Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   GQX72_RS17185 Genome accession   NZ_CP047060
Coordinates   670125..672698 (-) Length   857 a.a.
NCBI ID   WP_001026306.1    Uniprot ID   Q9KLK7
Organism   Vibrio cholerae isolate CTMA_1441     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 665125..677698
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  GQX72_RS17160 (GQX72_17160) - 667548..667853 (-) 306 WP_001181134.1 hypothetical protein -
  GQX72_RS17165 (GQX72_17165) - 668056..668454 (+) 399 WP_000831416.1 YgiW/YdeI family stress tolerance OB fold protein -
  GQX72_RS17175 (GQX72_17175) - 668706..669224 (+) 519 WP_000914961.1 hypothetical protein -
  GQX72_RS17180 (GQX72_17180) - 669468..670133 (+) 666 WP_000268204.1 flagellar brake protein -
  GQX72_RS17185 (GQX72_17185) luxQ 670125..672698 (-) 2574 WP_001026306.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  GQX72_RS17190 (GQX72_17190) luxP 672716..673810 (-) 1095 WP_000823678.1 autoinducer 2-binding periplasmic protein LuxP Regulator
  GQX72_RS17195 (GQX72_17195) traF 674022..675182 (-) 1161 WP_001025860.1 conjugal transfer protein TraF -
  GQX72_RS17200 (GQX72_17200) - 675284..675589 (-) 306 WP_000429067.1 GIY-YIG nuclease family protein -
  GQX72_RS17205 (GQX72_17205) - 675606..676256 (-) 651 WP_001025631.1 YceH family protein -
  GQX72_RS17210 (GQX72_17210) - 676298..676495 (-) 198 WP_001246071.1 hypothetical protein -
  GQX72_RS17215 (GQX72_17215) - 676683..677003 (+) 321 WP_001089529.1 DUF496 family protein -
  GQX72_RS17225 (GQX72_17225) - 677416..677667 (+) 252 WP_001882582.1 YgjV family protein -

Sequence


Protein


Download         Length: 857 a.a.        Molecular weight: 96929.73 Da        Isoelectric Point: 6.0197

>NTDB_id=410146 GQX72_RS17185 WP_001026306.1 670125..672698(-) (luxQ) [Vibrio cholerae isolate CTMA_1441]
MNIRPSQIKHKQRIASFITHAVVVVMGVLIVSVLFQSYQISSRLMAQEGQRTSVQTSSLIQSLFDFRLAALRIHQDSTAK
NASLINALVSRDSSRLDEFFSSVDELELSNAPDLRFISSHDNILWDDGNASFYGIAQQELNKLIRRVAISGNWHLVQTPS
EGKSVHILMRRSSLIEAGTGQVVGYLYVGIVLNDNFALLENIRSGSNSENLVLAVDTTPLVSTLKGNEPYSLDYVVHSAK
DAMRDSFIVGQTFLEVESVPTYLCVYSIQTNQNVLTLRDNFYFWMAFALISMIGVSIASRWWLQKRIQREIETLMNYTHK
LMDLDTKSEFIGSKIYEFDYFGRTLEQSFRRLANKEKQFEDLFNFALSPTMLWNTSGRLIRMNPSAQIQFLREDAQNHFL
FEILERQLLPTITNAAQGNNPSDVTTEVDGRVYRWNLSPIMVEGQIISIITQGQDITTIAEAEKQSQAARREAEESARVR
AEFLAKMSHELRTPLNGVLGVSQLLKRTPLNDEQREHVAVLCSSGEHLLAVLNDILDFSRLEQGKFRIQKNEFRLKELVC
AIDRIYRPLCNEKGLELVVNSNITTAAIVRSDQIRINQILFNLLNNAIKFTHQGSIRVELQLIEGDPLAQLVIQVVDTGI
GIREQDLTVIFEPFMQAESTTTREYGGSGLGLTIVHSLVEMLSGQLHVSSEYGIGTRFEIQLPIELVEKPDAPQQLLPAP
DPQPLFDKTLRVLLVEDNHTNAFIAQAFCRKYGLDVSWVTDGLQAIEELKIHDYDLVLMDNQLPYLDGVETTRTIKKVLH
LPVVVYACTADGLEETRQAFFHAGAEYVLVKPLKEQTLHKALEHFKHHHGQKNAGLN

