Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   VEA_RS05225 Genome accession   NC_013456
Coordinates   1088665..1092051 (-) Length   1128 a.a.
NCBI ID   WP_006743287.1    Uniprot ID   -
Organism   Vibrio antiquarius     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 1083665..1097051
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  VEA_RS05210 (VEA_002584) - 1084020..1085045 (-) 1026 WP_005394707.1 ABC transporter permease -
  VEA_RS05215 (VEA_002585) - 1085048..1086034 (-) 987 WP_005394705.1 ABC transporter permease -
  VEA_RS05220 (VEA_002586) - 1086205..1087887 (-) 1683 WP_005394703.1 ABC transporter substrate-binding protein -
  VEA_RS05225 (VEA_002587) chiS 1088665..1092051 (-) 3387 WP_006743287.1 response regulator Regulator
  VEA_RS05230 (VEA_002588) rsmC 1092278..1093303 (-) 1026 WP_006743286.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  VEA_RS05235 (VEA_002589) - 1093380..1094465 (-) 1086 WP_006743285.1 AI-2E family transporter -
  VEA_RS05240 (VEA_002591) hemL 1094812..1096107 (-) 1296 WP_012841437.1 glutamate-1-semialdehyde 2,1-aminomutase -
  VEA_RS05245 (VEA_002592) erpA 1096354..1096695 (+) 342 WP_005380031.1 iron-sulfur cluster insertion protein ErpA -

Sequence


Protein


Download         Length: 1128 a.a.        Molecular weight: 127049.66 Da        Isoelectric Point: 5.4346

>NTDB_id=35645 VEA_RS05225 WP_006743287.1 1088665..1092051(-) (chiS) [Vibrio antiquarius]
MFKFYKKQKFKRLQSTLMTAFLVLSITPLTITAIFFLQSHSKDLQEQSTSHLLSVRDTKQQQIIDYFEARETEVMGFVRS
ELAYASGGRFYGLVNAFSRLGNDIEESRKNAQQRYIEGSGDQIKTSTLPESSNYVGSERYRLLHKRYHWAYLELLKRSDF
NDILLVDINGNVTYSINKDDNYGTNLLSGPYKDSALGKTFKRLADDVTERRKVNEDYTPVIVSDFELEGGKQVAWLGAPI
VQQGYLHSYAMFRLPNNGITKLAADANRESSINTLLVGNDHQPRTINTKQDDIKNSLEVIDKALSGAFGVGTYTNGLGEE
IIAAYAPIETRGVIWALVVQLPENEAFARIHQLEKLFVIAMLIAIILVVIASHYLSNFITSPLLKLTWAAEKVSAGDLDD
TTFNTVRKDEIGRLALSFERMQRSIREKIQTIKKQNEELESNIQIIQKQNDELQLADKLKDEFLATTSHELRTPLHGMVG
IAETLASGANGAIPASQKYQLDIIIKSGQRLANLVDDLLDYHKMRYGSMDIQKSAVSLASATRLVLELSSHLLGNKTIRI
INQVPADLKVVSADPQRLEQVLYNLIGNAIKYTSEGKIVISANVVDDHVRVQVVDTGQGIPAEHLEHIFEPLIQAGQDAS
RYRQGAGLGLSISRQLIELMGGSLYVSSQPMVGTTFSFTLPLASEEEIQTTQTLAAHGHFQIPEIDVENNEDLSLPENPD
GPLLYVADDEPVNLRVLESFLRLEGYRIRTVSDGPETLALVEQEKPELLLLDIMMPGMSGYQVCSELRETYDHAELPIIM
LTALSQTEDRVRGFEAGANDYLSKPFNKQELAARIQAHLTASQAEMRHMENKILESELRQRAAVEASLLETQGRLLEQLE
SAPEAIICLREDKRIRFANEAACKLFKRNLEQLKRSSADELIAPKYLTVKQPHYCGKIDIYIEDIRQNIEADILKLPEGS
GLDVMYIFNVGGGANAARIHNLETAVEVLSSYAFDGDKDQLQKLKELGGEFTRLADKALGNKKDKQELMREILVDAMTHA
LEYWESVTGESKFAFAEQSGLWRVYLDRSTLQTRTLDKYMRIETLPKTPRWRTVLSSIEFILEHCKEQSPERAYIEAQRD
KLQRLLTS

