Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   AL536_RS25425 Genome accession   NZ_CP014034
Coordinates   566233..568800 (+) Length   855 a.a.
NCBI ID   WP_061055542.1    Uniprot ID   -
Organism   Vibrio fluvialis strain ATCC 33809     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 561233..573800
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  AL536_RS25395 (AL536_02715) - 561956..562273 (-) 318 WP_020329287.1 DUF496 family protein -
  AL536_RS25400 (AL536_02720) - 562463..562660 (+) 198 WP_020329288.1 hypothetical protein -
  AL536_RS25405 (AL536_02725) - 562705..563340 (+) 636 WP_061055540.1 YceH family protein -
  AL536_RS25410 (AL536_02730) - 563351..563632 (+) 282 WP_047457986.1 GIY-YIG nuclease family protein -
  AL536_RS25415 (AL536_02735) - 563746..564903 (+) 1158 WP_061055541.1 conjugal transfer protein TraF -
  AL536_RS25420 (AL536_02740) luxP 565114..566211 (+) 1098 WP_024375537.1 autoinducer 2-binding periplasmic protein LuxP Regulator
  AL536_RS25425 (AL536_02745) luxQ 566233..568800 (+) 2568 WP_061055542.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  AL536_RS25430 (AL536_02750) - 568806..569486 (-) 681 WP_020433710.1 flagellar brake protein -
  AL536_RS25435 (AL536_02755) - 569621..570145 (-) 525 WP_020329295.1 hypothetical protein -
  AL536_RS25440 (AL536_02760) - 570298..570672 (-) 375 WP_020433707.1 YgiW/YdeI family stress tolerance OB fold protein -
  AL536_RS25445 (AL536_02765) - 570839..572323 (+) 1485 WP_061055543.1 cobyric acid synthase -
  AL536_RS25450 (AL536_02770) modA 572320..573105 (+) 786 WP_061055544.1 molybdate ABC transporter substrate-binding protein -

Sequence


Protein


Download         Length: 855 a.a.        Molecular weight: 96288.72 Da        Isoelectric Point: 5.0345

>NTDB_id=167672 AL536_RS25425 WP_061055542.1 566233..568800(+) (luxQ) [Vibrio fluvialis strain ATCC 33809]
MGIRSSTVKQKRKIATFISRAIVTVLGALTLTVLFQSYQISSRLISQEVARTSTQTSSLIQNLFNYRLATLQIHQDSSAK
NASLIQALHGDTNDALDQYFLSVDQLELNNTPDIRFITDLKEMVWEDGNSQFYGVQSKELNAIIRKVSISSNWHLIQTPS
ELGTAYLLVRRSPIVDTATGEVIGFLYVSIVLNNNFALIETIRDSSNSQNLILTVGSEVLASTLNGDESYTAFDVLQDGM
SDMLYDKNMVAKTVLEVEGVPTYLSVYSVQSNENALSLRDNYYFWMVFALVAMVGVSILTRWWLQRRIESEIEGLMTYTH
KVAERGLDDFFPGSKIYEFDHFGRTLEHTFQRLSAQEKQFEDLFNFALSPTILWTADGELIRMNPSAQKHFLRNNAEYHS
LFSVLKRQLIPQIKLAAKGEILKEVNTEVDDKVFLWNLSPIVVENRIESIITQGQDVTSIAEAEKQSRIARREAEESARV
RADFLAKMSHELRTPLNGILGVSQLLKRTVKEKEQAEQVNVLCSSGEHLLAVLNDILDFSKIEQGKFRIQKTHFPLVDVV
SAIERIYRPLCREKGLDLSIDSNIDQTMIVNADQVRLNQILFNLLNNAVKFTHQGAISIQLNLLQEAGDTHLSISVMDTG
IGIRDADLNIIFEPFVQAESTNTREYGGSGLGLAIVHSLIEMLGGTVQVSSTFGVGTRFNIELPMERVTSEKQSIERKEA
ASRYELFDGSIHVLLVEDNHTNAFIAQAFCKKYGMVVDWVTDGLQAIEKVKEQRYDLILMDNQLPYLDGVDATRIIKQEM
GLEIPVYACTADGVVETQQAFMSAGAEYVIVKPIKEDTLHKALVNFKQDHTEWSV

