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H3-18-all-fractions_k255_2125745_17

Organism: H3-18-all-fractions_metab_8

near complete RP 47 / 55 MC: 3 BSCG 49 / 51 MC: 2 ASCG 15 / 38
Location: 15487..19065

Top 3 Functional Annotations

Value Algorithm Source
Error-prone DNA polymerase {ECO:0000256|HAMAP-Rule:MF_01902}; EC=2.7.7.7 {ECO:0000256|HAMAP-Rule:MF_01902};; TaxID=947969 species="Bacteria; Actinobacteria; Micrococcales; Cellulomonadaceae; Cellulomonas.;" source="Cellulomonas carbonis T26.;" similarity UNIPROT
DB: UniProtKB
  • Identity: 43.7
  • Coverage: 1246.0
  • Bit_score: 819
  • Evalue 3.70e-234
DNA polymerase III subunit alpha (EC:2.7.7.7) similarity KEGG
DB: KEGG
  • Identity: 42.2
  • Coverage: 1260.0
  • Bit_score: 798
  • Evalue 1.80e-228
Error-prone DNA polymerase n=1 Tax=Cellulomonas fimi (strain ATCC 484 / DSM 20113 / JCM 1341 / NBRC 15513 / NCIMB 8980 / NCTC 7547) RepID=F4H8I9_CELFA similarity UNIREF
DB: UNIREF100
  • Identity: 42.2
  • Coverage: 1260.0
  • Bit_score: 798
  • Evalue 6.30e-228

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Taxonomy

Cellulomonas carbonis → Cellulomonas → Micrococcales → Actinobacteria → Actinobacteria → Bacteria

