Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   EPB61_RS10950 Genome accession   NZ_CP035696
Coordinates   728442..731834 (+) Length   1130 a.a.
NCBI ID   WP_154180368.1    Uniprot ID   -
Organism   Vibrio furnissii strain 2419-04     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 723442..736834
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  EPB61_RS10930 erpA 723800..724141 (-) 342 WP_014204486.1 iron-sulfur cluster insertion protein ErpA -
  EPB61_RS10935 hemL 724453..725745 (+) 1293 WP_004728988.1 glutamate-1-semialdehyde 2,1-aminomutase -
  EPB61_RS23780 - 725842..725964 (-) 123 WP_004728990.1 hypothetical protein -
  EPB61_RS10940 - 726040..727125 (+) 1086 WP_004728992.1 AI-2E family transporter -
  EPB61_RS10945 rsmC 727221..728243 (+) 1023 WP_154180367.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  EPB61_RS10950 chiS 728442..731834 (+) 3393 WP_154180368.1 response regulator Regulator
  EPB61_RS10955 - 732533..734203 (+) 1671 WP_004728998.1 ABC transporter substrate-binding protein -
  EPB61_RS10960 - 734368..735354 (+) 987 WP_154180369.1 ABC transporter permease -
  EPB61_RS10965 - 735357..736382 (+) 1026 WP_004729001.1 ABC transporter permease -

Sequence


Protein


Download         Length: 1130 a.a.        Molecular weight: 128058.48 Da        Isoelectric Point: 6.2694

>NTDB_id=343812 EPB61_RS10950 WP_154180368.1 728442..731834(+) (chiS) [Vibrio furnissii strain 2419-04]
MFRFNRKQKFKRLQNTLMLAFLVLSITPLTVTAIFFLQSHSKDLQEQSTSHLLSVRDTKQQQVIDYLSAKESEVMGFVRS
ELAYASGGRFYGLVNAFQRLGVDIDQAREHAQQRYVTGSGDEVKTSVLPESSSYVGSERYRLLHKRYHWAYLELLKRSDF
DDILLVDITGNVVYSIYKRENYGTNLLTGRFKDSNLGQTFRQLEQQVSEHRKTNEDYTPVVLSDFVDEQGRQFAWMGAPI
IQQGYLHSYAMFRLPNNGITKLIADTNTTSSMRTLLVGQDHRSRTLAYDQPEIDKSTQVIDWALNGSRSVGTYTNLDDEK
TIAAYAPINLKDLHWALVVELPEKEAFARIRQLEKLFIFAMLTAIILVVIASHYLSNFITSPLLKLTWAAERVSAGDLDE
TMINTDRRDEIGRLAVSFERMQRSIREKMQLIKAQNKELESNIQVIRKQNDELQLANKLKDEFLATTSHELRTPLHGMIG
IAEALTSGANGPINAAHKYQLDIIISSGQRLATLVDDLLDYHKMRYGNLDIHRTAVNLSNATRLVLELSNHLLGKKQIRI
INQVAEEAPVWVSADAQRLEQVLYNLIGNAIKYTSEGKIVISATRVDQHIRVQVVDTGQGIPAEQLEHIFEPLIQAGHDA
SRYRQGAGLGLSISRQLIELMQGSLYVSSQPMVGTTFSFTLPMASDDEIAQAQLTQQPHFQAPELTELDLPDHHSIPENP
TGPLLLVADDEPVNLRVLDSFLRLEGYRVRTAQDGNEVLQAVAEEKPELLLLDIMMPGMSGYQVCEELRKTYDHAALPVI
MLTALNQSDDRVRGFEAGANDYLSKPFNKQELAARIVAHLTASKAEQRRLENAELQKELKHRAMVEASLLETQGRLLEQL
ESAPEAIVCIREDNKVRFANDAAARLFKRSQEQLKRSNADELIAQKYLLVEQDHYCGNVDIFIDDTRQHVNADVLRLPKG
AGLQAMYIFNVGGNINAARIHNLETAVEALSSYAFDGDKDKLQQLKELGGEFTRLADKASGDGQSKQELMRSVLVDAMTS
ALNYWEKVSGQSKFTFAEQSGLWRVYLDRSTLQTRTLDKYLRIETLPKTPRWRTVLNSLDYILDHCQEQGPERTYIEVQR
DKLQKLLTSE

