ggKbase home page

S3-18-all-fractions_k255_4268077_14

Organism: S3-18-all-fractions_metab_conc_12

near complete RP 48 / 55 MC: 3 BSCG 50 / 51 MC: 2 ASCG 14 / 38 MC: 2
Location: comp(14428..18030)

Top 3 Functional Annotations

Value Algorithm Source
Hypothetical membrane protein n=1 Tax=Gemmatimonas aurantiaca (strain T-27 / DSM 14586 / JCM 11422 / NBRC 100505) RepID=C1A3P0_GEMAT similarity UNIREF
DB: UNIREF100
  • Identity: 79.1
  • Coverage: 1189.0
  • Bit_score: 1904
  • Evalue 0.0
Peptidase M1 membrane alanine aminopeptidase {ECO:0000313|EMBL:AHG92628.1}; TaxID=861299 species="Bacteria; Gemmatimonadetes.;" source="Gemmatimonadetes bacterium KBS708.;" similarity UNIPROT
DB: UniProtKB
  • Identity: 79.7
  • Coverage: 1194.0
  • Bit_score: 1910
  • Evalue 0.0
Peptidase M1 membrane alanine aminopeptidase similarity KEGG
DB: KEGG
  • Identity: 79.7
  • Coverage: 1194.0
  • Bit_score: 1910
  • Evalue 0.0

Lists

This feature is not on any list.

Notes

This feature has no notes.

Taxonomy

Gemmatimonadetes bacterium KBS708 → Gemmatimonadetes → Gemmatimonadetes → Bacteria

