Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxO   Type   Regulator
Locus tag   GO175_RS22205 Genome accession   NZ_CP046856
Coordinates   1462195..1463676 (+) Length   493 a.a.
NCBI ID   WP_158148793.1    Uniprot ID   -
Organism   Vibrio fluvialis strain F8658     
Function   promote HapR production (predicted from homology)   
Competence regulation

Genomic Context


Location: 1457195..1468676
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  GO175_RS22190 - 1458185..1458868 (+) 684 WP_158148792.1 AAA family ATPase -
  GO175_RS22195 - 1459032..1459820 (+) 789 WP_242014386.1 phosphate/phosphite/phosphonate ABC transporter substrate-binding protein -
  GO175_RS22200 - 1459849..1462155 (+) 2307 WP_242014387.1 ATP-binding protein -
  GO175_RS22205 luxO 1462195..1463676 (+) 1482 WP_158148793.1 sigma-54 dependent transcriptional regulator Regulator
  GO175_RS22210 - 1463648..1464721 (+) 1074 WP_242014388.1 glycosyltransferase family 4 protein -
  GO175_RS22215 - 1464920..1466128 (+) 1209 WP_158148794.1 glycosyltransferase family 4 protein -
  GO175_RS22220 - 1466121..1467551 (+) 1431 WP_158148795.1 lipopolysaccharide biosynthesis protein -

Sequence


Protein


Download         Length: 493 a.a.        Molecular weight: 55861.92 Da        Isoelectric Point: 5.9837

>NTDB_id=408976 GO175_RS22205 WP_158148793.1 1462195..1463676(+) (luxO) [Vibrio fluvialis strain F8658]
MQPKVLLVEDATSLAILYQQYVKDEPFEFFHVETGAEAKKFIQRYLPHVVILDLNLPDIEGQEILDWIKENEFPTSVLIA
TAHGSVDIAVDLLRRGADDFLEKPIVAERLKASIHVHLKKIKLEHMVEDLKSTIERPRFHGFIGTSQPMQKVYKTIEAVA
PTNASVFIVGESGTGKEVCAEAIHKQSERRDKPFVAINCGAIPKDLMESEIFGHIKGAYTGATTDRRGAAMQADGGTLFL
DELCEMDLDLQKKLLRFLQTSTFTPLGDSRERKVDVRIICATNRDPMQEVNEGRFREDLFYRVHVIPVVMPPLRERDQDI
VTLANHFIKTFARQDHKAFIALDKETERVFKRYSWPGNVRQLQNVIRNIVVLNDGKYVTAEQVPELLHQASTNKPSLKTA
GMPMAHIEPQHSVAEPTPIVPIHAPSAVDNDVTDTANLTIRPMWQVERETIQQAIDFCDGNVLNAAVLLELSPSTVYRKK
QAWENEDQQYERA

Nucleotide


Download         Length: 1482 bp        

>NTDB_id=408976 GO175_RS22205 WP_158148793.1 1462195..1463676(+) (luxO) [Vibrio fluvialis strain F8658]
ATGCAGCCGAAAGTATTGTTAGTCGAAGACGCAACGTCGCTGGCCATCCTATACCAACAGTACGTTAAGGATGAACCCTT
TGAATTTTTCCATGTGGAAACCGGTGCCGAAGCCAAAAAATTTATTCAACGTTACTTGCCCCACGTGGTCATCTTAGACC
TCAACTTGCCAGACATCGAAGGTCAGGAAATTCTTGATTGGATAAAAGAAAATGAATTCCCTACTTCAGTCCTGATTGCG
ACCGCACATGGTTCCGTAGATATCGCCGTCGATTTATTGCGTCGCGGAGCAGACGACTTTCTTGAGAAACCGATTGTCGC
CGAACGCCTTAAAGCTTCCATTCATGTCCATCTCAAAAAAATCAAACTGGAACATATGGTTGAGGATCTCAAGTCAACCA
TCGAACGCCCTCGCTTTCATGGCTTTATTGGCACAAGCCAGCCAATGCAGAAAGTGTATAAGACTATCGAGGCCGTTGCC
CCGACCAACGCCAGCGTCTTTATTGTGGGAGAAAGTGGTACGGGCAAAGAAGTCTGCGCCGAAGCCATTCACAAACAGAG
TGAACGCCGGGATAAACCATTTGTCGCCATTAACTGTGGTGCCATTCCGAAAGATCTGATGGAAAGCGAAATTTTCGGCC
ATATCAAAGGCGCCTATACTGGCGCAACGACGGACCGACGTGGCGCAGCCATGCAAGCAGATGGCGGTACTCTGTTTCTC
GACGAGCTGTGTGAAATGGACTTAGACCTGCAGAAAAAGCTGCTGCGTTTTTTGCAAACCAGTACGTTTACCCCGCTGGG
TGACAGTCGGGAGCGTAAAGTGGATGTGCGTATAATCTGTGCCACCAACCGCGACCCAATGCAAGAAGTGAACGAAGGAC
GTTTTCGCGAGGACTTGTTCTACCGAGTACATGTCATCCCTGTCGTTATGCCACCTTTACGTGAACGAGATCAGGACATC
GTGACACTCGCCAATCACTTCATCAAAACCTTCGCGCGTCAGGATCACAAGGCGTTCATTGCTTTGGATAAAGAAACTGA
ACGCGTTTTCAAACGCTATTCGTGGCCGGGTAATGTGCGTCAGTTGCAAAACGTTATCCGCAATATTGTGGTGCTGAATG
ATGGCAAGTACGTGACGGCGGAACAGGTGCCGGAACTGTTGCACCAAGCCTCAACAAACAAACCTTCCTTAAAAACCGCG
GGAATGCCAATGGCACATATCGAACCGCAACACTCAGTAGCAGAGCCAACTCCCATCGTTCCGATTCATGCTCCGTCGGC
AGTCGACAATGACGTAACTGACACTGCCAATTTGACCATCAGACCCATGTGGCAGGTCGAACGCGAAACTATACAACAGG
CTATCGATTTCTGTGACGGCAACGTCCTCAATGCTGCAGTGTTGCTGGAACTGAGTCCATCGACTGTTTATCGCAAAAAG
CAGGCCTGGGAAAATGAAGACCAACAGTATGAACGAGCTTGA


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

49.375

97.363

0.481


Multiple sequence alignment