Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   EPB59_RS09700 Genome accession   NZ_CP035686
Coordinates   2146774..2150307 (+) Length   1177 a.a.
NCBI ID   WP_195706978.1    Uniprot ID   -
Organism   Vibrio metoecus strain 2011V-1169     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 2141774..2155307
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  EPB59_RS09675 erpA 2142353..2142694 (-) 342 WP_000005744.1 iron-sulfur cluster insertion protein ErpA -
  EPB59_RS09680 hemL 2142978..2144276 (+) 1299 WP_154172531.1 glutamate-1-semialdehyde 2,1-aminomutase -
  EPB59_RS09690 - 2144530..2145615 (+) 1086 WP_154172535.1 AI-2E family transporter -
  EPB59_RS09695 rsmC 2145688..2146710 (+) 1023 WP_154172537.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  EPB59_RS09700 chiS 2146774..2150307 (+) 3534 WP_195706978.1 two-component system sensor histidine kinase ChiS Regulator
  EPB59_RS09705 - 2150990..2152660 (+) 1671 WP_154172541.1 ABC transporter substrate-binding protein -
  EPB59_RS09710 - 2152830..2153816 (+) 987 WP_000540340.1 ABC transporter permease -
  EPB59_RS09715 - 2153819..2154844 (+) 1026 WP_055051740.1 ABC transporter permease -

Sequence


Protein


Download         Length: 1177 a.a.        Molecular weight: 132969.24 Da        Isoelectric Point: 6.6930

>NTDB_id=343653 EPB59_RS09700 WP_195706978.1 2146774..2150307(+) (chiS) [Vibrio metoecus strain 2011V-1169]
MRLCPRFSLDLLVKVKKLVNFVTLGFSCHSPAHGSRAPTSITKSNALIMFRFYRKQKFKRLQNTLMAAFLALSIIPLTIT
ALFFLHSHSKDLEEQSTSYLVSVRDTKQQQVIDYMMAKESEVMGFVRSELAYASGGRFYGLVNAFQRLDVSIEAAREHAQ
QRYIPGSGDQIKTSVLPQSSGYVGSERYRLLHKRYHWAFLELLKRSDFDDILLVDIEGNVVYSIYKYDNFGTNLLTGKYQ
DANLGHTFKRLEQTVNEQRKTNEDFTPVVISDFVEEDGKQYAWLGAPIIQQGYLHSYAMFRLPSNAITKLIADGNNNPSM
QTILVGQDLRSRTLTSAEIAVEKSKQVVELALSGKRSVGTYTNTDGEQVIAAYAPINLKSIHWALVVELPEKEAFARVRQ
LEKLFVFAMLTAIVLVVIASHYLSNFITAPLLKLTWAAERVSAGDLDEAMINTERKDEIGRLAVSFERMQRSIREKISLI
KSQNKELESNLLIIRKQNDELQLANKLKDEFLATTSHELRTPLHGMIGIAEALVSGANGPLTAAHKYQLDIIISSGQRLA
TLVDDLLDYHKMRYGALDIQKCAVDLSSATRLVLELSHHLLGKKTLRIINQVPELPVWVSADPQRLEQVLYNLIGNAIKY
TSEGKIVISATYMDDKIRVQVVDTGQGIPAEQLEQIFEPLIQAGRDASRYRQGAGLGLSISRQLIELMNGTLYVSSQPMV
GTTFSFTLPLATQDEIAQARLTELPHFQAPEVLDAELPEQSTLPENEHGPLLLVADDEPVNLRVLDSFLRLEGYRVHTVQ
DGHEVLEAVKREKPELLLLDIMMPGMSGYQVCEKLRQSYDHAELPIIMLTALNQSDDRVRGFEAGANDYLSKPFNKQELA
ARIVAHLTASKAELRRIENAQLQKELKHRAMVEASLLETQGRLLEQLESAPEAILCVKEGNKIRFANEAASRLFRRTPEQ
LKRSNAEELIAPKYLNIDQEHYCGNIDVYVDDVRQHLSADVLRLPEGSGLQAMYIFNVGGSINAARIYNLETAVEALSSY
AFEGDKDKLQQLKELGGEFTRLADKASGEYQSKQDLMRSVLVEAMTSALDYWERVSGQSKFTFAEQSGLWRVYLDRSTLQ
TRTLDKYLRIETLPKTPRWRTVLNSLDYILEHCKESSPDRTHIEMQRDKLQKLLTSE