Nucleotide


Download         Length: 2574 bp        

>NTDB_id=410146 GQX72_RS17185 WP_001026306.1 670125..672698(-) (luxQ) [Vibrio cholerae isolate CTMA_1441]
TTGAACATTCGACCTAGCCAAATCAAGCATAAACAGCGCATCGCTTCTTTTATCACCCATGCTGTCGTGGTGGTGATGGG
CGTTCTGATCGTCAGTGTATTATTCCAAAGTTACCAGATCAGTAGCCGCTTGATGGCTCAAGAAGGACAACGCACTTCAG
TTCAAACCTCCAGCTTGATTCAAAGTTTGTTTGATTTTCGTCTTGCGGCACTGCGAATTCACCAGGACAGCACAGCCAAG
AACGCCAGTTTAATCAACGCACTTGTCAGCCGAGATTCGAGTCGGCTGGATGAATTCTTTTCCAGTGTTGATGAACTTGA
ACTCTCTAATGCGCCAGATCTGCGTTTTATCTCCAGTCACGACAACATCTTGTGGGATGATGGCAACGCCTCTTTTTACG
GCATTGCCCAGCAAGAGCTGAATAAGCTTATCCGCAGAGTGGCGATTAGTGGCAATTGGCACTTGGTTCAAACGCCCAGC
GAGGGAAAATCAGTCCATATTTTGATGCGTCGTTCATCGCTGATTGAAGCGGGAACCGGGCAGGTTGTTGGGTATCTGTA
TGTAGGCATCGTACTCAATGATAACTTTGCGCTGTTGGAAAATATCCGCAGTGGCAGTAACTCAGAAAACCTAGTCCTTG
CCGTGGATACTACGCCGCTGGTTTCTACCTTGAAAGGCAATGAACCTTATTCGCTGGACTATGTGGTGCACAGCGCCAAA
GATGCTATGCGAGACAGCTTTATTGTTGGGCAAACCTTCTTAGAAGTGGAAAGTGTACCGACCTATCTGTGCGTCTACTC
GATTCAGACCAACCAAAATGTGCTCACCCTGCGGGATAATTTCTATTTTTGGATGGCGTTTGCGCTGATCAGTATGATCG
GTGTTTCCATAGCGTCACGCTGGTGGCTACAAAAACGCATTCAGCGTGAAATTGAAACCTTGATGAATTACACCCATAAA
TTGATGGATCTGGATACGAAAAGTGAGTTTATCGGTTCAAAAATTTATGAGTTCGACTATTTTGGGCGAACGTTGGAACA
ATCATTCCGTCGTCTCGCCAATAAAGAAAAGCAGTTTGAAGATCTGTTTAACTTTGCGCTTTCACCGACCATGCTTTGGA
ATACCTCTGGTCGGCTGATCCGCATGAACCCCTCAGCGCAAATCCAGTTTTTGCGCGAAGATGCGCAAAACCATTTCTTA
TTTGAGATTCTTGAACGCCAACTGTTGCCGACCATCACTAATGCGGCACAGGGCAATAATCCGAGTGACGTCACAACCGA
AGTGGATGGTCGTGTGTACCGCTGGAACCTTTCACCGATCATGGTGGAAGGGCAGATCATTTCCATCATTACTCAAGGGC
AAGATATCACCACCATCGCGGAAGCGGAGAAGCAAAGCCAAGCCGCAAGGCGCGAAGCGGAAGAGTCGGCACGGGTCAGG
GCCGAGTTTTTGGCCAAAATGAGTCACGAATTGCGCACGCCGCTCAATGGTGTGCTCGGTGTTTCCCAACTGCTAAAACG
GACCCCACTCAATGATGAACAGCGCGAACACGTGGCTGTGTTATGCAGCAGTGGTGAACATTTGCTCGCGGTGCTGAATG
ACATCTTGGATTTCTCACGCTTAGAGCAGGGCAAATTCCGTATTCAAAAGAATGAGTTTCGCCTTAAAGAGTTGGTGTGC
GCGATTGACCGCATTTATCGACCTTTATGTAATGAAAAAGGCTTGGAACTGGTGGTGAATTCCAATATCACTACCGCAGC
GATTGTGCGCAGCGATCAGATCCGGATTAACCAAATCTTGTTCAATTTGCTCAATAACGCGATCAAGTTTACTCACCAAG
GTTCGATACGTGTCGAATTGCAATTAATTGAAGGTGATCCATTAGCTCAGCTGGTGATTCAAGTCGTCGATACGGGGATT
GGTATCCGCGAACAAGATTTAACGGTGATTTTTGAACCCTTCATGCAAGCTGAATCGACCACCACTCGAGAGTACGGCGG
AAGTGGTTTAGGCTTAACGATTGTGCACAGTTTAGTGGAAATGCTCAGTGGTCAACTGCACGTCAGCTCCGAGTATGGCA
TTGGTACACGTTTTGAAATTCAGTTACCGATTGAGCTGGTAGAAAAACCGGATGCGCCGCAGCAGTTGTTACCAGCTCCT
GATCCTCAACCGTTATTTGATAAAACTCTGCGTGTACTGTTGGTGGAGGATAACCACACCAATGCCTTTATTGCTCAAGC
ATTCTGTCGTAAATATGGCTTAGATGTGAGCTGGGTAACGGATGGACTACAGGCGATTGAAGAGCTCAAAATACATGACT
ACGACTTAGTGCTGATGGATAACCAGTTACCCTATTTGGATGGCGTTGAGACCACGCGCACCATCAAAAAAGTGCTGCAC
CTTCCGGTGGTGGTGTATGCCTGCACTGCGGATGGCTTAGAAGAAACACGGCAAGCATTTTTCCATGCGGGCGCGGAATA
TGTGTTAGTGAAGCCACTGAAAGAGCAGACTTTGCATAAAGCGCTGGAGCATTTCAAACATCATCATGGCCAAAAAAACG
CTGGCTTAAATTGA


Secondary structure


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



3D structure


Source ID Structure
  PDB 3C30
  PDB 3C38

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
  luxQ Vibrio cholerae strain A1552

100

100

1


Multiple sequence alignment