Sequences

DNA sequence
Length: 3603
ATGGTGGCGGAGGTCTTCCGATTCGAGGTCGGATACCGGCTGCGCCAACCGTCGACGTGGGTGTACGCTCTCGTGCTCTTGGGAATTCCGTTCCTGATGATGCACGCGATCAACGGCAGCAGTCAGTACCTCAACGCGCCGCTGATGGTGGCGAACGTATCGGCGGTGCTCGGCAGCATCGGGATGCTGGTGACGGCGGGCATCTTCGGCGACGCCGCTGGGCGCGACGTGCATTGGCGTATGCACTCTCTCTTCTACACGTCGCCGCTCCGCGAGTCGCACTACCTCGCCGGACGATTCCTCGGCGGGCTGGCAGTGAACGCGGTGTTGCTCCTCGGCGTCCCGATCGGGCTCCTGCTCGCGTCGGTGATGCCGTACATGTCGGCGGGGAAGTTCGGCCCGGTCCAGCCCCTCGCGTACGTGCAGTCCTACTTGCTCGTACTGCTCCCGAACCTCGTCGTGATCGGTGCCTTCATGTTCGCCGCCGCGGCGCTCACTCGTCAGGCGCTGGCGACGTACCTCGGCGGCGTCGCGTTGTACGTCCTCAGCCTGATCGCTGGTGCCCTCACCGATGGTTTCACGAACCGCGTGCTATCGGCGCTTGTCGACCCGTTCGGCGGCAACGCGCTGGCGCTGAGGACACAATACTGGACGCCTGCCGAGATCAACGTGCAGCTCATCGGGTGGCCTGACGTCCTGCTCTGGAATCGCGCGCTGTGGTTGGTCGTCGCGATGGGGGTGTTCGCACTGCTCGCCGCGCGATTCCGTTTCGCGCACCAGGGCGGGGCGGGGCGGCGCCGCTGGTGGCGCAGGCGCGCGGTGGTCGATACAACGACGGACCGCCTGGCGCCGATCGCGTTGTCGCATGCGCCGGCTCTGGGCCGCTCGTTCTCGACCGCCGCGCAGGCGCGGCAGACGTTGGCCGTCGCCGCCCGTGCGTGGCGCGATATCGCGGTGACGCGCGCGTTCCTCGTGATTCTCGTCGGCGCGCTCGTGTTCGTGTTCGCATTCGGGTGGGACGTTGGTACCGAGATCTTCGGAACCTCCACCTGGCCGGTCACACATCTCATTGCCGGGACGGTATTGAGCGCCGCGCTTGGTCCGGTCATGGCGCTGCTCATCGCGATCTTCGCCGGGGAGCTCGTGTGGCGCGAGCGCGACGTCGGCATGGGGGACCTCGCGGCCATCGCGCCGGTGCCGAATTGGGTGGCGATGCTCGGTCGATTCCTCGCGCTCGTCGCGATGCTCGTCACGCTGCAGGCGGTGCTCATGGGTGCCGGCGTGCTGCTCCAGGCGCTCCGCGGCTACCACCGCTACGAGCTCGATGTCTACCTGAAGCTTCTCTTCGGAATCAAGCTCGTCGACTACGTGCTCCTCGCCGCACTCGCGATGACCGTGCACGTCATCGTGAACAACAAGTATCTCGGCCATCTGGTAGTGGTGCTCTTCTTCGCGGTGACGGTGGTCTCCGGACTCATCGGGCTTCGCCATCGGATGCTCATCTACGGGTCCGACCCGGGTTGGGTCTGGTCCGACCTGAACGGGCTCGCGCCGTTCCTTCCGGGGCTCGTGTGGTTCAAGGTCTACTGGGCCGCGTGGGCGCTGCTGCTCGCTGTGATCGCGAGCCTCTTCTGGGTGCGTGGCCGGGAGCTGGGGGTCGTTAGGCGCCTCGCGCTCGCCCGTCAGCGCCTCCGCGGGCCGACCTTGCGAGCCGGGGCGGTCGCGGTCGCGCTCATCGTCACGCTGGGTGGGTTCGTGTTCTACAACACGAACATCCTCAACAAGTACCGCACACCTAACGAGATAGCGGCCGGGCGGGCCGAATACGAGCGGCGTTACAAGCGCTTCGAGGATGCGCCGGCGCCAAGCCTCGTCGCGGCGCGGACGCGCGTGGAGCTCTACCCGGCGGACCGTGCGGCCGAGATCCGCGGAACGTTTCGGTTCGTCAACCGCACCGCACAGCCGATCGATTCTCTGCACGTGTTACCGAGTCCCGACGTCGAGACTCACGCCATCGGTTTCGACCGCGGCGCGCGCCTCGTCGTCGACGACAGCTCGCTCTACTACCGCATCTACGCGCTCGAGACGCCTCTCGCGCCCGGTGATTCGATCGCGATGACCTTCGATGTCGCGTACCGCCCGCGCGGGTTTCGCAATGCCGGCGCGCCGACCGATGTGACGCCTAACGGCGCCTACATCGAAGGAGGATGGCTGCCGGTGCTCGGCTACCGGCCGCGGCGTGAGGTGACGGACCCCCAGGTCCGACGCGAGCAGGGGCTCCCGCCTCGCAAACTGCCGCCGAGCGCGGGGGACGTCGAAACGCGCCCGCGTGCGAATACCGTCGAGCTCGTGAATGTCGAAACAGTGATCGGCACCGACCCGCGCCAGATTGCCGTCACGCCGGGCACGCTCGTGCGCGAATGGCAGGAGAATGGGCGCCGCTACTTCCACTATCGCACCGACCAACCAATCCGCTACGCCGGTGCGGTTCTCTCCGCGGAGTACGCGGTGCGGGAGGCGAAGTGGAACGGGATTCCGCTCCGCGTCTACTACCACCCGACGCACGACGTCAACGTCGACCGGATGCTCAGGAGCATGCAGGCGTCGCTGGCGTACTTCTCCGAGTACTTCGGACCGTACCAGTTCCGCGAGCTTCGCGTCGTCGAGTTTCCGCGTTATGTGGCGTTCGCGCGCGCGCACCCGTTCACGATCACGTTCTCCGAGGGCAGCGCCTTCCTCACTCGCGTCGACTCTGGCGACGTCGATCGGACGTTCTTCGTCGTCGCGCACGAGACGGCGCACCAGTGGTGGGGTGGCCAGGTGATCCCGGCACCGGCGGCGGGGGCGGGGCTCGTCTCGGAGACGCTGGCCCAGTACAGCTCGATGATGGTGTTCGAGACCGAGTACGGCCCGGAGATGGCGCGGCGCTTCTACGACTACAACATGAACGAGTACCTCACCAGGCGGAGCGTATACACGAACCGCGAGGTTCCGCTGCTCGACGTCGTAGACCAGCGATACGTGTTCTACTTCAAGGGCGCCGTCGCGATGTACACGCTGCGCGAACGGCTGGGCGCCGAGGCAGTCAACGGGGCGCTGCGGCGATTCCGGGAGAAGTTCGCCGGCACCGACGCGCCGCCGGCCACATCGCGCGCGCTCTACGCGGAGCTGCAGGCCGTCACGCCCGATTCACTGCGCCCGCTGCTGTCGGATCTGTTCGAGCATATCACGCTCTGGAACGTGCGCACCGACTCGGTGCGCGCCGAGTCCGTGAGTGGTGGTAGCTATCGGGTGACGCTGTTCGTCGACGCGTCGAAGGCGCGCGCCGATAGCATCGGGAAGCAGACGCCGGTGGCGATGGACGACGCCGTCGAAGTCGGAGTATTCGCCGGAGCGGCGCGCGACGGCTCGCTTGGGGAGACGCTGTACCTGAAGCAGCACCGCATTCGATCGGGCAAGCAGACGATCGTGCTCACGGTGCCACGCCTGCCCACGCGAGCCGGTGTCGACCCGTACCGCAAGCTCATCGAGCGGGAGCGCGACGACAACGTCGCCGAGGTCGGGGTCAAGTCCGGGCCGGGCGCAGGGCAGAGCGATCCTTGA
PROTEIN sequence
Length: 1201
MVAEVFRFEVGYRLRQPSTWVYALVLLGIPFLMMHAINGSSQYLNAPLMVANVSAVLGSIGMLVTAGIFGDAAGRDVHWRMHSLFYTSPLRESHYLAGRFLGGLAVNAVLLLGVPIGLLLASVMPYMSAGKFGPVQPLAYVQSYLLVLLPNLVVIGAFMFAAAALTRQALATYLGGVALYVLSLIAGALTDGFTNRVLSALVDPFGGNALALRTQYWTPAEINVQLIGWPDVLLWNRALWLVVAMGVFALLAARFRFAHQGGAGRRRWWRRRAVVDTTTDRLAPIALSHAPALGRSFSTAAQARQTLAVAARAWRDIAVTRAFLVILVGALVFVFAFGWDVGTEIFGTSTWPVTHLIAGTVLSAALGPVMALLIAIFAGELVWRERDVGMGDLAAIAPVPNWVAMLGRFLALVAMLVTLQAVLMGAGVLLQALRGYHRYELDVYLKLLFGIKLVDYVLLAALAMTVHVIVNNKYLGHLVVVLFFAVTVVSGLIGLRHRMLIYGSDPGWVWSDLNGLAPFLPGLVWFKVYWAAWALLLAVIASLFWVRGRELGVVRRLALARQRLRGPTLRAGAVAVALIVTLGGFVFYNTNILNKYRTPNEIAAGRAEYERRYKRFEDAPAPSLVAARTRVELYPADRAAEIRGTFRFVNRTAQPIDSLHVLPSPDVETHAIGFDRGARLVVDDSSLYYRIYALETPLAPGDSIAMTFDVAYRPRGFRNAGAPTDVTPNGAYIEGGWLPVLGYRPRREVTDPQVRREQGLPPRKLPPSAGDVETRPRANTVELVNVETVIGTDPRQIAVTPGTLVREWQENGRRYFHYRTDQPIRYAGAVLSAEYAVREAKWNGIPLRVYYHPTHDVNVDRMLRSMQASLAYFSEYFGPYQFRELRVVEFPRYVAFARAHPFTITFSEGSAFLTRVDSGDVDRTFFVVAHETAHQWWGGQVIPAPAAGAGLVSETLAQYSSMMVFETEYGPEMARRFYDYNMNEYLTRRSVYTNREVPLLDVVDQRYVFYFKGAVAMYTLRERLGAEAVNGALRRFREKFAGTDAPPATSRALYAELQAVTPDSLRPLLSDLFEHITLWNVRTDSVRAESVSGGSYRVTLFVDASKARADSIGKQTPVAMDDAVEVGVFAGAARDGSLGETLYLKQHRIRSGKQTIVLTVPRLPTRAGVDPYRKLIERERDDNVAEVGVKSGPGAGQSDP*