Detailed information    

insolico Bioinformatically predicted

Overview


Name   comB6   Type   Machinery gene
Locus tag   EYC15_RS04695 Genome accession   NZ_CP036393
Coordinates   977856..978911 (-) Length   351 a.a.
NCBI ID   WP_000786643.1    Uniprot ID   -
Organism   Helicobacter pylori strain 48A2     
Function   transformation-associated type IV transport system (predicted from homology)   
DNA binding and uptake

Genomic Context


Location: 972856..983911
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  EYC15_RS04670 - 973416..974819 (-) 1404 WP_000694860.1 mannose-1-phosphate guanylyltransferase/mannose-6-phosphate isomerase -
  EYC15_RS04675 comB10 974884..976020 (-) 1137 WP_001045899.1 DNA type IV secretion system protein ComB10 Machinery gene
  EYC15_RS04680 comB9 976013..976975 (-) 963 WP_001987609.1 TrbG/VirB9 family P-type conjugative transfer protein Machinery gene
  EYC15_RS04685 comB8 976975..977718 (-) 744 WP_000660543.1 virB8 family protein Machinery gene
  EYC15_RS04690 comB7 977715..977840 (-) 126 WP_001217874.1 hypothetical protein Machinery gene
  EYC15_RS04695 comB6 977856..978911 (-) 1056 WP_000786643.1 P-type conjugative transfer protein TrbL Machinery gene
  EYC15_RS04700 - 978917..979912 (-) 996 WP_000468812.1 PDZ domain-containing protein -
  EYC15_RS04705 - 979912..980205 (-) 294 WP_000347922.1 YbaB/EbfC family nucleoid-associated protein -
  EYC15_RS04710 panD 980216..980566 (-) 351 WP_000142212.1 aspartate 1-decarboxylase -
  EYC15_RS04715 - 980556..982778 (-) 2223 WP_001051530.1 AAA family ATPase -
  EYC15_RS04720 - 982778..983053 (-) 276 WP_000784917.1 ATP-dependent Clp protease adaptor ClpS -
  EYC15_RS04725 - 983073..983486 (-) 414 WP_001023005.1 universal stress protein -

Sequence


Protein


Download         Length: 351 a.a.        Molecular weight: 39827.79 Da        Isoelectric Point: 8.8165

>NTDB_id=348641 EYC15_RS04695 WP_000786643.1 977856..978911(-) (comB6) [Helicobacter pylori strain 48A2]
MKNDAYEIILSWFITPLTAILGRFAEFFLYTLHAQLVFNGVVALAFMLFAYRSLKEQNLFSASALTEALLFVGFFALFNY
ALKNPMHFYEFFQNAIFIAPNMITQSLSQSLSNFSNHTLSLDFIFNHGFYALSFISDLSHNEMSVWLFLSILQGLFLSVL
FAIIILVYLEVHVWCSLGVLFLAFGFFKTWRSVVVACLKKCFALGFYKPFLLLMGFLNVSVTKALIDAHMQEKQDLSLLL
VVALFLCCVFIIGVPFFINALFRVQNSLKETYKLATNLSANLSQNALNSLQYITTPPASSSVSSSMRESATKEKETHSPT
FKVETTQLDVKIPNFKQKKVKKDTINTKNET

Nucleotide


Download         Length: 1056 bp        

>NTDB_id=348641 EYC15_RS04695 WP_000786643.1 977856..978911(-) (comB6) [Helicobacter pylori strain 48A2]
ATGAAAAATGACGCTTATGAGATTATCCTTTCTTGGTTTATCACGCCTCTCACGGCGATTTTAGGGCGTTTCGCTGAATT
TTTTCTCTACACTTTGCATGCGCAATTGGTGTTTAATGGCGTGGTCGCTTTGGCGTTCATGCTCTTTGCTTATAGGAGTT
TGAAAGAACAGAATCTCTTCAGCGCTAGCGCGCTAACAGAAGCGTTATTGTTTGTGGGGTTTTTTGCGCTTTTTAACTAC
GCTTTAAAAAATCCCATGCATTTTTATGAATTTTTCCAAAACGCTATTTTTATTGCACCTAACATGATCACACAAAGCCT
CTCTCAAAGCTTGAGCAACTTTTCTAACCACACGCTTTCTTTAGATTTTATCTTTAATCATGGGTTTTATGCCCTTAGTT
TTATCAGCGATTTGAGCCATAATGAAATGTCTGTGTGGCTTTTTTTGAGCATTTTGCAAGGGCTTTTTTTGAGCGTGCTG
TTTGCGATCATTATTTTAGTGTATTTAGAAGTGCATGTGTGGTGCTCTTTAGGGGTGCTGTTTTTAGCGTTTGGGTTTTT
TAAAACCTGGAGGAGCGTTGTGGTGGCGTGCCTAAAAAAATGCTTCGCTCTTGGGTTTTACAAGCCTTTTTTGTTGTTGA
TGGGCTTTTTAAATGTGTCGGTTACTAAGGCTTTAATAGACGCTCATATGCAAGAAAAACAAGACTTAAGCCTTTTATTG
GTGGTAGCGTTATTTTTGTGTTGCGTTTTTATCATAGGCGTGCCTTTTTTTATCAACGCTTTGTTTAGGGTGCAAAACAG
CCTTAAAGAAACTTACAAACTCGCCACCAATTTGAGCGCTAACCTCAGCCAAAACGCCCTTAATTCCTTACAATATATCA
CGACCCCACCCGCTTCTTCTAGCGTTTCTTCTTCTATGAGAGAAAGTGCCACTAAAGAAAAAGAAACGCATTCCCCCACA
TTCAAGGTAGAAACCACTCAATTAGATGTAAAAATCCCAAATTTCAAGCAAAAAAAGGTTAAAAAGGATACAATAAATAC
AAAAAATGAAACTTAA


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure

Transmembrane helices


Transmembrane helices of protein were predicted by TMHMM 2.0 and visualized by seqviz and ECharts.



Visualization of predicted probability:


Similar proteins


Only experimentally validated proteins are listed.

Protein Organism Identities (%) Coverage (%) Ha-value
  comB6 Helicobacter pylori 26695

96.857

99.715

0.966


Multiple sequence alignment