Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxO   Type   Regulator
Locus tag   BCV20_RS04610 Genome accession   NZ_CP170007
Coordinates   966757..968145 (+) Length   462 a.a.
NCBI ID   WP_010437172.1    Uniprot ID   A0AAN0NB30
Organism   Vibrio cyclitrophicus strain 10N.286.54.F4     
Function   promote HapR production (predicted from homology)   
Competence regulation

Genomic Context


Location: 961757..973145
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  BCV20_RS04590 (BCV20_04590) rsxB 962177..962770 (-) 594 WP_004734040.1 electron transport complex subunit RsxB -
  BCV20_RS04595 (BCV20_04595) rsxA 962773..963351 (-) 579 WP_004734039.1 electron transport complex subunit RsxA -
  BCV20_RS04605 (BCV20_04605) uvrB 964424..966454 (+) 2031 WP_016788857.1 excinuclease ABC subunit UvrB -
  BCV20_RS04610 (BCV20_04610) luxO 966757..968145 (+) 1389 WP_010437172.1 quorum-sensing sigma-54 dependent transcriptional regulator LuxO Regulator
  BCV20_RS04615 (BCV20_04615) luxU 968170..968514 (+) 345 WP_010437174.1 quorum-sensing phosphorelay protein LuxU -
  BCV20_RS04620 (BCV20_04620) - 968595..969482 (-) 888 WP_010437175.1 YvcK family protein -
  BCV20_RS04625 (BCV20_04625) moaA 969818..970807 (+) 990 WP_010437176.1 GTP 3',8-cyclase MoaA -
  BCV20_RS04630 (BCV20_04630) moaB 970897..971409 (+) 513 WP_010437177.1 molybdenum cofactor biosynthesis protein B -
  BCV20_RS04635 (BCV20_04635) moaC 971422..971901 (+) 480 WP_004734026.1 cyclic pyranopterin monophosphate synthase MoaC -
  BCV20_RS04640 (BCV20_04640) moaD 971898..972143 (+) 246 WP_016767674.1 molybdopterin synthase sulfur carrier subunit -
  BCV20_RS04645 (BCV20_04645) moaE 972146..972619 (+) 474 WP_016767673.1 molybdopterin synthase catalytic subunit MoaE -

Sequence


Protein


Download         Length: 462 a.a.        Molecular weight: 51715.26 Da        Isoelectric Point: 6.0301

>NTDB_id=1054376 BCV20_RS04610 WP_010437172.1 966757..968145(+) (luxO) [Vibrio cyclitrophicus strain 10N.286.54.F4]
MQSKTLDNKSKYLLMVEDTASVAALYRSYLTPLEIDINIVGTGRDAIESLNHRIPDLILLDLRLPDMTGMDVLFAVKQKY
PEVPVIFMTAHGSIDTAVEAMRHGSQDFLIKPCEADRLRITVNNAIRKATKLKNSSENPGNQNYQGFIGSSQTMQQVYRT
IDSAASSKASIFITGESGTGKEVCAEAIHAASKRGDKPFIAINCAAIPKDLIESELFGHVKGAFTGAATDRQGAAELADG
GTLFLDELCEMDLELQTKLLRFIQTGTFQKVGSSKMKSVDVRFVCATNRDPWKEVQEGRFREDLYYRLYVIPLHLPPLRE
RGEDVIEIAYSLLGYMSVEEGKAFVRFAQEVLDRFNQYEWPGNVRQLQNVLRNVVVLNNGKEITLNMLPPPLNQPIESSL
RLKEMQNEDITVKDIFPLWITEKTAIEQAIKACDGNIPRAAGFLDVSPSTIYRKLQTWNAKQ

Nucleotide


Download         Length: 1389 bp        

>NTDB_id=1054376 BCV20_RS04610 WP_010437172.1 966757..968145(+) (luxO) [Vibrio cyclitrophicus strain 10N.286.54.F4]
ATGCAATCAAAAACGCTAGATAACAAATCAAAGTATTTGTTGATGGTGGAGGATACGGCTTCGGTCGCCGCTTTATATCG
CTCGTATCTTACACCGCTCGAAATTGATATCAACATTGTCGGCACAGGTCGCGATGCAATTGAGAGTTTGAATCATCGAA
TCCCTGACCTCATCTTATTAGATCTGCGCCTTCCTGATATGACGGGTATGGACGTACTATTTGCTGTAAAACAAAAATAC
CCAGAAGTCCCCGTTATCTTCATGACGGCTCACGGCTCTATCGATACCGCAGTAGAAGCCATGCGTCATGGTTCTCAAGA
TTTCCTTATTAAACCTTGTGAAGCCGATCGACTCCGTATAACGGTGAATAACGCGATACGCAAAGCCACTAAACTGAAGA
ATAGTTCTGAAAACCCGGGTAATCAAAACTATCAAGGATTCATCGGTAGTAGCCAAACCATGCAGCAGGTTTATCGAACT
ATCGATTCCGCGGCATCGAGTAAAGCGAGTATTTTCATTACCGGTGAAAGTGGTACCGGAAAAGAGGTGTGTGCAGAAGC
GATTCACGCGGCGAGTAAGCGTGGTGATAAGCCATTCATTGCGATTAACTGTGCGGCTATTCCTAAAGATTTAATCGAAA
GTGAGCTGTTTGGTCACGTAAAAGGTGCCTTTACTGGCGCTGCAACCGATCGTCAAGGTGCGGCTGAACTTGCCGATGGT
GGAACCTTGTTCCTCGATGAGTTGTGTGAGATGGATCTTGAGCTACAAACCAAGCTTTTGCGTTTTATTCAAACGGGTAC
TTTCCAAAAAGTAGGCTCTTCGAAGATGAAGAGTGTGGATGTTCGTTTTGTATGTGCAACCAACCGAGACCCTTGGAAAG
AAGTCCAAGAAGGTCGCTTTAGAGAAGATTTATACTACCGTTTATATGTAATTCCACTGCACCTACCGCCATTGCGTGAG
CGTGGCGAGGATGTTATCGAGATTGCATATTCACTGCTGGGCTACATGTCTGTTGAGGAAGGTAAGGCCTTTGTTCGTTT
TGCTCAGGAAGTGCTGGACCGCTTTAACCAATACGAGTGGCCGGGTAACGTTCGTCAGCTACAAAATGTGTTGCGAAACG
TGGTGGTACTGAACAATGGTAAAGAGATTACCCTGAACATGCTTCCACCTCCACTGAACCAGCCGATTGAGAGCAGTCTG
CGGTTGAAAGAGATGCAAAATGAAGACATCACTGTAAAAGACATTTTCCCATTGTGGATCACTGAAAAAACAGCGATTGA
ACAGGCCATAAAAGCATGTGATGGCAACATCCCTCGTGCGGCAGGCTTCTTAGATGTCAGTCCATCGACGATATATCGTA
AGTTACAAACGTGGAATGCGAAGCAGTAG


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
  luxO Vibrio cholerae strain A1552

86.607

96.97

0.84

  pilR Pseudomonas aeruginosa PAK

38.085

97.186

0.37


Multiple sequence alignment