAm6ACUGUGAAUGAGAUACUGAAAUGCACUAAAUUGUAUUACAUUAAACUGGAGUUACUUGAUACAAUGAAGAAAUGCAUCUGAUCUACUUGUAUUUAUUGUCUCAGAAUUGUACGUUGUGACAAUCAAAUGUUACUUGCCUAAAUGCCAGGAAAUUCAACUGGCCUUUUAAUCAGCAAGAUCGCCAGCAAGUACUGUAACUGUAAAGGAAAAUCUCUCUCUCUGGAGAACCCACACAAACCAUUGACCUGAGUGCGCAUGACAGCCACUGGCUUCUUUUUCUAUGAUUGAAAAUCUGCCAUCGCUGACUGUUGGCCAGUUUCAAAGGGACCCAUUGUAUACAGGGUGCAAAUGUAUUAUACGGAUGUUUCCUUUUGUACACUUCAUUUUUACAAGUUUUGCUACUCACAAGCUUUAUGUAGUGGAGGAUAGAGGUAUUUUUGGUCUUUAGAAGCUUGUCGGGGUGAGGGCUGCUAACUUACACUUCAGAGGCCUGUGUCCCAAAGGCCUGGCUGCGUUUGCCGUGCUGUGCGAGGACCUGUGUACACAGGCAGGUGUGCGCCUGCCCGAGCGCGAGUAGCUCUUGUGUAGUGGUGAAAUGCUGCAGGCAUCUGUUUAUUAAAAUUGCUGCUGUGAAAGACAGGGAUAAAAUAUCCACAAUAUAAGAGAAAGCGACUCCGUGCCUCCUUCUGUUUCUUCGUUUCCAGUCUGCAUAGAUGUCUCCAAGGGGAAACCAGGGCCACCAGGCACUCCUGUCCCAUGGGGCCACCCACCUUCAGAGCCCACUCCCACGGGCUCUGUUUCCUUGGAGGCCAUCCUGCCGAUGGCACUUUUCAAGGCCCUCCCUUCCCUACGAGUUGCUUUCUGGGAGGGGAAAUUGAAAAGGAGAGCGGUCACCUGGCAAAAACACAGGGGAAAUCAGCCAGUCCACAAAAAUACGCAAAAUGACCUGAUGAUGUCCAAAAAAGGGUUUUAAAAGCGAUCAAGGACAAAAGGUUUUCCUAAGUGGCAUGUAUACAUCCAAAACUACUCUUUUUUUGUAAAAACAUUCAUCUGUGGAGAAAACCAAGGAACCCCUUUCUCUUCUUUAUUAAAAAGCAAAACAAAAACUCUUGUUAGAACCAAAA
2193   mRNA  unknown    Homo sapiens    ACUCGUGUGCGCGCUCGUCCGCCCGCCAGUCCUCUCAACGCGCGCUUGGCCGCCCGACGACGCGGGAGCCGCACGCGCCGGACGAGGCUCGCUGCGCUCCCUGUUGCCCAGCGCGGGCCCGUUGAGGCGGAGCCCUCAGUUCCCGGCCAGGACACGGUCUGGGCCGCCGAAUCUCCGGCCGAAGAGCGGCGGCGGCAGCGGCGGGAAAAAAAUGAAGAAUGAAAUUGCUGCCGUUGUCUUCUUUUUCACAAGGCUAGUUCGAAAACAUGAUAAGUUGAAAAAAGAGGCAGUUGAGAGGUUUGCUGAGAAAUUGACCCUAAUACUUCAAGAAAAAUAUAAAAAUCACUGGUAUCCAGAAAAACCAUCGAAAGGACAGGCCUACAGAUGUAUUCGUGUCAAUAAAUUUCAGAGAGUUGAUCCUGAUGUCCUGAAAGCCUGUGAAAACAGCUGCAUCUUGUAUAGUGACCUGGGCUUGCCAAAGGAGCUCACUCUCUGGGUGGACCCAUGUGAGGUGUGCUGUCGGUAUGGAGAGAAAAACAAUGCAUUCAUUGUUGCCAGCUUUGAAAAUAAAGAUGAGAACAAGGAUGAGAUCUCCAGGAAAGUUACCAGGGCCCUUGAUAAGGUUACCUCUGAUUAUCAUUCAGGAUCCUCUUCUUCAGAUGAAGAAACAAGUAAGGAAAUGGAAGUGAAACCCAGUUCGGUGACUGCAGCCGCAAGUCCUGUGUACCAGAUUUCAGAACUUAUAUUUCCACCUCUUCCAAUGUGGCACCCUUUGCCCAGAAAAAAGCCAGGAAUGUAUCGAGGGAAUGGCCAUCAGAAUCACUAUCCYCCUCCUGUUCCAUUUGGUUAUCCAAAUCAGGGAAGAAAAAAUAAACCAUAUCGCCCAAUUCCAGUGACAUGGGUACCUCCUCCUGGAAUGCAUUGUGACCGGAAUCACUGGAUUAAUCCUCACAUGUUAGCACCUCACUAm6ACUUCGUUUUUGAUUGUGUUGGUGUCAUGUUGAGAAAAAGGUAGAAUAAACCUUACUACACAUUAAAAGUUAAAAGUUCUUACUAAUAGUAGUGAAGUUAGAUGGGCCAAACCAUCAAACUUAUUUUUAUAGAAGUUAUUGAGAAUAAUCUUUCUUAAAAAAUAUAUGCACUYUAGAUAUUGAUAUAGUUUGAGAAAUUUUAUUAAAGUUAGUCAAGUGCCUAAGUUUUUAAUAUUGGm6ACUUGAGUAUUUAUAUAUUGUGCAUCAACUCUGUUGGAUACGAGAACACUGUAGAAGUGGACGAUYUGUUCUAGCACCUUUGAGAAUUUACUYUAUGGAGCGUAUGUAAGUUAUUUAUAUACAAGGAAAUCUAUUUUAUGUCGUUGUUUAAGAGAAUUGUGUGAAAUCAUGUAGUUGCAAAUAAAAAAUAGUUUGAGGCAUGA
2194   mRNA  unknown    Homo sapiens    ACUCUGGCUUCGACUCCGUCGCUCUCAAUUCGUCACCAGGAGGAAGACGGAGCUGGCUGCCCAGCCCAAAGGCCCAUGAGGGGAUGCAGUUAUGGGCUCUGUCGCCGUGGAUUGUUAUUUUGUGUCAGUAAGUAAUCCAUAAAGUGCCAACAUGGGAAAGAAACGGACAAAGGGAAAAACUGUUCCAAUCGAUGAUUCCUCUGAAACUYUAGAACCUGUGUGCAGACACAUUAGAAAAGGAUUGGAACAAGGUAAUUUGAAAAAGGCUYUAGUGAAUGUGGAAUGGAAUAUCUGCCAAGACUGUAAGACUGACAAUAAAGUGAAAGAUAAAGCUGAAGAAGAAACAGAAGAAAAGCCUUCAGUUUGGCUGUGUCUUAAAUGUGGCCAUCAGGGCUGUGGCAGAAAUUCUCAGGAGCAGCAUGCCUUGAAGCACUAUCUGACGCCAAGAUCUGAACCUCACUGUCUGGUUCUUAGUUUGGACAACUGGAGUGUAUGGUGUUACGUAUGUGAUAAUGAGGUCCAGUAUUGUAGUUCAAACCAGUUGGGUCAAGUGGUUGAUUAUGUCAGAAAACAAGCCAGCAUUACAACUCCAAAGCCAGCAGAGAAAGAUAAUGGAAAUAUUGAACUUGAAAAUAAAAAAUUAGAAAAAGAGAGUAAGAAUGAACAAGAGAGAGAAAAGAAGGAAAACAUGGCUAAAGAGAAUCCYCCCAUGAAUUCUCCUUGCCAAAUAACCGUGAAAGGACUCAGUAAUUUGGGAAACACAUGUUUCUUCAAUGCAGUUAUGCAGAACUUGUCACAAACACCAGUGCUUAGAGAACUACUAAAAGAAGUGAAAAUGUCUGGAACAAUUGUAAAAAUUGAm6ACCACCUGAUUUGGCAUUAm6ACAGAACCAUUAGAAAUAAACCUUGAGCCUCCAGGCCCUCUUACUYUAGCCAUGAGCCAGUUUCUUAAUGAGAUGCAAGAGACCAAAAAGGGGGUUGUGACACCGAAAGAACUCUUUUCUCAGGUCUGUAAAAAAGCAGUGCGGUUUAAAGGCUAUCAGCAGCAAGACAGCCAGGAGCUGCUUCGCUACUUAUUGGAUGGGAUGAGAGCAGAAGAACACCAAAGAGUGAGUAAAGGAAUACUUAAAGCAUUUGGUAAUUCUACUGAAAAGUUGGAUGAAGAACUAAAAAAUAAAGUUAAAGAUUAUGAGAAGAAAAAAUCAAUGCCAAGUUUUGUUGACCGCAUCUUUGGUGGUGAACUAACUAGUAUGAUCAUGUGUGAUCAAUGCAGAACUGUCUCCUUGGUUCAUGAAUCUUUCCUUGAUUUGUCCCUCCCAGUUUUAGAUGAUCAGAGUGGUAAGAAAAGUGUAAAUGAUAAAAAUCUGAAAAAGACAGUGGAGGAUGAAGAUCAAGAUAGUGAGGAAGAAAAAGAUAACGACAGUUACAUAAAAGAGAGAAGUGAUAUUCCUUCUGGAACAAGUAAGCACUUACAGAAAAAAGCAAAGAAACAAGCCAAAAAGCAAGCCAAGAACCAACGAAGACAACAAAAAAUUCAAGGAAAAGUUCUUCAUUUAAAUGAUAUUUGUACUAUUGACCAYCCUGAAGACAGUGAAUAUGAAGCUGAAAUGUCACUUCAAGGAGAAGUAAAUAUUAAAUCCAACCAUAUUUCACAAGAGGGUGUUAUGCAUAAAGAAUAUUGUGUCAACCAGAAAGAUUUGAAUGGCCAAGCAAAAAUGAUCGAAAGUGUAACUGACAAUCAAAAAUCCACAGAGGAAGUAGAUAUGAAAAAUAUCAACAUGGAUAAUGAUCUGGAGGUUUUAm6ACAUCUUCUCCCACUAGGAAUUUAAAUGGUGCCUACCUAACGGAAGGGAGCAAUGGAGAAGUGGm6ACAUUUCCAAUGGUUUCAAAAACCUAAAUUUGAAUGCUGCUCUUCAYCCUGAUGAAAUAAAUAUAGAGAUUCUGAAUGAUAGUCAUACUCCUGGAACAAAGGUGUAUGAGGUUGUAAAUGAAGAUCCAGAAm6ACUGCUUUCUGUm6ACUCUUGCAAACAGGGAAGUUUUCAAUACUGAUGAGUGUUCAAUCCAACAUUGUUUAUAUCAGUUCACCCGUAAUGAGAAACUUCGAGAUGCGAAUAAACUGCUUUGUGAAGUAUGCACACGGAGACAGUGUAAUGGACCAAAGGCAAAUAUAAAAGGUGAAAGGAAGCAUGUUUACACCAAUGCCAAAAAGCAGAUGCUAAUUUCUCUUGCUCCUCCUGUUCUUACUCUUCAUUUAAAGAGAUUUCAGCAGGCUGGUUUUAACCUACGCAAAGUUAACAAACACAUAAAGUUUCCGGAAAUCUUAGAUUUGGCUCCUUUUUGCACCCUUAAAUGUAAGAAUGUUGCAGAAGAAAAUACAAGGGUACUCUAUUCCUUAUAUGGAGUUGUUGAACACAGUGGUACUAUGAGGUCGGGGCAUUACACUGCCUAUGCCAAGGCAAGAACCGCAAAUAGUCAUCUCUCUAAUCUUGUUCUUCACGGUGAUAUUCCACAAGAUUUUGAAAUGGAAUCAAAAGGGCAGUGGUUUCACAUCAGCGACACACAUGUGCAAGCUGUGCCUACAACUAAAGUACUAAm6ACUCACAAGCGUACCUCCUAUUUUAUGAGAGAAUACUGUAAUAAUAUCAAAAGCACUUUUUCUGGAAACACAUUUAUGGCUUUUAUAAUGGCUGAAAUAACGAUAAAAAAAGm6ACUAAUUAAAAUCAUGUUCACUUAACAUUAAAUACAUGCCAGAAGAAAUCAUGUUUAUUUAAAUAUUGAAGGGAAAAAUACCUAAAAAUGUACAAAGGUUUUAUAUUGUCAUAGUGGUUUUUAUUCCUGCUUUGUUUCUGGAAAGGAAAUCCUGAAUUACUUAAGUACUUUGUGUUUAAUAUAUCUGGGUGAUGGAUCACAACACAUCAAUAAACUGACUUACCCUAAAA
2195   mRNA  unknown    Homo sapiens    ACUGCAGAUCACCAAUGUGGUAGAAGCCAACCAACCAGUGACCAUCCAGAACUGGUGCAAGCGGGGCCGCAAGCAGUGCAAGm6ACCCAUCCCCACUUUGUGAUUCCCUACCGCUGCUUAGUUGGUGAGUUUGUAAGUGAUGCCCUUCUCGUUCCUGACAAGUGCAAAUUCUUACACCAGGAGAGGAUGGAUGUUUGCGAAACUCAUCUUCACUGGCACACCGUCGCCAAAGAGACAUGCAGUGAGAAGAGUACCAACUUGCAUGACUACGGCAUGUUGCUGCCCUGCGGAAUUGACAAGUUCCGAGGGGUAGAGUUUGUGUGUUGCCCACUGGCUGAAGAAAGUGACAAUGUGGAUUCUGCUGAUGCGGAGGAGGAUGACUCGGAUGUCUGGUGGGGCGGAGCAGACACAGACUAUGCAGAUGGGAGUGAAGACAAAGUAGUAGAAGUAGCAGAGGAGGAAGAAGUGGCUGAGGUGGAAGAAGAAGAAGCCGAUGAUGACGAGGACGAUGAGGAUGGUGAUGAGGUAGAGGAAGAGGCUGAGGAACCCUACGAAGAAGCCACAGAGAGAm6ACCACCAGCAUUGCCACCACCACCACCACCACCACAGAGUCUGUGGAAGAGGUGGUUCGAGAGGUGUGCUCUGAACAAGCCGAGACGGGGCCGUGCCGAGCAAUGAUCUCCCGCUGGUACUUUGAUGUGACUGAAGGGAAGUGUGCCCCAUUCUUUYACGGCGGAUGUGGCGGCAACCGGAACAACUUUGACACAGAAGAGUACUGCAUGGCCGUGUGUGGCAGCGCCAUUCCUACAACAGCAGCCAGUm6ACCCCUGAUGCCGUUGACAAGUAUCUCGAGACACCUGGGGAUGAGAAUGAACAUGCCCAUUUCCAGAAAGCCAAAGAGAGGCUUGAGGCCAAGCACCGAGAGAGAAUGUCCCAGGUCAUGAGAGAAUGGGAAGAGGCAGAACGUCAAGCAAAGAACUUGCCUAAAGCUGAUAAGAAGGCAGUUAUCCAGCAUUUCCAGGAGAAAGUGGAAUCUUUGGAACAGGAAGCAGCCAACGAGAGm6ACAGCAGCUGGUGGAGACACACAUGGCCAGAGUGGAAGCCAUGCUCAAUGACCGCCGCCGCCUGGCCCUGGAGAACUACm6AUCACCGCUCUGCAGGCUGUUCCYCCUCGGCCUCGUCACGUGUUCAAUAUGCUAAAGAAGUAUGUCCGCGCAGAACAGAAGGACAGACAGCACACCCUAAAGCAUUUCGAGCAUGUGCGCAUGGUGGAUCCCAAGAAAGCCGCUCAGAUCCGGUCCCAGGUUAUGACACACCYCCGUGUGAUUUAUGAGCGCAUGAAUCAGUCUCUCUCCCUGCUCUACAACGUGCCUGCAGUGGCCGAGGAGAUUCAGGAUGAAGUUGGUGCAGUGGCUCAUGCCUGUAAUUCCAGCAUUUUGGGAGGCCAAGGUGGGCAGAUGACUUGAGCCCAGAAGUUCAAGACCAGAAUGGGAAACAUGGCAAGACCACAUUUCUACAAAAAAAUUAUCCAGGCAUGAUAACAUCUAUUUGUAGUCCCAGCUACUCAGGAGGCUGUGGUGGGAGGAUCUCCUGAGCCUGGGGUGGCUGAGGCUGCAGUGAGCCUUGAUCACGCCACCUGGGCAAUAGAGCAAGACCCUGUCUCAAAAAAAGGAAGAAAAAGACUAUUAUUUCCCCCAUUGAAUGGUCUUGGCACUAUUACACAAAAUCAAUUGUCCAUAGAUAAUAUGGGUUUAUUUCUUAAUUCUUAGUUCUUUUCUUUGAUCUGUGUGCCUGUGCUUACUGUAGUACCACACUGUUUUGAUUAUUGUAGCUUUGUAGUAAAUUUUGAAAUCAGC
