Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxO   Type   Regulator
Locus tag   JHS83_RS10325 Genome accession   NZ_CP068622
Coordinates   2219634..2221037 (-) Length   467 a.a.
NCBI ID   WP_005461534.1    Uniprot ID   -
Organism   Vibrio parahaemolyticus strain LH24     
Function   promote HapR production (predicted from homology)   
Competence regulation

Genomic Context


Location: 2214634..2226037
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  JHS83_RS10290 (JHS83_10280) moaE 2215207..2215662 (-) 456 WP_005461480.1 molybdopterin synthase catalytic subunit MoaE -
  JHS83_RS10295 (JHS83_10285) moaD 2215664..2215921 (-) 258 WP_005461535.1 molybdopterin synthase sulfur carrier subunit -
  JHS83_RS10300 (JHS83_10290) moaC 2215918..2216397 (-) 480 WP_005461493.1 cyclic pyranopterin monophosphate synthase MoaC -
  JHS83_RS10305 (JHS83_10295) moaB 2216424..2216936 (-) 513 WP_025546080.1 molybdenum cofactor biosynthesis protein B -
  JHS83_RS10310 (JHS83_10300) moaA 2217038..2218027 (-) 990 WP_005461510.1 GTP 3',8-cyclase MoaA -
  JHS83_RS10315 (JHS83_10305) - 2218323..2219216 (+) 894 WP_005494500.1 YvcK family protein -
  JHS83_RS10320 (JHS83_10310) luxU 2219293..2219631 (-) 339 WP_021449858.1 quorum-sensing phosphorelay protein LuxU -
  JHS83_RS10325 (JHS83_10315) luxO 2219634..2221037 (-) 1404 WP_005461534.1 quorum-sensing sigma-54 dependent transcriptional regulator LuxO Regulator
  JHS83_RS10330 (JHS83_10320) uvrB 2221327..2223357 (-) 2031 WP_005494496.1 excinuclease ABC subunit UvrB -
  JHS83_RS10340 (JHS83_10330) rsxA 2224346..2224924 (+) 579 WP_005380762.1 electron transport complex subunit RsxA -
  JHS83_RS10345 (JHS83_10335) rsxB 2224928..2225524 (+) 597 WP_005480813.1 electron transport complex subunit RsxB -

Sequence


Protein


Download         Length: 467 a.a.        Molecular weight: 52173.71 Da        Isoelectric Point: 6.2547

>NTDB_id=529980 JHS83_RS10325 WP_005461534.1 2219634..2221037(-) (luxO) [Vibrio parahaemolyticus strain LH24]
MQQKTEGQKSRYLLMVEDTASVAALYRSYLTPLGIDINIVGTGRDAIESLNHRIPDLILLDLRLPDMTGMDVLHAVKKSH
PDVPIIFMTAHGSIDTAVEAMRHGSQDFLIKPCEADRLRVTVNNAIRKATKLKNEADNPGNQNYQGFIGSSQTMQQVYRT
IDSAASSKASIFITGESGTGKEVCAEAIHAASKRGDKPFIAINCAAIPKDLIESELFGHVKGAFTGAANDRQGAAELADG
GTLFLDELCEMDLDLQTKLLRFIQTGTFQKVGSSKMKSVDVRFVCATNRDPWKEVQEGRFREDLYYRLYVIPLHLPPLRE
RGEDVIEIAYSLLGYMSHEEGKNFVRFSQEVIDRFNSYEWPGNVRQLQNVLRNIVVLNNGKEITLDMLPPPLNQPLDRPS
VSKLIEPKAMTVSEIMPLWMTEKMAIEQAIEACDGNIPRAAGYLDVSPSTIYRKLQAWNGKEERQKV

Nucleotide


Download         Length: 1404 bp        

>NTDB_id=529980 JHS83_RS10325 WP_005461534.1 2219634..2221037(-) (luxO) [Vibrio parahaemolyticus strain LH24]
ATGCAACAAAAAACTGAAGGCCAAAAATCTCGTTACCTTCTGATGGTTGAGGATACAGCATCGGTTGCGGCGTTATACCG
CTCGTACCTCACGCCGTTAGGGATCGACATTAATATTGTCGGTACAGGTAGAGATGCCATTGAAAGTCTCAATCATCGAA
TTCCAGATCTTATTCTTCTCGATCTTCGTCTGCCTGATATGACGGGGATGGATGTTTTGCACGCCGTTAAAAAGAGTCAT
CCAGATGTGCCGATCATTTTCATGACGGCTCATGGCTCTATCGATACAGCGGTAGAAGCGATGCGTCATGGCTCTCAAGA
CTTTTTGATCAAACCGTGTGAAGCAGACCGTCTGCGTGTTACGGTCAACAACGCAATTCGCAAAGCAACTAAGCTAAAAA
ATGAAGCAGATAATCCGGGTAATCAGAATTACCAAGGTTTTATCGGCAGCAGCCAAACCATGCAGCAGGTCTATCGCACC
ATTGACTCTGCCGCTAGCAGTAAAGCGAGTATCTTTATTACTGGTGAAAGTGGTACGGGTAAAGAGGTATGCGCAGAAGC
CATCCACGCTGCAAGCAAACGTGGTGATAAGCCGTTTATTGCCATCAACTGTGCAGCCATACCTAAAGACTTAATTGAAA
GTGAACTATTTGGTCACGTAAAAGGGGCATTTACTGGTGCGGCAAATGACCGTCAAGGTGCCGCTGAGTTAGCCGATGGT
GGCACGTTGTTCCTCGATGAATTGTGTGAAATGGATTTGGACTTACAAACCAAATTATTGCGATTCATCCAAACCGGTAC
TTTCCAAAAAGTAGGCTCTTCAAAAATGAAGAGTGTGGACGTGCGCTTCGTTTGTGCGACCAACCGAGACCCTTGGAAAG
AAGTTCAAGAAGGGCGTTTCCGCGAAGACTTATACTACCGTTTATACGTGATTCCTTTGCATCTTCCGCCTCTTCGCGAA
CGTGGTGAAGATGTGATTGAAATTGCGTACTCACTGTTAGGCTACATGTCTCATGAAGAGGGCAAAAACTTTGTCCGCTT
TTCTCAAGAAGTGATTGATCGCTTTAACAGTTATGAGTGGCCGGGTAACGTCCGACAACTACAAAACGTATTGCGTAATA
TCGTGGTGCTTAACAACGGCAAAGAAATTACGTTAGATATGCTGCCACCGCCGCTGAATCAACCATTAGATAGGCCATCT
GTATCTAAACTGATTGAGCCAAAAGCGATGACTGTTTCAGAGATCATGCCGCTATGGATGACAGAGAAAATGGCGATTGA
ACAAGCGATTGAGGCGTGTGACGGTAATATTCCAAGAGCCGCTGGGTATCTTGATGTCAGTCCGTCAACGATTTACCGCA
AACTACAAGCATGGAATGGTAAAGAAGAGCGGCAGAAGGTGTAA


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

87.5

95.931

0.839

  pilR Pseudomonas aeruginosa PAK

38.393

95.931

0.368