Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   AAGA51_RS17450 Genome accession   NZ_CP151843
Coordinates   478831..481383 (+) Length   850 a.a.
NCBI ID   WP_042487208.1    Uniprot ID   -
Organism   Vibrio diazotrophicus strain ATCC 33466     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 473831..486383
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  AAGA51_RS17420 - 474433..474750 (-) 318 WP_042487222.1 DUF496 family protein -
  AAGA51_RS17425 - 474939..475136 (+) 198 WP_042487425.1 hypothetical protein -
  AAGA51_RS17430 - 475183..475833 (+) 651 WP_042487220.1 YceH family protein -
  AAGA51_RS17435 - 475833..476132 (+) 300 WP_042487216.1 GIY-YIG nuclease family protein -
  AAGA51_RS17440 - 476280..477431 (+) 1152 WP_042487213.1 conjugal transfer protein TraF -
  AAGA51_RS17445 luxP 477728..478816 (+) 1089 WP_042487211.1 autoinducer 2-binding periplasmic protein LuxP Regulator
  AAGA51_RS17450 luxQ 478831..481383 (+) 2553 WP_042487208.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  AAGA51_RS17455 - 481417..482085 (-) 669 WP_042487206.1 PilZ domain-containing protein -
  AAGA51_RS17460 - 482223..482747 (-) 525 WP_042487203.1 hypothetical protein -
  AAGA51_RS17465 - 482969..484450 (+) 1482 WP_042487200.1 cobyric acid synthase -
  AAGA51_RS17470 modA 484452..485225 (+) 774 WP_042487197.1 molybdate ABC transporter substrate-binding protein -
  AAGA51_RS17475 modB 485245..485937 (+) 693 WP_042487194.1 molybdate ABC transporter permease subunit -

Sequence


Protein


Download         Length: 850 a.a.        Molecular weight: 96033.01 Da        Isoelectric Point: 5.1528

>NTDB_id=981107 AAGA51_RS17450 WP_042487208.1 478831..481383(+) (luxQ) [Vibrio diazotrophicus strain ATCC 33466]
MVKSINPIKQKKNIASFISHAIVVALGTLIIMVLFQSYQISSRLIAQEVMRTSKQTSSLIQSLFDFRLATLQIHQDSSAK
NATLVQAIHSGKEEELDQYFLTVDQLELSNTPDIRFITSQKEMLWDDGNSQFYGIETKELGKIVRRVSISSNWHLIKSPS
LLGPTYLLVRRSSIVDPATGEVLGFLYVSIVLNDNYALIETIKDNSNAQNLVLAVDENILSSTLNGNDLYNEQDIIRSVT
GEALDEKNIVSKTMLELEGVPTYLAVFSVQSNQNALKLRDSYYFWIVFALIALLGVTIVTRWWLHKRIKHEIDQLMSYTH
KVAVQGKEYFFPGSAIYEFDHFGRTLENTFQRLAEQEKQFEDLFNFSLSPIILWSTEGYIIRMNPAAQKEFIGAKGESKR
SFRALEKQLLPDIQSAATGELSKEVMTEIDKKVFRWSISPIVIENKIESIITQGQDVTSFAEAEKQSRLARKEAEESARV
RADFLAKMSHELRTPLNGILGVSQLLKRSVTSPEQIDQLNVLCSSGEHLLAVLNDILDFSKIEQGQFRISSSDFPLINVV
SAIEQIYKPMCQEKNLAFEIETDINEGVIVNSNQVRLNQILYNIINNALKFTNEGSIYVRISMQYGVTDQLYVTVRDTGI
GIKESDLKIIFEPFMQAEPTTTREYGGSGLGLAIVHSLVEMLGGSIQVKSEFGKGTEFVVILPMEVVSRKSISDEKQEET
KRFALFDKSLKVLLVEDNHTNAFIARAFCEKYGMDVDWVKDGLQAIEKAKTQQYDIIFMDNQLPFLDGVDATKVLKKEMQ
LNTPVFACTADGMESTQQAFLAAGAEYVIVKPIREESLYQALVHYKQTYC