Nucleotide


Download         Length: 3387 bp        

>NTDB_id=35645 VEA_RS05225 WP_006743287.1 1088665..1092051(-) (chiS) [Vibrio antiquarius]
ATGTTTAAATTCTACAAAAAACAGAAATTTAAGCGCCTTCAGAGTACACTGATGACCGCATTTCTGGTGCTCAGTATCAC
ACCTCTTACTATTACTGCGATCTTTTTCCTACAGTCCCACAGTAAAGATCTGCAAGAGCAAAGCACCTCACACTTGTTGT
CTGTTAGAGATACAAAACAACAGCAAATTATCGACTACTTTGAGGCGCGGGAAACTGAAGTCATGGGCTTTGTGCGCTCT
GAACTGGCTTACGCCAGTGGTGGTCGATTCTACGGTCTCGTCAATGCTTTTAGTCGTTTAGGCAATGACATTGAAGAATC
TCGTAAAAATGCCCAACAGCGCTACATTGAAGGCAGCGGAGATCAAATCAAAACGTCAACGTTACCCGAGTCTTCCAACT
ATGTCGGAAGTGAACGTTACCGACTCTTACATAAACGTTACCACTGGGCCTACTTGGAGCTCCTCAAGCGCTCTGATTTT
AATGATATTTTGCTGGTCGATATCAACGGTAATGTCACCTACTCGATCAACAAAGACGATAACTACGGAACAAACTTATT
ATCAGGCCCCTACAAAGACTCAGCACTTGGCAAAACCTTCAAGCGTCTAGCTGATGACGTCACTGAACGCCGTAAGGTGA
ATGAAGACTACACCCCTGTGATTGTGTCTGATTTCGAACTGGAAGGTGGTAAACAAGTCGCTTGGTTAGGTGCTCCAATT
GTTCAGCAAGGCTACCTACACAGCTATGCTATGTTCCGCTTACCAAATAATGGCATCACGAAGTTAGCCGCAGACGCCAA
CCGAGAGTCATCCATTAACACCTTACTGGTTGGAAATGATCACCAACCTCGCACAATTAACACCAAGCAAGATGACATTA
AGAACAGCTTAGAAGTGATCGATAAAGCACTCTCTGGTGCATTTGGCGTCGGCACTTACACGAACGGTTTAGGTGAAGAG
ATCATCGCTGCTTATGCACCGATTGAAACGCGTGGTGTTATTTGGGCACTCGTCGTGCAATTACCAGAAAACGAAGCTTT
CGCTCGTATTCATCAACTAGAAAAACTGTTTGTTATCGCCATGCTGATCGCCATCATTCTAGTGGTAATCGCTTCCCATT
ATTTATCAAACTTTATTACTTCTCCGTTGCTGAAGTTAACTTGGGCTGCCGAAAAAGTGTCTGCCGGAGATCTTGATGAC
ACTACCTTTAATACGGTTCGCAAAGATGAAATTGGCCGTCTTGCGCTGAGTTTTGAACGAATGCAACGCTCTATTCGAGA
GAAAATTCAAACCATTAAGAAGCAAAATGAAGAGCTCGAGAGCAACATCCAGATCATTCAAAAACAAAATGATGAATTGC
AATTGGCCGACAAACTTAAAGATGAGTTCTTAGCCACCACTTCTCATGAACTTCGCACACCATTGCACGGCATGGTCGGA
ATCGCTGAGACTTTAGCGTCCGGCGCTAACGGTGCTATTCCTGCTAGCCAAAAATATCAGCTTGATATCATCATTAAAAG
TGGGCAACGTCTCGCAAACCTTGTTGATGACTTATTGGATTATCATAAAATGCGTTACGGAAGCATGGATATCCAGAAGT
CAGCGGTGAGTTTAGCCAGTGCAACGCGACTGGTACTAGAGCTTTCCAGCCATTTACTCGGAAATAAAACCATCCGTATC
