Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxO   Type   Regulator
Locus tag   EEL44_RS15845 Genome accession   NZ_CP033515
Coordinates   2000010..2001377 (-) Length   455 a.a.
NCBI ID   WP_001888250.1    Uniprot ID   Q9KT84
Organism   Vibrio cholerae strain E4     
Function   promote HapR production (predicted from homology)   
Competence regulation

Genomic Context


Location: 1995010..2006377
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  EEL44_RS15810 (EEL44_15810) moaE 1995733..1996185 (-) 453 WP_000350081.1 molybdopterin synthase catalytic subunit MoaE -
  EEL44_RS15815 (EEL44_15815) moaD 1996187..1996432 (-) 246 WP_000598590.1 molybdopterin synthase sulfur carrier subunit -
  EEL44_RS15820 (EEL44_15820) moaC 1996429..1996908 (-) 480 WP_000080915.1 cyclic pyranopterin monophosphate synthase MoaC -
  EEL44_RS15825 (EEL44_15825) moaB 1996919..1997431 (-) 513 WP_000509705.1 molybdenum cofactor biosynthesis protein B -
  EEL44_RS15830 (EEL44_15830) moaA 1997491..1998480 (-) 990 WP_000068572.1 GTP 3',8-cyclase MoaA -
  EEL44_RS15835 (EEL44_15835) - 1998786..1999676 (+) 891 WP_000061070.1 YvcK family protein -
  EEL44_RS15840 (EEL44_15840) luxU 1999665..2000006 (-) 342 WP_001209531.1 quorum-sensing phosphorelay protein LuxU -
  EEL44_RS15845 (EEL44_15845) luxO 2000010..2001377 (-) 1368 WP_001888250.1 quorum-sensing sigma-54 dependent transcriptional regulator LuxO Regulator
  EEL44_RS15855 (EEL44_15855) uvrB 2001808..2003838 (-) 2031 WP_000029983.1 excinuclease ABC subunit UvrB -
  EEL44_RS15865 (EEL44_15865) rsxA 2004720..2005301 (+) 582 WP_000141550.1 electron transport complex subunit RsxA -
  EEL44_RS15870 (EEL44_15870) rsxB 2005301..2005888 (+) 588 WP_000104488.1 electron transport complex subunit RsxB -

Sequence


Protein


Download         Length: 455 a.a.        Molecular weight: 50839.12 Da        Isoelectric Point: 5.5755

>NTDB_id=323975 EEL44_RS15845 WP_001888250.1 2000010..2001377(-) (luxO) [Vibrio cholerae strain E4]
MVEDTASVAALYRSYLTPLDIDINIVGTGRDAIESIGRREPDLILLDLRLPDMTGMDVLYAVKEKSPDVPIVFMTAHGSI
DTAVEAMRHGAQDFLIKPCEADRLRVTVNNAIRKASKLKNDVDNKNQNYQGFIGSSQTMQAVYRTIDSAASSKASIFITG
ESGTGKEVCAEAIHAASKRGDKPFIAINCAAIPKDLIESELFGHVKGAFTGAATERQGAAEAADGGTLFLDELCEMDLDL
QTKLLRFIQTGTFQKVGSSKMKSVDVRFVCATNRDPWKEVQEGRFREDLYYRLYVIPLHLPPLRARGDDVIEIAYSLLGF
MSKEEGKDFVRLSAEVVERFRQYEWPGNVRQLQNVLRNVVVLNEGREITLDMLPPPLNQMSAPINRALPLAHENKVSVHE
IFPLWMTEKQAIEQAIEACDGNIPRAATYLDVSPSTIYRKLQTWNEKVKEKEKER

Nucleotide


Download         Length: 1368 bp        

>NTDB_id=323975 EEL44_RS15845 WP_001888250.1 2000010..2001377(-) (luxO) [Vibrio cholerae strain E4]
ATGGTAGAAGACACGGCGTCGGTGGCGGCGCTGTATCGTTCTTACCTCACACCGCTGGATATTGATATCAATATCGTGGG
TACCGGACGCGATGCCATCGAGAGTATTGGCCGTCGCGAGCCTGACTTAATCCTGCTGGATTTACGTTTGCCAGATATGA
CGGGGATGGACGTACTCTATGCAGTGAAAGAGAAATCACCGGATGTGCCTATCGTGTTTATGACCGCTCATGGTTCGATT
GATACGGCGGTTGAAGCCATGCGTCATGGTGCGCAAGACTTTTTGATCAAGCCGTGTGAAGCGGACCGACTGCGGGTCAC
AGTGAATAATGCGATTCGCAAAGCCTCGAAACTCAAAAACGATGTTGATAATAAAAATCAAAACTATCAAGGCTTTATTG
GTAGCAGTCAAACCATGCAGGCGGTGTACCGCACCATTGACTCTGCGGCGAGCAGCAAAGCCAGTATTTTTATTACCGGC
GAAAGTGGTACAGGTAAAGAAGTGTGCGCGGAAGCGATTCATGCCGCGAGCAAGCGTGGAGATAAGCCATTTATCGCCAT
CAACTGTGCGGCCATTCCGAAAGATCTGATTGAAAGTGAGTTGTTTGGTCACGTCAAAGGGGCTTTTACTGGGGCGGCGA
CTGAGCGTCAAGGCGCGGCAGAAGCGGCTGATGGGGGAACCCTCTTTTTGGATGAATTGTGCGAAATGGATCTGGATCTG
CAGACCAAACTTCTGCGCTTTATTCAGACAGGGACATTCCAAAAAGTCGGCTCTTCCAAAATGAAAAGCGTGGATGTGCG
TTTTGTGTGTGCAACGAACCGCGATCCGTGGAAGGAAGTGCAAGAAGGACGCTTTCGTGAAGACCTGTACTACCGCTTGT
ATGTGATCCCGCTGCATTTACCGCCATTGCGCGCGCGTGGTGATGATGTGATCGAGATTGCTTATTCACTGCTTGGCTTT
ATGTCCAAGGAAGAGGGCAAAGATTTTGTCCGTTTGTCGGCTGAAGTGGTGGAGCGTTTTCGCCAATACGAGTGGCCGGG
CAACGTGCGTCAATTGCAAAACGTTTTGCGCAACGTGGTTGTGCTCAATGAAGGTCGTGAAATCACCCTAGATATGCTGC
CTCCTCCTCTTAATCAAATGTCCGCGCCGATCAATCGGGCTTTACCGCTTGCGCATGAGAATAAAGTATCCGTGCATGAG
ATTTTTCCGCTGTGGATGACCGAAAAACAAGCCATTGAACAAGCCATCGAAGCGTGTGATGGCAACATTCCCCGTGCCGC
AACCTATCTGGATGTCAGCCCGTCAACCATCTATCGCAAGCTGCAAACTTGGAATGAAAAAGTGAAAGAAAAAGAGAAGG
AACGGTAA


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure
  AlphaFold DB Q9KT84

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

100

100

1

  pilR Pseudomonas aeruginosa PAK

38.274

99.341

0.38


Multiple sequence alignment