2196   mRNA  unknown    Homo sapiens    ACUGCCCCGAUGGCUCCCUACCCCUGUGGCUGCCACAUCCUGCUGCUGCUCUUCUGCUGCCUGGCGGCUGCCCGGGCCAACCUGCUGAACCUGAACUGGCUUUGGUUCAAUAAUGAGGACACCAGCCAUGCAGCUACCACGAUCCCUGAGCCCCAGGGGCCCCUGCCUGUGCAGCCCACAGCAGAUACCACCACACACGUGACCCCCCGGAAUGGUUCCACAGAGCCAGCGACAGCCCCUGGCAGCCCUGAGCCACCCUCAGAGCUGCUGGAAGAUGGCCAGGACACCCCCACUUCUGCCGAGAGCCCGGACGCGCCAGAGGAGAACAUUGCCGGUGUCGGAGCCGAGAUCCUGAACGUGGCCAAAGGCAUCCGGAGCUUCGUCCAGCUGUGGAAUGACACUGUCCCCACUGAGAGCUUGGCCAGGGCGGAAACCCUGGUCCUGGAGACUCCUGUGGGCCCCCUUGCCCUCGCUGGGCCUUCCAGCACCCCCCAGGAGAAUGGGACCACUCUCUGGCCCAGCCGUGGCAUUCCUAGCUCUCCGGGCGCCCACACAACCGAGGCUGGCACCUUGCCUGCACCCACCCCAUCGCCUCCCUCCCUGGGCAGGCCCUGGGCACCACUCACGGGGCCCUCAGUGCCACCACCAUCUUCAGAGCGCAUCAGCGAGGAGGUGGGGCUGCUGCAGCUCCUUGGGGACCCCCCGCCCCAGCAGGUCACCCAGACGGAUGACCCCGACGUCGGGCUGGCCUACGUCUUUGGGCCAGAUGCCAACAGUGGCCAAGUGGCCCGGUACCACUUCCCCAGCCUCUUCUUCCGUGACUUCUCACUGCUGUUCCACAUCCGGCCAGCCACAGAGGGCCCAGGGGUGCUGUUCGCCAUCACGGm6ACUCGGCGCAGGCCAUGGUCUUGCUGGGCGUGAAGCUCUCUGGGGUGCAGGACGGGCACCAGGACAUCUCCCUGCUCUACACAGAACCAGGUGCAGGCCAGACCCACACAGCCGCCAGCUUCCGGCUCCCCGCCUUCGUCGGCCAGUGGACACACUUAGCCCUCAGUGUGGCAGGUGGCUUUGUGGCCCUCUACGUGGm6ACUGUGAGGAGUUCCAGAGAAUGCCGCUUGCUCGGUCCUCACGGGGCCUGGAGCUGGAGCCUGGCGCCGGGCUCUUCGUGGCUCAGGCGGGGGGAGCGGACCCUGACAAGUUCCAGGGGGUGAUCGCUGAGCUGAAGGUGCGCAGGGACCCCCAGGUGAGCCCCAUGCACUGCCUGGACGAGGAAGGCGAUGACUCAGAUGGGGCAUCCGGAGACUCUGGCAGCGGGCUCGGGGACGCCCGGGAGCUUCUCAGGGAGGAGACGGGCGCGGCCCUAAAACCCAGGCUCCCCGCGCCACCCCCCGUCACCACGCCACCCUUGGCUGGAGGCAGCAGCACGGAAGAUUCCAGAAGUGAAGAAGUCGAGGAGCAGACCACGGUGGCUUCGUUAGGAGCUCAGACACUUCCUGGCUCAGAUUCUGUCUCCACGUGGGACGGGAGUGUCCGGACCCCUGGGGGCCGCGUGAAAGAGGGCGGCCUGAAGGGGCAGAAAGGGGAGCCAGGUGUUCCGGGCCCACCUGGCCGGGCAGGCCCCCCAGGAUCCCCAUGCCUACCUGGUCCCCCGGGUCUCCCGUGCCCAGUGAGUCCCCUGGGUCCUGCAGGCCCAGCGUUGCAAACUGUCCCCGGACCACAAGGACCCCCAGGGCCUCCGGGGAGGGACGGCACCCCUGGAAGGGACGGCGAGCCGGGCGACCCCGGUGAAGACGGAAAGCCGGGCGACACCGGGCCACAAGGCUUCCCCGGGACUCCAGGGGACGUAGGUCCCAAGGGCGACAAGGGAGACCCUGGGGUUGGAGAGAGAGGGCCCCCAGGACCCCAAGGGCCUCCAGGGCCCCCAGGACCCUCCUUCAGACACGACAAGCUGACCUUCAUUGACAUGGAGGGAUCUGGCUUCGGGGGCGAUCUGGAGGCCCUGCGGGGUCCUCGAGGCUUCCCUGGACCUCCCGGACCCCCCGGUGUCCCAGGCCUGCCCGGCGAGCCAGGCCGCUUUGGGGUGAACAGCUCCGACGUCCCAGGACCCGCCGGCCUUCCUGGUGUGCCUGGGCGCGAGGGUCCCCCCGGGUUUCCUGGCCUCCCGGGACCCCCAGGCCCUCCGGGAAGAGAGGGGCCCCCAGGAAGGACUGGGCAGAAAGGCAGCCUGGGUGAAGCAGGCGCCCCAGGACAUAAGGGGAGCAAGGGAGCCCCCGGUCCUGCUGGUGCUCGUGGGGAGAGCGGCCUGGCAGGAGCCCCCGGACCUGCUGGACCACCAGGCCCCCCUGGGCCCCCUGGGCCCCCAGGACCAGGACUCCCCGCUGGAUUUGAUGACAUGGAAGGCUCCGGGGGGCCCUUCUGGUCAACAGCCCGAAGCGCUGAUGGGCCACAGGGACCUCCCGGCCUGCCGGGACUUAAGGGGGAUCCUGGCGUGCCUGGGCUGCCGGGGGCGAAGGGAGAAGUUGGAGCAGAUGGAGUCCCCGGGUUCCCCGGCCUCCCUGGCAGAGAGGGCAUUGCUGGGCCCCAGGGGCCAAAGGGAGACAGAGGCAGCCGGGGAGAAAAGGGAGAUCCAGGGAAGGACGGAGUCGGGCAGCCGGGCCUCCCUGGCCCCCCCGGACCCCCGGGACCUGUGGUCUACGUGUCGGAGCAGGACGGAUCCGUCCUGAGCGUGCCGGGACCUGAGGGCCGGCCGGGUUUCGCAGGCUUUCCCGGACCUGCAGGACCCAAGGGCAACCUGGGCUCUAAGGGCGAACGAGGCUCCCCGGGACCCAAGGGUGAGAAGGGUGAACCGGGCAGCAUCUUCAGCCCCGACGGCGGUGCCCUGGGCCCUGCCCAGAAAGGAGCCAAGGGAGAGCCGGGCUUCCGAGGACCCCCGGGUCCAUACGGACGGCCGGGGUACAAGGGAGAGAUUGGCUUUCCUGGACGGCCGGGUCGCCCCGGGAUGAACGGAUUGAAAGGAGAGAAAGGGGAGCCGGGAGAUGCCAGCCUUGGAUUUGGCAUGAGGGGAAUGCCCGGCCCCCCAGGACCUCCAGGGCCCCCAGGCCCUCCAGGGACUCCUGUUUACGACAGCAAUGUGUUUGCUGAGUCCAGCCGCCCCGGGCCUCCAGGAUUGCCAGGGAAUCAGGGCCCUCCAGGACCCAAGGGCGCCAAAGGAGAAGUGGGCCCCCCCGGACCACCAGGGCAGUUUCCGUUUGACUUUCUUCAGUUGGAGGCUGAAAUGAAGGGGGAGAAGGGAGACCGAGGUGAUGCAGGACAGAAAGGCGAAAGGGGGGAGCCCGGGGGCGGCGGUUUCUUCGGCUCCAGCCUGCCCGGCCCCCCCGGCCCCCCAGGCCCCCCAGGCCCACGUGGCUACCCUGGGAUUCCAGGUCCCAAGGGAGAGAGCAUCCGGGGCCAGCCCGGCCCACCUGGACCUCAGGGACCCCCCGGCAUCGGCUACGAGGGGCGCCAGGGCCCUCCCGGCCCCCCAGGCCCCCCAGGGCCCCCUUCAUUUCCUGGCCCUCACAGGCAGACUAUCAGCGUUCCCGGCCCUCCGGGCCCCCCUGGGCCCCCUGGGCCCCCUGGAACCAUGGGCGCCUCCUCAGGGGUGAGGCUCUGGGCUACACGCCAGGCCAUGCUGGGCCAGGUGCACGAGGUUCCCGAGGGCUGGCUCAUCUUCGUGGCCGAGCAGGAGGAGCUCUACGUCCGCGUGCAGAACGGGUUCCGGAAGGUCCAGCUGGAGGCCCGGACACCACUCCCACGAGGGACGGACAAUGAAGUGGCCGCCUUGCAGCCCCCCGUGGUGCAGCUGCACGACAGCAACCCCUACCCGCGGCGGGAGCACCCCCACCCCACCGCGCGGCCCUGGCGGGCAGAUGACAYCCUGGCCAGCCCCCCUCGCCUGCCCGAGCCCCAGCCCUACCCCGGAGCCCCGCACCACAGCUCCUACGUGCACCUGCGGCCGGCGCGACCCACAAGCCCACCCGCCCACAGCCACCGCGACUUCCAGCCGGUGCUCCACCUGGUUGCGCUCAACAGCCCCCUGUCAGGCGGCAUGCGGGGCAYCCGCGGGGCCGACUUCCAGUGCUUCCAGCAGGCGCGGGCCGUGGGGCUGGCGGGCACCUUCCGCGCCUUCCUGUCCUCGCGCCUGCAGGACCUGUACAGCAUCGUGCGCCGUGCCGACCGCGCAGCCGUGCCCAUCGUCAACCUCAAGGACGAGCUGCUGUUUCCCAGCUGGGAGGCUCUGUUCUCAGGCUCUGAGGGUCCGCUGAAGCCCGGGGCACGCAUCUUCUCCUUUGACGGCAAGGACGUCCUGAGGCACCCCACCUGGCCCCAGAAGAGCGUGUGGCAUGGCUCGGACCCCAACGGGCGCAGGCUGACCGAGAGCUACUGUGAGACGUGGCGGACGGAGGCUCCCUCGGCCACGGGCCAGGCCUCCUCGCUGCUGGGGGGCAGGCUCCUGGGGCAGAGUGCCGCGAGCUGCCAUCACGCCUACAUCGUGCUCUGCAUUGAGAm6ACAGCUUCAUGACUGCCUCCAAGUAGCCACCGCCUGGAUGCGGAUGGCCGGAGAGGACCGGCGGCUCGGAGGAAGCCCCCACCGUGGGCAGGGAGCGGCCGGCCAGCCCCUGGCCCCAGGACCUGGCUGCCAUACUUUCCUGUAUAGUUCACGUUUCAUGUAAUCCUCAAGAAAUAAAAGGAAGCCAAAGAGUGUAUUUUUUUAAAAGUUUAAAm6ACAGAAGCCUGAUGCUGACAUUCACCUGCCCCAACUCUCCCCUGACCUGUGAGCCCAGCUGGGUCAGGCAGGGUGCAGUAUCAUGCCCUGUGCAACCUCUUGGCCUGAUCAGACCACGGCUCGAUUUCUCCAGGAUUUCCUGCUUUGGGAAGCCGUGCUCGCCCCAGCAGGUGCUGACUUCAUCUCCCACCUAGCAGCACCGUUCUGUGCACAAAACCCAGACCUGUUAGCAGACAGGCCCCGUGAGGCAAUGGGAGCUGAGGCCACACUCAGCACAAGGCCAUCUGGGCUCCUCCAGGGUGUGUGCUCGCCCUGCGGUAGAUGGGAGGGAGGCUCAGGUCCCUGGGGCUAGGGGGAGCCCCUUCUGCUCAGCUCUGGGCCAUUCUCCACAGCAACCCCAGGCUGAAGCAGGUUCCCAAGCUCAGAGGCGCACUGUGACCCCCAGCUCCGGCCUGUCCUCCAACACCAAGCACAGCAGCCUGGGGCUGGCCUCCCAAAUGAGCCAUGAGAUGAUACAYCCAAAGCAGACAGCUCCACCCUGGCCGAGUCCAAGCUGGGAGAUUCAAGGGm6ACCCAUGAGUUGGGGUCUGGCAGCCUCCCAYCCAGGGCCCCCAUCUCAUGCCCCUGGCUGGGACGUGGCUCAGCCAGCACUUGUCCAGCUGAGCGCCAGGAUGGAACACGGCCACAUCAAAGAGGCUGAGGCUGGCACAGGm6ACAUGCGGUAGCCAGCACACAGGGCAGUGAGGGAGGGCUGUCAUCUGUGCACUGCCCAUGGm6ACAGGCUGGCUCCAGAUGCAGGGCAGUCAUUGGCUGUCUCCUAGGAAACCCAUAUCCUUACCCUCCUUGGGm6ACUGAAGGGGAACCCCGGGGUGCCCACAGGCCGCCCUGCGGGUGAACAAAGCAGCCACGAGGUGCAACAAGGUCCUCUGUCAGUCACAGCCACCCCUGAGAUCCGGCAACAUCAACCCGAGUCAUUCGUUCUGUGGAGGGACAAGUGGm6ACUCAGGGCAGCGCCAGGCUGACCACAGCACAGCCAACACGCACCUGCCUCAGGm6ACUGCGACGAAACCGGUGGGGCUGGUUCUGUAAUUGUGUGUGAUGUGAAGCCAAUUCAGACAGGCAAAUAAAAGUGACCUUUUACACUGA
2197   mRNA  unknown    Homo sapiens    ACUGCGCCUGCGCGGGGCGCCGGGCCCUGGGCGGGGCCUUCCCGGCUGACGGCCUGCGUGCACUGCGCUUGCGCGGGUUGAGGGCGGUGGCUCAGGCUCCUGGAAAGGACCGUCCACCCCYCCGCGCUGGCGGUGUGGACGCGGAACUCAGCGGAGAAACGCGAUUGAGAAAUGGAAAAGAAAAUGAAAUAAAUCAGCAGUUAUGAGGCAGAGCCUAAGAGAm6ACUAUGGCAACAUCAGGUGACUGUCCCAGAAGUGAAUCGCAGGGAGAAGAGCCUGCUGAGUGCAGUGAGGCCGGUCUCCUGCAGGAGGGAGUACAGCCAGAGGAGUUUGUGGCCAUCGCGGACUACGCUGCCACCGAUGAGm6ACCCAGCUCAGUUUUUUGAGAGGAGAAAAAAUUCUUAUCCUGAGACAAACCACUGCAGAUUGGUGGUGGGGUGAGCGUGCGGGCUGCUGUGGGUACAUUCCGGCAAACCAUGUGGGGAAGCACGUGGAUGAGUACGACCCCGAGGACACGUGGCAGGAUGAAGAGUACUUCGGCAGCUAUGGAACUCUGAAACUCCACUUGGAGAUGUUGGCAGACCAGCCACGAACAACUAAAUACCACAGUGUCAYCCUGCAGAAUAAAGAAUCCCUGACGGAUAAAGUCAYCCUGGACGUGGGCUGUGGGACUGGGAUCAUCAGUCUCUUCUGUGCACACUAUGCGCGGCCUAGAGCGGUGUACGCGGUGGAGGCCAGUGAGAUGGCACAGCACACGGGGCAGCUGGUCCUGCAGAACGGCUUUGCUGACAUCAUCACCGUGUACCAGCAGAAGGUGGAGGAUGUGGUGCUGCCCGAGAAGGUGGACGUGCUGGUGUCUGAGUGGAUGGGGACCUGCCUGCUGCACCACACACUGGAAGCAGACGCUGUUCAUGAUGGACGACCCAGUCCCUGUCCAUACAGGAGACGUGGUCACGGGUUCAGUUGUGUUGCAGAGAAACCCAGUGUGGAGAAGGCACAUGUCUGUGGCUCUGAGCUGGGCUGUCACUUCCAGACAAGACCCCACAUCUCAAAAAGUUGGAGAAAAAGUCUUCCCCAUCUGGAGAUGACAGUUGAUGCUYUAUUUGGAAAGCAGUGUGCAUAUCUUGAGGGGUGAUGAACACAAGCAAm6ACCAAGUUGCACCUGGCUUCUGCACACUCCUGCGAAAGUCGGUGAACAUUCACUCCACAUUGACCCCYCCCUAGCCUGGCAGGUGACGUCAGGGUCCUUCACAGACAAACACGCUUGGGCUCGGCAGGAGCUGCCGUGGCCACCCCCGCUGCCCAGUGUCUGCCCUCUAGAAGUAGGCUGUGUUUCCAGGUGUUCACCCGUGGUGCCCACAGUGCCGACCCGUGGCUGGGUCGGAGCUCCAUGUUCCUAAGCUAGGUCUAGGUCUACACUCCUAGGACGCACGCAUAUCAGCCCGUGUACCCUGUGACAGUGACUGUCCCCACCUCCUAUGUUAGUGGUGCCCUUACUGCCGUCGCUCAYCCACUCGUGUGGGACGUAGGAUUGCACAGGGCUGUGCCAGUGGCGUGUAGGGAACACUGCCCUGGCUCAGCGUGCGAGCUAAGGUGGUGAUGUAUGCGAUGGGm6ACUCUGCAUGGGAUAGUACAGUUGUGUAGACGUCUUCCAAAUAAAUUAUGUGUUGGUCCAUCGCACAUGCUCAAUAAAUAUUUUUAAAUGAGUGAAUGUCAUUGUGUAUCCUGUUUUAUGCAUAUAUGUUAUUUUUUGUAAUUACAGGAUCAUACUAUAUGCAUUGCUUUAUAAGUUUUUCUCAAUAUUGUGAAAAAACUUCCACAUCAGUAGAUACAUGUCCAUAAUUUUUUUUUGUAUUGUUUUGAUUUUUAUUAAAUUUUAUUG