Nucleotide


Download         Length: 3534 bp        

>NTDB_id=343653 EPB59_RS09700 WP_195706978.1 2146774..2150307(+) (chiS) [Vibrio metoecus strain 2011V-1169]
TTGCGCCTATGCCCACGCTTTAGCTTGGACTTACTTGTCAAAGTAAAAAAACTCGTTAATTTCGTTACTTTAGGTTTTTC
TTGTCATTCACCTGCTCATGGCTCGCGAGCGCCAACGAGTATCACCAAAAGTAACGCCTTAATTATGTTTAGGTTCTATC
GAAAACAAAAATTCAAGCGCCTGCAGAATACCCTGATGGCGGCCTTTTTGGCTCTTAGCATTATTCCATTGACGATTACC
GCGCTGTTTTTCCTCCATTCACACAGTAAAGACTTGGAAGAACAAAGTACCTCGTACCTCGTTTCGGTACGTGATACCAA
ACAACAGCAGGTGATCGATTACATGATGGCCAAAGAGTCGGAAGTCATGGGATTTGTCCGTTCCGAGCTTGCTTATGCCA
GTGGTGGACGTTTTTATGGGTTAGTCAATGCTTTCCAACGCTTAGATGTCAGTATCGAAGCGGCTCGTGAACATGCCCAA
CAGCGTTATATCCCCGGATCCGGCGATCAAATAAAAACGTCTGTGCTGCCACAATCCAGCGGTTATGTGGGAAGCGAACG
TTACCGGTTACTACACAAACGCTATCATTGGGCCTTTTTAGAGCTGTTAAAACGCTCAGATTTCGATGACATTCTCTTAG
TTGATATTGAAGGCAACGTCGTTTACTCCATTTATAAATACGACAACTTTGGCACTAATTTATTAACGGGCAAATATCAA
GATGCCAACCTAGGGCATACGTTTAAACGTCTAGAACAAACGGTTAATGAACAACGCAAAACCAATGAAGACTTCACCCC
AGTGGTCATCTCAGATTTTGTCGAGGAAGACGGAAAACAGTACGCTTGGCTCGGCGCACCAATTATTCAACAAGGCTACT
TACACAGCTATGCCATGTTCCGTCTACCCAGCAATGCCATCACCAAACTGATCGCCGATGGCAACAATAATCCATCAATG
CAAACCATACTCGTCGGCCAAGATCTGCGTTCACGAACGTTAACGTCTGCAGAAATCGCCGTTGAAAAGAGCAAACAAGT
GGTCGAGCTAGCCTTGTCTGGCAAACGTTCGGTAGGTACCTATACCAATACCGATGGTGAACAAGTCATTGCTGCTTATG
CCCCTATCAATTTGAAAAGCATTCATTGGGCCTTAGTGGTTGAGCTTCCAGAAAAAGAAGCGTTTGCCCGTGTACGACAA
TTGGAAAAGCTCTTTGTGTTTGCCATGTTGACTGCGATTGTATTGGTGGTGATAGCTTCACATTATCTCTCTAACTTTAT
TACCGCCCCACTATTAAAACTCACTTGGGCTGCAGAACGTGTCTCTGCCGGAGATCTTGATGAGGCGATGATCAATACCG
AGCGGAAAGATGAAATTGGTCGTTTGGCCGTCAGTTTCGAGCGAATGCAACGCTCTATCCGTGAAAAAATCTCACTCATC
AAATCACAAAATAAAGAGTTAGAAAGCAACCTGCTGATCATCCGTAAACAGAACGATGAATTGCAGCTCGCGAACAAGCT
CAAAGATGAATTCCTCGCCACCACATCACACGAATTGCGTACTCCACTACACGGTATGATTGGCATTGCCGAAGCATTAG
TTTCCGGTGCCAATGGCCCACTGACCGCCGCTCATAAATATCAACTCGATATCATTATTAGCAGTGGCCAACGCTTAGCT
ACCTTGGTGGATGATTTATTGGATTATCACAAAATGCGCTATGGCGCGTTGGATATTCAAAAATGCGCCGTCGATTTATC
