Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   VAA_RS12145 Genome accession   NC_015633
Coordinates   2659319..2662711 (+) Length   1130 a.a.
NCBI ID   WP_041945946.1    Uniprot ID   -
Organism   Vibrio anguillarum 775     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 2654319..2667711
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  VAA_RS12125 (VAA_00786) erpA 2654668..2655009 (-) 342 WP_026027518.1 iron-sulfur cluster insertion protein ErpA -
  VAA_RS12130 (VAA_00785) hemL 2655332..2656627 (+) 1296 WP_026028237.1 glutamate-1-semialdehyde 2,1-aminomutase -
  VAA_RS12135 (VAA_00784) - 2656906..2657991 (+) 1086 WP_013857635.1 AI-2E family transporter -
  VAA_RS12140 (VAA_00783) rsmC 2658076..2659119 (+) 1044 WP_013857636.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  VAA_RS12145 (VAA_00782) chiS 2659319..2662711 (+) 3393 WP_041945946.1 response regulator Regulator
  VAA_RS12150 (VAA_00780) - 2663447..2665117 (+) 1671 WP_013857639.1 ABC transporter substrate-binding protein -
  VAA_RS12155 (VAA_00779) - 2665284..2666270 (+) 987 WP_013857640.1 ABC transporter permease -
  VAA_RS12160 (VAA_00778) - 2666273..2667298 (+) 1026 WP_013857641.1 ABC transporter permease -

Sequence


Protein


Download         Length: 1130 a.a.        Molecular weight: 127950.65 Da        Isoelectric Point: 6.3250

>NTDB_id=41148 VAA_RS12145 WP_041945946.1 2659319..2662711(+) (chiS) [Vibrio anguillarum 775]
MFRFSRKQKFKRLQNTLMLAFLVLSITPLTVTAIFFLQSHTKDLQEQSTSHLLSVRDTKQQQVLDYLTAKESEVMGFVRS
ELAYASGGRFYGLVNAFQRLGLDIDQAREHAQQRYIPGSGDQIKTSILPQSSSYVGSERYRLLHKRYHWAYLELLKRSDF
DDILLVDLDGDVVYSVYKHDNYGTNLLTGKYKDSNLGKTFRQLEQQVGEQRKINEEYTPVIISDFSQQEGQSVAWLGAPI
IQQGYLHSYAMFRLPNNGITKLVADTNATSQIRTLLVGQDHHSRILSYTQQEIETSQKVINLALSGLSAVGTYTNTLNEK
TIAAYAPVANKNINWALVVEIPEKEAYARVHQLEKLFIFAMLTAIILVVIASHYLSNFITSPLLKLTWAAEKVSAGDLDE
NVINTDRKDEIGRLAVSFERMQRSIREKMQLIKAQNKELESNIQLIRKQNDELHLANKLKDEFLATTSHELRTPLHGMVG
IAEALISGSSGTITADHRYQLGIIISSGQRLTNLVDDLLDYHKMRYGSLDIKQCAVDLSGATRLVLELSNHLLNKKPIRV
INQIPDECIWVSADPQRLEQVLYNLVGNAIKYTTEGKIVISANVVDDKIRVQVVDTGQGIPAEQLEHIFEPLIQAGQDAS
RYRQGAGLGLSISRQLIELMQGTLYVSSQPMVGTTFSFTLPLASKAEIESTSYMEAGHFQSPTISDIELPEMHSLPENKE
GPVLLIADDEPVNLRVLDSFLRLEGYQVRTAKDGNEVISAVEKEKPELLLLDIMMPGLSGYQVCEKLRETYDHAELPIIM
LTALNQTDDRVRGFAAGANDYLSKPFNKQELAARITAHLTASKAEQRRIENNQLQQELKHRAMVEASLLETQGRLLEQLE
SAPEAIICIRDDHKIRFANEAAARLFRRSQEQLKRSNAEELIAPKYLVVEQEHYCGNIDIYVEDTRQHMSADVLRLPDGS
RLQAMYIFNVGGNINAARINNLETAIEALSSYAFEGDKEKLQQLKELGGEFTRIADKVSGESQSKQDLMREVLVEAMTSA
LDYWERVSNQSKFTFAEQSGLWRVYLDRSTLQTRTLDKYLRIETLPKTPRWRTVLNSLDYILDHCQEHGPERSHIEAQRD
KLQKLLTSSL