2198   mRNA  unknown    Homo sapiens    ACUGCGCCUGCGCGGGGCGCCGGGCCCUGGGCGGGGCCUUCCCGGCUGACGGCCUGCGUGCACUGCGCUUGCGCGGGUUGAGGGCGGUGGCUCAGGCUCCUGGAAAGGACCGUCCACCCCYCCGCGCUGGCGGUGUGGACGCGGAACUCAGCGGAGAAACGCGAUUGAGAAAUGGAAAAGAAAAUGAAAUAAAUCAGCAGUUAUGAGGCAGAGCCUAAGAGAm6ACUAUGGCAACAUCAGGUGACUGUCCCAGAAGUGAAUCGCAGGGAGAAGAGCCUGCUGAGUGCAGUGAGGCCGGUCUCCUGCAGGAGGGAGUACAGCCAGAGGAGUUUGUGGCCAUCGCGGACUACGCUGCCACCGAUGAGm6ACCCAGCUCAGUUUUUUGAGAGGAGAAAAAAUUCUUAUCCUGAGACAAACCACUGCAGAUUGGUGGUGGGGUGAGCGUGCGGGCUGCUGUGGGUACAUUCCGGCAAACCAUGUGGGGAAGCACGUGGAUGAGUACGACCCCGAGGACACGUGGCAGGAUGAAGAGUACUUCGGCAGCUAUGGAACUCUGAAACUCCACUUGGAGAUGUUGGCAGACCAGCCACGAACAACUAAAUACCACAGUGUCAYCCUGCAGAAUAAAGAAUCCCUGACGGAUAAAGUCAYCCUGGACGUGGGCUGUGGGACUGGGAUCAUCAGUCUCUUCUGUGCACACUAUGCGCGGCCUAGAGCGGUGUACGCGGUGGAGGCCAGUGAGAUGGCACAGCACACGGGGCAGCUGGUCCUGCAGAACGGCUUUGCUGACAUCAUCACCGUGUACCAGCAGAAGGUGGAGGAUGUGGUGCUGCCCGAGAAGGUGGACGUGCUGGUGUCUGAGUGGAUGGGGACCUGCCUGCUGUUUGAGUUCAUGAUCGAGUCCAYCCUGUAUGCCCGGGAUGCCUGGCUGAAGGAGGACGGGGUCAUUUGGCCCACCAUGGCUGCGUUGCACCUUGUGCCCUGCAGUGCUGAUAAGGAUUAUCGUAGCAAGGUGCUCUUCUGGGACAACGCGUACGAGUUCAACCUCAGCGCUCUGAAGUUGGAGAAAAAGUCUUCCCCAUCUGGAGAUGACAGUUGAUGCUYUAUUUGGAAAGCAGUGUGCAUAUCUUGAGGGGUGAUGAACACAAGCAAm6ACCAAGUUGCACCUGGCUUCUGCACACUCCUGCGAAAGUCGGUGAACAUUCACUCCACAUUGACCCCYCCCUAGCCUGGCAGGUGACGUCAGGGUCCUUCACAGACAAACACGCUUGGGCUCGGCAGGAGCUGCCGUGGCCACCCCCGCUGCCCAGUGUCUGCCCUCUAGAAGUAGGCUGUGUUUCCAGGUGUUCACCCGUGGUGCCCACAGUGCCGACCCGUGGCUGGGUCGGAGCUCCAUGUUCCUAAGCUAGGUCUAGGUCUACACUCCUAGGACGCACGCAUAUCAGCCCGUGUACCCUGUGACAGUGACUGUCCCCACCUCCUAUGUUAGUGGUGCCCUUACUGCCGUCGCUCAYCCACUCGUGUGGGACGUAGGAUUGCACAGGGCUGUGCCAGUGGCGUGUAGGGAACACUGCCCUGGCUCAGCGUGCGAGCUAAGGUGGUGAUGUAUGCGAUGGGm6ACUCUGCAUGGGAUAGUACAGUUGUGUAGACGUCUUCCAAAUAAAUUAUGUGUUGGUCCAUCGCACAUGCUCAAUAAAUAUUUUUAAAUGAGUGAAUGUCAUUGUGUAUCCUGUUUUAUGCAUAUAUGUUAUUUUUUGUAAUUACAGGAUCAUACUAUAUGCAUUGCUUUAUAAGUUUUUCUCAAUAUUGUGAAAAAACUUCCACAUCAGUAGAUACAUGUCCAUAAUUUUUUUUUGUAUUGUUUUGAUUUUUAUUAAAUUUUAUUG
2199   mRNA  unknown    Homo sapiens    ACUGGCCCCGCCCACCGUGCGAACCCAAAGAGGGUGAGCCAAAGAAAUGUAAGACAACAGAGUGACAAGCCGAAUGAGCCAAUCAGCAGGGGCUGUGUGGGGGCAGGAUUAGCACUCUCCCCCUCCUCCCCAUGUAGGCGUAACAGGAGAUUUAUGGUCUGAGGUUGCCUAUCGUGGUUUAUGGAGAUUUUGUUGCACGAUUUCGGUGCAUCUGCUCGUUGCCGUGAGAGACACUAGAUAGGAUGCACUUAAUUGACUUAAUUAUUGGAGGUUUUCAAGGAGAGAAUAAUGUGGAAAGGAAAAAGGCGAAGCACAACCCAAAGGGGUUGGCCGGGCCUAUGGUUGGAAUGAGGAAGGGUGUGGUCUUCGGCUAAAAUUUGCAUAAAACGGAACCCAUCCGGGCGAUUCCAACUUCGCCCAUUUAUUGGUAGUCCUUGGGGCGGGGCCUCGCCUCUUUCUCCGCCCCCGAGCGGAACAUGACGGGAGAUGUAGUUCCGAGACCGGUUGCCAUGGCGUUCUGGACAGCCUCGCGAGUCCGACCCCGCCCUUCAGGAGUGACGAGCGGCCUGACCAAUGGGAGCAGGGGGCGGGCUCUCUGACGAAGGACUGGAAGGUGGCGGUGGUGAAGGUGCAGGCCGUUGGGGCGGCUCAGAGGCAGGUGACUAUGAAAGGCUUAUAUUUCCAACAGAGUUCCACAGAUGAAGAAAUAACAUUUGUAUUUCAAGAAAAGGAAGAUCUUCCUGUUACAGAGGAUAACUUUGUGAAACUUCAAGUUAAAGCUUGUGCUCUGAGCCAGAUAAAUACAAAGCUUCUGGCAGAAAUGAAGAUGAAAAAGGAUUUAUUUCCUGUUGGGAGAGAAAUUGCUGGAAUUGUAUUAGAUGUUGGAAGCAAGGUAUCAUUCUUUCAACCAGAUGAUGAAGUAGUUGGAAUUUUGCCCCUGGACUCUGAAGm6ACCCUGGACUUUGUGAAGUUGUUAGAGUACAUGAGCAUUACUUGGUUCAUAAACCAGAAAAGGUCACAUGGACGGAAGCAGCAGGAAGCAUUCGGGAUGGAGUGCGUGCCUAUACAGCUCUGCAUUAUCUUUCUCAUCUCUCUCCUGGAAAAUCAGUGCUGAUAAUGGAUGGAGCAAGUGCAUUUGGUACAAUAGCUAUUCAGUUAGCACAUCAUAGAGGAGCCAAAGUGAUUUCAACAGCAUGCAGCCUUGAAGAUAAGCAGUGCCUUGAAAGAUUCAGACCUCCCAUAGAGAACAGUACAAUUGCCUGAUUUCCUGUCCUUUACAGCCCGAGUGAUUGAUGUAUCUAAUGGGAAAGUUCAUGUUGCUGAAAGCUGUUUGGAAGAAACAGGUGGCCUGGGAGUAGAUAUUGUCCUAGAUGCUGGAGUGAGAUUAUAUAGUAAAGAUGAUGAACCAGCUGUAAAACUACAACUACUACCACAUAAm6ACAUGAUAUCAUCACACUUCUUGGUGUUGGAGGCCACUGGGUAm6ACAACAGAAGAAAACCUUCAGUUGGAUCCUCCAGAUAGCCACUGCCUUUUCCUCAAGGGAGCAACGUUAGCUUUCCUGAAUGAUGAAGUUUGGAAUUUGUCAAAUGUACAACAGGGAAAAUAUCUYUAGUAUUCCAAGUGCCUUGCAAGUAUUCAUUUAAACAUUAAAACAGCCUUUUGAGAUGUAAGUACUGUUAUCAUCCCCAUUUCACAGGUGAAGAAACAGAAGCACAGAGAUGUUGAUACAGACUCAAGGACGCAGCAAGUGGCGGAGCAAGAAUCACACUCAGGCAGUCUCUCUCCUUUCUGAACAGAGAUGAGCCCUAAGAUACCUGGAAGAUUUUGUUUUUAACCUCACAUUAAGGAAAGCACACAUCACCUUGAAAGGUUGCACACUUACUCCUAUGAUGGUGCCAUUGCACAGAAACAUUUCAGAAUACUUUUCUAAAUUAAAGAGUUUGUGGAGUGUUUUAUAAAUAUCAAUGCUAGGAAAUCUUUAUCAAAUGAAGAUAGGUUUGACUUUUUGAAACAAAAGUCAUUCAGAGAUAAGUCUGGUGUGAUUGAAGCCAAAUCAUUCCAGUUGAGUAAAAAUAAUAAAAAGUUUGGAAUAUACAAACAAUUUCAAAAAGAAAGGUGCAAACCUCUUUAGAGUAGGGUCAACUUAAGAAUUCCUUUUAUUUCUAAAAUGACUGGCUUAGAGGCAGCAGCACUUGGUAAAAGUUUUAAUGUAUUGGAUAAAAAAAAAGUUAUCAUUACUUGAUAGAGCAUAUGUGUGUGUCUGAAGAAAGAUUUACAUAGCCUUACACUUCUCUCUACUGAAUAUCAUACGUUACUUUUCUUAAAUGUGUCUAGUCAUAUAUGUGUGAUAUGUAUAAAGGCCAGUUCCCUCCAGGAGCAAUGACAGUCUUUAUUCGGAGCUUUAAGGUAGUUAUGUAGGCCGGGCAUGGUGGCACAUGCCUGUAAUCCCAGCUACUCAUGAGGCUGAGGCAGAAGAAUCGCUUGAACCUGGGAGGCAGAGGUUUCAGUGAGCCAAGAUUGCACUACUACACUCCAGCCUGGUGACAGAGUGAGACUCCAUCUC
2200   unknown  unknown    Homo sapiens    ACUUAGGACAGCAUUUUAAAUCAUUCAUUCCAGAGGAAAGCCACGGGGCCUGGCAGGCGGUGGCUUCCCGUGCUCGGUGGCGCGCCUCCCGGCUGGAGGUUUCUGAGCUCUGCAGAAGCGUCCAGCCACAGGCCUGUUGCCCCCGUGGGCCCCUGGCUCUGCCUCACGGCUGGACGAAGUGAUUCACACACAGGCUCCUCAGAAACCUGUCUUGUCUCUCUUGAGCCGUGAGCUCUUGUUUAGUUUUGCAUAAUGGUCACUUGGGGCGCGUAUGCAACUUUGAGUGCCCAUUUAUUUUUACAGGACAGUUAAUGAUUGGACGUCAUCCAAUGAGAAAGCAGUGAUGUCUYUACUGCACACGUUGGAGGAGCUGAAGUCUGACUUGAGCAGGCCCACCYCCUCCCAGAAAAAAAUGGCAGCAGAGCUGCAGUUCCAGUUUGUGGACGUCCUGCUGAAAGACAAUGUUUCCCUCACAAAAGCGCUCAGCACGGUGACCCAGGAGAAGCUGGAGCUGAGCAGAGCCGUGUCUAAGCUUGAGAAGUUGCUGAAGCACCAUCUGCAGAAGGGCUGCAGCCCAAGCAGGUCGGAAAGGUCUGCUUGGAAGCCAGACGAAACGGCUCCACAGAGUUCCCUGAGGCGCCCAGm6ACCCCGGCCGGCUUCCACCAGCUGCCAGCGAGGAAGCACACACCAGCAAUGUCAAGAUGGAAAAAUUGUACCUGCAUUACUUGAGAGCAGAGAGCUYUAGAAAAGCUCUGAUUUAUCAAAAGAAGUAUCUUUUGCUGUUGAUUGGUGGAUUCCAGGAUUCUGAACAAGAAACACUCUCCAUGAUUGCCCAUUUGGGGGUAUUUCCUUCCAAAGCAGAACGGAAAAUCACAUCUCGUCCUUUCACCAGGUUCCGCACGGCCGUCAGGGUGGUCAUUGCAAUAUUAAGAUUACGUUUUUUGGUUAAGAAAUGGCAAGAAGUAGAUCGGAAAGGAGCUCUGGCACAAGGCAAAGCCCCUCGCCCAGGGCCCCGAGCACGACAGCCGCAGUCUCCACCCAGAACCAGAGAGUCCCCCCCAACCCGGGAUGUACCCUCUGGCCACACCAGGGACCCUGCCAGAGGCCGCAGACUGGCAGCAGCAGCCUCCCCACACAGUGGGGGAAGAGCCACUCCAYCCCCAAAUUCAAGAUUAGAAAGAUCCCUGACUGCUUCUCAAGAUCCAGAACAUUCCUUGACAGAGUAUAUUCACCAUUUAGAAGUGAUCCAGCAAAGAUUGGGAGGGGUACUACCAGAUUCUACUUCAAAGAAAUCCUGCCACCCGAUGAUUAAACAGUGAAUAAAAUGUCAUGGCUCUUUCCUGCGACAAUUCUAUUUGAGGAAAAGAUUUGUUUUUCCCUUUUCCCAAGGAAGCUCGUGGGACAGCAUGGGCACUACUCUUCAUGUGCGGUGACACCAGCCCCCAGAUGCCUUGAAUUAAGUGUCCUCACCUYUAUGCAUGACUGCAAAGCCAGCUGGAGCAUUUUCUAUGGAGCCUCCGUAUGUUUUAGGCCCAUGACCUUCGUGAGGUGACGGGCACUCACUCCCAUGAGCCCUGGCUGUGUGCUGUUGUGUGCCUAUCGGCAGAUCCAYCCUUCCUGCCUCCAAGGAGGAUACACAGAGAAUGGCUUCCUGUUGUUUUGUUUAUUUUCUUAACGUGUACAGAUGGAAACUUCAUUUAAAAAUAAAAACAAAACAACUCAAAAAGGAAUAAAAUUUAAUCA
2201   mRNA  unknown    Homo sapiens    ACUUCUCUUCUUCCGCGACCGGGAGAAGGCCGAGGGAUCGGCGGCACGAUCGACAUUGUACACCUUGAAGGUGGACGGAUGUGAAGCCGCGCGUUGUAGGGCUGAAGCUUACCAAAGAAAGGAAGAAUGCACUUUUCAGGAUUAGAAGAGGCUGUGUAUAGAAACAUACAAGCUUGCAAGGAGCUUGCCCAAACCACUCGUACAGCAUAUGGACCAAAUGGAAUGAACAAAAUGGUUAUCAACCACUUGGAGAAGUUGUUUGUGACAAACGAUGCAGCAACUAUUUUAAGAGAACUAGAAGUACAGCAYCCUGCUGCAAAAAUGAUUGUAAUGGCUUCUCAUAUGCAAGAGCAAGAAGUUGGAGAUGGCACAAACUUUGUUCUGGUAUUUGCUGGAGCUCUCCUGGAAUUAGCUGAAGAACUUCUGAGGAUUGGCCUGUCAGUUUCAGAGGUCAUAGAAGGUUAUGAAAUAGCCUGCAGAAAAGCUCAUGAGAUUCUUCCUAAUUUGGUAUGUUGUUCUGCAAAAAACCUUCGAGAUAUUGAUGAAGUCUCAUCUCUACUUCGUACCUCCAUAAUGAGUAAm6ACAAUAUGGUAAUGAAGUAUUUCUGGCCAAGCUUAUUGCUCAGGCAUGCGUAUCUAUUUUUCCUGAUUCCGGCCAUUUCAAUGUUGAUAm6ACAUCAGAGUUUGUAAAAUUCUGGGCUCUGGUAUCAGUUCCUCUUCAGUAUUGCAUGGCAUGGUUUUUAAGAAGGAAm6ACCGAAGGUGAUGUAm6ACAUCUGUCAAAGAUGCAAAAAUAGCAGUGUACUCUUGUCCUUUUGAUGGCAUGAUAACAGAAACUAAGGGAACAGUGUUGAUAAAGACUGCUGAAGAAUUGAUGAAUUUUAGUAAGGGAGAAGAAAACCUCAUGGAUGCACAAGUCAAAGCUAUUGCUGAUACUGGUGCAAAUGUCGUAGUAACAGGUGGCAAAGUGGCAGm6ACAUGGCUCUUCAUUAUGCAAAUAAAUAUAAUAUCAUGUUAGUGAGGCUAAm6ACUCAAAAUGGGAUCUCCGAAGACUUUGUAAAACUGUUGGUGCUACAGCUCUUCCUAGAUUGACACCUCCUGUCCUUGAAGAAAUGGGACACUGUGACAGUGUUUACCUCUCAGAAGUUGGAGAUACUCAGGUGGUGGUUUUUAAGCAUGAAAAGGAAGAUGGCGCCAUUUCUACCAUAGUACUUCGAGGCUCUACm6AGACAAUCUGAUGGAUGACAUAGAAAGGGCAGUAGACGAUGGUGUUAAUACUUUCAAAGUUCUUACAAGGGAUAAACGUCUUGUACCCGGAGGUGGAGCAACAGAAAUUGAAUUAGCCAAm6ACAGAUCACAUCAUAUGGAGAGACAUGUCCUGGACUUGAACAGUAUGCUAUUAAGAAGUUUGCUGAGGCAUUUGAAGCUAUUCCCCGCGCACUGGCAGAAAACUCUGGAGUUAAGGCCAAUGAAGUAAmUCUCUAAACUYUAUGCAGUACAUCAAGAAGGAAAUAAAAACGUUGGAUUAGAUAUUGAGGCUGAAGUCCCUGCUGUAAAGGACAUGCUGGAAGCUGGUAUUCUAGAUACUUACCUGGGAAAAUAUUGGGCUAUCAAACUCGCUACUAAUGCUGCAGUCACUGUACUUAGAGUGGAUCAGAUCAUCAUGGCAAAACCAGCUGGUGGGCCCAAGCCUCCAAGUGGGAAGAAAGACUGGGAUGAUGACCAAAAUGAUUGAAAUUGGCUUAAUUUUUACUGUAGGUGAAGGCUGUAUUUGUAGUAGUACUCAAGAAUCACCUGAUGUUUUCUUAUUCUCCUUAAAUUAAGAGUUAUUUUGUGUUUGUAUUCUUGGCUGGAUGUUAUAAUAAACAUAUUGUUACUGUC
