ggKbase home page

S1-18-all-fractions_k255_2622805_28

Organism: S1-18-all-fractions_metab_42

near complete RP 46 / 55 MC: 4 BSCG 46 / 51 MC: 5 ASCG 12 / 38 MC: 2
Location: comp(37533..43607)

Top 3 Functional Annotations

Value Algorithm Source
alpha-2-macroglobulin-like protein2; K06894 id=12555062 bin=CNBR_ACIDO species=unknown genus=unknown taxon_order=unknown taxon_class=unknown phylum=Bacteroidetes tax=CNBR_ACIDO organism_group=Acidobacteria organism_desc=why is coverage listed as 1? similarity UNIREF
DB: UNIREF100
  • Identity: 51.9
  • Coverage: 1989.0
  • Bit_score: 1931
  • Evalue 0.0
alpha-2-macroglobulin-like protein2 similarity KEGG
DB: KEGG
  • Identity: 34.6
  • Coverage: 1832.0
  • Bit_score: 841
  • Evalue 4.10e-241
Tax=RIFCSPLOWO2_12_FULL_Acidobacteria_66_21_curated similarity UNIPROT
DB: UniProtKB
  • Identity: 66.2
  • Coverage: 1988.0
  • Bit_score: 2638
  • Evalue 0.0

Lists

This feature is not on any list.

Notes

This feature has no notes.