Nucleotide


Download         Length: 2553 bp        

>NTDB_id=981107 AAGA51_RS17450 WP_042487208.1 478831..481383(+) (luxQ) [Vibrio diazotrophicus strain ATCC 33466]
GTGGTAAAAAGTATCAACCCGATTAAGCAGAAGAAAAATATTGCATCTTTTATAAGTCATGCAATTGTTGTTGCACTTGG
TACTTTGATCATCATGGTATTGTTCCAGAGCTATCAAATCAGTAGTCGTTTAATTGCTCAAGAAGTCATGAGAACGTCAA
AGCAGACTTCGAGCTTAATACAAAGTTTGTTTGATTTTCGTCTTGCTACACTGCAGATACACCAAGACAGTAGTGCGAAG
AACGCAACACTGGTTCAGGCTATTCACAGCGGCAAAGAAGAAGAGCTGGATCAATACTTTCTTACTGTTGACCAGCTTGA
GCTCTCTAATACACCAGACATTCGTTTTATTACCAGCCAGAAAGAAATGCTTTGGGACGATGGCAACTCTCAGTTCTATG
GTATTGAAACCAAAGAGCTTGGGAAAATAGTCCGTAGAGTGTCAATAAGCAGTAACTGGCATCTGATTAAGAGCCCTTCG
CTACTTGGTCCTACTTACCTTTTGGTAAGAAGGTCTTCAATCGTCGATCCTGCAACGGGTGAAGTACTTGGCTTTCTCTA
TGTATCTATTGTTCTCAATGATAACTACGCATTGATTGAAACGATTAAAGATAACAGCAATGCCCAAAATCTGGTGCTTG
CTGTGGATGAAAATATTTTGTCTTCGACCCTGAATGGCAACGATCTTTACAATGAACAAGATATTATCCGAAGTGTGACG
GGTGAAGCTCTTGATGAAAAAAATATCGTCAGCAAAACCATGCTGGAACTTGAAGGTGTTCCTACCTATCTGGCGGTATT
TTCAGTACAAAGTAACCAGAATGCATTGAAATTAAGAGACAGCTATTATTTTTGGATTGTGTTTGCGTTAATCGCTTTGT
TGGGTGTAACCATTGTTACTCGCTGGTGGTTACATAAACGTATTAAACACGAAATTGATCAGCTGATGTCTTACACCCAC
AAAGTAGCGGTGCAGGGCAAAGAGTATTTCTTTCCGGGATCTGCGATTTATGAGTTTGACCATTTTGGACGCACGCTTGA
AAACACCTTCCAGCGTTTAGCTGAGCAAGAAAAGCAGTTCGAAGATCTTTTCAATTTCTCACTCTCACCAATCATTCTAT
GGTCTACGGAAGGGTACATTATTCGTATGAACCCAGCCGCGCAGAAGGAGTTTATAGGTGCGAAAGGTGAAAGCAAGAGG
TCGTTCAGGGCTTTAGAAAAACAACTCTTACCAGACATCCAATCTGCAGCAACCGGCGAACTATCGAAAGAGGTGATGAC
GGAAATCGATAAAAAAGTGTTCCGCTGGAGTATCTCACCGATAGTGATCGAAAATAAGATTGAGTCGATTATCACTCAGG
GGCAAGACGTAACAAGTTTCGCGGAAGCAGAGAAACAAAGTCGATTAGCGCGCAAAGAAGCGGAAGAATCCGCAAGAGTT
CGAGCGGACTTTTTAGCCAAGATGAGCCATGAACTGCGAACACCATTAAACGGAATTTTAGGTGTATCACAATTATTAAA
ACGCTCCGTAACAAGCCCTGAGCAAATCGATCAGCTCAATGTACTGTGCAGCAGCGGAGAACATTTACTCGCGGTACTTA
ACGATATTCTCGATTTCTCTAAGATTGAGCAGGGGCAGTTCCGTATTTCATCTTCAGACTTTCCGTTAATTAATGTGGTT
TCTGCCATTGAACAAATTTACAAACCAATGTGCCAAGAGAAGAACTTGGCGTTTGAAATTGAAACTGACATTAACGAAGG
CGTAATCGTTAACAGCAATCAGGTACGTTTAAATCAGATCTTGTACAACATTATTAATAACGCCCTCAAGTTTACGAATG
AAGGTTCGATTTATGTTCGTATTTCTATGCAATATGGCGTCACCGACCAGTTATACGTCACCGTGAGGGATACTGGTATT
GGTATTAAAGAATCTGACTTAAAGATTATTTTTGAACCGTTTATGCAAGCTGAACCGACAACAACTCGGGAGTATGGCGG
TAGTGGATTAGGTCTGGCTATTGTTCACAGCCTTGTTGAAATGCTTGGTGGCTCAATTCAAGTGAAATCTGAATTTGGTA
AAGGAACCGAGTTTGTGGTTATATTGCCGATGGAAGTTGTTTCTCGGAAAAGTATTTCGGATGAGAAACAAGAAGAAACT
AAACGCTTTGCTTTATTTGATAAATCATTGAAAGTATTACTGGTTGAGGACAATCATACCAACGCGTTTATTGCTCGAGC
GTTCTGTGAAAAGTATGGGATGGATGTGGATTGGGTCAAAGATGGCTTACAAGCGATAGAGAAAGCGAAAACACAGCAAT
ACGACATTATTTTTATGGATAATCAATTGCCTTTCCTTGATGGTGTTGATGCAACGAAAGTCCTCAAGAAAGAGATGCAA
CTGAACACACCTGTTTTCGCCTGTACTGCCGATGGAATGGAGTCTACCCAACAAGCATTTTTAGCTGCGGGTGCCGAATA
TGTCATTGTTAAACCAATCCGAGAAGAGAGCCTGTATCAAGCTTTGGTTCATTACAAACAAACCTATTGTTAG


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
  luxQ Vibrio cholerae strain A1552

59.549

99.176

0.591


Multiple sequence alignment