Nucleotide


Download         Length: 3393 bp        

>NTDB_id=343812 EPB61_RS10950 WP_154180368.1 728442..731834(+) (chiS) [Vibrio furnissii strain 2419-04]
ATGTTTAGGTTCAATCGGAAGCAAAAGTTTAAGCGCCTGCAAAATACCCTCATGCTCGCGTTCTTGGTTCTTAGCATCAC
CCCATTGACGGTGACGGCGATTTTTTTCCTTCAATCTCACAGTAAAGATCTTCAGGAACAAAGCACATCGCACCTTCTTT
CGGTCCGTGATACGAAGCAACAGCAAGTCATCGACTACCTCAGCGCGAAAGAGTCTGAAGTCATGGGCTTTGTTCGCTCA
GAACTGGCTTACGCCAGTGGCGGGCGTTTCTATGGTTTAGTGAACGCATTTCAACGCTTAGGCGTTGATATCGACCAAGC
ACGAGAGCATGCGCAGCAGCGTTACGTCACCGGTTCTGGTGATGAAGTCAAAACCTCCGTGCTACCAGAATCGAGCAGTT
ATGTCGGCAGTGAGCGCTATCGCCTCCTGCACAAACGCTACCATTGGGCCTATCTCGAGCTACTCAAACGGTCCGACTTT
GATGACATCCTGTTGGTCGATATCACCGGCAACGTGGTGTACTCCATCTACAAACGTGAGAACTACGGCACCAACTTACT
CACGGGGCGATTCAAAGACAGTAACTTGGGGCAAACCTTCCGCCAGTTGGAACAGCAAGTCAGTGAGCATCGAAAAACCA
ACGAAGATTACACACCAGTGGTGTTGTCGGACTTTGTCGATGAACAAGGCCGTCAATTTGCTTGGATGGGCGCCCCCATT
ATTCAACAAGGCTATCTGCACAGCTACGCCATGTTCCGTTTACCCAACAACGGCATCACCAAGCTGATCGCAGACACCAA
CACCACATCGTCGATGCGCACGTTATTGGTCGGTCAGGATCATCGTTCACGCACGCTGGCTTACGATCAACCGGAAATCG
ATAAAAGTACGCAAGTGATTGATTGGGCGCTCAATGGCAGCCGATCCGTCGGTACGTACACCAACCTTGATGACGAGAAA
ACCATTGCTGCTTACGCGCCGATCAATCTCAAGGATCTGCATTGGGCGTTGGTGGTCGAACTGCCTGAAAAAGAAGCTTT
CGCACGCATTCGTCAACTGGAAAAACTGTTCATCTTCGCGATGCTGACTGCCATTATTTTGGTGGTGATTGCCTCACATT
ACCTATCGAACTTCATCACCTCACCCCTGCTAAAACTGACATGGGCCGCTGAACGCGTGTCGGCTGGCGATTTAGATGAA
ACCATGATCAACACCGATCGGCGTGATGAAATTGGGCGACTGGCGGTCAGTTTTGAACGCATGCAGCGCTCGATTCGCGA
AAAAATGCAGCTGATTAAGGCGCAGAATAAAGAGCTCGAAAGCAACATTCAGGTCATCCGTAAACAGAATGATGAGTTGC
AACTGGCCAACAAACTCAAAGATGAGTTTCTGGCCACAACATCCCATGAGCTGCGAACCCCACTGCATGGCATGATCGGG
ATTGCCGAAGCACTGACTTCCGGCGCCAATGGCCCAATCAACGCTGCGCATAAGTATCAACTCGACATCATCATCAGCAG
CGGGCAACGTTTGGCCACACTGGTCGATGACCTACTCGATTACCACAAAATGCGTTATGGCAATCTGGATATTCATCGCA
CGGCTGTCAATCTCTCTAATGCCACACGTTTGGTTTTGGAGCTGTCAAATCACCTGTTGGGTAAAAAACAGATTCGCATC
