Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   OCV19_RS02885 Genome accession   NZ_AP025463
Coordinates   588703..592092 (-) Length   1129 a.a.
NCBI ID   WP_065676704.1    Uniprot ID   A0A1C3JFG0
Organism   Vibrio celticus strain CECT 7224     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 583703..597092
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  OCV19_RS02870 - 584136..585161 (-) 1026 WP_017056648.1 ABC transporter permease -
  OCV19_RS02875 - 585164..586150 (-) 987 WP_017633262.1 ABC transporter permease -
  OCV19_RS02880 - 586320..588002 (-) 1683 WP_017056650.1 ABC transporter substrate-binding protein -
  OCV19_RS02885 chiS 588703..592092 (-) 3390 WP_065676704.1 response regulator Regulator
  OCV19_RS02890 rsmC 592309..593331 (-) 1023 WP_065676705.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  OCV19_RS02895 - 593442..594527 (-) 1086 WP_004734536.1 AI-2E family transporter -
  OCV19_RS02900 hemL 594871..596166 (-) 1296 WP_010436060.1 glutamate-1-semialdehyde 2,1-aminomutase -
  OCV19_RS02905 erpA 596463..596804 (+) 342 WP_004734539.1 iron-sulfur cluster insertion protein ErpA -

Sequence


Protein


Download         Length: 1129 a.a.        Molecular weight: 127134.75 Da        Isoelectric Point: 5.2626

>NTDB_id=91697 OCV19_RS02885 WP_065676704.1 588703..592092(-) (chiS) [Vibrio celticus strain CECT 7224]
MFRFYRKQKFKRLQNTLMLAFLVLSITPVTLIAIFFLQSHSQDLQEQSTSHLVSVRDTKQQQIVDYLQAQESQVMGFVRS
ELANASGGRFYGLINAFQRLGLDIDEARGNAQQRYIQGSGDQIKTSILPESSSFIGSERYRLLHKRYHNAYLELLKRSDF
DDILLVDINGNVAYSVFKNDDYGTNLLTGKYKDSNLGITFQRLAKDVTDRRKSNEDYTPVIVSDFKDENGKQTAWLGAPI
VQQGYLHSYAMFRLPINGITKLIADLNKSSNIQTLLVGDDHLPRSLAHSQESINLSLDVVDKALAGETAVGTFDNTLDQA
IIAAYTPIELKYATWALVVELPEKEAFARIHQLEKIFVIVMLTAIILVVVASHYLSNFITSPLLKLTWAAEKVSAGDLDE
TMINTERKDEIGRLAVSFERMQRSIREKMQLIKSQNDELEDNLKTIQKQNEELQLANKLKDEFLATTSHELRTPLHGMVG
IAEALISGANGPIPANQKYQLDIIINSGQRLATLVDDLLDYHKMRYGSLDIKKSAVDLSAATSLVLELSHHLLGNKPIRI
INQVPSDLGLVSSDPQRLEQVMYNLVGNAIKYTSEGKIVISASVIDDNIRVQVVDTGQGIPAEYLEHIFEPLIQAGQDAS
NYRQGAGLGLSISRQLIELMGGSLYVSSQPMLGTTFSFTLPLATQDELDSYNESGHYSHFQAPDLIDNSQQENSVISENP
DGPLLVIADDEPVNLRVLDSFLKLEGYRVRTACDGPETIELIEKEKPELLLLDIMMPGMSGYQVCEALRKQYDHAQLPII
MLTALNQAEDRVRGFEAGANDYLSKPFNKQELAARITAHLSASKAEQRRLENDQLQLELKHRAMVEANLLETQGRLLEQL
ESAPEAIICIRDDQRIRFANEAAAKLFRRGQEQLKRSMADEIIAPKYLKVEQAHYCGDIDIYIDDTRQRIPSDILKLPEG
SGLDTMYIFNVGGGVNSNRINNLETAVEALSSYAFEGDKDKLQQLKELGGEFTRLADKATGEGKNKQELMREVLVDAMTN
AIIYWESVTGETKFAFAEKSGLWRVYLDRSTLQTRTLDKYLRVETLPKTPRWRTVLSSIEFILEHCKEQTPERTHIEMLR
DKLQKLLTS