Taxonomy

RIFCSPLOWO2_12_FULL_Acidobacteria_66_21_curated → Acidobacteria → Bacteria

Sequences

DNA sequence
Length: 6075
GTGTATCGGATTGCTCGCGCCGTGACGTGGCTGGACCGGGGGCGCACCGCAACCGATACGATGCCGGGCCGCCATATGATGATTCCGCTGCCAGCGGACTGGCCGGCACCCGAGCAGCGCCAGGTGAGTCCGATGCCCATGACAGGTCCACGTATCGTACGAATGCTGACGTTGATGGCCTGCCTCGCGGCGACGACGGCGAGGTCCGCAGCTGCGCAGCCGGCGGTGTTGTCGGTCGTGAGCGCAGGACCAAGAGGCGAGGTCGGGAGCCTCGCGGAGGCGAACGAAGTCCGGATTGTCTTCTCCGAACCGATGGTGTCGCTTGGCCGGATTCCGGAGACCGTGACGGCTCCGTTTTTCAACATCTCCCCTGCCGTCCGCGGTACCTTCCGCTGGTCGGGCACGACGACGCTGATCTTTACGCCTGATCCCAGACAGAAGCTGCCGTTCGCCACGCGCTACGAGGTGACGATCACCGAAAGTGCCGCCGCGGTGAGCGGCCGCCGGCTCGCCGGGCCGTTTACCCTCTCCTTCACCACACCGACCGCACGTCTGCTTCGCACGACGTGGTCGCGGCGAGGCGGGCGTGCGGATGCACCGATTGTGGCCCTGCTGCGCTTCAACCAGCCGGTCCGTGCGGCCGATGTGCTCGCACATCTGCAGGGACAGTTCGAGCCGCACGATTGGGCGGAGCCCTCGTTGTCCGACGAGTCCGTTGCCCTCATGACGGCCGCGGATCCGGAAGCCGTTGGGCGATTCCGCGCCAAGGTCGCTGCGACCCGTGCCATCGTCGCCGCGACCGGCCGCGTGCAGGTGCGCCTCACTGACGATTGGGACAAGAAGGCCGATCCCCCTTCACCGGACCTCGTCGTGATAGAGAGCATTACGCCCATCCCCTCCGAGAGCTGGGTGCGGCTGACGCTCGATGAGCGCCTGCCTTCTCCGGCAGGCAGTGCGGTGCCGGACACGACCCAGGCGTACACGGTGCAGGTCGAGCCCGCACTGTTCGTGAACGGCTTCGACTGCACAGCGCGGTGTGACCCCGATCGGCGCAATCCGCTGATCCTCACGAACGACGTGCGGGTGGCCGACTTCACGCGAGCGGTGACAGTGAACGACGTCACGACCCCTTCACCGCCGCGGCCCGTGACCAGGCCCGCCGCGCCGCGGCCCCGAGGAGAGTTCGCGGAAGACGAGGGCAGATACCTTTCGCTGGAAGACGCCGGCTACAACGCGCAGCCGCCAGCGCGGGCCTACGCGGTAGCGGTCAACGCGGGCCTGCAGGGCGTGGACGGCCAGACGCTCGGCTACACGTGGGTGGGCACGGTTCGCACCTGGCATCAACGTTCGTTCACCAGCTTCGGTGATGGTCACGGCGTGTGGGAACCGGAGGGCGGTCCCCTCTTACCGTTCTACGCGCGCAACTTCGTGAACGTCCAGCAATGGGCGGCGCCCATTGCGCCCGCCAGTCTCATGCCCACCCTGACGGGACTGCAGGCCGGGTTCGACAAGACTCCCGCCGGTGAGGGAGTCGAGCGGCGGCTCGGCGGTGCGGCAGACCGGATCCAGTCTCACGGCCTCGACATCTCCGGCGCGCTCGGCGGCCGGTCGACGGGCCTGGTCTGGGCCGCTGTCCGTGAAGGCGAGCCGATTCCCGAGTCGCGCCCCCTGCTGCAGTCACCGGTCCGCGCGTCGGTCGTGCAGGTCACGAACCTGGGCATCACCGTCAAGGACAGTCCGCAGAACTCTCTCGTGTTCGTCACTCGGCTCGACACGGGTGCCCCGGTCTCCGGCGCGAAGGTCTCGATCATCCAGACGGACAACAGGGTGTTCTGGACGGGAACGACCGGCAGCGACGGCGTGGCCATCGCTGCCGCAACGCCGCTCCGCGATGAAGACAACTGGTCGAAGTTCGCATTCGTAGTGATGGCGGAGAAGGACGGTGACGTTGCCTACGTGGGCAGCGACTGGAACGAGGGTGTGCTCCCGTGGGAGTTCGGCTTGCCGCTCAACCTGCGCGAGGCATCGCCGATGCTGCGCGGAACGGTCTTCAGCGACCGCGGCGTCTACCGGCCGGGCGAAGAGGTGCACCTCAAGGCGATCCTGCGCCACAACGCGAGCGACGGCATCCGGCTGCTGTCGGAAGGCACACCGGTCTTCGCCACCCTGCGCGACATCCAGGACCGCGTGGTCGATGAACGCACCGTGAAAGTGAATGCGTGGAGCAGTGCCGAATGGACTGTCACCTTGCCTGCGGCCGGATCGCTCGGCCAGTATCAGCTGCAGGTGATGCTCGACAGCGACCGCCCCAAGCCGCGCGGTCCCGCACAGCTGCGGCCGTGGGAGACGCCAGGCCCGGCGGCGGATCGCTACGTCCCCTACACGAAGGTGGTCAACGGGTCGTTTCTGGTCGCCGCCTATCGCCGTCCCGACTTCCGCGTCGACGTGACGCTCACCGGCGAGCCGCTCATGGCCGGAGCTGACCTGACCGGATTGGTAACGGCCCGCTATCTGTTTGGCGCGACGATGGGCGCGCGGCCGCTGCGCTGGACCTTTACGAAACAGCCCGTCGGCGATGCTCCGCCCCCGGTGCGGGAACTCTTTTCGCCGGATCGCTGGCTGTTCGTGGGCTGGTCCGACCGCGAGCCGGCGGAATCGGGCGAGGTCAGGAGAGACCAGGCGCAGCTGACCGCGTCGGGCGAGCGCCAGCTGACACTCCCGACGAAGCGAGACGCGGGAGTCCCCTATGCCTACACCCTGGAAGGGGACGTCGAAGACGTCTCGCGCCAGCACATCGCGAACCGCGCGACGATCACGGTGCACCCCGCCCCCTGGTACATCGGCGTGCGGCAGCCCCCGTATTTCGTCGAGCAGAAGAGCGGCGTGAAGACCGAGATCGTCGCGGTCACCCCCACGGGCGCAGTCGTCACGGGCGTCCCCGTGACGGTCACGCTGACACAGGTGCAGTGGTCGAGTGTGCGGCGCGCCGAGGGCAACGGGTTCTACACCTGGGACACCGAGCGCAAGGAAGTGCCTGCAGGGAGCTGGTCCGTCACGACGGCGGACGCGCCTGTGCCCCTGGACATGCCGGTCCCGAACGGCGGGTACTTCCTGCTCGAAGCGACGGCGCGCGACGTGGGCGGCCGGTTCGCGGTGACACGGACGTCCTTCTATGCGACTGGTGACGGCTATACCGCGTGGGCGCGGTTCGACCACAACCGCATCCAGCTCGTGCCCGAGCGCACGACATACAAGCCGGGCGAGACGGCGCGCATCATGATTCAGTCGCCTTGGGAGCAGGCCACCGCGCTCGTGACGCTGGAGCGCGAGGGTGTCCGGTCCCACCGCCAGTTCGCGCTGACCTCGACGCAGCAGTCGATCACCGTCCCTGTCGCTGAGACTGACATTCCGAACGTGTTCGTGTCCGTACTGCTCGTCAAGGGCCGCACGCGACAGGAGCCCGCGGCAGGCGCCGCCGTCACGGGCGGCCCCCGCGCCATCGAAGACCCGAGCGATCCGGGCAAGCCCTCCTTCCGCCTCGGATACGTCGAGCTGCAGGTCGAAGACGCGACGAAGAAGCTGGGGGTGACCCTGACGGCCGACCGCACCGAGTACCGGCCCGCGAACACGGCGACCGTCCGGGTCCATGTCAAGGACCCGCGCGGTCGGGGAGCGCCGAGCGAAGTGACGCTGTGGGCCGTCGATTACGGCGTCCTGTCGCTCACGGCGTACCGTACCCCGGACGTATTGCGGTCCGTCTACGTGCAGAAGGCCTTGCAGGTCCTGACCGCCGACAACCGGCAGCGCATCATCAGCCGGCGTGTCCTCACGCCGAAGGGTGATACCGACGGCGGAGGGGGCGGCGCCGACGCGGGCGCAGGCACGCTCCGGAAAGACTTCCGGGTGCTGGCCTTCTGGGTGGGATCGACCATCGCCGATGCAAATGGTGAGGCGTCCGTCGAGGTGAAGCTTCCCGAGTCGCTGACCACCTACCGCATCATGGCCGTCGCAGCGGATCGCGTATCCAGGTTCGGCTCCGCCGATACAGAGGTCCGCGTCAACAAGCCGCTGACGCTCAAGCCCACGTTCCCCCGGTTTCTCGCGGTGGGCGATCGCGCACAGTTCGGCGCCGTAATCACCAGCCAGCTGCCGTCCGCAGGCGCCGCGATGGTCTCAATCAGGAGCCTCGACATGGACGTGCTGCAGTTCGAGGCATCGACCGAGCAGACGATCGTCGTCGGGCCCAAGGGATCGATGGAAGCGCGCTTCAGCGCCACCGGCCGCCGCATCGGCCGCGCGCGCATACAGATGACGGTGCGGCTCGCCGGTGAAACAGACGCGCTCGAGGACGTGATCCCTGTGGAGGTGCTCGCATCGCCCGAGACGGTTGCCGCGTATGGCGAGACGTCAGACACCGCCGCGAGCGAAAGTCTGACCATCCCCGCCGGCATCGTCGCGGGGCTCGGCGGCCTGCACGTCGAGATGGCGTCGACCGCGATGGTGGGGCTCGGCGAAGGCGCGCGGTATCTCGTCGAGTATCCGTATGGCTGCGCGGAGCAGCGGGCCTCGCGCACGCTGGCGATGGTGCTCGCAGCGGACCTGGGAGGCGCATTCTCCCTGCCCGGGATCGAGCCTGCGACGCTCCGCCCGACCGCACAGCAGAACATTCGCGAGCTGGAGTCGTACCAGTGCCCGAGCGGTGGTTTTGCGTTCTGGCGCGGGAACTGTGAGTCCGTGTCGGAGTACCTCACCAGCTACGTCCTGCACGTCTTCAAGACCGCACGGGATGCGAAGTACGACGTCAGCGCTGACGTCCTCGCGCGCGGGTATGCCTACCTGGAGCGCGCGCTTGCGGCCAAACCGCCGGAGAACGAAGGGTGGTGGCCGTCCTACACGGCCTGGCAGGCCTTCGCGGTGAAGGTGCTGGTGGACGGCGGACGCAACCAGGACTCGAACCTCAACCGGCTGTATGGGTACCGCGAGCGGATGCCAGTCTTCGCACTCGCCTATCTGCACGATGCGCTGCTCGCCCGCGCCGGACGGCCGGTAGGCGATGATGCCGTGCGGATTGCCGAGCTGCGGCGGCGCATGACGAACGCCATCCTTCCAGAGGGCGGCACGGCGCATGTCGAGGAGCTGAGCGATCCATACCTCCTCTGGTTCTGGAACTCCAACGTTCGATCGACCGCGATCGTGCTCAACACGCTCGTGCGTGCGCCGGGTCCGGAGACTGCGATCGAGAGTGCGCCTCTCCGGCAGCTGGTCCGCTGGCTGATGACGGCGCGCAAAGATGGGCGCTGGGCGAATACCCAGGAAAACGCGCATGTCCTCGAGGCGCTCGTGTCGTATTACCGGAAACACGAGACCGTCGTACCCGACTTCCGCGCGGTGGTGGCACTTGGCGGCAGGGAGCTGGCCAAGGCGGAGTTCACGGGGAGGTCCACGGAGGCGATCAAGCAGGATGTTCCGATGGGACAGCTGCTGTCGAACGCAGCCGCGGGCAGCACGCGGCCGCTGACGTTTCGGCGTGAAGGGGCGGGTACCCTGTTCTACGCCACGCGGTTGCGGTATGCGGCCGACCGCATGTTCCAGGAGGGGCTCGACCAGGGCATCCACATCGAGCGCAGCTACGCGCCGCTGGTCGAGACCGGCACCCGGCCCGAGTCCACGCGCTACCAGGCCGGCGATCTTGTGCGCATCACCCTGCAGTTCCAGCTGCCGAAGGAACGCCGCTATGTCGCGGTGACCGATCCGCTCCCGGCGGGGTTCGAAGCAGTGGAGTCATGGTTCGCTACCACCGCGGCATCGCTGTCGGCGCAGCAGGACGACCAGGGTGGAACGGGCGATGACCAGTGGTTCGCGTGGTGGCAGCGCGGCGGGTTCGATCACGTGGAACGCTATGACGATCGCGTGCAGCTGTTCGCCACGCGGCTGAGCGAAGGCACGCACCAGTTCAGTTATGTCGCCCGCGCCACCACCGCTGGCACGTTCCGCACCGCGCCGGCACGCGGTGAGGAGATGTACGAGCCGGAGGTATTTGGCCGCACCGGCACGGCGGTCATCGAGGTCCGGTGA