Sequences

DNA sequence
Length: 3579
GTGGCGCGCGGTCCCGGCGCGCCGCCAGTGAGCGCCGGCGGATACGTCGAGCTGCACTGCCACTCCGCTTTCTCCCTCCTCGACGGCGCCTCCCCCCCCGAGGCGCTCGTGGCCCGCGCCGCCGCCCTCGGCTATCCCGCCCTCGCCCTCACCGACCACGACGACTTGGGGGGCGCCGTCCGCTTCGCCCAGGCGGCCCACGACGCGAGGATCGGCGGGATCGTGGGAGTGGAGCTGACGGTGGAGGTGGGGGACGAGTACGGAGCGTGGAGCGTGGAGCGTGGGGCGGGCGGCTGTGGGAGCGTCCCGGGTGTCCCCGTCCCCCCGCTCCACGCTCCACGCTCCACGCTCCGCGCTCGCCCCCTCTCCACCCACCTCGTCCTCCTCGCCGAGTCCTCCCAGGGCTACGCCAATCTCTCGGCCCTCGTCACGCGCGCGCGGATGGACCGGCCGCGCGGGGAGGCCGCGGTCCCGTTCGCCCTCGTGGCGCGGCACGCCGCCGGCCTGTTCGCCCTCACCGGGTGTCCGCGCGGGTGGGTGCCGTCGCTCGTCGCCCGCGGCGACCTCGCGGGCGCGCGCGCCGCCCTCGGCGCCCTCGCCGACGTCTTCGGCGGACGCGTCGCGGTGGAGTGCTGGGACCACGGGCTCGCCGAGGAGCGGGCGCTCGTGGGCGCGCTCGTTCCCCTCGCCCGCGCGGCCGGCCTGCGGTGGGTCGTGACGAACGACGTCCACTACGCGACGGCCGGCAGGCGCGTGGTGCACGACGTCCTCTCCTCCCTGCGCCACGGGAAGACGCTCGACGAGATGGGGACCCGGCTCCGCCCGAGCGGCGAGTGGCACCTCAAGAGCGCGGCGCGCCTGTGCCACCGCTGGCGCCACGATGACGCCGGCGTGCGCGAGACGCTCGCGATCGCCGAGCGGTGCGCGTTCCGCATGCACGAGCTCCGGCCGACGCTCCCCACCTTCCCGACCCCGCCGGGCGTGACGGCGGACGAGTATCTGGAGGCGCTGGTGGAGGACGGGGCACGGGAGCGGTACGGGTGCGGGGCGCGGGAATCCGGTGCCGGCGAGCGCGCCGATCGCGGTACCTTCCCGGTGGGGGGGCCCCCCCGCGCCCAGCGCCCCCTCGACCCCGCCGTCGTCCGCGCGCAGATCGCCCACGAGCTCTCCATCATCCGCCAGCTCGGCCTCGCCGGCTACTTCCTGATCGTCTGGGACATCGTGCGCTTCGCGCGGCGCGAGGGGATCCTCTGCCAGGGGCGCGGGTCGGCGGCCAACTCCGCCGTCTGCTACTGTCTCGGCATCACGGCGGTCGACCCGATCCGCATGGGGCTCCTCTTCGAGCGCTTCCTGAGCGAGAACCGGCAGGAGGCGCCCGACATCGACCTCGACTTCGCCCACCGCGAGCGGGAGCGCGTCATCCAGTACGTGTACGAGCGCTACGGGCGCGAGCACGCGGCCATGGTCTGCGAGCAGATCACCTACCGCGGGCGCAGCGCGGTGCGCGACGCGGCGCGCGTGCTCGGCTTCTCCGTCGAGCAGGCCGACGCCCTGAGCGCGCTGAGCGACCGCTTCAGCGCTCGGGCCACGGCGGAGGCGCTGCGCGGCGGGGCACGGGCGGGCGACGGCGGCGACGACGACGCACGCGCCACCGAGTCGCTCGGGCAGACGATGGTCGGCGGGACGGAAGCGGCGACGCGTGCGAGGGCGGTCAAGGAGGAGGCGCGGCGCCCCGCCGGCACGCCCGAGGAGCGGCGCAACCCGGCGACGTCCCTCCGCGGCGCGCCGGGCGCCGGCGCGGCCGGCGAGTCCGCCCTCGCGCGCGCCGCCCTCGACCCCGACGACCGCCGCGTGCGCGTCCTCGCCGAGGTCGTGGACGGGCTGCACCAGCTCCCGCGCCATCGCTCGATCCACGTCGGCGGCTTCGTCCTCACCGAGCGGCCGCTCGCCACCGTCGTCCCCGTCGAGCCGGCGGCGATGCCCGGGCGCACCGTCATCCAGTGGGAGAAGGACGATCTCGACCCCGTCGGCCTCGTCAAGATCGACCTCCTCGGCCTCGGCATGCTCACCGCGCTGCAGGACTGCCTGAGATACGTGCGCGAGACGCGCGGCGTCACGATCGACCTCGGGCGGCTCGCGATGGACGACGCGGCCGTCTACGACGACCTCTGCCGGGCCGACACGATCGGCGTCTTCCAGGTCGAGAGCCGCGCCCAGCAGAACACCCTGCCGCGCCTCGCCCCGCGCTGCTTCTACGACCTCGTGATCCAGGTCGCCCTCATCCGCCCCGGGCCGATCCAGGGCGACATGGTGCACCCCTTCCTGCGGCGCCGCGCCGGCCTCGAGGAGGTGACGTACCCGCACCCCGTGCTCGAGCCGATCCTCCGCCGAACCCTTGGGGTCCCACTGTTCCAGGAGCAGGGGATGCAGGTCGCCGTCGCCTGCGCCGGCTTCTCGCCCGGCGAGGCCGACGCCCTGCGCCGCGCCATGGGACACAAGCGGAGCCGCGAGCGGATGGCGGAGATCTGCGGGCGCCTCGTCGCCGGCATGGCGCGCAACGGCATCCCGGAGGAGACGGCGCGGAAGATCTACAACCAGATCAACGCCTTCGCCGACTACGGCTTCCCCGAGTCGCACGCCGCCTCGTTCGCCCTCCTCGTCTACGCCTCGGCCTACCTGCGCCACCACTACCACCCCGAGTACCTGGCCGCGATGCTCAACGCCCAGCCGATGGGCTTCTACTCGCCCGGCACCCTGGTGGAGGACGCGCGGCGGCACGGGGTGGAGGTGCGGCCGGTGGACCTGACGCGGAGCGCGTGGGATGCGACGCTGGAACGAGACGGGGTCCCCCCCGCCGTCCGTCTCGGCCTTCGCTCCCTCCGTGGCCTCGGCGCCCGCGCCCGGGAGCGGCTCGAGCGCGCCCTCGCCGACGGGCCGTTCGTCTCGCCGGCGGACGTCGTCAGGCGGGCCGGGCTCGATCGCGGAGCGCTGCGCGTCCTCGCGGAATCGGGGGCGTTCGACGCGTTCTTCCCCGAGGAGCCCGACGACCGGCGGCGGCGCGCGGCGCTCTGGCGGCTCCTCGCCGACGTGCGCGGCGACGCCGGCCCGCTCGCCCCGGCGTCGCCCGACGCGCGCCGCCCACCGTTGCCGCCGCTCTCCCCCGCCGAGCTCACCGAGGCCGACTACCGCCTCACCGGGATCTCCCTCGTCGGCCACCCCATGCGCCACCTGCGCGACGCGCTCGCCCCGAACGGCGTCCGCACGGCGCGCGACGTCCTCGCGCACGGACGCGATGGGGAGCGCGTCGGCGTCGCCGGCCTCGTCATCTGCCGCCAGCGCCCGGGCACCGCGCGCGGCTTCGTCTTCCTCTCACTCGAGGACGAGACGGGAATCGTCAACGTCGTCGTCACGCCGAAGCGCTTCGAGCGCCAGGCGCTCATGATCTCGACGACGCCGCTCATCCTGGTGCGCGGGACGCTCCAGGTGGAAGGGCGCGTCGTCAACGTACGCGGCGAACGCTTCCGCGCCCTCACGGCGGGCGTGGGGGAGGAGCACGCGCGAGGGCACGATTTCAGGTGA
PROTEIN sequence
Length: 1193
VARGPGAPPVSAGGYVELHCHSAFSLLDGASPPEALVARAAALGYPALALTDHDDLGGAVRFAQAAHDARIGGIVGVELTVEVGDEYGAWSVERGAGGCGSVPGVPVPPLHAPRSTLRARPLSTHLVLLAESSQGYANLSALVTRARMDRPRGEAAVPFALVARHAAGLFALTGCPRGWVPSLVARGDLAGARAALGALADVFGGRVAVECWDHGLAEERALVGALVPLARAAGLRWVVTNDVHYATAGRRVVHDVLSSLRHGKTLDEMGTRLRPSGEWHLKSAARLCHRWRHDDAGVRETLAIAERCAFRMHELRPTLPTFPTPPGVTADEYLEALVEDGARERYGCGARESGAGERADRGTFPVGGPPRAQRPLDPAVVRAQIAHELSIIRQLGLAGYFLIVWDIVRFARREGILCQGRGSAANSAVCYCLGITAVDPIRMGLLFERFLSENRQEAPDIDLDFAHRERERVIQYVYERYGREHAAMVCEQITYRGRSAVRDAARVLGFSVEQADALSALSDRFSARATAEALRGGARAGDGGDDDARATESLGQTMVGGTEAATRARAVKEEARRPAGTPEERRNPATSLRGAPGAGAAGESALARAALDPDDRRVRVLAEVVDGLHQLPRHRSIHVGGFVLTERPLATVVPVEPAAMPGRTVIQWEKDDLDPVGLVKIDLLGLGMLTALQDCLRYVRETRGVTIDLGRLAMDDAAVYDDLCRADTIGVFQVESRAQQNTLPRLAPRCFYDLVIQVALIRPGPIQGDMVHPFLRRRAGLEEVTYPHPVLEPILRRTLGVPLFQEQGMQVAVACAGFSPGEADALRRAMGHKRSRERMAEICGRLVAGMARNGIPEETARKIYNQINAFADYGFPESHAASFALLVYASAYLRHHYHPEYLAAMLNAQPMGFYSPGTLVEDARRHGVEVRPVDLTRSAWDATLERDGVPPAVRLGLRSLRGLGARARERLERALADGPFVSPADVVRRAGLDRGALRVLAESGAFDAFFPEEPDDRRRRAALWRLLADVRGDAGPLAPASPDARRPPLPPLSPAELTEADYRLTGISLVGHPMRHLRDALAPNGVRTARDVLAHGRDGERVGVAGLVICRQRPGTARGFVFLSLEDETGIVNVVVTPKRFERQALMISTTPLILVRGTLQVEGRVVNVRGERFRALTAGVGEEHARGHDFR*