Nucleotide


Download         Length: 3393 bp        

>NTDB_id=41148 VAA_RS12145 WP_041945946.1 2659319..2662711(+) (chiS) [Vibrio anguillarum 775]
ATGTTTAGGTTCTCTCGTAAGCAAAAATTTAAGCGCCTGCAAAATACTCTTATGCTGGCTTTTCTCGTTTTGAGCATCAC
GCCTTTAACTGTGACTGCCATTTTTTTTCTGCAATCACACACTAAAGATCTTCAAGAACAAAGCACGTCTCACTTATTGT
CAGTCAGAGACACTAAGCAACAGCAAGTTCTCGATTACCTCACGGCCAAAGAATCAGAAGTGATGGGGTTTGTCCGTTCA
GAGTTAGCTTATGCTAGTGGAGGGCGCTTTTACGGCTTAGTCAATGCGTTCCAAAGACTTGGTCTGGATATTGATCAAGC
TCGTGAGCATGCCCAGCAGCGTTATATTCCTGGTTCTGGTGATCAGATAAAAACGTCAATATTGCCACAATCGAGCAGCT
ATGTAGGCAGTGAACGGTATCGCCTACTGCACAAACGCTATCATTGGGCGTATTTAGAACTGCTTAAACGTTCTGATTTT
GACGATATTTTACTGGTGGATCTCGATGGTGATGTCGTTTATTCCGTTTATAAGCACGACAACTATGGGACGAATTTACT
GACCGGAAAATACAAAGATAGCAATCTGGGTAAAACATTCCGTCAGTTAGAGCAGCAAGTTGGCGAACAACGAAAAATCA
ATGAAGAATATACACCAGTCATTATTTCTGATTTTTCACAACAAGAAGGGCAATCAGTTGCTTGGCTTGGCGCGCCCATT
ATTCAACAGGGCTACCTGCACAGCTACGCCATGTTCCGCCTACCAAACAATGGCATCACAAAGCTCGTTGCTGACACCAA
TGCGACATCGCAAATAAGGACTTTACTCGTCGGGCAAGATCATCATTCTCGAATACTCTCTTACACGCAGCAAGAAATCG
AGACTAGTCAAAAAGTGATCAATCTTGCGCTTTCTGGATTGAGTGCCGTTGGTACTTACACTAATACATTGAATGAGAAA
ACCATTGCCGCCTATGCACCTGTTGCAAACAAAAACATCAATTGGGCCTTGGTCGTAGAGATACCAGAAAAAGAGGCTTA
TGCGCGAGTTCATCAGCTTGAGAAGTTATTTATTTTCGCCATGCTAACCGCGATTATTTTAGTCGTCATCGCTTCACATT
ATCTCTCTAATTTTATTACCTCTCCCCTACTGAAGCTCACTTGGGCGGCAGAAAAAGTCTCAGCTGGGGATTTAGATGAA
AATGTTATCAATACCGATCGTAAAGATGAGATTGGTCGACTCGCAGTGAGTTTTGAACGTATGCAGCGTTCAATCCGAGA
AAAAATGCAGCTGATTAAAGCGCAAAATAAAGAGCTCGAAAGCAACATTCAATTAATCCGCAAACAGAACGATGAGTTGC
ATCTCGCTAACAAACTAAAAGATGAATTCCTAGCCACAACGTCACATGAATTAAGAACACCTCTACACGGTATGGTCGGT
ATTGCAGAAGCACTGATCTCTGGGTCAAGTGGAACTATCACCGCCGATCATCGTTATCAATTGGGCATAATCATCAGCAG
TGGACAACGGCTGACAAACTTGGTCGATGACTTACTCGATTACCATAAAATGCGCTATGGCAGCTTGGATATCAAACAGT
GTGCTGTTGATCTATCCGGCGCAACACGCTTAGTGTTAGAGCTGTCTAACCATCTACTCAACAAAAAGCCCATTCGCGTA