ATCAACCAAGTACCAGCGGATTTGAAAGTGGTGTCTGCCGATCCTCAACGCCTTGAACAAGTGTTATATAACCTGATCGG
TAATGCGATTAAGTACACCTCAGAAGGTAAAATCGTTATCTCCGCCAATGTGGTTGATGATCATGTTCGTGTGCAAGTTG
TGGATACTGGGCAAGGTATTCCCGCAGAACATCTTGAACATATTTTCGAACCACTTATCCAAGCAGGACAAGACGCAAGT
CGCTATCGTCAAGGTGCGGGGCTCGGGCTTTCGATTAGCCGTCAATTGATTGAGTTGATGGGTGGCTCGTTATACGTCAG
CAGCCAGCCTATGGTCGGCACCACCTTCAGTTTCACGTTACCACTTGCCAGTGAAGAAGAGATCCAAACAACTCAAACCC
TTGCAGCGCACGGACACTTCCAGATTCCTGAAATCGATGTAGAGAACAATGAAGACTTATCACTGCCAGAGAATCCAGAC
GGCCCGTTACTGTATGTCGCTGACGATGAGCCAGTAAACCTGCGTGTGCTTGAGAGTTTCTTACGTTTAGAGGGCTATCG
CATACGTACCGTCTCTGATGGACCAGAAACATTAGCACTCGTTGAGCAGGAAAAACCGGAACTCCTGTTATTGGATATCA
TGATGCCAGGCATGAGCGGCTATCAAGTCTGCAGTGAATTACGTGAAACTTATGACCATGCCGAGCTACCTATCATTATG
CTAACCGCGCTTAGTCAAACAGAAGATCGTGTACGAGGCTTTGAAGCAGGAGCCAACGACTATTTGTCTAAGCCATTCAA
TAAACAAGAGCTAGCTGCGCGCATCCAAGCGCACTTAACGGCAAGCCAAGCTGAAATGCGCCACATGGAGAATAAGATAC
TTGAATCTGAACTTCGCCAACGAGCGGCTGTAGAGGCAAGCTTATTAGAAACTCAAGGGCGATTGTTGGAACAACTGGAA
TCGGCTCCTGAAGCGATTATCTGTTTGCGTGAAGATAAACGTATCCGGTTTGCTAATGAAGCTGCTTGCAAGCTATTCAA
GCGTAACTTAGAACAATTAAAACGTTCATCTGCCGATGAGTTGATTGCACCTAAGTATCTGACCGTCAAACAACCTCATT
ACTGTGGCAAGATTGATATCTATATTGAAGATATTCGTCAAAACATCGAAGCAGACATTCTTAAACTACCTGAAGGCTCA
GGCTTAGATGTCATGTATATCTTTAATGTTGGCGGAGGAGCCAATGCCGCTCGCATACACAACCTAGAAACCGCAGTAGA
GGTGCTTTCAAGTTATGCTTTTGATGGCGATAAAGACCAGCTGCAGAAGCTGAAAGAACTCGGTGGAGAGTTTACACGCC
TTGCAGACAAAGCGCTTGGTAACAAAAAAGACAAACAAGAGCTAATGCGAGAAATTCTGGTCGACGCAATGACACATGCC
TTAGAGTATTGGGAGTCAGTTACTGGTGAAAGTAAATTCGCATTTGCCGAACAAAGTGGCTTATGGCGCGTTTATCTTGA
CCGTAGCACTCTGCAAACACGCACTTTGGATAAATACATGCGTATAGAAACGCTGCCAAAAACGCCACGTTGGAGAACGG
TATTGAGCTCGATAGAATTCATCCTTGAACACTGTAAAGAACAGAGTCCTGAGCGTGCGTACATCGAAGCTCAACGAGAT
AAACTACAGCGACTGTTGACCAGCTAA


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

76.351

100

0.764


Multiple sequence alignment