Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   JV59_RS19705 Genome accession   NZ_CP009265
Coordinates   779695..782265 (-) Length   856 a.a.
NCBI ID   WP_040121666.1    Uniprot ID   -
Organism   Vibrio coralliilyticus strain OCN014     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 774695..787265
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  JV59_RS27255 - 775337..775498 (+) 162 WP_006961073.1 hypothetical protein -
  JV59_RS19685 (JV59_19405) - 775555..775833 (+) 279 WP_006961074.1 hypothetical protein -
  JV59_RS19690 (JV59_19410) - 775924..777183 (+) 1260 WP_038161970.1 hydroxymethylglutaryl-CoA reductase -
  JV59_RS19695 (JV59_19415) glpD 777405..778937 (+) 1533 WP_038161412.1 glycerol-3-phosphate dehydrogenase -
  JV59_RS19700 (JV59_19420) - 779044..779709 (+) 666 WP_040121665.1 PilZ domain-containing protein -
  JV59_RS19705 (JV59_19425) luxQ 779695..782265 (-) 2571 WP_040121666.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  JV59_RS19710 (JV59_19430) luxP 782265..783362 (-) 1098 WP_040121667.1 autoinducer 2-binding periplasmic protein LuxP Regulator
  JV59_RS19715 (JV59_40355) traF 783511..784649 (-) 1139 Protein_704 conjugal transfer protein TraF -
  JV59_RS19720 (JV59_19440) - 784716..785033 (-) 318 WP_040121668.1 GIY-YIG nuclease family protein -
  JV59_RS19725 (JV59_19445) - 785033..785692 (-) 660 WP_040121669.1 YceH family protein -
  JV59_RS19730 (JV59_19450) - 785722..785916 (-) 195 WP_006961082.1 hypothetical protein -
  JV59_RS19735 (JV59_19455) - 786110..786430 (+) 321 WP_006961083.1 DUF496 family protein -
  JV59_RS19740 (JV59_19460) - 786725..786976 (+) 252 WP_029236068.1 YgjV family protein -

Sequence


Protein


Download         Length: 856 a.a.        Molecular weight: 95992.26 Da        Isoelectric Point: 4.7433

>NTDB_id=127877 JV59_RS19705 WP_040121666.1 779695..782265(-) (luxQ) [Vibrio coralliilyticus strain OCN014]
MALLTRRGSKSRLATLLTRSIFLTIGVLSLVMVFQNYQVNRQVVSQEVARSKLQTQSLVQQIFNFRLKALEIQQDSYSRN
ESLVEAFAESNVNGLDRFFNGIDQAAPELAPDFRFITAETEVVWDDSNYQFYGISPDQLSHLSDDMTTGGSWHLSQTPSL
LGTRYLMVRRVPIINMASGEVLGYLHIGVVMNNNFALINALLRGSNADQILLSVGSEVIASSTKDKDFRHIEWLEESALD
FTASKYMVSKTDLTISNVATFLSIYTIQDNQSIVILMRSHYIWVAVAGLLLVFIAIYSRLWLGKRVSKELANLMRYTEST
VEIKDASKFPGSPIEEFDQIGQSFELSFQRLSEQEKQFADLFNFSLSPITLWDVEGKLIRSNPAAERSFRVEMGDEQNDY
QLLVEKLGPHIRMCAKGATLTGINIAIREKTYRWNLSPIFVDKGINNIMAQGQDVTSFVDAEIQSQAARKEAEESARVRA
DFLAKMSHELRTPLNGILGVSQLLKGKISNTDDIEHLDVLCNSGEHLLAVLNDILDFSKIEQGKFHIQSADFRLVELISA
VEKIYTPLCDEKGIGFVVETNVSNNTFAHSDQVRLNQILFNLVSNAIKFTHEGEVTVSLFCDGESPESRLNISVRDTGIG
IERERISHIFEPFVQAEATTTREYGGSGLGLAIVHSLVEMLNGQIEIESSIGCGTKFSLSVPIELTESVEQVETSTFLIE
PENLFDRTLNVLLVEDNHTNAFIAKAFCEKYGMDVSWVQDGHNAIDHLKKSDNVDLILMDNQLPNLGGIETTKIIREDLK
LDIPIFACTADGMQDTKRAFLSVGADYVIVKPIKELALNQAFIHYKEEFLTKLEEC