2202   mRNA  unknown    Homo sapiens    AGAAAUAUUUUGAGCUCUGUAUUCAAAGCAGGAAGAUCUGGGACCAUAUGAAUGAUUUCGGAAUCAAGAAUAUGGACCAGGUAGCCCCUGUGGCUAm6ACAGUUACm6AGAGGGACACUCAAGCGCCAGCCAGCCUUUGACACCUUUGAUGGGUCCCUGUUUGCUGUUUUUCCUUCUCUAAAUGAAGAGCAAACACUGCAAGAAGUGCCAACAGGCUUGGAUUCCAUUUCUCAUGACUCCGCCAACUGUGAAUUGCCUUUGUUAACCCCGUGCAGCAAGGCUGUGAUGAGUCAAGCCUUAAAAGCUACCUUCAGUGGCUUCAAAAAGGAm6ACAGCGGCGCCUGGGCAUUCCAAAGAACCCCUGGCUGUGGAGUGAGCAACAGGUAUGCCAGUGGCUUCUCUGGGCCACCAAUGAGUUCAGUCUGGUGAACGUGAAUCUGCAGAGGUUCGGCAUGAAUGGCCAGAUGCUGUGUAACCUUGGCAAGGAACGCUUUCUGGAGCUGGCACCUGACUUUGUGGGUGACAUUCUCUGGGAACAUCUGGAGCAAAUGAUCAAAGAAAACCAAGAAAAGACAGAAGAUCAAUAUGAAGAAAAUUCACACCUCACCYCCGUUCCUCAUUGGAUUAACAGCAAUACAUUAGGUUUUGGCACAGAGCAGGCGCCCUAUGGAAUGCAGACACAGAAUUACCCCAAAGGCGGCCUCCUGGACAGCAUGUGUCCGGCCUCCACACCCAGCGUACUCAGCUCUGAGCAGGAGUUUCAGAUGUUCCCCAAGUCUCGGCUCAGCUCCGUCAGCGUCACCUACUGCUCUGUCAGUCAGGACUUCCCAGGCAGCAACUUGAAUUUGCUCACCAACAAUUCUGGGACUCCCAAAGACCACGACUCCCCUGAGAACGGUGCGGACAGCUUCGAGAGCUCAGACUCCCUCCUCCAGUCCUGGAm6ACAGCCAGUCGUCCUUGCUGGAUGUGCAACGGGUUCCUUCCUUCGAGAGCUUCGAAGAUGACUGCAGCCAGUCUCUCUGCCUCAAUAAGCCAACCAUGUCUUUCAAGGAUUACAYCCAAGAGAGGAGUGACCCAGUGGAGCAAGGCAAACCAGUUAUACCUGCAGCUGUGCUGGCCGGCUUCACAGGAAGUGGACCUAUUCAGCUGUGGCAGUUUCUCCUGGAGCUGCUAUCAGACAAAUCCUGCCAGUCAUUCAUCAGCUGGACUGGAGACGGAUGGGAGUUUAAGCUCGCCGACCCCGAUGAGGUGGCCCGCCGGUGGGGAAAGAGGAAAAAUAAGCCCAAGAUGAACUACGAGAAGCUGAGCCGGGGCUUACGCUACUAUUACGACAAGAACAUCAYCCACAAGACGUCGGGGAAGCGCUACGUGUACCGCUUCGUGUGCGACCUCCAGAACUUGCUGGGGUUCACGCCCGAGGAm6ACUGCACGCCAUCCUGGGCGUCCAGCCCGACACGGAGGm6ACUGAGGUCGCCGGGACCACCCUGAGCCGGCCCCAGGCUCGUGGm6ACUGAGUGGGAAGCCCAYCCUGACCAGCUGCUCCGAGGACCCAGGAAAGGCAGGAUUGAAAAUGUCCAGGAAAGUGGCCAAGAAGCAGUGGCCUUAUUGCAUCCCAAACCACGCCUCUUGm6ACCAGGCUGCCUCCCUUGUGGCAGCAACGGCACAGCUAAUUCUACUCACAGUGCUUUUAAGUGAAAAUGGUCGAGAAAGAGGCACCAGGAAGCCGUCCUGGCGCCUGGCAGUCCGUGGGACGGGAUGGUUCUGGCUGUUUGAGAUUCUCAAAGGAGCGAGCAUGUCGUGGm6ACACACACAGm6ACUAUUUUUAGAUUUUCUUUUGCCUUUUGCAACCAGGAACAGCAAAUGCAAAAm6ACUCUUUGAGAGGGUAGGAGGGUGGGAAGGAAACAACCAUGUCAUUUCAGAAGUUAGUUUGUAUAUAUUAUUAUAAUCUUAUAAUUGUUCUCAGAAUCCCUUAm6ACAGUUGUAUUUAACAGAAAUUGUAUAUUGUAAUUUAAAAUAAUUAUAUAACUGUAUUUGAAAUAAGAAUUCAGACAUCUGAGGUUUUAUUUCAUUUUUCAAUAGCACAUAUGGAAUUUUGCAAAGAUUUAAUCUGCCAAGGGCCGACUAAGAGAAGUUGUAAAGUAUGUAUUAUUUACm6AUUUAAUAGm6ACUUACAGGGAUAAGGCCUGUGGGGGGUAAUCCCUGCUUUUUGUGUUUUUUUGUUUGUUUGUUUGUUUGUUUUUGGGGGGUUUUCUUGCCUUGGUUGUCUGGCAAGGACUUUGUACAUUUGGGAGUUUUUAUGAGAAACUUAAAUGUUAUUAUCUGGGCUUAUAUCUGGCCUCUGCUUUCUCCUYUAAUUGUAAAGUAAAAGCUAUAAAGC
2203   unknown  unknown    Homo sapiens    AGAACAUAAAAACCUAAAAUUUAGUAACAAGGGGAAAAUAAAGCAUGAUUUGGAGAUAUGUUUCAAAUUUUUAAAAAAUGACCAUAAAGAUCAACAGUACAACUUAAUACUGUUUGCUAUAUGUACAUGGAUGCCCUUUAAUAAGAGGCAUUGAAUAUUUCUUAACCUGUAAAAAUAACUGUUGACCAUGCUAAUGUAUAUAUACUUGUGCAUCUUAGGACAUUAAGUGGUUUGCUGCUUUGAUGGAAAUUAUGGUUCAGUGGGUUGGAUACAAGAGAGAUGACUGUUCACAGAAUAACCUGUGAACUUUCACCCCUCUGUAUGGAAACUUGUUUCAGGGCCAAAUCCUUGUAGCUGUCUUCUUGCCCCGGUCAGUGCCAGCCGUACUAUUCACAACACUGCUGCUACCGAGGCCUAGGAUCAGUUCUUAAGAGCAGCCCCGGUAm6ACUGGAGGAAUGGGAGCCGUUUUGAUGAGAAAAAUGGGCUGGAGAGAAGGAGAAGGAUUAGGAAAAAACAAAGAAGGCAAUAAGGAACCCAYCCUAGUUGAUUUUAAGACAGACCGAAAAGGUCUUGUUGCAGUAGGAGAAAGAGCACAAAAGAGGUCUGGGAACUUCUCUGCUGCAAUGAAAGAUCUGUCAGGCAAm6ACAYCCUGUGUCUGCUUUGAUGGAGAUCUGUAAUAAAAGAAGGUGGCAACCACCUGAAUUUCUAUUGGUCCAUGAUAGUGGCCCUGAUCAUCGCAAACAUUUUCUCUYUAGGGUAUUGAUAAAUGGAAGCGCUUACCAGCCCAGCUUUGCCAGCCCUAAUAAGAAGCAUGCUAAAGCCACAGCAGCUACUGUGGUUCUUCAAGCAAUGGGCCUUGUACCAAAGGm6ACCUCAUGGCUAAUGCCACUUGCUUCAGGAGUGCCUCACGUAGAUAGAUUGAGGUUUUAUAAUAAUCAUUUCAGAAUUUUACUCUGCAUCACAAUGUAUUUCCUCUYUAAUGUUGUAAAUAUUUGGCAAUUUAAGm6ACAUUGUGUAAAAAGCAAUCUGUAAAAACAUCUCCAGGCUUUGAUUUUUGUACCAUGGAAAUUGUAUUUAACCAUACAGGGUUUUGGUAUGUUUAUAUUGUUUACCUUAGUGAUGUAUUUGUUUAAGUGGCUAm6ACAYCCAAACGACUGUUUGAAGGCAUCAGAGUAAUCUUCAGUGUGGAAUGUUAAAUAACGCUUUUAUACUGUAUUUUGUACUAUGAUGUAACUCCCCUUCCUUAUGGCUAGGCUACUGUAm6ACACUUGCCUGUAAUCAGUGAAGGGCUGUGCACCUUGUACUAUUUCACAAUGGGUUCUGCUGGACAGAUAAUGGGCCAGUGUUAUUGAGGUGAUCAAGAUCUGUUCCACAGGGCUAAUGCCACCAUCUCCCCUCAAAAUUUUGUAGAGGUUCUAAAAAGAAAGUGGUAUGUUGUGUGAUGAUCAGCACUAAGUCCUGCAUUCCUGUUAAAGCCACUUGGGUCAYAAGAAGGGAGUAAAAAAUGAAGUCUGACUAGAAUUCUAUUGCAGAGGCCAGUACAUUUAGUAUGGCAUUGAGUUGUGAUAUAGUUUUACUUUGAUGUGCAUUUUGAAUUUCAGCUACACCUAGAUAGACGUAAAAUGAUAAUUAAAAUGCUGUAACCAACUUAUCUAAUAAAAUUGGCAACCAGCCACUAUUUUGUUGACUAUGAGAAAGUUAAAAGUUUAUGUUAAUUUUUAGGGUCUGAUAGAAUAUUUCAUGUGUAUUACAGUGGUAUUCAUAUGCUAUGUCUCUAAACUYUAUUUUCAAAAGCUUAAGGCCCAAAUACAAACUUCUCUGGAAUAAA
2204   mRNA  unknown    Homo sapiens    AGAACUUAGUCUGCGCGGCGGCAUUGACACUAGCUGGGCUCCUCGGGGCGCGCCCCAGGUGGUCCGAAGCCCGGUCCGCCCUCCACGCAGGUGCCCCGCGCUCCCCGCUCAGCCAUGUCGUCCUGCAGCCGCGUGGCGCUGGUGACCGGGGCCAACAGGGGCAUCGGCUUGGCCAUCGCGCGCGAACUGUGCCGACAGUUCUCUGGGGAUGUGGUGCUCACCGCGCGGGACGUGGCGCGGGGCCAGGCGGCCGUGCAGCAGCUGCAGGCGGAGGGCCUGAGCCCGCGCUUCCACCAACUGGACAUCGACGACUUGCAGAGCAUCCGCGCCCUGCGCGACUUCCUGCGCAAGGAGUACGGGGGGCUCAACGUACUGGUCAACAACGCGGCCGUCGCCUUCAAGAGUGAUGAUCCAAUGCCCUUUGACAUUAAAGCUGAGAUGACACUGAAGACAAAUUUUUUUGCCACUAGAAACAUGUGCAACGAGUUACUGCCGAUAAUGAAACCUCAUGGGAGAGUGGUGAAUAUCAGUAGUUUGCAGUGUUUAAGGGCUUUUGAAAACUGCAGUGAAGAUCUGCAGGAAAGGUUCCACAGUGAGACACUCACAGAAGGAGm6ACCUGGUGGAUCUCAUGAAAAAGUUUGUGGAGGACACAAAAAAUGAGGUGCAUGAGAGGGAAGGCUGGCCCAACUCACCUUAUGGGGUGUCCAAGUUGGGGGUCACGGUCUUAUCGAGGAUCCUGGCCAGGCGUCUGGAUGAGAAGAGGAAAGCUGACAGGAUUCUGGUGAAUGCGUGCUGCCCAGGACCAGUGAAGACAGACAUGGAUGGGAAAGACAGCAUCAGGm6ACUGUGGAGGAGGGGGCUGAGACCCCUGUCUACUUGGCCCUCUUGCCUCCAGAUGCCACUGAGCCACAAGGCCAGUUGGUCCAUGACAAAGUUGUGCAAAACUGGUAAACGUCUGCUUCGGAGCUUGCUGCUUAAUAAAUGUUGGUGGAAUGAAUGAA
2205   mRNA  unknown    Homo sapiens    AGAAGAGGCGGCGCGUGCGUAGAGGGGCGGUGAGAGCUAAGAGGGGCAGCGCGUGUGCAGAGGGGCGGUGUGACUUAGGACGGGGCGAUGGCGGCUGAGAGGAGCUGCGCGUGCGCGAACAUGUAACUGGUGGGAUCUGCGGCGGCUCCCAGAUGAUGGUCGUCCUCCUGGGCGCGACGACCCUAGUGCUCGUCGCCGUGGCGCCAUGGGUGUUGUCCGCAGCCGCAGGUGGAAAAAAUCUAAAAUCUCCUCAAAAAGUAGAGGUCGACAUCAUAGAUGACAACUUUAUCCUGAGGUGGAACAGGAGCGAUGAGUCUGUCGGGAAUGUGACUUUUUCAUUCGAUUAUCAAAAAACUGGGAUGGAUAAUUGGAUAAAAUUGUCUGGGUGUCAGAAUAUUACUAGUACCAAAUGCAACUUUUCUUCACUCAAGCUGAAUGUUUAUGAAGAAAUUAAAUUGCGUAUAAGAGCAGAAAAAGAAAACACUUCUUCAUGGUAUGAGGUUGACUCAUUUACACCAUUUCGCAAAGGAAAGGAUUGAAAAUAUUUAUUCCAGACAUAAAAUUUAUAAACUCUCACCAGAGACUACUUAUUGUCUAAAAGUUAAAGCAGCACUACUUACGUCAUGGAAAAUUGGUGUCUAUAGUCCAGUACAUUGUAUAAAGACCACAGUUGAAAAUGAACUACCUCCACCAGAAAAUAUAGAAGUCAGUGUCCAAAAUCAGAACUAUGUUCUUAAAUGGGAUUAUACAUAUGCAAACAUGACCUUUCAAGUUCAGUGGCUCCACGCCUUUUUAAAAAGGAAUCCUGGAAACCAUUUGUAUAAAUGGAAACAAAUACCUGACUGUGAAAAUGUCAAAACUACCCAGUGUGUCUUUCCUCAAAACGUUUUCCAAAAAGGAAUUUACCUUCUCCGCGUACAAGCAUCUGAUGGAAAUAACACAUCUUUUUGGUCUGAAGAGAUAAAGUUUGAUACUGAAAUACAAGCUUUCCUACUUCCUCCAGUCUUUAACAUUAGAUCCCUUAGUGAUUCAUUCCAUAUCUAUAUCGGUGCUCCAAAACAGUCUGGAAACACGCCUGUGAUCCAGGAUUAUCCACUGAUUUAUGAAAUUAUUUUUUGGGAAAACACUUCAAAUGCUGAGAGAAAAAUUAUCGAGAAAAAAACUGAUGUUACAGUUCCUAAUUUGAAACCACUGACUGUAUAUUGUGUGAAAGCCAGAGCACACACCAUGGAUGAAAAGCUGAAUAAAAGCAGUGUUUUUAGUGACGCUGUAUGUGAGAAAACAAAACCAGGAAAUACCUCUAAAAUUUGGCUUAUAGUUGGAAUUUGUAUUGCAUUAUUUGCUCUCCCGUUUGUCAUUUAUGCUGCGAAAGUCUUCUUGAGAUGCAUCAAUUAUGUCUUCUUUCCAUCACUUAAACCUUCUUCCAGUAUAGAUGAGUAUUUCUCUGAACAGCCAUUGAAGAAUCUUCUGCUUUCAACUUCUGAGGAACAAAUCGAAAAAUGUUUCAUAAUUGAAAAUAUAAGCACAAUUGCUACAGUAGAAGAAACUAAUCAAACUGAUGAAGAUCAUAAAAAAUACAGUUCCCAAACUAGCCAAGAUUCAGGAAAUUAUUCUAAUGAAGAUGAAAGCGAAAGUAAAACAAGUGAAGAACUACAGCAGGm6ACUUUGUAUGACCAGAAAUGAm6ACUGUGUCAAGUAUAAGGUUUUUCAGCAGGAGUUACACUGGGAGCCUGAGGUCCUCACCUUCCUCUCAGUAACUACAGAGAGGm6ACGUUUCCCUGUUUAGGGAAAGAAAAAACAUCUUCAGAUCAUAGGUCCUAAAAAUACGGGCAAGCUCUUAACUAUUUAAAAAUGAAAUUACAGGCCCGGGCACGGUGGCUCACACCUGUAAUCCCAGCm6ACUUUGGGAGGCUGAGGCAGGCAGAUCAUGAGGUCAAGAGAUCGAGm6ACCAGCCUGGCCAACGUGGUGAAACCCCAUCUCUACUAAAAAUACAAAAAUUAGCCGGGUGUGGUGGCGCGCGCCUGUUGUCUUAGCUACUCAGGAGGCUGAGGCAGGAGAAUCGCUUGAAAACAGGAGGUGGAGGUUGCAGUGAGCCGAGAUCACGCCACUGCACUCCAGCCUGGUGACAGCGUGAGm6ACUCUYUAAAAAAAGAAAUUAAAAGAGUUGAGACAAACGUUUCCUACAUUCUUUUCCAUGUGUAAAAUCAUGAAAAAGCCUGUCACCGGm6ACUUGCAUUGGAUGAGAUGAGUCAGACCAAAACAGUGGCCACCCGUCUUCCUCCUGUGAGCCUAAGUGCAGCCGUGCUAGCUGCGCACCGUGGCUAAGGAUGACGUCUGUGUUCCUGUCCAUCACUGAUGCUGCUGGCUACUGCAUGUGCCACACCUGUCUGUUCGCCAUUCCUAACAUUCUGUUUCAUUCUUCCUCGGGAGAUAUUUCAAACAUUUGGUCUUUUCUUUUAACACUGAGGGUAGGCCCUUAGGAAAUUUAUUUAGGAAAGUCUGAACACGUUAUCACUUGGUUUUCUGGAAAGUAGCUUACCCUAGAAAACAGCUGCAAAUGCCAGAAAGAUGAUCCCUAAAAAUGUUGAGGGm6ACUUCUGUUCAUUCAUCCCGAGAACAUUGGCUUCCACAUCACAGUAUCUACCCUUACAUGGUUUAGGAUUAAAGCCAGGCAAUCUUUUACUAUGCAUUAAGACCUCUGAUUCAAAACUUAUUAGAACAGUAGCUUCUGCUGGAAUUUGCAAUCACUGAAGUCAUAGAAAAUAGGUAACUAUCUAAUUAGAGAAAUAAUUGUUGUAUUUUAAGAUCUGAGAGUGUGUACAAGUUUUAGUAUACAUGCCAUGCCAGAAGAUAGUGUAUGCAAGAAGUCUUGGGACCAGAAAAUGGCAAUGAUAGGAGACUGACAUAGAAGAAGAAUGCUUCCCUAGGAAAAAGGUCGCUGGCUUUGGUGCAAGAGGAAGAAGAAUGUUCCACUGGAAGCCUGAGCACCUAAUCAGCUCUCAGUGAUCAACCCACUCUUGUUAUGGGUGGUCUCUGUCACUUUGAAUGCCAGGCUGGCUUCUCGUCUAGCAGUAUUCAGAUACCCCUUCUGCUCAGCCUGCUUGGCGUUAAAAUACAAAUCAUUGAm6ACUGAGGGGGAAAAAUGUAACUAGGAAGAAAAACCCAAUUUAAGAAAUUACAUAAUGCUUUCCAAAGGCACCUACAACUUAGUUUUAAAUUACUUGCUACUGGGGAUUACCCAUGGAUAUCCUUAAUAGGCAGGAAGUCUGGGAAUUCUGGUGGCCUCUAGGGCAGUGUUCUCACAGCACCGUUCCGACAGGGACCAGUGAAAGAAAAGAGACAAAGUUAGAACGUGCUGGGGAGCGGCCAUUUCUAAGGCCAGUCUGGUUUAAGUAGUCAUUUCUGCUGAAAAAACAGAUGAUCCUGGUGGAAGAAAAGGUUGAAGGCAGCUGCCCUCGGGAGGGCUGUGAUGCUCGGCACAUCCUGCCUGGCACAUACACGUGUCUGCAGGCCACACCGUGCAUGUCCCCAGACCUGCCGCCUGGCUUCUGGAGUGCUUCAAGCAGAGCAUGGUGGGUCAUUGAGGAGACCCAGGAAUCUCAUCUGAGAACCCACUCUCUGCCGGAGAACCCCAUGGUGACACAUUUUCAUCUUUCUGACCAGAGGCUGUUUUUUUUUUUUUUUGAGACAGUCUCAUUCUGUUGCCCAGGCUGGAGUGCAGUGGCUUGAUCUCGGCUCACUGCAACCUCGCCUCCCGGGUUCAAGCAAUUCUCUGCCGCAGCCUCCAGAGUAGCUGGGAUAm6ACAGGUGCCCACCACCACACCCCACUAAUUUUUGUAUUUGUAUUUUUAGUAGAGAUGGGGUUUCACCAUGUUGGUCAGGCUGGUCUUGGACUCCUGACCUCAUGCUCCACCCGCUUCGGCCUCCCAAAGUUCUGGGAUUACAGGUGUGAGCCACCGUGCACGGCCGGCCUGACCUUUGGAAAAGCCUUGUCACUUUGGm6ACGUUUGCGUCUUUGAAGAGGCGAUGGGAGCAUAUCAUGm6ACUGCCUGCCACCAUUGCUUUUCAGACUACCACAACUCAAUCAUGCUGUCCAGGm6ACUUCUGGCCCUGUGUUCACCACUGGGAAAACGUACUUCAGm6ACUGGAUAGCCUAAAAAGGAGCAAUGCCCUUGUAGGAUGUGGAGAAGGGAAAAUACGGm6ACAUUAACAUUAAAAGm6ACACCAGUGAAAUUGUUAGGUCUCUAGGAAGUUGGAGCACAAGGCUUCACGCUUUAAGACCAUCUGUGGUUUUCAGUGAACAAGCGCUGAGCACCAGCAGCAGAAAACAACAACAAAAAAACACCUCGUUUUUACCUUGUCUUCUAGACAUGAAAAGGCAGUUGCAUUCCACUCUGCAUUAUGUUCUACAUGUUGCUUUAUCAGUAUAUGCUUAGCUGUAAGUGACAAGUAUUUUUUCUGAACAGAAGUUUACUUAGAAAUACCAUGCACUUGGGGGUACCAAUUAACCGCCUGAAAAUUAGCAUAUUGAUAGUUCUUAGAGAGACCAGAUAUAAUCUAAGAAUUUAUAUGAAAGAUUUGUAUCAUUAGAGCCAGAAAUAAUUUUAUAUUAAUAUAUAAUACAGAUUAACAUUAUAUAUAAUAUGUACCUGUGUCACUUCUGACAUGAGCCUGUAAACAUAUAUUCAUAUAUGUACCUGCACAUGUACCCACCUGAUGUAGGUCUUAUUCCUUUAGUAUGGACUUAAAGUACUUAUUCAUAUACCUUGUAACUAAAAAUUAGAACAGCUCCCUAGAAUUGUGAACUUUUAAGAGUCUGACUAGAAAUUUGCAACUUAUAAAAAAGUUACUUUUAAAAAUAUAAGUUAGGGCUAGGCACAGUGGCUCAUGCCUAUAAUCUCAGCACUUUUGGGAGGCCAAGACAGGAGGAUCACUUCAGGCCAGGAGUUCAAGAUCAACCAACCUGGGUAACAUGGCCAGACCCCAUCUCUAUUUAUAUAUAUAUAUAUAAAACUUAGAGUUUUUAUCUUCCCCUAAAAGAGGCCGUGAUAUUUGCAGCAGCCUCAAAUUGCUCUUAAGGGGUUUAGGUGUGCAGAAGCUUUCCUUUCCCUACCCAGUAACCAUGUGACUACUAACGUGGUAUAUUGAUUUAUUUUGUUUGCUGUCUGUCUCCCCUGCCCCACUGCUGGAACAGAGGCUCCAAGAAAACAGGGACCUUAUUAUUCAUUACUGCAUCCCCAGUAAUGAAAGUACUUAGAAAAUAAUUAUUGAAUGAAUGAAAUCUAAACUGUGAACCUGAGGGUGUUUGUGGCAGUGUUUGUUUUACUGAAUUGUAGAAGGm6ACAUAACCGUGUUUUCAGUGUUUCUAUGGAACAAACUUGUACAUUUUAUUUCACUUGUGUUUUGUCUUAAACCCUACUGCUGGAAACAAUUUUAUGUAAUAAGCAAUGGGCCCAAAAGUCUAGGAGUUUUUUUGUACUUAGUGAAUUUGUAUGCAACAGAGAUGCUGCAGCUGAUGCCUUUAAAAGGUAUUCAUCAUGGAAGAGCUGAGGCCUGUGCUUGGUGUUCCAGAGCCCAGGGUUGAGCAUCCUGAAGGAGCCACUGCAGCCGUCACUGUCCCCAGAGCCUGUGGAGAUAGAGCCUGUUUGCUGCUUUUUCUUCCCGCUCUUAAGm6ACAUGGCUGGAGCUCAGUCUUCAUUGAAUGAAGUUUGCUGUGGUAUUGCAUAGCCUUGCUUUCUUGAACUAAACUGUUUGCCCUUCACAAGUAGUUCUUCUUUCAGGAUUAGUUCGUUCCAAGGAGGCUCUUCAGUCUCACAGAUAAGUAGAUCUCUCCUGCUGUCUGGACACAUUUCACUCGGAAAUUGAAUACAAUUUGUAUUCAGGCUGGGAACCUGAACACACACUUGUGUUUUUAAGCUUCCCUUUUUUACAGUGGACAAGGACACAAAUAA
2206   unknown  unknown    Homo sapiens    AGAAGAUGGCUGCCCCAGCAGUGUCCGGGCUCUCCCGGCAGGUGAGAGAAAGGUGGUCCUGAGAGCCAGUGGGAGGAUCCCUCCUGGGAUGACCGGUACCAAACCUCGAGCACCAGGGUGCGAUGCUUCGGCUGGGGAAGUCUGGCAGUCUUCAAGGUUAUGGGACCUGGCGAGUGGGAGCGACUCAGGACGACCCAGCGUUUGUCCCCCGGGAUGCCUACGGGGCAGUAGGCGCGGGGCUGCGCGUGCCGUAACCUUGGCGUCUUCCGAGCACAGCCCCUGGAAGCUGCUAGCCUGAGGGGCGCAGGAGAGGGGGUCUGCCCUUCGCUGAAUUCCGGGGAAGGGGCAUGGm6ACUAGCCCCCAAAUCAGCUUCCUUUGCCAUUGUGGUAAAACCUGUCAGAGAUCACUUACUAGUAAUGCUAAGGAAUAUUUGUAAAACACAUUUCACAGUUUUAUAAAUAAAAUGAGGCCGAAAAGUUUAAAUGAGUCUUUGGCUGCUCAGUCAGUAAGUGGUAGAAUUGAGAUUUGAACCCACGGAAUCACCCAGAAGAUCGAGUUUGAAAAAAUGUUAUGCUGUUUGUGCUGCAUCUCACCAUGGUGCUUUACAUAUCAUGACCCCUUCCUGGCAUCUUAGGUAAUUUUUUCAUAAGCAUUAAAAAGUCUUAAUCCUCACAAGCAGUUUUGAUAAAACACGUUCCAUAGCUGGAGUAUUUGAAGGUGACCUGUGAUCUGUGACCUGUGCGCUUGCAGGUGAUUUUUAAACUGUGUAUUCCAGCUCUGUCUUUUGAUGGGCAGGAUAGUGUCUCUCAGAACUAAGGCUUCUUGUCAGAUCAAACUCUGCGGCAGUACUCAAAAAAUUCAUCUUUAUUUUCAGAUAGCAUUUGCAUUCCGAGGAGGGUACGUCUGUUGCAAAUGAUCUGCUCAAGGGUCUGUUAAUAGAAACGCCAAAAUUUUGGUUAAAUAUUUUUGAAACAUGCACUCCUUGGAAGUUAGUGUUUUUCUGUCUUACGGGUAUGCUAGCCUCGGUCCAUUCCUAGCAAACUAGGAGGUUCGUGGGAAGGUGAUUUCCCAAGCAACUUGGCAUAAUCCUCAUUGGGUAAGUUUACCCCUUAGUAAUAGUAAGUAGCUCACCCUCAUGUAAUAUGUGAAUAUACAAAGAGACAAAAGUAAUGAUUUUAAGGUUAUUUAAAAUUUUUUGUUGUUAUUGAGUUAAAUGCAGAAAUCCUUCAAGUAAUUUUGUUUGAUCUAUUUUCCUUUAUUGCUUUGAAGGUGCGAUGCUUCAGUACCUCUGUGGUCAGACCAUUUGCCAAGCUUGUGAGGCCUCCUGUUCAGGUAUACGGUAUUGAAGGUCGCUAUGCCACAGCUCUYUAUUCUGCUGCAUCAAAACAGAAUAAGCUGGAGCAAGUAGAAAAGGAGUUGUUGAGAGUAGCACAAAUCCUGAAGGAACCCAAAGUGGCUGCUUCUGUUUUGAAUCCCUAUGUGAAGCGUUCCAUUAAAGUGAAAAGCCUAAAUGACAUCACAGCAAAAGAGAGGUUCUCUCCCCUCACUACCAAUCUGAUCAAUUUGCUUGCUGAAAAUGGUCGAUUAAGCAAUACCCAAGGAGUCGUUUCUGCCUUUUCUACCAUGAUGAGUGUCCAUCGCGGAGAGGUACCUUGCACAGUGACCUCUGCAUCUGUAAGUAACGGGUUGUUGCUGCUGUGUUUGCCUUGAUAUUACAUGUGUCACCUUUUGCAGGAAGAAAAGGGAAAAACAGGGUAAAAUCAAGAAAUUGGGAAAGGUAACUUGUCACCUGGGAUGUUUGUUUCAUUUUUAUAUCAGCUUCUGUGACCCUUUGCUUUGGAAAAGCCAGCGUGUAUCUUAUUAGUGCUUCUGUAACCAGUGAUUAUUCAUAAGGCCUGGGUUAAAUGUAAAGUACAUCAAAAUGUGUUGGAAAAGAGUGGUUUAGACUCUAUUAUAUGUUUGAAUUAUUUUAUGAAUACCACUUGAAGUAGUUUCCUGAAACUAGAAUUCUAGAGUUUAUUUUUUUGAGACAGAGUCUCACUUUGUCACCCAGGCUAGAGUGCAGUGACACAGUCACACCUCUGUAGCCUCAACCUCCUGGGCUCAGGUGAUCCUCCUGCCUCAGCUUCCUGAGUAGCUGGGAUUACAGUGCACCCCCACCACACCCGGCUAAUUUUUGUGUGUUUUUUAUAGUGAUGGAGGUUUUACUGUGUUCUCCAGGCUUGUCUCGAACUUCUGGGCUCAAGUGACCCACCUGCCUUGGCCUCCUAAAGUGCUGGGAAUAAAGGUGUAAGCUACCACACCUGGCCUGAAACUAGAGUUACUAACCUUUCAUCUUUGGUGGUGGUGAGUGGGAAGGAGUAGAGCCGUUGGGCCUUUGUAUCUUUUUGACUUGAUAGUGGGCUAUAAUUGGCUACCGUUUAUUGAACCCUACUAUAUGCUGGGUGCUUUAUUAUGUUAUUCAGUAUCAAAAGAUUCAUGUGAGAUAGAAGUAUAAUUAACCUCAUUUUACAGAUGAGGAAACCGAAUGCAGGGAGAUGAAGUCGCUUGCCCAAAGUCAUACGAGCCUYUAGAAGAAGCCACACUCUCUGAAUUAAAAACUGUCCUCAAGAGCUUCCUAAGUCAAGGCCAAGUAUUGAAAUUGGAGGCUAAGACUGAUCCGUCAAUCUUGGGUGGAAUGAUUGUGCGCAUUGGCGAGAAAUAUGUUGACAUGUCUGUCAAGACCAAGAUUCAGAAGCUGGGCAGGGCUAUGCGGGAGAUUGUCUAAAAGUGUUGGUUUUCUGCCAUCAGUGAAAAUUCUUAAACUUGGAGCAACAAUAAAAAGCUUCCAGAACAGAUCA
2207   mRNA  unknown    Homo sapiens    AGAAGCCGGAAGUUGUGUCCCGGACGUGUCAACCGGGGUCUGAGUGCUCAGAGUACAGCUGCAACCGCGACCAUGGGCGGGAAGAACAAGCAGCGAACUAAAGGGAACCUGAGGCCUUCAAACAGUGGCCGAGCUGCAGAACUCCUUGCCAAAGAACAGGGAACAGUGCCUGGAUUUAUUGGUUUUGGAACAUCUCAGAGUGACCUAGGCUAUGUUCCUGCUAUUCAAGGAGCUGAAGAAAUUGACAGUCUUGUAGAUUCUGAUUUCCGAAUGGUGCUGCGGAAACUUUCAAAGAAAGAUGUCACCACAAAAUUAAAAGCUAUGCAGGAAUUUGGAACCAUGUGUACAGAGAGAGACACAGAAACUGUGAAAGGAGUUCUUCCAUAUUGGCCAAGAAUUUUUUGCAAAAUUUCACUUGAUCAUGACCGUCGCGUCCGAGAAGCCACACAACAAGCUUUUGAAAAACUUAUCCUUAAAGUAAAGAAACAGUUGGCUCCCUACUUAAAAAGUUUAAUGGGAUAUUGGCUAAUGGCUCAGUGUGAUACUUACACACCAGCUGCGUUUGCAGCAAAAGAUGCAUUUGAAGCGGCUUUUCCUCCAAGCAAGCAACCUGAAGCCAUAGCAUUUUGUAAGGAUGAAAUUACAAGUGUGCUGCAGGAUCAUCUUAUAAAAGAAACACCUGAUACACUCAGUGACCCGCAAACUGUUCCAGAGGAAGAAAGAGAAGCUAAAUUCUACCGGGUUGUAACUUGUUCCUUAUUGGCAUUAAAGAGAUUACUUUGCCUUUUACCUGAUAAUGAGCUUGAUUCUCUGGAGGAGAAAUUUAAGUCUCUUUUAUCACAGAAUAAGUUUUGGAAGUAUGGAAAACACAGUGUACCUCAGAUUCGCUCAGCUUAUUUUGAGUUAGUCUCUGCAUUGUGCCAGCGCAUUCCACAGUUGAUGAAAGAGGAAGCAUCCAAAGUGAGCCCAUCAGUUCUACUUAGCAUUGAUGACAGUGACCCAAUUGUCUGCCCAGCUCUCUGGGAAGCUGUACUCUAUACACUUACAACUAUUGAGGACUGUUGGCUUCAUGUAAAUGCAAAAAAGAGUGUGUUUCCCAAGCUAUCAACUGUGAUUCGUGAAGGUGGUCGGGGUCUAGCUACUGUCAUAUAUCCUUACCUUCUGCCAUUCAUCAGCAAGCUCCCUCAGUCCAUCACAAAUCCAAAGUUGGAUUUCUUCAAAAAUUUCCUCACGUCUCUAGUUGCUGGGCUGUCAACAGAGAGAACUAAAACCAGCUCUUUAGAGUCCUCGGCAGUAAUAUCUGCUUUUUUUGAAUGCUUACGUUUUAUAAUGCAGCAAAACUUAGGUGAGGAAGAGAUUGAACAGAUGCUCGUCAAUGAUCAGUUGAUCCCUUUUAUUGAUGCAGUUCUCAAAGACCCAGGAUUGCAACAUGGGCAGCUAUUUAACCAUUUAGCAGAAACUCUAAGUUCCUGGGAAGCCAAAGCAGACACGGAAAAAGAUGAAAAAACAGCUCACAACUUGGAGAACGUm6ACUGAUACAUUUCUGGGAAAGm6ACUGUCAGAGAUCUGUGUUGCGAAAAUCAGUGAGCCAGAAGCUGAUGUUGAGUCCGUUUUGGGUGUAUCUAACCUAUUACAGGUGCUUCAGAAGCCGAAGAGCUCAUUGAAGUCAAGUAAAAAAAAAAAUGGUAAGGUUAGAUUUGCUGAUGAGAUACUUGAAAGCAAUAAAGAGAAUGAAAAAUGUGUAUCUUCAGAAGGAGAGAAGAUUGAAGGCUGGGAAUUAACAACUGAACCUUCUCUCACUCAUAAUUCUUCAGGCCUUUUGUCUCCUCUAAGGAAAAAACCUUUGGAAGm6ACUUAGUCUGUAAACUCGCAGAUAUAAGUAUUAAUUAUGUCAAUGAACGAAAGUCAGAGCAACAUCUAAGGUUUCUUUCUACUCUGCUUGACUCCUUUUCUUCAAGCCGAGUAUUUAAAAUGCUACUUGGUGAUGAAAAACAGAGUAUUGUCCAAGCCAAACCUCUUGAAAUAGCCAAGCUUGUACAAAAAAAUCCUGCGGUGCAGUUUUUAUACCAGAAm6ACUGAUAGGUUGGCUAAAUGAAGAUCAAAGGAAGGAUUUUGGUUUCCUGGUGGm6ACAUUUUGUACAGUGCUCUCCGGUGCUGUGACAAUGAUAUGGAAAGAAAAAAAGUCUUGGAUGAUCUAACCAAGGUGGACUUGAAAUGGAAUUCUCUUCUUAAGAUUAUUGAAAAGGCAUGUCCUAGUUCAGAUAAACAUGCUUUAGUAACUCCUUGGCUCAAAGGCGAUAUCCUUGGUGAGAAAUUGGUCAACUUGGCAGAUUGUCUUUGUAAUGAGGACUUGGAAUCCAGGGUAUCUUCAGAAUCUCACUUCUCAGAAAGAUGGACUCUUCUAAGCUUGGUAUUAUCCCAACAUGUUAAAAAUGAUUACUUGAUUGGAGACGUAUAUGUUGAAAGAAUCAUUGUUAGACUUCAUGAAACUUUAUUCAAAACAAAGAAAUUAUCAGAAGCUGAAAGCAGUGACUCAUCAGUGUCUUUUAUCUGUGAUGUGGCCUAUAACUAUUUCAGCUCAGCGAAAGGAUGCUUGCUAAUGCCAUCAUCUGAAGAUUUAUUAUUAACUCUCUUUCAGUUAUGUGCUCAGAGCAAAGAAAAAACACAUUUGCCAGAUUUUCUUAUCUGUAAACUGAAAAAUACUUGGCUCUCUGGUGUAAAUUUAUUGGUUCAUCAAACUGACAGUUCAUAUAAAGAGAGUACCUUCCUACAUUUGUCUGCUCUGUGGCUGAAGAACCAAGUUCAGGCUUCAUCUUUGGAUAUCAACAGUCUCCAAGUCCUCUUGUCUGCUGUUGAUGAUUUGCUAAAUACACUUCUAGAGAGUGAAGAUUCUUAUCUUAUGGGAGUUUAUAUUGGAAGUGUAAUGCCGAACGACAGUGAAUGGGAAAAGAUGAGGCAGUCUCUUCCUAUGCAGUGGUUACAUAGACCUCUUUUAGAGGGAAGAUUGAGUUUGAAUUAUGAAUGUUUCAAAACAGAUUUUAAGGAACAGGACAUAAAGACACUUCCCAGCCAUUUGUGUACUUCAGCAUUAUUGAGCAAAAUGGUCUUAAUUGCACUGAGAAAGGAAACAGUCUUAGAAAAUAAUGAGCUUGAGAAAAUAAUUGCAGAACUGCUUUAUUCACUGCAGUGGUGUGAAGAAUUAGAUAACCCACCUAUUUUUCUAAUUGGAUUUUGUGAAAUACUUCAAAAAAUGAAUAUUACGUAUGAUAACUUACGUGUACUUGGUAAUACGUCGGGCCUUUUGCAGCUGUUAUUUAACAGGUCCAGAGAACAUGGCACACUGUGGUCUCUUAUUAUUGCUAAGUUGAUCCUUUCCCGAAGCAUUUCAUCUGAUGAAGUAAAACCACAUUAUAAGAGAAAAGAAAGUUUUUUUCCACUAACUGAAGGCAAUUUGCAUACCAUUCAAAGUCUAUGUCCAUUUUUGUCAAAAGAAGAAAAGAAAGAAUUUAGUGCUCAAUGUAUACCUGCUCUUUUGGGCUGGACUAAGAAAGAUCUUUGCAGCACUAAUGGAGGUUUUGGACAUCUUGCCAUUUUCAAUUCUUGUCUGCAAACCAAAAGUAUAGAUGAUGGAGAGCUAUUACAUGGAAUAUUAAAAAUCAUAAUAUCCUGGAAGAAAGAGCAUGAAGAUAUUUUUCUUUUCAGUUGUAAUCUAUCAGAAGCAAGUCCAGAGGUACUGGGUGUAAAUAUAGAAAUAAUCCGGUUUCUUUCCCUAUUUCUGAAAUACUGCUCAUCCCCUUUGGCAGAGAGUGAGUGGGACUUCAUCAUGUGCUCCAUGUUGGCUUGGUUGGAGACAACAAGUGAGAAUCAGGCAUUGUAUUCUAUUCCACUUGUGCAACUGUUUGCCUGUGUCAGCUGUGAUUUGGCCUGUGACCUCAGUGCUUUCUUUGAUUCCACAACUCUGGAUACCAUUGGCAAUCUUCCUGUAAAUCUAAUCAGUGAAUGGAAAGAAUUUUUUUCCCAAGGCAUCCACAGUUUGCUUUUACCUAUUUUGGUGACUGUUACAGGAGAAAACAAAGAUGUGUCUGAAACAUCCUUUCAGAAUGCAAUGCUGAAACCCAUGUGUGAAACAUUAACGUAUAUCUCAAAGGAACAGCUAUUGAGUCACAAACUUCCUGCAAGAUUAGUUGCUGACCAAAAAACAAACUUACCAGAAUAUCUCCAGACUUUGUUAAAUACAUUGGCCCCAUUACUCCUCUUCAGAGCUAGGCCUGUGCAAAUUGCUGUUUAUCAUAUGCUAUACAAAUUGAUGCCUGAAUUACCACAGUAUGAUCAGGAUAAUCUAAAGUCAUACGGAGAUGAAGAAGAAGAGCCAGCCUUGUCACCACCAGCAGCACUGAUGUCUCUUCUUAGCAUUCAAGAGGACUUACUAGAAAAUGUUUUGGGGUGUAUUCCUGUUGGACAGAUAGUUACUAUUAAACCACUGAGUGAAGACUUCUGUUAUGUUCUGGGAUACCUUCUCACUUGGAAAUUAAUACUAACUUUCUUCAAAGCUGCAUCAUCACAGCUUCGGGCUUUGUAUUCCAUGUAUCUUCGGAAAACAAAGAGUUUGAAUAAAUUGCUCUAUCACCUGUUCAGGCUUAUGCCAGAAAAUCCAACCUAUGCAGAGACAGCAGUUGAGGUCCCAAAUAAGGACCCUAAAACAUUCUUUACUGAGGAGCUCCAGCUGAGUAUUAGAGAAACAACAAUGCUUCCAUACCACAUUCCACACUUGGCUUGUUCAGUCUAUCAUAUGACAUUAAAAGACUUGCCUGCCAUGGUUAGGUUGUGGUGGAAUAGCAGUGAGAAGCGUGUUUUCAAUAUUGUGGAUAGAUUUACAAGCAAGUAUGUCAGCAGUGUUCUUUCUUUUCAAGAAAUAUCUUCUGUACAAACAAGUACACAACUAUUUAAUGGCAUGACGGUUAAAGCUCGAGCUACUACUCGAGAGGUAAUGGCUACUUAUACUAUUGAGGACAUAGUUAUUGAACUUAUAAUACAACUGCCUUCAAAUUAUCCACUGGGUUCAAUAAUAGUAGAAAGUGGGAAAAGAGUAGGAGUAGCUGUUCAGCAGUGGCGGAACUGGAUGCUGCAGUUAAGCACUUACCUCACCCAUCAGAAUGGAAGUAUUAUGGAAGGCUUAGCUUUAUGGAAAAAUAACGUAGACAAACGUUUUGAGGGUGUUGAAGAUUGCAUGAUCUGUUUCUCAGUCAUUCACGGUUUCAACUAUUCCCUUCCCAAAAAAGCCUGUAGAACAUGCAAGAAAAAAUUCCAUUCAGCCUGCUUGUACAAAUGGUUUACAUCUAGCAACAAAUCCACUUGUCCACUGUGUCGUGAGACGUUUUUCUGAGAUUUUUUUCACUGGAAGGGAUCCCUGAAGUACAUCAAACAAAGGCAUUGGAUUUGGAUCCGUCUGAAAGUGUGGAUGUGGGGAAGCCAGUGAGCAUUACUUUUAAAUAGGACCUUCUCUGGAAAAUUAUUUUGGUUAAUGUAAUAAUCCUAAAAUCAGGUUUACUUAACUUUAGAUUGCUUUGUAAAUGUUUGGAAACUUUCUUUUACAAAAGAAUAUUACAUAUUUGAGAGAAAAUAUUUCUAUUAAUGGUUUAAUUUCUUUGUAUAUUUAAAAAUAAAUAUGAAAAACCCCUAAAUUACAGAAUUGGAAUUUGUGAAAAGAUUGCACAACUAUAUUAUUGAUAAACCCAUUCCGUUUGUUGAUCUGUGUUUUAGAAUAGUCCAAGUGAAGCAAAACGAACUGAGAGAGCUGAUUUACAUCUAUAGAUAUUUUAAGCCUUAUUUAUUAGUUAUGACAAUAAAUUAGUAUUCUGAUAUUUGUAGAUUAUUUUAAUGAUAAAAAUGACACUAAGCUAUUAAUACGGCUUGUCUUAAGAUAUCUGGAGGCAUGCUCUGAAAUCCUAUAUAAAAGAGUUUAAACUGAACUUUAAGGUGCCUCCAUUUAUCAAGGGUUAUGAAACUCAGAAAAUUAAAUUCUUGAUGCUGACCUUUUUGCUUGUGGGAGAAUUAUUUCUAUAUAUUAGUGAAAUUUGAAUUGUAAACUUGUCAGUGAAUUUAUCACUCUGAGCGAGUCUCUAGAGGGUGAGAAUUUGAGAGAAAUAGUAAUUUGAUUAUUUCAUUCAUGAAGCGGAGUGGUAGUUAUCCUUCUAUUGAGAGGGAAGAAAUAAAUGAGUAUUACUGAAACUUAAAGAUCAGUGGAAAAAAAAAACAUUUAAAAAUGUUGUAGGAGACUUUCAAUUUUGGAAGCAAACUGAGCUAUUCUUACCAGCCAAAGUUAUACUAAAUAAGAGACUUGGGGGAGCAAAUGUUUUUCAGCCUUCAGAAAUGAAAGUUAAGGAUUUUAGCACUAGGUAAAAUUCAGUAUAAUAGGCUGAAGUGGAGUAAGUGAAAACCUGCCUUUUGCCACUCUUAAAAAUUGUGCCCAAAAUAUAAAAGUGUGGAACUUUAGAACUUGGAAUAAUUUUAUUGCAGUCUUCCAUUACAUGGAAAUAGCAUAUCUAAUAUCUAGGUUACUUGAGAGACCAGCUAAUCAUCUCUGUUGCACAUGUUUAAUUGGCAAAAAGCAAUUCAUGAUAAAUAAAAUUACUGCUUUCCAUCUACUGGGUAAAAUGACUAUUGAAAUAGUAUGAAUGUGGUCAGAGGAUUAUAGUUGAGAGUGAAGUACUAUGUGUGAGUUAUAGAUCUCUCGAAUUAUAUUUAUAGAUGCAGUGUCCUGCCCAGUUUUGUUUGCCUCCUACAUUUUACUGUAAAAUAUUUAUUGUCUUCUAGCCUUGAGCCUCUGAGGGUCAGUAAGUGAAGUACAGAUAGCAAAAUUUUACUACCUCGUUAACCCUUUUCUUAAAAUAUUCUCUAUCUUUCUAUGUCUCUUUCUGACAUAGUAAUCCCAAAGGAUUGUGUUACUCCCCGUGAAAGUUAUUACUUUUCCUYUAAAAAUGGUUUUAUAAUAAGACUGUUUAAAACCUUUCCAGUAUUGGUACAUCUUGGCUUCUGGCCCAAACCCCAAGCAGAAAAGAAAAUGGAAUAAUGGAGCAUUGUUUUUCCACAUUAGUAUUAGGGCAUCAGAUUCUUGGUGAAACACUAUAAUUAAGUAGUUAUAAUUAAAUAACUGUUCUUCAUACUUAGGACUCUUAAUACAUUUCUYUAAGACUUGUAAGUAUAAUUGUAAAGCUUGUUAACUGUUUAUAUACUAAAGAAAAAGCUYUACAAGAUAAGACUGAAAUUCAGAAUACCACAUCUGUACAGCGUUGACAACUCUAACUAAAAGGAUUACAGCCCUUAAAAUUUUAGCUUAAGGACAUUUUAAAAUUGCAUGAGAUUAGCAAAAUUAUUAAUUUAAAACCCCAAAGUAAAUUGCAAAUUUUAAAAUUUAUUUUUGACUCUUUUAUCACAUGCUCCAAUGUAUGUACAUAAGUGUCUGUGGCUUAAAUAAUAUGUUGUUAUUUGAUACAUUUUUGUGGUGCAAGUAAUUAAUGUUAUUAUUUGAUUGUUAUACCAUAUGUGCCCAUUAAAAUUCUUUUUAAUUAAAAAUAUUUCAAAUAUGCAGAAAAAUAAUAAUAUAAAUGCCCUUGUACCCUUCACAUACUAUUUUGCCAUAUUUGCUUCUGAUUUUUAAAUAAAUAAAAUGUUACUCUUUUGUACUUCU
2208   mRNA  unknown    Homo sapiens    AGAAGGCAGCCUCGGUCUCUGGGCGGCGGCGGCGGCCCACUCUGCCCUGGCCGCGCUGUGUGGUGACCGCAGGCCCCAGACAUGAGGGCGGCCCGUGCUCUGCUGCCCCUGCUGCUGCAGGCCUGCUGGACAGCCGCGCAGGAUGAGCCGGAGACCCCGAGGGCCGUGGCCUUCCAGGACUGCCCCGUGGACCUGUUCUUUGUGCUGGACACCUCUGAGAGCGUGGCCCUGAGGCUGAAGCCCUACGGGGCCCUCGUGGACAAAGUCAAGUCCUUCACCAAGCGCUUCAUCGACAACCUGAGGGACAGGUACUACCGCUGUGACCGAAACCUGGUGUGGAACGCAGGCGCGCUGCACUACAGUGACGAGGUGGAGAUCAUCCAAGGCCUCACGCGCAUGCCUGGCGGCCGCGACGCACUCAAAAGCAGCGUGGACGCGGUCAAGUACUUUGGGAAGGGCACCUACACCGACUGCGCUAUCAAGAAGGGGCUGGAGCAGCUCCUCGUGGGGGGCUCCCACCUGAAGGAGAAUAAGUACCUGAUUGUGGUGACCGACGGGCACCCCCUGGAGGGCUACAAGGAACCCUGUGGGGGGCUGGAGGAUGCUGUGAACGAGGCCAAGCACCUGGGCGUCAAAGUCUUCUCGGUGGCCAUCACACCCGACCACCUGGAGCCGCGUCUGAGCAUCAUCGCCACGGACCACACGUACCGGCGCAACUUCACGGCGGCUGACUGGGGCCAGAGCCGCGACGCAGAGGAGGCCAUCAGCCAGACCAUCGACACCAUCGUGGACAUGAUCAAAAAUAACGUGGAGCAAGUGUGCUGCUCCUUCGAAUGCCAGCCUGCAAGAGGACCUCCGGGGCUCCGGGGCGACCCCGGCUUUGAGGGAGAACGAGGCAAGCCGGGGCUCCCAGGAGAGAAGGGAGAAGCCGGAGAUCCUGGAAGACCCGGGGACCUCGGACCUGUUGGGUACCAGGGAAUGAAGGGAGAAAAAGGGAGCCGUGGGGAGAAGGGCUCCAGGGGACCCAAGGGCUACAAGGGAGAGAAGGGCAAGCGUGGCAUCGACGGGGUGGACGGCGUGAAGGGGGAGAUGGGGUACCCAGGCCUGCCAGGCUGCAAGGGCUCGCCCGGGUUUGACGGCAUUCAAGGACCCCCUGGCCCCAAGGGAGACCCCGGUGCCUUUGGACUGAAAGGAGAAAAGGGCGAGCCUGGAGCUGACGGGGAGGCGGGGAGACCAGGGAGCUCGGGACCAUCUGGAGACGAGGGCCAGCCGGGAGAGCCUGGGCCCCCCGGAGAGAAAGGAGAGGCGGGCGACGAGGGGAACCCAGGACCUGACGGUGCCCCCGGGGAGCGGGGUGGCCCUGGAGAGAGAGGACCACGGGGGACCCCAGGCACGCGGGGACCAAGAGGAGACCCUGGUGAAGCUGGCCCGCAGGGUGAUCAGGGAAGAGAAGGCCCCGUUGGUGUCCCUGGAGACCCGGGCGAGGCUGGCCCUAUCGGACCUAAAGGCUACCGAGGCGAUGAGGGUCCCCCAGGGUCCGAGGGUGCCAGAGGAGCCCCAGGACCUGCCGGACCCCCUGGAGACCCGGGGCUGAUGGGUGAAAGGGGAGAAGACGGCCCCGCUGGAAAUGGCACCGAGGGCUUCCCCGGCUUCCCCGGGUAUCCGGGCAACAGGGGCGCUCCCGGGAUAAACGGCACGAAGGGCUACCCCGGCCUCAAGGGGGACGAGGGAGAAGCCGGGGACCCCGGAGACGAUAACAACGACAUUGCACCCCGAGGAGUCAAAGGAGCAAAGGGGUACCGGGGUCCCGAGGGCCCCCAGGGACCCCCAGGACACCAAGGACCGCCUGGGCCGGACGAAUGCGAGAUUUUGGACAUCAUCAUGAAAAUGUGCUCUUGCUGUGAAUGCAAGUGCGGCCCCAUCGACCUCCUGUUCGUGCUGGACAGCUCAGAGAGCAUUGGCCUGCAGAACUUCGAGAUUGCCAAGGACUUCGUCGUCAAGGUCAUCGACCGGCUGAGCCGGGACGAGCUGGUCAAGUUCGAGCCAGGGCAGUCGUACGCGGGUGUGGUGCAGUACAGCCACAGCCAGAUGCAGGAGCACGUGAGCCUGCGCAGCCCCAGCAUCCGGAACGUGCAGGAGCUCAAGGAAGCCAUCAAGAGCCUGCAGUGGAUGGCGGGCGGCACCUUCACGGGGGAGGCCCUGCAGUACACGCGGGACCAGCUGCUGCCGCCCAGCCCGAACAACCGCAUCGCCCUGGUCAUCACUGACGGGCGCUCAGACACUCAGAGGGACACCACACCGCUCAACGUGCUCUGCAGCCCCGGCAUCCAGGUGGUCUCCGUGGGCAUCAAAGACGUGUUUGACUUCAUCCCAGGCUCAGACCAGCUCAAUGUCAUUUCUUGCCAAGGCCUGGCACCAUCCCAGGGCCGGCCCGGCCUCUCGCUGGUCAAGGAGAACUAUGCAGAGCUGCUGGAGGAUGCCUUCCUGAAGAAUGUCACCGCCCAGAUCUGCAUAGACAAGAAGUGUCCAGAUUACACCUGCCCCAUCACGUUCUCCUCCCCGGCUGACAUCACCAUCCUGCUGGACGGCUCCGCCAGCGUGGGCAGCCACAACUUUGACACCACCAAGCGCUUCGCCAAGCGCCUGGCCGAGCGCUUCCUCACAGCGGGCAGGACGGACCCCGCCCACGACGUGCGGGUGGCGGUGGUGCAGUACAGCGGCACGGGCCAGCAGCGCCCAGAGCGGGCGUCGCUGCAGUUCCUGCAGAACUACACGGCCCUGGCCAGUGCCGUCGAUGCCAUGGm6ACUYUAUCAACGACGCCACCGACGUCAACGAUGCCCUGGGCUAUGUGACCCGCUUCUACCGCGAGGCCUCGUCCGGCGCUGCCAAGAAGAGGCUGCUGCUCUUCUCAGAUGGCAACUCGCAGGGCGCCACGCCCGCUGCCAUCGAGAAGGCCGUGCAGGAAGCCCAGCGGGCAGGCAUCGAGAUCUUCGUGGUGGUCGUGGGCCGCCAGGUGAAUGAGCCCCACAYCCGCGUCCUGGUCACCGGCAAGACGGCCGAGUACGACGUGGCCUACGGCGAGAGCCACCUGUUCCGUGUCCCCAGCUACCAGGCCCUGCUCCGCGGUGUCUUCCACCAGACAGUCUCCAGGAAGGUGGCGCUGGGCUAGCCCACCCUGCACGCCGGCACCAAACCCUGUCCUCCCACCCCUCCCCACUCAUCACUAAACAGAGUAAAAUGUGAUGCGAAUUUUCCCGACCAACCUGAUUCGCUAGAUUUUUUUUAAGGAAAAGCUUGGAAAGCCAGGm6ACACAACGCUGCUGCCUGCUUUGUGCAGGGUCCUCCGGGGCUCAGCCCUGAGUUGGCAUCACCUGCGCAGGGCCCUCUGGGGCUCAGCCCUGAGCUAGUGUCACCUGCACAGGGCCCUCUGAGGCUCAGCCCUGAGCUGGCGUCACCUGUGCAGGGCCCUCUGGGGCUCAGCCCUGAGCUGGCCUCACCUGGGUUCCCCACCCCGGGCUCUCCUGCCCUGCCCUCCUGCCCGCCCUCCCUCCUGCCUGCGCAGCUCCUUCCCUAGGCACCUCUGUGCUGCAUCCCACCAGCCUGAGCAAGACGCCCUCUCGGGGCCUGUGCCGCACUAGCCUCCCUCUCCUCUGUCCCCAUAGCUGGUUUUUCCCACCAAUCCUCACCUAm6ACAGUUACUYUACAAUUAAACUCAAAGCAAGCUCUUCUCCUCAGCUUGGGGCAGCCAUUGGCCUCUGUCUCGUUUUGGGAAm6ACCAAGGUCAGGAGGCCGUUGCAGACAYAAAUCUCGGCGACUCGGCCCCGUCUCCUGAGGGUCCUGCUGGUGACCGGCCUGGACCUUGGCCCUACAGCCCUGGAGGCCGCUGCUGACCAGCACUGACCCCGACCUCAGAGAGUACUCGCAGGGGCGCUGGCUGCACUCAAGACCCUCGAGAUUAACGGUGCUAACCCCGUCUGCUCCUCCCUCCCGCAGAGm6ACUGGGGCCUGGm6ACUGGm6ACAUGAGAGCCCCUUGGUGCCACAGAGGGCUGUGUCUUACUAGAAACAACGCAAACCUCUCCUUCCUCAGAAUAGUGAUGUGUUCGACGUUUUAUCAAAGGCCCCCUUUCUAUGUUCAUGUUAGUUUUGCUCCUUCUGUGUUUUUUUCUGAm6ACCAUAUCCAUGUUGCUGACUUUUCCAAAUAAAGGUUUUCACUCCUC
