Detailed information    

insolico Bioinformatically predicted

Overview


Name   tfoS   Type   Regulator
Locus tag   VC395_RS10920 Genome accession   NC_012582
Coordinates   2321528..2324872 (-) Length   1114 a.a.
NCBI ID   WP_001911421.1    Uniprot ID   -
Organism   Vibrio cholerae O395     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 2316528..2329872
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  VC395_RS10900 (VC395_2190) - 2317336..2317764 (+) 429 WP_000929906.1 HIT domain-containing protein -
  VC395_RS10905 (VC395_2191) - 2318026..2318256 (-) 231 WP_000602538.1 FeoC-like transcriptional regulator -
  VC395_RS10910 (VC395_2192) feoB 2318253..2320529 (-) 2277 WP_000877243.1 Fe(2+) transporter permease subunit FeoB -
  VC395_RS10915 (VC395_2193) - 2320526..2320756 (-) 231 WP_000777870.1 ferrous iron transport protein A -
  VC395_RS10920 (VC395_2195) tfoS 2321528..2324872 (-) 3345 WP_001911421.1 AraC family transcriptional regulator Regulator
  VC395_RS10925 (VC395_2196) znuA 2325075..2325959 (-) 885 WP_000952849.1 zinc ABC transporter substrate-binding protein ZnuA -
  VC395_RS10930 (VC395_2197) znuC 2326043..2326831 (+) 789 WP_000996146.1 zinc ABC transporter ATP-binding protein ZnuC -
  VC395_RS10935 (VC395_2198) znuB 2326824..2327606 (+) 783 WP_000571528.1 zinc ABC transporter permease subunit ZnuB -
  VC395_RS10940 (VC395_2199) sucD 2327713..2328585 (-) 873 WP_000025476.1 succinate--CoA ligase subunit alpha -
  VC395_RS10945 (VC395_2200) sucC 2328585..2329751 (-) 1167 WP_001048578.1 ADP-forming succinate--CoA ligase subunit beta -

Sequence


Protein


Download         Length: 1114 a.a.        Molecular weight: 126389.97 Da        Isoelectric Point: 6.7772

>NTDB_id=33930 VC395_RS10920 WP_001911421.1 2321528..2324872(-) (tfoS) [Vibrio cholerae O395]
MFRTLLYGCLLNILIPSLVLALDKSMSIFYPLPIQEQGKVIVAQNLYLGSDGGIWVHDVHGKVMYFDGQNVLPRRGSVLP
QLSSHIVYANSAFWAFEQHELFRTYPGGERELMLSLTPGTQIIQMGASNGMIWMVDGENFYSYEIRSGRVESLSLHELYQ
LNSASKVVINDAQFLVSKWALATNVGVYLSDEQGFAHVKNSGKHFIQKLYFSHKRRELLVGSKRGALVIDIENKRPPLDR
IGSSHVLSIAETEKEYWIGTEDGLFVYSFITGKIVQLESNNQDGYALLGKKIYAMVNDFQGGMWIGTDKGIFYYSLFGQQ
FTRYPAQALSNDGSKTPIGKIAALNSDGDYLAITAQGLYNFNFSDELRKHLIYPGKVNDFVIAQEHLWIATEKGLVRYNL
SRRSIDTPNLPLPLLQTAIQHLSLDSDGNLWGTSDYQIWSYSLSEKNYRDYGSEWMVKAFSPSRITLLAAVKDGIVIGTE
HGAYSLLEKQIRFDFSSHRYGEILQVAEDSSGHIWLVGSYGVFQWRKDQPEAVTVELIEENIQPLCIAESKQGMWLISTK
GISYYRNQELTKHFGAPYGLISNEFLSASCAVGEEQDNSSLIIGSQFGVVKTNTEELAVSNLPNIQVTFSQVSVNHTTKL
LGYRMSEPLKIAYGDSISFQFGALPSSRSQSLEYKLNDEQQWQRFDWALLNFDQLLPGKYRLKVRSANPTQRYRTEALFD
FEVLQPWYMTSIALVGYVLSVLGLLALALWWRTRMILAANRKLKAQVELKTSQLRHQSKIVLSNNHQLRKQLQLHHTILG
NVLDNIDASLRHLSSYAKVRAWSEFEAPFNKVKQELAQLHFMHRGDEDESKYHDLHLLIESALKSWQEEYSKALIKLTYS
GEPRFVEVRQFNLDVLFNAVLTDAIKRLYKHQELTIQLEVRNAQAVIVFSDFGAPIQNIDKTMVTLSGSSYPLEELVIRS
GGVLHVLALKERNVIELAWPLATLPELETIHKPEEGEQAAKVGIDEVEKEWLSKVEKLIELHYSDPNFTTSTAAQALYVS
ERSLQRRFKAATGKTFKESLNEVRLEKACQSLLSGAKIAQVAFDCGFNDPSYFSQRFKHHFGLSPSQFIEDQEN