Nucleotide


Download         Length: 2571 bp        

>NTDB_id=127877 JV59_RS19705 WP_040121666.1 779695..782265(-) (luxQ) [Vibrio coralliilyticus strain OCN014]
ATGGCATTGTTAACGAGGCGAGGCAGCAAAAGTCGTCTCGCCACATTACTTACCCGTTCTATATTCCTCACTATCGGTGT
CTTATCGTTGGTGATGGTGTTCCAGAACTATCAAGTAAATCGCCAGGTTGTCTCCCAAGAGGTGGCACGCTCAAAGCTGC
AAACGCAAAGCTTAGTGCAGCAAATTTTCAATTTCCGACTTAAAGCCCTCGAAATCCAGCAAGATAGTTACAGTCGCAAT
GAATCTTTGGTTGAGGCTTTTGCTGAATCTAATGTAAATGGACTGGATCGCTTTTTTAATGGTATTGACCAAGCTGCCCC
AGAGTTGGCGCCTGATTTTCGTTTTATCACAGCGGAAACAGAAGTCGTCTGGGATGATTCTAATTACCAGTTCTATGGTA
TCTCACCCGATCAGCTTTCTCATCTAAGTGATGATATGACCACAGGTGGCAGTTGGCACTTGTCACAAACTCCATCCTTG
TTAGGTACGCGTTATCTGATGGTTCGTCGGGTGCCTATCATTAACATGGCTTCTGGCGAAGTATTGGGTTATCTCCACAT
TGGCGTTGTGATGAACAATAACTTTGCGTTGATCAATGCTCTATTGAGAGGTAGTAACGCAGATCAAATCCTGCTTTCTG
TTGGCTCAGAAGTGATCGCGTCGAGCACCAAAGACAAAGATTTCCGGCACATCGAATGGCTTGAAGAGTCTGCGTTGGAT
TTCACCGCCAGTAAATACATGGTATCGAAGACAGACCTGACCATTAGCAATGTGGCAACCTTTCTATCGATTTACACCAT
TCAGGATAATCAATCTATCGTGATCCTTATGCGAAGCCACTATATATGGGTGGCAGTAGCAGGGTTACTTTTGGTTTTCA
TTGCGATTTATAGCCGCTTGTGGCTTGGAAAACGTGTATCGAAAGAACTCGCTAACTTAATGCGCTATACCGAAAGTACG
GTCGAAATTAAAGATGCCAGTAAGTTTCCTGGCTCTCCGATTGAAGAATTTGATCAAATTGGTCAATCATTTGAACTGTC
ATTCCAACGTTTAAGCGAGCAAGAAAAGCAATTTGCTGATTTGTTCAATTTCTCCCTTTCTCCCATTACTCTTTGGGATG
TCGAAGGAAAACTGATTAGAAGCAACCCAGCCGCAGAGCGCAGTTTTCGTGTAGAAATGGGTGATGAGCAAAATGATTAT
CAGCTTTTGGTTGAGAAGCTCGGGCCACATATTCGCATGTGTGCGAAAGGAGCAACGCTAACGGGTATTAATATTGCCAT
TAGAGAGAAAACTTATCGCTGGAACCTTTCCCCCATCTTTGTCGATAAGGGTATTAACAATATCATGGCGCAAGGTCAGG
ATGTGACCAGCTTTGTCGATGCTGAGATTCAAAGCCAAGCGGCAAGAAAAGAAGCTGAAGAATCTGCAAGAGTACGGGCG
GATTTCTTAGCTAAGATGAGCCATGAATTGCGGACGCCACTTAACGGAATTTTAGGCGTTTCCCAGTTGCTTAAAGGGAA
AATATCTAATACAGACGATATAGAGCATTTAGACGTACTGTGTAACAGCGGTGAACACCTGCTTGCGGTTTTGAATGACA
TCCTCGATTTTTCGAAGATTGAGCAGGGCAAGTTCCATATTCAATCTGCCGATTTCCGCTTGGTCGAATTGATAAGCGCT
GTCGAGAAAATCTATACGCCATTGTGTGATGAAAAAGGTATTGGATTTGTTGTTGAAACTAATGTCAGCAATAACACTTT
CGCTCATAGTGATCAGGTCAGGTTGAATCAAATCTTGTTTAACTTGGTCAGTAACGCAATTAAGTTTACTCACGAAGGTG
AGGTAACGGTGTCACTATTTTGTGATGGTGAAAGTCCAGAATCGCGCTTGAACATCAGCGTTAGAGATACGGGGATCGGC
ATTGAACGTGAGCGTATTTCTCATATCTTTGAACCTTTCGTGCAAGCCGAAGCGACGACAACGCGCGAATATGGCGGAAG
TGGACTTGGTTTAGCGATAGTTCATAGTTTAGTCGAGATGCTAAATGGACAAATTGAGATTGAAAGTTCTATAGGCTGTG
GGACTAAATTCAGCTTATCTGTACCGATTGAACTGACTGAGTCAGTTGAGCAGGTTGAAACCAGTACTTTCCTGATTGAG
CCTGAGAATCTTTTTGATAGAACATTGAATGTTTTACTTGTCGAAGACAATCACACCAATGCATTTATTGCGAAGGCGTT
CTGTGAAAAATATGGAATGGACGTGTCTTGGGTTCAGGATGGGCATAATGCTATCGATCATCTGAAGAAATCGGATAACG
TCGATCTAATCTTGATGGATAATCAACTGCCAAATTTAGGTGGTATTGAAACGACTAAAATAATCCGCGAAGATTTGAAA
CTTGATATTCCTATCTTTGCCTGTACTGCTGACGGAATGCAAGACACCAAACGTGCGTTTTTGAGCGTTGGCGCCGACTA
TGTAATTGTCAAACCAATTAAAGAACTAGCTCTAAATCAGGCATTCATTCATTACAAAGAAGAATTTCTTACCAAGCTAG
AAGAGTGTTGA


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
  luxQ Vibrio cholerae strain A1552

49.344

98.014

0.484


Multiple sequence alignment