Nucleotide


Download         Length: 3390 bp        

>NTDB_id=91697 OCV19_RS02885 WP_065676704.1 588703..592092(-) (chiS) [Vibrio celticus strain CECT 7224]
ATGTTTAGATTCTATCGTAAGCAGAAGTTTAAGCGCCTTCAAAATACCCTAATGCTGGCATTTCTTGTCCTCAGTATTAC
CCCTGTGACACTTATCGCGATATTTTTCCTCCAATCGCACAGTCAGGATCTTCAGGAACAAAGCACCTCACACCTTGTTT
CGGTTCGTGATACTAAGCAACAGCAAATTGTCGATTACCTACAAGCTCAAGAATCCCAAGTGATGGGCTTTGTTCGCTCA
GAATTGGCCAATGCCAGTGGCGGGCGATTTTATGGTTTGATCAATGCATTCCAACGATTGGGGTTAGATATTGACGAGGC
TCGCGGTAATGCGCAGCAGCGCTACATTCAGGGGTCTGGCGATCAAATCAAAACGTCGATTCTTCCAGAGTCCAGCAGCT
TTATTGGCAGCGAACGTTATCGCTTACTGCACAAGCGCTACCATAATGCTTACCTAGAACTGCTTAAACGCTCTGATTTT
GACGATATTCTCTTAGTTGATATCAACGGTAACGTTGCTTATTCCGTCTTTAAAAATGACGATTACGGCACCAATCTGCT
GACTGGAAAATACAAGGATTCCAACCTAGGTATTACCTTTCAACGACTAGCCAAAGACGTAACCGACCGACGTAAATCTA
ACGAAGATTACACGCCGGTTATCGTTTCTGACTTTAAAGACGAGAATGGCAAACAGACCGCATGGTTAGGCGCACCTATT
GTTCAACAAGGCTACCTGCACAGCTACGCGATGTTTAGGCTGCCAATCAACGGCATTACTAAGCTGATTGCGGATCTCAA
CAAGAGTTCGAATATTCAAACGCTGCTTGTGGGTGATGATCACCTGCCGCGTAGCCTTGCTCATTCACAAGAGTCTATCA
ATTTGAGCCTAGACGTTGTCGATAAAGCATTGGCTGGTGAAACGGCGGTTGGTACCTTCGACAACACCCTAGATCAAGCG
ATCATCGCGGCATATACGCCAATTGAGCTGAAATACGCAACATGGGCTTTGGTGGTTGAACTGCCAGAGAAAGAGGCGTT
TGCCCGAATTCATCAGCTAGAGAAGATCTTCGTGATCGTGATGCTAACGGCGATCATTCTCGTCGTTGTTGCATCGCACT
ACCTGTCTAACTTCATCACATCCCCACTACTTAAACTGACGTGGGCTGCCGAGAAAGTATCGGCGGGTGATCTCGATGAA
ACCATGATCAATACCGAGCGCAAAGATGAGATAGGCCGACTCGCGGTGAGCTTCGAAAGAATGCAGCGCTCGATTCGTGA
AAAAATGCAGCTCATCAAAAGTCAAAATGATGAGCTTGAGGACAACCTTAAGACCATTCAAAAGCAAAACGAAGAGTTGC
AACTGGCCAACAAACTTAAAGATGAGTTCTTAGCGACTACTTCACACGAATTGAGAACACCACTGCATGGCATGGTGGGT
ATCGCTGAAGCGTTGATATCTGGAGCAAACGGTCCTATTCCGGCAAATCAGAAGTATCAGTTGGATATCATCATCAATAG
TGGCCAAAGATTGGCAACGCTGGTTGATGACCTGCTTGATTATCACAAGATGCGCTATGGCAGCTTAGACATTAAGAAGT
CAGCCGTTGATTTATCTGCAGCCACCAGCTTGGTCCTAGAGTTGTCTCATCACCTATTGGGCAATAAGCCAATCCGTATT
ATTAACCAAGTCCCAAGTGATTTAGGTCTGGTTTCATCGGATCCTCAACGACTTGAGCAAGTGATGTATAACTTGGTCGG