Nucleotide


Download         Length: 3345 bp        

>NTDB_id=33930 VC395_RS10920 WP_001911421.1 2321528..2324872(-) (tfoS) [Vibrio cholerae O395]
GTGTTTCGCACATTGTTGTATGGCTGCTTGCTCAATATCCTGATCCCATCCTTGGTATTGGCATTAGATAAATCTATGTC
TATTTTCTATCCTTTGCCCATTCAAGAGCAGGGGAAAGTTATTGTTGCGCAAAATCTCTACCTCGGTAGTGATGGGGGGA
TTTGGGTACATGATGTTCATGGCAAAGTGATGTACTTTGATGGACAAAACGTCTTGCCTCGTCGTGGTTCTGTTCTGCCG
CAGTTGTCCAGTCATATTGTTTATGCGAACAGTGCATTTTGGGCTTTTGAGCAACACGAGTTGTTCAGAACCTATCCCGG
GGGAGAAAGAGAGCTGATGTTGAGCTTAACTCCGGGAACGCAGATTATTCAGATGGGGGCCTCAAATGGCATGATCTGGA
TGGTTGATGGGGAAAACTTCTATAGTTATGAGATCCGAAGTGGCCGCGTCGAATCCCTCTCGTTACATGAACTTTATCAG
CTCAATAGTGCCAGCAAGGTCGTGATTAACGATGCGCAGTTTTTAGTCTCGAAATGGGCTTTAGCGACTAATGTTGGGGT
GTATTTATCTGATGAACAAGGTTTTGCCCATGTAAAAAATTCTGGCAAGCACTTTATCCAAAAGCTCTATTTTTCCCATA
AGCGGCGAGAGCTGTTAGTTGGGTCTAAACGTGGCGCGTTAGTCATTGATATTGAAAATAAACGTCCACCACTGGATAGA
ATTGGTTCCTCCCATGTCCTCTCTATTGCGGAAACCGAGAAAGAGTACTGGATCGGTACAGAAGATGGGCTCTTTGTTTA
CTCTTTTATCACCGGGAAAATCGTGCAACTTGAGAGTAACAACCAAGATGGCTATGCCTTACTGGGCAAGAAAATCTACG
CCATGGTGAATGACTTTCAAGGTGGGATGTGGATAGGAACTGACAAGGGGATTTTTTATTACTCCCTATTTGGTCAGCAG
TTTACTCGGTATCCGGCGCAAGCATTATCTAACGACGGAAGTAAAACACCGATCGGTAAAATAGCCGCTCTTAACTCGGA
TGGAGACTATCTGGCGATAACCGCACAAGGCCTGTATAACTTTAATTTTTCAGATGAGCTACGTAAGCATCTTATCTATC
CAGGTAAAGTAAATGATTTTGTGATTGCCCAAGAGCATCTCTGGATCGCGACAGAGAAAGGTCTGGTTCGTTACAATCTC
AGTCGTCGTAGTATTGATACGCCCAATTTACCGCTCCCTTTGCTACAAACGGCTATTCAGCATCTGAGCTTAGATAGTGA
CGGTAACTTATGGGGGACAAGTGATTACCAAATATGGTCATACTCACTCTCTGAAAAAAATTATCGAGATTATGGTTCTG
AATGGATGGTGAAGGCTTTTTCTCCATCAAGGATCACTCTGCTTGCCGCAGTAAAAGACGGCATAGTGATTGGGACGGAA
CATGGCGCTTATTCCCTGCTTGAAAAACAGATCCGCTTTGATTTTTCGAGTCATCGCTATGGTGAGATTTTACAAGTTGC
TGAAGATTCTTCAGGCCACATTTGGCTTGTTGGCTCTTATGGGGTTTTTCAGTGGCGTAAAGATCAGCCCGAAGCTGTCA
CTGTCGAGTTAATTGAAGAGAATATACAGCCTTTGTGTATTGCTGAGTCTAAGCAGGGGATGTGGCTTATCTCCACCAAA