PROTEIN sequence
Length: 2025
VYRIARAVTWLDRGRTATDTMPGRHMMIPLPADWPAPEQRQVSPMPMTGPRIVRMLTLMACLAATTARSAAAQPAVLSVVSAGPRGEVGSLAEANEVRIVFSEPMVSLGRIPETVTAPFFNISPAVRGTFRWSGTTTLIFTPDPRQKLPFATRYEVTITESAAAVSGRRLAGPFTLSFTTPTARLLRTTWSRRGGRADAPIVALLRFNQPVRAADVLAHLQGQFEPHDWAEPSLSDESVALMTAADPEAVGRFRAKVAATRAIVAATGRVQVRLTDDWDKKADPPSPDLVVIESITPIPSESWVRLTLDERLPSPAGSAVPDTTQAYTVQVEPALFVNGFDCTARCDPDRRNPLILTNDVRVADFTRAVTVNDVTTPSPPRPVTRPAAPRPRGEFAEDEGRYLSLEDAGYNAQPPARAYAVAVNAGLQGVDGQTLGYTWVGTVRTWHQRSFTSFGDGHGVWEPEGGPLLPFYARNFVNVQQWAAPIAPASLMPTLTGLQAGFDKTPAGEGVERRLGGAADRIQSHGLDISGALGGRSTGLVWAAVREGEPIPESRPLLQSPVRASVVQVTNLGITVKDSPQNSLVFVTRLDTGAPVSGAKVSIIQTDNRVFWTGTTGSDGVAIAAATPLRDEDNWSKFAFVVMAEKDGDVAYVGSDWNEGVLPWEFGLPLNLREASPMLRGTVFSDRGVYRPGEEVHLKAILRHNASDGIRLLSEGTPVFATLRDIQDRVVDERTVKVNAWSSAEWTVTLPAAGSLGQYQLQVMLDSDRPKPRGPAQLRPWETPGPAADRYVPYTKVVNGSFLVAAYRRPDFRVDVTLTGEPLMAGADLTGLVTARYLFGATMGARPLRWTFTKQPVGDAPPPVRELFSPDRWLFVGWSDREPAESGEVRRDQAQLTASGERQLTLPTKRDAGVPYAYTLEGDVEDVSRQHIANRATITVHPAPWYIGVRQPPYFVEQKSGVKTEIVAVTPTGAVVTGVPVTVTLTQVQWSSVRRAEGNGFYTWDTERKEVPAGSWSVTTADAPVPLDMPVPNGGYFLLEATARDVGGRFAVTRTSFYATGDGYTAWARFDHNRIQLVPERTTYKPGETARIMIQSPWEQATALVTLEREGVRSHRQFALTSTQQSITVPVAETDIPNVFVSVLLVKGRTRQEPAAGAAVTGGPRAIEDPSDPGKPSFRLGYVELQVEDATKKLGVTLTADRTEYRPANTATVRVHVKDPRGRGAPSEVTLWAVDYGVLSLTAYRTPDVLRSVYVQKALQVLTADNRQRIISRRVLTPKGDTDGGGGGADAGAGTLRKDFRVLAFWVGSTIADANGEASVEVKLPESLTTYRIMAVAADRVSRFGSADTEVRVNKPLTLKPTFPRFLAVGDRAQFGAVITSQLPSAGAAMVSIRSLDMDVLQFEASTEQTIVVGPKGSMEARFSATGRRIGRARIQMTVRLAGETDALEDVIPVEVLASPETVAAYGETSDTAASESLTIPAGIVAGLGGLHVEMASTAMVGLGEGARYLVEYPYGCAEQRASRTLAMVLAADLGGAFSLPGIEPATLRPTAQQNIRELESYQCPSGGFAFWRGNCESVSEYLTSYVLHVFKTARDAKYDVSADVLARGYAYLERALAAKPPENEGWWPSYTAWQAFAVKVLVDGGRNQDSNLNRLYGYRERMPVFALAYLHDALLARAGRPVGDDAVRIAELRRRMTNAILPEGGTAHVEELSDPYLLWFWNSNVRSTAIVLNTLVRAPGPETAIESAPLRQLVRWLMTARKDGRWANTQENAHVLEALVSYYRKHETVVPDFRAVVALGGRELAKAEFTGRSTEAIKQDVPMGQLLSNAAAGSTRPLTFRREGAGTLFYATRLRYAADRMFQEGLDQGIHIERSYAPLVETGTRPESTRYQAGDLVRITLQFQLPKERRYVAVTDPLPAGFEAVESWFATTAASLSAQQDDQGGTGDDQWFAWWQRGGFDHVERYDDRVQLFATRLSEGTHQFSYVARATTAGTFRTAPARGEEMYEPEVFGRTGTAVIEVR*