CAGTGCGACGCGGTTAGTACTGGAGCTCTCGCATCACTTACTCGGCAAAAAAACGCTGCGTATTATTAACCAAGTTCCAG
AGCTGCCAGTCTGGGTTTCCGCGGATCCACAACGCTTGGAGCAAGTGCTGTATAACCTGATTGGTAATGCGATTAAATAT
ACGTCAGAAGGCAAGATCGTTATCTCCGCAACCTATATGGACGATAAAATTCGCGTACAGGTAGTGGATACAGGCCAAGG
CATTCCTGCCGAGCAACTGGAGCAAATTTTTGAACCTCTGATCCAAGCAGGCCGAGATGCAAGCCGCTACCGTCAGGGCG
CGGGATTAGGGTTGTCTATCAGCCGCCAGCTTATTGAGCTGATGAATGGTACGCTTTATGTTAGCAGCCAACCGATGGTT
GGGACGACATTTAGCTTTACTCTACCGCTAGCGACTCAAGATGAGATTGCTCAAGCACGTTTGACTGAACTCCCCCACTT
CCAAGCCCCAGAAGTTTTGGATGCCGAACTTCCAGAGCAGAGCACACTGCCTGAAAATGAGCACGGTCCATTACTTTTAG
TCGCCGATGATGAACCGGTTAACCTCAGAGTATTAGACAGCTTCTTACGTCTTGAAGGTTACCGTGTGCATACCGTACAA
GATGGCCATGAAGTGCTTGAAGCCGTGAAACGTGAAAAGCCTGAACTATTGTTACTCGACATCATGATGCCAGGCATGAG
CGGCTATCAAGTGTGTGAAAAACTCAGACAAAGCTACGACCATGCAGAGCTCCCCATCATTATGCTAACGGCCCTGAATC
AGTCCGATGACCGAGTACGTGGTTTTGAAGCCGGCGCTAACGACTACTTATCAAAACCATTTAACAAACAAGAGCTGGCG
GCTCGTATCGTAGCTCACCTTACCGCTAGCAAAGCCGAATTGCGTCGTATTGAAAATGCCCAGCTACAAAAAGAACTAAA
ACACCGTGCGATGGTTGAAGCGAGCCTCCTCGAAACCCAAGGACGCTTATTAGAGCAGCTAGAATCCGCACCAGAAGCAA
TACTGTGTGTCAAAGAAGGAAATAAAATACGCTTTGCCAACGAGGCCGCATCACGCCTATTTAGACGCACGCCAGAGCAG
CTTAAACGATCGAATGCAGAAGAGTTGATTGCACCGAAATACCTCAACATCGATCAAGAACATTACTGCGGCAATATTGA
TGTTTACGTTGATGATGTACGCCAACATTTATCCGCTGACGTACTACGCTTACCAGAAGGCTCTGGATTGCAAGCCATGT
ACATTTTTAATGTCGGGGGCAGTATTAATGCTGCGCGTATATATAATCTGGAAACCGCGGTAGAAGCCCTCTCTAGCTAC
GCTTTCGAAGGTGATAAAGATAAATTGCAGCAACTCAAAGAGTTGGGTGGTGAGTTCACTCGCCTTGCCGATAAAGCATC
CGGTGAGTATCAATCCAAACAAGATTTGATGCGTAGTGTCTTGGTCGAAGCCATGACCAGTGCTCTTGATTATTGGGAGC
GAGTCTCAGGACAAAGCAAATTTACCTTTGCAGAGCAAAGTGGCTTGTGGCGTGTGTATCTTGACCGCAGCACCTTACAA
ACTCGCACCCTAGATAAATATTTACGCATTGAGACATTACCTAAAACACCACGCTGGAGAACGGTGCTTAACTCGCTCGA
TTACATCCTTGAGCACTGTAAAGAGTCAAGCCCAGATCGCACTCATATCGAGATGCAGCGCGATAAACTACAGAAGTTAT
TGACCTCTGAATAG


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
  chiS Vibrio cholerae strain A1552

94.817

100

0.948


Multiple sequence alignment