CAATGCCATCAAGTACACCTCAGAAGGTAAGATTGTTATCTCTGCCAGCGTTATCGACGACAACATTCGTGTACAAGTTG
TCGATACTGGCCAAGGTATACCGGCCGAGTACCTTGAGCACATCTTTGAGCCATTGATTCAAGCAGGCCAAGATGCGAGT
AACTACCGCCAAGGTGCAGGGCTTGGACTATCGATCAGCCGTCAGTTGATTGAGCTAATGGGTGGTTCACTGTACGTAAG
TAGCCAACCAATGCTTGGCACTACGTTTAGCTTTACCCTACCTCTAGCGACTCAAGATGAGCTGGACAGCTACAACGAAT
CAGGTCACTACTCGCACTTCCAAGCGCCTGATTTAATTGATAACAGCCAACAAGAAAATAGTGTTATCAGTGAGAACCCA
GATGGCCCGTTACTGGTTATCGCCGATGATGAGCCGGTTAACCTGCGAGTATTAGACAGCTTCTTGAAATTAGAAGGTTA
TCGAGTACGTACTGCATGTGATGGCCCTGAAACCATTGAACTGATTGAGAAAGAGAAGCCAGAGCTGCTTCTACTCGACA
TCATGATGCCAGGAATGAGCGGCTATCAGGTTTGTGAAGCACTGCGTAAGCAATACGATCATGCTCAGTTGCCAATCATC
ATGCTAACGGCACTCAACCAAGCAGAAGACCGTGTTCGAGGTTTCGAAGCGGGTGCCAATGACTATTTATCTAAACCGTT
CAACAAACAAGAACTGGCGGCTCGAATTACAGCGCATCTTTCAGCAAGTAAAGCTGAACAAAGACGCCTTGAAAACGACC
AACTGCAACTCGAGCTCAAACATAGAGCGATGGTTGAAGCTAACTTGCTAGAAACTCAAGGCCGCTTATTGGAGCAACTT
GAATCGGCACCTGAAGCCATCATCTGTATTCGTGATGACCAACGCATTCGCTTTGCTAACGAAGCTGCCGCGAAGCTATT
CAGACGCGGACAGGAACAACTTAAACGCTCAATGGCCGACGAGATCATTGCGCCTAAATACCTTAAAGTGGAACAAGCCC
ACTACTGCGGTGATATTGATATCTATATAGACGATACACGTCAGCGCATACCGAGTGACATCCTTAAGCTACCTGAAGGC
TCAGGGCTCGACACCATGTACATCTTCAATGTCGGTGGTGGCGTTAACTCCAACCGAATCAATAACCTTGAAACGGCGGT
TGAGGCTCTTTCTAGTTATGCCTTTGAAGGCGACAAAGATAAGTTACAGCAGCTTAAAGAGCTTGGCGGAGAATTTACTC
GTCTTGCTGACAAGGCAACCGGTGAAGGTAAAAACAAGCAAGAGTTAATGCGCGAGGTACTGGTCGATGCGATGACTAAT
GCCATCATCTACTGGGAATCAGTGACTGGTGAAACCAAGTTCGCTTTCGCCGAGAAGAGTGGCTTGTGGCGCGTCTACTT
AGACCGCAGTACGCTGCAAACTCGAACGCTGGACAAATACCTACGCGTAGAAACCCTACCGAAAACCCCTCGCTGGCGAA
CGGTACTGAGCTCAATCGAATTCATACTGGAACACTGTAAAGAACAGACGCCAGAAAGAACCCATATTGAGATGCTAAGA
GATAAACTTCAGAAACTACTGACCAGTTAA


Secondary structure


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



3D structure


Source ID Structure
  AlphaFold DB A0A1C3JFG0

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

76.616

100

0.766


Multiple sequence alignment