ATCAATCAGGTCGCAGAAGAAGCGCCGGTATGGGTCTCTGCTGATGCGCAGCGTCTTGAGCAAGTGTTGTACAACTTGAT
TGGCAACGCGATCAAATACACCTCCGAAGGCAAGATTGTCATTTCTGCCACTCGCGTTGACCAACACATTCGCGTACAAG
TGGTGGATACCGGACAAGGGATTCCGGCAGAGCAATTGGAACATATTTTCGAACCCCTGATTCAAGCCGGGCACGACGCC
AGTCGCTACCGCCAAGGGGCCGGACTGGGCCTCTCGATCAGCCGTCAGTTGATCGAGCTGATGCAAGGGTCGCTGTATGT
CAGCAGTCAACCCATGGTCGGAACGACGTTTAGCTTCACACTGCCGATGGCCTCTGACGACGAAATCGCCCAAGCGCAGT
TGACGCAACAACCGCACTTCCAAGCGCCTGAATTGACTGAACTGGATCTGCCAGACCATCACAGCATTCCGGAGAATCCA
ACCGGGCCGTTGCTCTTGGTGGCTGATGATGAGCCGGTGAACTTACGCGTGCTGGATAGCTTCCTGCGTCTTGAAGGCTA
TCGCGTGCGCACCGCTCAGGATGGGAACGAAGTCCTGCAGGCCGTCGCAGAAGAGAAACCTGAATTGTTGCTACTGGACA
TCATGATGCCCGGCATGAGCGGCTATCAGGTGTGTGAAGAGCTGCGTAAAACGTACGATCATGCAGCGTTGCCAGTCATC
ATGCTCACCGCGCTCAATCAATCCGATGACCGAGTGCGCGGCTTTGAAGCCGGCGCCAACGATTATCTATCCAAACCGTT
CAATAAGCAGGAATTAGCCGCACGTATCGTCGCGCACTTGACCGCAAGTAAAGCGGAACAACGTCGCCTTGAGAACGCGG
AACTGCAAAAAGAACTCAAACATCGCGCCATGGTGGAAGCAAGCTTGCTGGAAACACAAGGCCGACTGCTGGAACAGCTG
GAATCAGCGCCAGAAGCGATTGTGTGCATTCGGGAAGACAACAAGGTTCGCTTTGCCAATGACGCCGCAGCGCGCCTGTT
TAAACGCAGTCAGGAACAGCTCAAACGCTCCAACGCTGACGAATTGATTGCGCAAAAATACTTGTTGGTCGAACAGGATC
ACTATTGTGGCAATGTCGACATCTTCATCGACGACACGCGCCAACACGTGAACGCCGATGTCTTGCGTCTGCCCAAAGGT
GCCGGATTGCAAGCGATGTATATCTTTAATGTCGGCGGTAACATTAACGCGGCGCGCATCCACAACCTTGAAACGGCGGT
TGAAGCCCTATCAAGTTACGCGTTTGACGGCGACAAAGATAAATTGCAACAACTCAAAGAGCTGGGCGGTGAATTCACAC
GCTTGGCCGACAAAGCCTCCGGTGACGGCCAATCCAAACAAGAGTTGATGCGTTCCGTGCTGGTCGATGCCATGACCTCC
GCCCTCAACTACTGGGAAAAAGTCTCCGGTCAAAGCAAGTTCACCTTTGCTGAACAAAGTGGGCTGTGGCGCGTCTACCT
CGATCGCAGTACGCTGCAAACTCGAACACTCGACAAATACCTGCGTATCGAAACACTGCCTAAAACGCCGCGTTGGCGCA
CCGTGCTTAACTCGTTAGATTACATTCTGGATCACTGCCAGGAACAAGGACCAGAACGCACTTACATTGAGGTGCAACGG
GATAAGTTACAAAAGCTACTGACGTCAGAATAA


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

84.248

100

0.842


Multiple sequence alignment