Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxO   Type   Regulator
Locus tag   BWP24_RS05260 Genome accession   NZ_CP019293
Coordinates   1101259..1102662 (+) Length   467 a.a.
NCBI ID   WP_005433212.1    Uniprot ID   -
Organism   Vibrio campbellii strain LMB29     
Function   promote HapR production (predicted from homology)   
Competence regulation

Genomic Context


Location: 1096259..1107662
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  BWP24_RS05240 (BWP24_05280) - 1096282..1097613 (+) 1332 WP_045400701.1 hypothetical protein -
  BWP24_RS05245 (BWP24_05285) - 1097633..1098073 (+) 441 WP_038889848.1 hypothetical protein -
  BWP24_RS05255 (BWP24_05295) uvrB 1098886..1100916 (+) 2031 WP_077200428.1 excinuclease ABC subunit UvrB -
  BWP24_RS05260 (BWP24_05300) luxO 1101259..1102662 (+) 1404 WP_005433212.1 quorum-sensing sigma-54 dependent transcriptional regulator LuxO Regulator
  BWP24_RS05265 (BWP24_05305) luxU 1102659..1103003 (+) 345 WP_045400708.1 quorum-sensing phosphorelay protein LuxU -
  BWP24_RS05270 (BWP24_05310) - 1103120..1104013 (-) 894 WP_045372847.1 YvcK family protein -
  BWP24_RS05275 (BWP24_05315) moaA 1104311..1105300 (+) 990 WP_005531402.1 GTP 3',8-cyclase MoaA -
  BWP24_RS05280 (BWP24_05320) moaB 1105401..1105913 (+) 513 WP_005433210.1 molybdenum cofactor biosynthesis protein B -
  BWP24_RS05285 (BWP24_05325) moaC 1105940..1106416 (+) 477 WP_005433216.1 cyclic pyranopterin monophosphate synthase MoaC -
  BWP24_RS05290 (BWP24_05330) moaD 1106416..1106673 (+) 258 WP_077200430.1 molybdopterin synthase sulfur carrier subunit -
  BWP24_RS05295 (BWP24_05335) moaE 1106675..1107130 (+) 456 WP_005433207.1 molybdopterin synthase catalytic subunit MoaE -

Sequence


Protein


Download         Length: 467 a.a.        Molecular weight: 52136.65 Da        Isoelectric Point: 5.8849

>NTDB_id=214644 BWP24_RS05260 WP_005433212.1 1101259..1102662(+) (luxO) [Vibrio campbellii strain LMB29]
MQQITEGQKSRYLLMVEDTASVAALYRSYLTPLGIDINIVGTGRDAIESLNHRIPDLILLDLRLPDMTGMDVLHAVKKSH
PDVPIIFMTAHGSIDTAVEAMRHGSQDFLIKPCEADRLRVTVNNAIRKATKLKNEADNPGNQNYQGFIGSSQTMQQVYRT
IDSAASSKASIFITGESGTGKEVCAEAIHAASKRGDKPFIAINCAAIPKDLIESELFGHVKGAFTGAANDRQGAAELADG
GTLFLDELCEMDLDLQTKLLRFIQTGTFQKVGSSKMKSVDVRFVCATNRDPWKEVQEGRFREDLYYRLYVIPLHLPPLRE
RGEDVIEIAYSLLGYMSHEEGKSFVRFAQDVIERFNSYEWPGNVRQLQNVLRNIVVLNNGKEITLDMLPPPLNQPVVRQS
VAKFIEPDIMTVSDIMPLWMTEKMAIEQAIQACEGNIPRAAGYLDVSPSTIYRKLQAWNSKDEKQNV

Nucleotide


Download         Length: 1404 bp        

>NTDB_id=214644 BWP24_RS05260 WP_005433212.1 1101259..1102662(+) (luxO) [Vibrio campbellii strain LMB29]
ATGCAACAAATAACAGAAGGTCAAAAGTCTCGTTATCTACTAATGGTAGAAGACACCGCATCCGTCGCGGCACTTTACCG
TTCTTACCTCACGCCACTTGGCATCGATATCAATATTGTTGGAACAGGCAGAGACGCCATTGAAAGCCTGAACCATCGCA
TTCCTGATCTTATTCTGCTCGATCTTCGTCTACCTGATATGACAGGGATGGACGTATTGCACGCGGTGAAGAAAAGCCAT
CCAGACGTGCCAATCATCTTCATGACAGCCCATGGTTCTATCGATACTGCGGTAGAGGCGATGCGTCACGGTTCTCAAGA
CTTCCTAATCAAACCATGTGAAGCAGACCGTTTACGTGTCACGGTGAATAATGCGATCCGCAAAGCAACCAAATTAAAGA
ATGAAGCTGACAACCCTGGTAACCAAAATTACCAAGGCTTCATCGGCAGTAGCCAAACGATGCAGCAGGTTTACCGTACC
ATTGACTCGGCAGCGAGCAGTAAAGCGAGTATTTTCATCACGGGTGAAAGTGGTACGGGTAAAGAAGTGTGTGCCGAAGC
GATTCACGCAGCAAGCAAACGTGGTGATAAGCCGTTTATCGCCATCAACTGTGCGGCAATCCCGAAAGACCTTATTGAAA
GTGAGCTGTTTGGTCACGTAAAAGGTGCGTTTACTGGTGCTGCGAATGACCGACAAGGTGCGGCAGAGCTTGCTGATGGC
GGCACGTTGTTCCTTGATGAACTCTGTGAAATGGACTTGGATCTTCAAACTAAGCTATTGCGCTTTATCCAAACGGGTAC
ATTCCAAAAAGTCGGTTCTTCTAAAATGAAGAGCGTGGATGTTCGCTTTGTGTGTGCAACTAACCGAGACCCTTGGAAAG
AAGTGCAAGAAGGCCGTTTCCGTGAAGACTTGTATTACCGTTTGTACGTGATTCCTTTGCACCTTCCGCCGCTGCGTGAG
CGTGGTGAAGACGTTATTGAAATTGCATACTCGTTGCTTGGTTATATGTCTCATGAGGAAGGCAAGAGTTTCGTCCGTTT
CGCACAAGACGTAATTGAAAGATTCAACAGTTACGAATGGCCGGGTAACGTTCGCCAGTTGCAAAACGTATTGCGCAATA
TCGTGGTACTGAACAATGGCAAAGAGATCACGCTGGATATGTTACCGCCACCACTGAATCAGCCTGTTGTGCGCCAATCG
GTAGCAAAATTTATTGAACCTGACATTATGACGGTGTCAGATATTATGCCGCTTTGGATGACAGAGAAAATGGCCATCGA
GCAGGCAATTCAAGCGTGTGAAGGCAACATTCCACGCGCTGCTGGCTATTTGGATGTTAGCCCATCAACGATTTATCGCA
AGTTGCAAGCTTGGAATAGCAAGGACGAAAAACAAAACGTATGA


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

86.384

95.931

0.829


Multiple sequence alignment