GGGATCAGTTATTACCGTAATCAAGAGCTCACTAAGCATTTTGGGGCTCCTTATGGACTGATCAGTAATGAGTTCTTGTC
TGCATCGTGTGCGGTGGGTGAGGAGCAAGATAACTCATCGTTGATCATAGGATCGCAATTTGGTGTAGTGAAAACCAATA
CAGAAGAATTAGCGGTGTCTAATTTGCCCAATATTCAGGTGACGTTTAGCCAAGTCAGCGTAAATCATACGACCAAGCTT
TTGGGGTATCGTATGTCCGAGCCACTGAAAATTGCTTATGGTGATTCGATCAGCTTTCAGTTTGGCGCTTTACCCTCTTC
ACGCAGCCAATCTTTAGAATACAAACTCAACGATGAACAGCAGTGGCAGCGCTTTGATTGGGCGCTGCTCAATTTTGATC
AACTTTTACCTGGTAAGTATCGTTTGAAAGTCCGTAGCGCTAATCCGACACAGCGATACCGAACTGAGGCCCTGTTTGAT
TTTGAAGTCTTACAGCCTTGGTATATGACCTCCATCGCGCTTGTCGGATATGTGCTGAGCGTGTTGGGGTTATTAGCACT
CGCTTTATGGTGGCGAACAAGAATGATATTGGCAGCTAACCGCAAACTCAAAGCGCAAGTGGAGCTCAAAACCAGTCAGT
TACGTCATCAAAGTAAAATTGTGCTGAGCAACAACCACCAACTTCGAAAGCAACTGCAGCTCCACCATACAATTCTTGGT
AACGTGTTAGACAATATTGATGCTTCATTGCGGCACTTATCTTCCTACGCCAAAGTACGAGCATGGAGTGAATTTGAAGC
ACCGTTCAACAAGGTGAAGCAAGAGTTGGCTCAACTGCATTTTATGCATCGCGGCGATGAGGATGAAAGCAAATATCATG
ATTTGCATCTTTTGATTGAGTCTGCATTGAAGAGTTGGCAGGAAGAGTACAGTAAAGCCTTGATTAAGCTAACTTACAGC
GGTGAGCCTCGCTTTGTGGAAGTCCGACAATTCAACCTTGATGTGTTATTTAATGCTGTATTAACGGATGCGATCAAACG
TTTGTATAAGCATCAAGAATTAACCATACAACTTGAAGTGAGAAATGCGCAGGCGGTTATCGTATTTTCTGATTTTGGTG
CCCCAATCCAAAACATAGACAAAACCATGGTGACGTTATCTGGTAGTAGTTATCCGCTTGAAGAGTTAGTCATTCGCAGT
GGTGGTGTATTGCATGTGCTCGCGTTGAAAGAGCGTAATGTGATTGAGTTAGCTTGGCCATTGGCAACCTTACCCGAGTT
AGAAACCATTCATAAACCAGAAGAAGGGGAACAGGCGGCTAAGGTTGGGATCGATGAGGTGGAGAAGGAGTGGCTAAGCA
AAGTCGAGAAACTGATTGAGCTGCATTATAGCGACCCCAATTTCACCACATCCACTGCAGCGCAGGCGCTTTATGTCTCT
GAACGCAGTTTACAGCGTCGCTTTAAAGCCGCGACAGGAAAAACCTTCAAAGAGTCGTTAAATGAGGTTCGCTTAGAAAA
AGCGTGTCAAAGCTTATTGAGTGGGGCGAAAATCGCACAAGTTGCCTTTGATTGCGGATTTAATGATCCCTCTTATTTCA
GTCAGCGTTTCAAACATCATTTTGGATTATCACCAAGCCAATTCATCGAAGATCAAGAAAACTAA

Domains


Predicted by InterproScan.

(1034-1109)


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
  tfoS Vibrio cholerae O1 biovar El Tor strain E7946

100

100

1


Multiple sequence alignment