2209   mRNA  unknown    Homo sapiens    AGAAUCAGCUGUCCUCUCAGACUGUGUGGGUGGUUUCCCCGGCCGCAGCUCCGUACGGGCUUGGAUUGCUGGGCCUCGGUGCACCCCAGCCUCCCCCACUCGGGUUCUGAGCUUGAGCUGGCGGCUCUYUAACUCUGCUUCACUGUUGCUCUUGGCAACAYCCACUUCCGGGAGCGAGUGCCGUUUCCCCCGCUCACCGCGGGCUAGGGAGCGUGGGAUUCCGGACUGUGAGCGGCUGUUAGUGCGUCGCAGCUGCUGGCGAUCCGGCGACCCUCGGCCGGCAGGACCCGCGGGCCACGCAGCCGGGGCCUUCUCAACGCCUCAGUACCUCGGCGGGACCGCCAUGGUUCUGCUGCACGUGAAGCGGGGCGACGAGAGCCAGUUCCUGCUGCAGGCGCCUGGGAGUACCGAGCUGGAGGAGCUCACGGUGCAGGUGGCCCGGGUCUAUAAUGGGCGGCUCAAGGUGCAGCGCCUCUGCUCAGAAAUGGAAGAAUUAGCCGAACAUGGCAUAUUUCUCCCUCCUAAUAUGCAAGGACUGACCGAUGAUCAGAUUGAAGAAUUGAAAUUGAAGGAUGAAUGGGGUGAAAAAUGCGUACCCAGCGGAGGUGCAGUGUUUAAAAAGGAUGAUAUUGGACGAAGGAAUGGGCAAGCUCCAAAUGAGAAGAUGAAGCAAGUGUUAAAGAAGACUAUAGAAGAAGCCAAAGCAAUAAUAUCUAAGAAACAAGUGGAAGCCGGUGUCUGUGUUACCAUGGAGAUGGUGAAAGAUGCCUUGGACCAGCUUCGAGGCGCGGUGAUGAUUGUUUACCCCAUGGGGUUGCCACCGUAUGAUCCCAYCCGCAUGGAGUUUGAAAAUAAGGAAGACUUGUCGGGAACACAGGCAGGGCUCAACGUCAUUAAAGAGGCAGAGGCGCAGCUGUGGUGGGCAGCCAAGGAGCUGAGAAGAACGAAGAAGCUUUCAGACUACGUGGGGAAGAAUGAAAAAACCAAAAUUAUCGCCAAGAUUCAGCAAGUAAGUACUUUUUGCUUUAAUGUGUCAGUAGUUUUUGUUAUUUCCCUUCAAACUGAUAAAAAUGUACAGUGAAUCCGAAAGAUUUAAACUACUGGUACAAAUAUUUUAAUCUUAUUGGCUCGGGUUUAAACUAAAAAUAUCCUCUUCCUGCACACCAACAAAAACUGGAAGAAAAUAUGGAUUGAGUACCAAUAUCUAGAGUUUGUUUUAAUAUGUGGGGGAGAGGAAAUAUACUAUGUUAAUUUCAAGCGUAAAAAUAGGGCUGCAAGUAAACAGAUAUGUUCCUUGAAAUGUAAAAUUUCGCCCGUCACUGAUUUCAGGCUUUUUCAAACUGCUGAUGCUGUGUACAGGAGGGGGAGGAGGAAAGGUUCGAGACCUUUGAAGGACAUCGUGUAGCGCUGUAACCUGAGGGGCCGCCUUGGUUUUGUGGGUGCUCCUACGUCACUAGGCUGUGAUUUUGGGGAAAUGGGGCCCUCCACCUUAUGUAGAUCCAGAGUCCGUGGCUCUGAGCAUCCUCCCUUUCCCACUGGACCUGCCUGCAGUGUCUGCCUUGGGAAUGGUCAAGACAGAGAUGGUAUCGUGCAGCCUCUGGUCUCCACACAGUGAGAGUCCAGGGCUCAGGGCUGCUCAAGACCAAGGCUUCCCUUGAUGCUUCACUUCGGGUGAUCAGACAUGGGGGACCUGUUUAUCUUUAGUAGCCGGCAAAGGCAAUCGUAAAACAUUUGUUGUAACUUCAGGAUUGUCACUCUAAGAACACCUUAAUCCACAAUUUGCUCUGCUCUCCUCUUUGCAGAGGGGACAGGGAGCUCCAGCCCGAGAGCCUAUUAUUAGCAGUGAGGAGCAGAAGCAGCUGAUGCUGUACUAUCACAGAAGACAAGAGGAGCUCAAGGUAGCAGGGGACAGAUGGGCUUUCUGCAGUGCUGGCGCCCACACAUAGCCUGUGUGCCUUACCUGGGGCUGCUGGGGAGCAGUGAGCUCUGCAGAAUGCCGGGGAGGGGUCUUUCUAGAGCUUCUGUCUGCAGGUCUGUCGGGGUCCUGCCAGGUGUCCCCUGGUGUUAGACAUGGCAGUAUCCUGCUCCUAGAGGGCAGGGAGAGGGGGAGGUCAGUCAUGGACUCUUUCUUCAGUCUCUUUAUGUGCAAAACACUUUCCUGAAAUGCCUGCCUGAAUAAAACAUACUUAUUUCCAGAGAUUGGAAGAAAAUGAUGAUGAUGCCUAUUUAAACUCACCAUGGGCGGAUAm6ACACUGCUUUGAAAAGACAUUUUCAUGGAGUGAAAGACAUAAAGUGGAGm6ACCAAGAUGAAGUUCACCAGCUGAUGACACUUCCAAAGAGAUUAGCUCACCUUUCUCCUAGGCAAUUAUAAUUUAAAAAAAAAAAAAAGGCCACUUACUGCCCUCUGUAAAAGAUGUUAm6ACAUUUCUAGUUUUCUUUUAGUGUGAAUUUUUAAAAUAGCAGUUAUUCAAGGUUUUAGAACUUAAUAAAUACCUAGUCAGAAGAAAA
2210   mRNA  unknown    Homo sapiens    AGACAUUGCAGCAGAGCCCCGAACUCGGGAGGCGGCGGCGGAGGAGGCGGCGGCGAGGCGCAGGGACGACCCGGCCCCACGCCCGCCCGCCACCCGCGCGCGCCCGUCCGCCCGUGGCCUCGCGUCCGCCGCUGCGCCGUGAGCGCCGCUGGUCGGAGGGAAGAGCUCGCCGGGGCGCCGGGCCAGGACGGGGCGGCAGGCGCCUUCGCGGACCGAGCCUGACGGAGCCGGAGGCUGGGAGCCGCGGCGGCCUGGGGAAGUGUUUGGAUUGUGAGCUAUUUCAGAACUGUUCUCAGGACUCAUUAUUUUAACAUUUGGGAGAAACACAGCCAGAAGAUGCACACUUGACUGAAGGAGGm6ACAGGGAAUCUGAAGACUCCGGAUGACAUCAGAGCUACUUUUCAACAGCCUUCUCAAUUUUCUUUCUCAGAAAGCAGAGGCUCAGAGCUUGGAGACAGACGAACACUGAUAUUUGCAUUUAAUGGGGAACAAAAGAUGAAGAAGGAAAAGGAAUAUAUUCACUAAGGAUUCUAUCUGCUUACUGCUACAGACCUAUGUGUUAAGGAAUUCUUCUCCUCCUCCUUGCGUAGAAGUUGAUCAGCACUGUGGUCAGm6ACUGCAUUUAUCUUGUCAUUGCCAGAAGAAAUCUUGGm6ACAGAAUGUAACAGUACGUCUCUCUCUGAUUGCGAUGGAAGGUGAUAAm6ACUGAUACUCCUUUAUUAAAGUUACAUCGCACUCACCACAGAAAACCAUUCUUUAAAGUGAAUAGAAACCAAGCCCUUGUGAm6ACACUUCUAUUGAACAUGm6ACUCAUGGAGAAGAGCUUGGCUCUGAUGUGCACCAGGAUUCUAUUGUUUUAACUUACCUAGAAGGAUUACUAAUGCAUCAGGCAGCAGGGGGAUCAGGUACUGCCGUUGACAAAAAGUCUGCUGGGCAUAAUGAAGAGGAUCAGAm6ACUUUAACAUUUCUGGCAGUGCAUUUCCCACCUGUCAAAGUAAUGGUCCAGUUCUCAAUACACAUACAUAUCAGGGGUCUGGCAUGCUGCACCUCAAAAAAGCCAGm6ACUGUUGCAGUCUUCUGAGGm6ACUGGAAUGCAGCAAAGCGGAAGAGGCUGUCUGAUUCUAUCAUGAAUUUAAACGUAAAGAAGGAAGCUUUGCUAGCUGGCAUGGUUGACAGUGUGCCUAAAGGCAAACAGGAUAGCACAUUACUGGCCUCUUUGCUUCAGUCAUUCAGCUCUAGGCUGCAGm6ACUGUUGCUCUGUCACAACAAAUCAGGCAGAGCCUCAAGGAGCAAGGAUAUGCCCUCAGUCAUGAUUCUUUAAAAGUGGAGAAGGAUUUAAGGUGCUAUGGUGUUGCAUCAAGUCACUUAAAAACUUUGUUGAAGAAAAGUAAAGUUAAAGAUCAAAAGCCUGAUACGAAUCUUCCUGAUGUGACUAAAAACCUCAUCAGAGAUAGGUUUGCAGAGUCUCCUCAUCAUGUUGGACAAAGUGGAACAAAGGUCAUGAGUGAACCGUUGUCAUGUGCUGCAAGAUUACAGGCUGUUGCAAGCAUGGUGGAAAAAAGGGCUAGUCCUGCCACCUCACCUAAACCUAGUGUUGCUUGUAGCCAGUUAGCAUUACUUCUGUCAAGCGAAGCCCAUUUGCAGCAGUAUUCUCGAGAACACGCUUUAAAAACGCAAAAUGCAAAUCAAGCAGCAAGUGAAAGACUUGCUGCUAUGGCCAGAUUGCAAGAAAAUGGCCAGAAGGAUGUUGGCAGUUACCAGCUCCCAAAAGGAAUGUCAAGCCAUCUUAAUGGUCAGGCAAGAACAUCAUCAAGCAAACUGAUGGCUAGCAAAAGUAGUGCUACAGUGUUUCAAAAUCCAAUGGGUAUCAUUCCUUCUUCCCCUAAAAAUGCAGGUUAUAAGAm6ACUCACUGGAAAGAAACAAUAUAAAACAAGCUGCUAACAAUAGUUUGCUUUUACAUCUUCUUAAAAGCCAGACUAUACCUAAGCCAAUGAAUGGm6ACACAGUCACAGUGAGAGAGGAAGCAUUUUUGAGGAAAGUAGUACACCUACAACUAUUGAUGAAUAUUCAGAUAACAAUCCUAGUUUUACAGAUGACAGCAGUGGUGAUGAAAGUUCUUAUUCCAACUGUGUUCCCAUAGm6ACUUGUCUUGCAAACACCGAm6ACUGAAAAAUCAGAAUCUGACCAACCUGUUUCCCUGGAUAACUUCACUCAAUCCUUGCUAAACACUUGGGAUCCAAAAGUCCCAGAUGUAGAUAUCAAAGAAGAUCAAGAUACCUCAAAGAAUUCUAAGCUAAACUCACACCAGAAAGUAACACUUCUUCAAUUGCUACUUGGCCAUAAGAAUGAAGAAAAUGUAGAAAAAAACACCAGCCCUCAGGGAGUACACAAUGAUGUGAGCAAGUUCAAUACACAAAAUUAUGCAAGGm6ACUUCUGUGAUAGAAAGCCCCAGUACAAAUCGGm6ACUACUCCAGUGAGCACUCCACCUUUACUUACAUCAAGCAAAGCAGGGUCUCCCAUCAAUCUCUCUCAACACUCUCUGGUCAUCAAAUGGAAUUCCCCACCAUAUGUCUGCAGUACUCAGUCUGAAAAGCUAACAAAUACUGCAUCUAACCACUCAAUGGm6ACCUUACAAAAAGCAAAGACCCACCAGGAGAGAAACCAGCCCAAAAUGAAGGUGCACAGAm6ACUCUGCAACGUUUAGUGCCAGUAAGCUGUUACAAAAUUUAGCACAAUGUGGAAUGCAGUCAUCCAUGUCAGUGGAAGAGCAGAGACCCAGCAAACAGCUGUUAACUGGAAACACAGAUAAACCGAUAGGUAUGAUUGAUAGAUUAAAUAGCCCUUUGCUCUCAAAUAAAACAAAUGCAGUUGAAGAAAAUAAAGCAUUUAGUAGUCAACCAACAGGUCCUGAACCAGGGCUUUCUGGUUCUGAAAUAGAAAAUCUGCUUGAAAGACGUACUGUCCUCCAGUUGCUCCUGGGGAACCCCAACAAAGGGAAGAGUGAAAAAAAAGAGAAAACUCCCUUAAGAGAUGAAAGUACUCAGGAACACUCAGAGAGAGCUUUAAGUGAACAAAUACUGAUGGUGAAAAUAAAAUCUGAGCCUUGUGAUGm6ACUUACAAAUUCCUAACACAAAUGUGCACUUGAGCCAUGAUGCUAAGAGUGCCCCAUUCUUGGGUAUGGCUCCUGCUGUGCAGAGAAGCGCACCUGCCUUACCAGUGUCCGAAGm6ACUUUAAAUCGGAGCCUGUUUCACCUCAGGAUUUUUCUUUCUCCAAGAAUGGUCUGCUAAGUCGAUUGCUAAGACAAAAUCAAGAUAGUUACCUGGCAGAUGAUUCAGACAGGAGUCACAGAAAUAAUGAAAUGGCACUUCUAGAAUCAAAGAAUCUUUGCAUGGUCCCUAAGAAAAGGAAGCUUUAUACUGAGCCAUUAGAAAAUCCAUUUAAAAAGAUGAAAAACAACAUUGUUGAUGCUGCAAACAAUCACAGUGCCCCAGAAGUm6ACUGUAUGGGUCCUUGCUUAACCAGGAAGAGCUGAAAUUUAGCAGAAAUGAUCUUGAAUUUAAAUAUCCUGCUGGUCAUGGCUCAGCCAGCGAAAGUGAACACAGGAGUUGGGCCAGAGAGAGCAAAAGCUUUAAUGUUCUGAAACAGCUGCUUCUCUCAGAAAm6ACUGUGUGCGAGAUUUGUCCCCGCACAGAAGUAm6ACUCUGUGGCUGACAGUAAAAAGAAAGGm6ACACAAAAAUAAUGUGACCAACAGCAAACCUGAAUUUAGCAUUUCUUCUUUAAAUGGm6ACUGAUGUACAGUUCCACUCAGCCCAGCAGUUGCAUGGAUAACAGGm6ACAUUUUCAUACCCAGGUGUAGUAAAAm6ACUCCUGUGAGUCCUACUUUCCCUGAGCACUUGGGCUGUGCAGGGUCUAGACCAGAAUCUGGGCUUUUGAAUGGGUGUUCCAUGCCCAGUGAGAAAGGm6ACCCAUUAAGUGGGUUAUCACUGAUGCGGAGAAGAAUGAGUAUGAAAAAGm6ACUCUCCAAGAUUGACCAAAACCAACCCAAUACUAUAUUACAUGCUUCAAAAAGGAGGCAAUUCUGUUACCAGUCGAGAAACACAAGACAAGGm6ACAUUUGGAGGGAGGCUUCAUCUGCUGAAAGUGUCUCACAGGUCACAGCCAAAGAAGAGUUACUUCCUACUGCAGAAACGAAAGCUUCUUUCUUUAAUUUAAGAAGCCCUUACAAUAGCCAUAUGGGAAAUAAUGCUUCUCGCCCACACAGCGCAAAUGGAGAAGUUUAUGGm6ACUUCUGGGAAGCGUGCUAACGAUAAAGAAAGAAUCAGAAUAAAAUGUACCUGCCAUCCAGUUUUGGAUCUUUUUAAAACUAAUGAGUAUGAm6ACUUGAGAUCUGUAUAAAUAAGAGCAUGAUUUGAAAAAAAGCAUGGUAUAAUUGAAACUUUUUUCAUUUUGAAAAGUAUUGGUUACUGGUGAUGUUGAAAUAUGCAUACUAAUUUUUGCUUAACAUUAGAUGUCAUGAGGAAACUACUGAACUAGCAAUUGGUUGUUUAACACUUCUGUAUGCAUCAGAUAACAACUGUGAGUAGCCUAUGAAUGAAAUUCUUUUAUAAAUAUUAGGCAUAAAUUAAAAUGUAAAACUCCAUUCAUAGUGGAUUAAUGCAUUUUGCUGCCUUUAUUAGGGUACUUUAUUUUGCUUUUCAGAAGUCAGCCUACAUAACACAUUUUUAAAGUCUAAACUGUUAAACAACUCUUUAAAGGAUAAUUAUCCAAUAAAAAAAAACCUAGUGCUGAUUCACAGCUUAUUAUCCAAUUCAAAAAUAAAUUAGAAAAAUAUAUGCUUACAUUUUUCACUUUUGCUAAAAAGAAAAAAAAAAGGUGUUUAUUUUUAACUCUUGGAAGAGGUUUUGUGGUUCCCAAUGUGUCUGUCCCACCCUGAUCCUUUUCAAUAUAUAUUUCUUUAAACCUUGUGCUACUUAGUAAAAAUUGAUUACAAUUGAGGGAAGUUUGAUAGAUCCUUUAAAAAAAAGGCAGAUUUCCAUUUUUUGUAUUUUAACUACUUUACUAAAUUAAUACUCCUCCUUUUACAGAAUUAGAAAAGUUAACAUUUAUCUUUAGGUGGUUUCCUGAAAAGUUGAAUAUUUAAGAAAUUGUUUUUAACAGAAGCAAAAUGGCUUUUCUUUGGm6ACAGUUUUCACCAUCUCUUGUAAAAGUUAAUUCUCACCAUUCCUGUGGUACCUGCGAGUGUUAUGACCAGGAUUCCUUAAACCUGAm6ACUCAGACCACUUGCAUUAGAACCAUCUGGAGCACUUGUUUUAAAAUGCAGAUUCAUAGGCAGCAUCUCAGAUCUACAGAACAAGAAUCUCUGCUAAGUGGACCUGGAAUCUUCCAUCUGCAUCUUAACAUGCUCUCUAGGUGUUUCUUGUGUUUGAGAACCAUGACUUAUGACUUUCCUCAGAACAUGAGm6ACUGUAAAACAAAAACAAAAAACUAUGUGAUGCCUCUAUUUUCCCCAAUACAGUCACACAUCAGCUCAAAAUUUGCAAUAUUGUAGUUCAUAUAUUACCGUUAUGUCUUUGGAAAUCGGGUUCAGAACACUUUUUAUGACAAAAAUUGGGUGGAGGGGAUAACUUUCAUAUCUGGCUCAACAUCUCAGGAAAAUCUGUGAUUAUUUGUGUGUUCUAAUGAGUAACAUCUACUUAGUUAGCCUUAGGGAUGGAAAAACAGGGCCACUUACCAAACUCAGGUGAUUCCAGGAUGGUUUGGAAACUUCUCCUGAAUGCAUCCUUAACCUUUAUUAAAACCAUUGUCCUAAGAACAAUGCCAACAAAGCUUACAACAUUUAGUUUAAACCCAAGAAGGGCACUAAACUCAGAUUGACUAAAUAAAAAGUACAAAGGGCACAUAUACGUGACAGAAUUGUACACAAUCACUCCAUUGGAUCUUUUACUUUAAAGUAGUGAUGAAAAGUACAUGUUGAUACUGUCUUAGAAGAAAUUAAUAUAUUAGUGAAGCCACAUGGGGUUUCAGUUGCGAAACAGGUCUGUUUUUAUGUUCAGUUUGUACAAUCCACAAUUCAUUCACCAGAUAUUUUGUUCUUAAUUGUGAACCAGGUUAGCAAAUGACCUAUCAAAAAUUAUUCUAUAAUCACUACUAGUUAGGAUAUUGAUUUAAAAUUGUUCUACUUGAAGUGGUUUCUAAGAUUUUUAUAUUAAAAAUAGGUGUGAUUUCCUAAUAUGAUCUAAAACCCUAAAUGGUUAUUUUUCCUCAGAAUGAUUUGUAAAUAGCUACUGGAAAUAUUAUACAGUAAUAGGAGUGGGUAUUAUGCAACAUCAUGGAGAAGUGAAGGCAUAGGCUUAUUCUGACAUAAAAUUCCACUGGCCAGUUGAAUAUAUUCUAUUCCAUGUCCAUACUAUGACAAUCUUAUUGUCAACACUAUAUAAAUAAGCUUUUAAm6ACAAGUCAUUUUUCUUGAUCGUUGUGGAAGGUUUGGAGCCUUAGAGGUAUGUCAGAAAAAAUAUGUUGGUAUUCUCCCUUGGGUAGGGGGAAAUGACCUUUUUACAAGAGAGUGAAAUUUAGGUCAGGGAAAAGACCAAGGGCCAGCAUUGCUACUUUUGUGUGUGUGUGUGUGGGUUUUGUUUUGUUUUUUUGGUUGGCUGGUUGUUUUCGUUGUUGUUAACAAAGGAAUGAGAAUAUGUAAUACUUAAAUAAACAUGACCACGAAGAAUGCUGUUCUGAUUUACUAGAGAAUGUUCCCAAUUUGAAUUUAGGGUGAUUUUAAAGAACAGUGAGAAAGGGCAUACAUCCACAGAUUCACUUUGUUUAUGCAUAUGUAGAUACAAGGAUGCACAUAUACACAUUUUCAAGGACUAUUUUAGAUAUCUAGACAAUUUCUUCUAAUAAAGUCAUUUGUGAAAGGGUACUACAGCUUAUUGACAUCAGUAAGGUAGCAUUCAUUACCUGUUUAUUCUCUGCUGCAUCUUACAGAAGAGUAAACUGGUGAGAGUAUAUAUUUUAUAUAUAUAUAUAUAUAUAUAUAUAUAAUAUGUAUAUAUAUAUAUAUUGACUUGUUACAUGAAGAUGUUAAAAUCGGUUUUUAAAGGUGAUGUAAAUAGUGAUUUCCUUAAUGAAAAAUACAUAUUUUGUAUUGUUCUAAUGCAACAGAAAAGCCUUUUAAUCUCUUUGGUUCCUGUAUAUUCCAUGUAUAAGUGUAAAUAUAAUCAGACAGGUUUAAAAGUUGUGCAUGUAUGUAUACAGUUGCAAGUCUGGACAAAUGUAUAGAAUAAACCUUUUAUUUAAGUUGUGAUUACCUGCUGCAUGAAAAGUGCAUGGGGGACCCUGUGCAUCUGUGCAUUUGGCAAAAUGUCUUAACAAAUCAGAUCAGAUGUUCAYCCUAACAUGACAGUAUUCCAUUUCUGGACAUGACGUCUGUGGUUUAAGCUUUGUGAAAGAAUGUGCUUUGAUUCGAAGGGUCUUAAAGAAUUUUUUUAAUCGUCAACCACUUUUAAACAUAAAGAAUUCACACAACUACUUUCAUGAAUUUUUUAAUCCCAUUGCAAACAUUAUUCCAAGAGUAUCCCAGUAUUAGCAAUACUGGAAUAUAGGCACAUUACCAUUCAUAGUAAGAAUUCUGGUGUUUACACAACCAAAUUUGAUGCGAUCUGCUCAGUAAUAUAAUUUGCCAUUUUUAUUAGAAAUUUAAUUUCUUCAUGUGAUGUCAUGAAACUGUACAUACUGCAGUGUGAAUUUUUUUGUUUUGUUUUUUAAUCUUUUAGUGUUUACUUCCUGCAGUGAAUUUGAAUAAAUGAGAAAAAAUGCAUUGUC
2211   unknown  unknown    Homo sapiens    AGACCAGCCCUUACCUAGUCAUACCGCAGUACAGCGUGGGAAGUGAUGCAAGCCUAGGGCUCCCUGCAGCCUGCCCACCUUCCUAUCCUGGGCUCUCCCUAACCACCAAAGCAAGAGGGCAGACUGCUCUCAUGUGUGGGUACUGCGAUGUUUUGGUUUGGUUUUUAUUAUUUUAACUAGAUGGAUUUUCAAUGGCCUAGGAAGGUUUUAAUUGGAUACUCUAUGAAGGUAAAAAAUGUAAUUUCUCAGGAUCCCUUUCAUUUGCUCUUAUGGUCAAUGGUCCCCCCGGGAAAGGCUGAUGCUGUAAGCUUUGUUACAUUUGGACAAGUCAGUGAAGUUACCCCAUACCCGUCAUUCACUAGGGACACUUGGAAUUGGGAAAGGCACCAGCAAGCUGGUUGGAAUGCAGAGACUGCAUUAGCCAAGCGUCCGGGGUCCAGCCAUGGAGGGUGUCACCGAGGGCUUGUGAUCCCUUGCCUUGCCUUGGUUGAGAAAUCCACAAAGCUUUUUUAAGUCUGUAAUUCCUGUGUCAGCAGCGCUCAGGUUUGGGUGGGAGAAACGGUGAGGAACGAUGAUGAUGAGGCAGAAAUUGGGAGGGGUGCUGCUCUUAGGCCCCUGGGGCAGAGUCUUGAGCGCCUGGGGAAGCUAACAGUGUGUCACUCUGGCAUCUAGGAAGCAGUAUAUCUCAACUCAGUUUUGCGGAGGACAUUUCUGCUGAUGAAGAUGACCAAAUCCUCAGUCAAGGAAAGCAUAAGAAGAAAGGAAAUAAACUUUUAGAGAAAACUAm6ACUUGGAAAAGGAGAAAGGAAGCAGAGUCUUUUGUGUAGAGGAAGAGGACAGUGAAAGCAGUCUUCAAAAGAGAAGAAGGAAGAAGAAGAAGAAGCACCACCUGCAGCCUGAAAAUCCAGGCCCAGGGGGUGCAGCCCCAUCCCUGGAm6ACAGAACCGGGGCAGGGAGCCCGAGGCCUCUGGGCUGAAAGCCCUGAAGGCACGUGUGGCCGAGCCAGGUGCAGAGGCCACGUCCAGCACUGGGGAGGAGAGUGGCUCCGAGCAUCCUCCAGCCGUCCCCAUGCACAAUAAAAGGAAACGGCCACGGAAGAAGAGCCCGAGGGCCCACAGGGAAAUGUUGGAAUCAGCAGUGUUGCCCCCAGAGGm6ACAUGUCUCAGAGUGGCCCGAGUGGCAGUCAUCCUCAGGGm6ACCUAGAGGGUCCCCGACAGGUGGAGCCCAACUCCUAm6AAAAGGAAGCGGAAACUUGGAGUUGUGCCCGUCAAUGGCAGUGGCCUGUCCACGCCGGCCUGGCCUCCAUUGCAGCAGGAAGGCCCUCCCACAGGCCCCGCAGAGGGGGCGAm6ACAGCCACACCACGCUGCCCCAGCGCAGGAGGCUGCAGAAAAAGAAGGCAGGGCCCGGCAGCCUGGAGCUCUGUGGCCUGCCCAGCCAGAAAACAGCAAGUUUGAAAAAGAGGAAGAAAAUGAGAGUGAUGUCAAACUUGGUGGAGCACAACGGGGUGCUGGAGUCCGAAGCUGGGCAACCCCAGGCUCUGGGAAGCAGUGGGACUUGCAGUUCCCUGAAGAAGCAGAAGCUGAGGGCAGAGAGCGACUUUGUGAAGUUUGACACCCCCUUCUUACCAAAGCCCCUGUUCUUCAGAAGAGCCAAGAGCAGCACUGCCACCCACCCYCCAGGCCCUGCCGUCCAGCUAAACAAGACACCAUCCAGCUCCAAGAAAGUCACCUUUGGGCUGAACAGAAACAUGACUGCCGAAUUCAAGAAGACAGACAAGAGUAUCUUGGUCAGUCCCACGGGCCCUUCUCGAGUGGCCUUCGACCCUGAACAGAAGCCCCUCCACGGGGUGCUGAAGACCCCCACCAGCUCACCUGCCAGCUCACCCCUGGUGGCCAAGAAGCCCCUGACCACCACACCAAGGAGAAGGCCCAGGGCUAUGGAUUUCUUCUGAGGAGCAGCAGAGUCCCUUGUAAAAGm6ACUGCUUUUGUACAGAAUGCGCUAUAAAUUAUACCUYUAAGAAUGUGGGGCCUUUUUUAUGAUUUUGUAAGUUCCCAUAAGUUGUGUGCACGAGGUUCUGAGAGUGCCCGCAGGCUGCUGCGUCCUGGCCCCUCUGUAGUGGCUGCGGGCGUCUUGGUUGAAUCUUUUGCUACAAACCAUGUUUGCGUUUGAGCUCUCCAGGAUUUUACAUUUUUGGGUAACCUCAGUGAUUCCCAUUGGUGUAGGAAAUGAGACCCUCUCUGAAGCUGAGGAGAGCACGUUGAUCUGAm6ACUYUAAAUCAAUCAGUGCUGCUGGCACAAUGAAAGGUGGAm6ACUGCACUUCUGUUGAGCUCUCAGUUCUGCGGAAUUUGGUACUCAUUACCGUAUUCGCCGUACUAAGUUGGUUUCUGUUAGUCUUAACAGUCUGUUUUCUUUUAAAAGCAUGUAGGGCUUCAUUGCCAUGUUCUGUGGGUGUUUGGCAGGUUACCGAUGGGGAAGAUUCUUGUCACAGAAUCAGCAAUACCAUAGUUUUUCUACAUGUGCUCAGCUGGGGGUGUGGACAGGUAGGGGUGGGGAAAGAAGAGGCUCUGCGUUCUGGGGGCUUUUUCUUCUCCUCCCCCUACCCGGUUUCCCUCCCUGUUUUCCUACCUCUACGGCAAGCCCAAAGUGUCUUCCCGGGAGCCCAGCGCAGCCCCCGGCUCUUACCCAGGACCCCGCCCCGUGCUGAGCCUUCUGCUGAGGUCCUUGCGUGGAGCACACUCAUUCCUCCAAGCCCUUGCGCUCCCGUUUCUCUCUCUCUCCGUCCACGUUCCAGCCGAGUCACUGCCUGm6ACCGGCUCCAUGGCAGCUCCCCAUCUUCCCUAGAGGCUGCCUGCGCAUCUGGAGCCUGCGCUCCGGCUCAGCGACCUUUCCUCUCAAAUGCGGAAGCGUGCACUUACAGUUCAGACCGUUCUCCUGUAAGUUCAUUACAAACACGGGCGGAAGGCACUCAGGCUUUCGUUGGAGAAACAGAAAUAAGGCCUUCUUUUGAGCAGCGAUUGCUGGAUCAUUGAUCUGUUUGAGGAAGUGUCUGACCUGGGCCUGAGAGCUGGAGAAGGUGCAGAUUCAAAGUGAGCGGCUCCUGAGGAGAGCCGCCAAGGCUGCUCGCCUUCUCCGUGGCUUCCGCAGCUACCGUCUGCACGGUGAGAGGGCACGGGCACACGGUUCGGGCUGGCGUGCAGCUCUCCCAGCCAGCCACGCUCUGCUCAGGCCUGGAAGUGAAAGCCGCCUCCUUCCCGUUAUGCCCCCCAUACAGGAGCCUCGGUUUUUCAGCAAAACGCGGCCAGUCCCCUUCUCCACUGCUGCCUCCCAGCAGAGGGCCCCAGGAUCUCCAAGGUCCCAGCUAUGGCUUUGGm6ACAACGUGGCUUCGGCCCCUGGGGUUGCAGAGCUUGCAUUGGGUUUACCUCGGUCUCAUUCAUUCAUGGAGCCAAGGGUGGGGUUUCACCUGCGAACAUCAGm6ACUGACUUGCUGGCGUCAAGAGCAGUUGACUCACUGAUGAAGGCCCUGGUGAGGAGAAAGCACUCUGUUCUUCGCCUACUCUGUAAUCGUUUUGUCAUAAUGAGCCAUGAAAAAAGUAAUGAm6ACUUGUGCUGUUAAUCGUCACUGUAAUGAGAAGUCUUACGUACAACAUAGCUGUGGUGGCUUAAUGGCUGCAUUAGAUAGGAUCCUCACAYCCCAUUCAGAACCAAAACUGAUACAGUGAAACAAUUAAGGUGAGCAAAUAGUUUUAACUUUUCUUUUUUUUUUUUAAGUUUCAUUCUUCCUAGAAUAUUUUUCUAACAAUUUUUAUUUCAGCUYUAAAGAUGGGUCAUAUAGCCAAACGGGCCAUAUAAUCCAACAUUGUUGAGAUGUCUUAGGACAUCUAAGGCAAAACUGGCACAUUUGUUCUGCAGACUAUUGCAGGAAUGUUUUUUCCUAGCAUUUCUAUAUUAUCUGUCCAUUCUGAGGAACCAGUGAAUGUCCUAUAAAUGCACCUCCUGUCAAAACCAUGCCUGAGAGGUCCCGGCUGGGAGUGACAGGGUGCUUCUUAGAUUCUAUUGGUCCUUCUCUCAUUCUCCGAACUUACUCCUUUUUAUGGGUAAGUCAACUAGGUUUACAGUCCCUUAUUUUUAAUGCCUAAGUUUUGACAGCAGGAAGAAAACAAUUUUUUAAAAAUUCUCAUUACAUAGACGCACAAGAAUAUGUCACAUAAAGAAAAUGUGUUUAGAAUACUGGUUUUCUAUUUACGCAUGAUAUUUUCCUAAGUAAAAUUGCCAAGUGGACUUGmGAAGUCCAGAAAGGAAAAUAAUUUAAAUUAAUGCUGGUGAUCUUAACAAUAUUUUGUAAAAUGAUGCUUCCCCCUUCUCCAUGGUCUAGUCAAUUUUGUACAAUUAGGUAUCUGACUYUACAAGUUUGUUAUCCUUUCUAAUUUUUACUGAACUGAAAGCACAAAGAAGACUACACAGAAAAUCUGGAAACAGUUGCAGGUGUUGGGAGGAAGAUGAAAUCGAGCUGUCUUUUAm6ACUUUUGUAUGUGUUUUAUCAGAAUUUGCUGGm6ACUAUGCUGGCAAGGm6ACUUUGUUUACGAUCAAAUUGUACUAGUGUCUGCAGGGUUUGUCAGUACUCGUCAAAGCCAAGUCCAAUUAAAAAAAAAAGUCUUUGCCCYCC

Explanation:

Please note that the modifications are based on experimental data, which may not always cover the entire sequence. Thus, modifications existing in vivo may be missing.