ATAAACCAAATCCCTGATGAATGCATTTGGGTCTCTGCCGATCCACAACGATTAGAGCAAGTGCTTTATAACCTTGTAGG
AAACGCCATTAAATATACGACTGAAGGGAAAATTGTCATTTCAGCCAATGTGGTTGATGACAAGATTCGTGTCCAAGTTG
TCGATACGGGACAAGGCATTCCTGCTGAACAACTTGAACACATTTTCGAACCACTGATTCAAGCAGGGCAAGATGCTAGT
CGTTATCGACAAGGCGCAGGCTTGGGCCTTTCGATCAGCCGTCAATTGATCGAATTAATGCAAGGAACGCTTTATGTCAG
TAGCCAACCTATGGTCGGTACGACATTCAGCTTTACCTTACCATTAGCATCAAAAGCGGAAATTGAGTCGACAAGCTATA
TGGAAGCTGGCCATTTCCAATCTCCGACCATTTCAGACATTGAACTGCCTGAAATGCATTCACTACCTGAAAATAAAGAA
GGCCCAGTGCTACTGATAGCAGATGATGAACCCGTCAATCTGCGTGTCCTAGACAGCTTCCTACGTTTAGAAGGCTATCA
AGTCCGCACCGCTAAAGATGGCAATGAAGTCATTAGCGCGGTCGAAAAAGAAAAACCGGAACTTCTACTGCTCGACATTA
TGATGCCAGGATTAAGCGGCTACCAAGTCTGTGAAAAGTTAAGAGAAACATACGATCATGCCGAGCTACCTATCATTATG
TTGACGGCATTAAATCAAACTGACGATAGAGTTCGTGGTTTTGCAGCGGGAGCGAACGATTACTTATCGAAACCTTTTAA
TAAGCAAGAGCTCGCTGCACGTATTACGGCGCATTTAACGGCCAGCAAAGCTGAACAAAGACGTATTGAGAACAACCAAC
TGCAACAAGAGCTGAAGCATAGAGCAATGGTAGAGGCCAGTTTATTGGAAACCCAAGGCCGTCTACTAGAGCAGCTTGAA
TCCGCTCCTGAGGCCATTATTTGCATTCGAGACGATCATAAAATCCGCTTTGCGAACGAAGCGGCTGCTCGGTTATTTAG
GCGCAGCCAAGAACAACTAAAGCGCTCAAATGCGGAAGAACTCATCGCCCCCAAATACTTAGTCGTCGAGCAAGAGCATT
ACTGCGGTAATATCGATATCTATGTCGAAGATACACGTCAACATATGTCTGCTGATGTGTTACGCCTACCGGATGGCTCT
AGGTTGCAGGCTATGTACATCTTTAACGTGGGTGGAAACATCAATGCAGCGCGCATCAATAACCTTGAAACCGCTATTGA
AGCGCTATCCAGTTACGCATTTGAAGGCGATAAAGAAAAACTGCAGCAGCTCAAAGAACTCGGTGGCGAGTTCACACGTA
TCGCCGACAAAGTATCGGGAGAGAGTCAATCTAAGCAAGATTTAATGCGCGAAGTACTGGTTGAAGCAATGACCAGTGCT
TTAGATTACTGGGAACGGGTCAGTAACCAAAGCAAGTTTACCTTTGCAGAGCAGAGTGGGCTATGGCGAGTGTATCTCGA
TAGAAGCACATTACAGACTCGGACACTAGACAAGTACTTACGTATCGAGACACTGCCTAAAACACCTCGCTGGCGTACCG
TTCTTAATTCGTTAGATTACATTCTTGATCATTGTCAGGAGCACGGCCCTGAACGCTCTCACATCGAAGCGCAGCGCGAT
AAATTGCAAAAGCTACTGACCTCATCACTCTAA


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

81.649

99.823

0.815


Multiple sequence alignment