Nucleotide


Download         Length: 2568 bp        

>NTDB_id=167672 AL536_RS25425 WP_061055542.1 566233..568800(+) (luxQ) [Vibrio fluvialis strain ATCC 33809]
GTGGGCATCAGATCAAGCACAGTCAAACAGAAAAGAAAAATCGCAACGTTCATCAGCCGAGCGATTGTGACGGTGCTTGG
TGCGCTGACGTTGACGGTACTGTTTCAAAGCTATCAAATCAGCAGTCGTTTGATCTCACAGGAAGTGGCCCGCACTTCAA
CTCAAACCTCCAGCCTGATTCAGAACCTGTTCAATTACCGATTGGCCACGCTGCAGATTCATCAGGACAGTAGCGCAAAA
AATGCCAGTTTGATTCAGGCTCTGCACGGCGATACTAATGACGCACTGGATCAGTACTTTCTCAGTGTTGACCAGCTTGA
ACTCAACAATACGCCGGATATTCGTTTCATTACCGACCTCAAAGAGATGGTATGGGAAGACGGCAACTCTCAGTTTTATG
GGGTTCAGTCGAAAGAGCTCAATGCCATCATCCGAAAAGTGTCAATCAGCAGTAACTGGCACCTAATCCAAACGCCTTCA
GAGTTAGGCACGGCCTACCTGCTTGTTCGCCGCTCACCGATTGTGGATACCGCAACCGGCGAAGTCATCGGTTTTCTCTA
CGTCAGTATTGTACTCAACAACAACTTTGCGTTAATCGAGACCATTCGTGACAGCAGTAACTCGCAGAACCTGATTTTGA
CCGTTGGTTCAGAAGTTTTGGCGTCGACTCTGAATGGAGACGAATCCTATACAGCGTTCGATGTGTTGCAGGACGGTATG
AGCGACATGCTGTACGACAAAAATATGGTGGCGAAAACGGTTCTGGAAGTGGAAGGGGTGCCGACGTATCTCAGTGTTTA
CTCAGTGCAGAGTAACGAGAATGCGTTGAGCCTACGTGACAATTACTATTTCTGGATGGTTTTTGCGCTGGTGGCGATGG
TGGGTGTCTCCATACTGACGCGTTGGTGGTTGCAGCGACGTATTGAGTCGGAAATTGAAGGGTTGATGACCTACACCCAT
AAAGTGGCGGAGCGTGGACTGGATGACTTCTTCCCAGGCTCAAAAATTTACGAATTTGATCACTTCGGCCGCACGCTGGA
ACACACATTCCAACGCCTGTCTGCGCAGGAAAAGCAATTTGAGGATCTGTTTAACTTCGCTTTGTCGCCAACCATTCTCT
GGACGGCAGACGGTGAGCTGATTCGTATGAACCCGTCGGCTCAGAAGCATTTTCTGCGCAATAATGCGGAATATCACTCG
CTGTTCTCTGTGCTGAAACGTCAGTTGATCCCGCAGATCAAACTGGCGGCAAAAGGCGAGATTCTCAAAGAAGTGAACAC
CGAAGTTGACGACAAAGTGTTCCTGTGGAACCTGTCGCCGATTGTGGTGGAGAACCGTATCGAATCGATTATTACTCAGG
GCCAGGATGTCACTTCGATTGCGGAAGCGGAAAAGCAGAGCCGTATTGCACGCAGAGAAGCGGAAGAGTCGGCACGCGTC
AGAGCGGATTTCCTCGCGAAAATGAGCCATGAGCTGAGAACGCCACTGAATGGGATTCTGGGTGTGTCTCAACTCCTTAA
GCGTACAGTGAAGGAAAAAGAGCAGGCCGAGCAGGTTAATGTTTTGTGCAGCAGTGGTGAACATCTGCTGGCAGTGCTGA
ATGACATTCTGGATTTCTCAAAGATAGAGCAGGGTAAATTCCGGATTCAGAAGACCCATTTCCCGTTGGTCGATGTGGTG
TCGGCCATTGAACGAATTTATCGTCCATTGTGTCGTGAGAAAGGCTTGGATCTCTCGATTGACAGCAATATCGACCAAAC
AATGATTGTAAATGCGGATCAGGTTCGGCTGAATCAGATTCTGTTTAATCTGCTCAATAACGCCGTGAAGTTTACCCATC
AGGGCGCCATCAGCATTCAGCTGAATCTGTTGCAAGAGGCGGGCGACACTCACCTGTCCATTTCGGTCATGGACACAGGT
ATTGGCATTCGTGATGCCGATTTGAATATCATCTTTGAGCCGTTTGTTCAGGCAGAATCGACCAATACCCGCGAATATGG
CGGCAGTGGATTGGGGCTGGCCATTGTGCACAGCCTGATTGAAATGCTTGGCGGCACGGTGCAGGTCAGCTCGACGTTTG
GTGTAGGCACGCGTTTTAATATCGAATTGCCGATGGAACGTGTTACCTCTGAAAAACAGTCGATTGAGCGTAAAGAAGCC
GCATCACGTTACGAGCTGTTCGATGGCAGCATTCATGTTCTGCTGGTTGAAGACAACCATACCAACGCGTTTATCGCACA
AGCCTTCTGCAAAAAATATGGCATGGTCGTCGACTGGGTCACGGATGGATTGCAGGCGATAGAAAAGGTCAAAGAGCAGC
GTTACGATCTGATTCTGATGGACAACCAACTCCCGTATCTCGACGGTGTGGATGCCACGCGCATCATCAAACAAGAAATG
GGCTTAGAAATACCAGTTTACGCCTGTACCGCAGATGGCGTGGTGGAAACTCAGCAAGCGTTTATGTCTGCCGGTGCAGA
ATACGTGATCGTCAAGCCGATCAAAGAAGATACGCTGCACAAAGCATTGGTGAACTTTAAACAAGACCATACCGAGTGGT
CTGTGTAA


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

63.498

99.649

0.633


Multiple sequence alignment