Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   CCZ37_RS15185 Genome accession   NZ_CP022742
Coordinates   421019..423565 (+) Length   848 a.a.
NCBI ID   WP_094501295.1    Uniprot ID   A0A223N1Y1
Organism   Vibrio qinghaiensis strain Q67     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 416019..428565
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  CCZ37_RS15150 (CCZ37_15115) - 416083..416334 (-) 252 WP_010319896.1 YgjV family protein -
  CCZ37_RS15155 (CCZ37_15120) - 416642..416959 (-) 318 WP_010319897.1 DUF496 family protein -
  CCZ37_RS15160 (CCZ37_15125) - 417149..417346 (+) 198 WP_010319898.1 hypothetical protein -
  CCZ37_RS15165 (CCZ37_15130) - 417453..418106 (+) 654 WP_094501288.1 YceH family protein -
  CCZ37_RS15170 (CCZ37_15135) - 418107..418430 (+) 324 WP_094501290.1 GIY-YIG nuclease family protein -
  CCZ37_RS15175 (CCZ37_15140) - 418526..419677 (+) 1152 WP_094501293.1 conjugal transfer protein TraF -
  CCZ37_RS15180 (CCZ37_15145) luxP 419903..421003 (+) 1101 WP_010319902.1 autoinducer 2-binding periplasmic protein LuxP Regulator
  CCZ37_RS15185 (CCZ37_15150) luxQ 421019..423565 (+) 2547 WP_094501295.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  CCZ37_RS15190 (CCZ37_15155) - 423610..424275 (-) 666 WP_244187310.1 PilZ domain-containing protein -
  CCZ37_RS15195 (CCZ37_15160) glpD 424418..425962 (-) 1545 WP_094501299.1 glycerol-3-phosphate dehydrogenase -
  CCZ37_RS15200 (CCZ37_15165) - 426148..427407 (-) 1260 WP_029626763.1 hydroxymethylglutaryl-CoA reductase -
  CCZ37_RS15205 (CCZ37_15170) - 427495..427794 (-) 300 WP_094501301.1 hypothetical protein -
  CCZ37_RS15210 (CCZ37_15175) - 427862..428086 (-) 225 WP_010316984.1 hypothetical protein -

Sequence


Protein


Download         Length: 848 a.a.        Molecular weight: 96244.97 Da        Isoelectric Point: 5.4719

>NTDB_id=242081 CCZ37_RS15185 WP_094501295.1 421019..423565(+) (luxQ) [Vibrio qinghaiensis strain Q67]
MSLRSSSVKKKQKIATVITKSMIAVIGALTLSVLFQSYQISSKIIAQEVQRTASQTSSLIQNLFNFRLSLLQVNQDSSAK
NTGLVKAIRKGDNDSIDQFFFGVDQLEVTNTPDIRFISDSDSLMWEDGNAQFYGIEQNELVNMSHKVALSNNWHMIKSPS
QLGYTYLMLRRTPVIDSPSGEVIGFLHLASVLNNNYVLAETLREGSNSENLVMTTGDKVLASTINGDDTYTEHDLLDDNF
DAYSFADYMLSRTELTTEGVPIYINVLSVQSNKNVLQLRENYFFWMIFALFAMVIVSILTRWWLHRRVKIEISSLMNYTR
KASEAGNYELFSGSKIYEFDHFGRTLEHTFQRLSEQEKQFEDLFNFSLSPIIVWSIDGDIIKMNPSAKKYFMRRNDQQQC
IFDALKQELQPKIRLAVEQETFREINVEVGNKVFRWNLSPIIFEQRIESIITQGQDITTIAEAAKQSRLARQEAEESARI
RAEFLAKMSHELRTPLNGILGVSQLLKREISNHEQLEQVNVLCSSGEHLLAVLNDILDFSKIEEEQFRIQESDFKLVEVI
SAVESIYRPLCAEKEIEFSLKSNIPPDMMIHGDQVRLNQILFNLLNNATKFTHNGLISIEFQQKNSSHLLISISDTGIGI
REQDLALIFEPFTQVESNTTREYGGSGLGLAIVKSLIEMLDGTVSVKSQFGVGTTFSIKLPLVAVSGCKKEVTSYASTPP
HELFEKPIKVLLVEDNHTNAFIAQAFCKKYRMEVSRVEDGLQAIDYLKDHPVDLILMDNQLPYLGGVETTHLIKHELMMD
VPIYACTADGMQSTNEAFMAAGAEYVIVKPIKEKALHEAFCHFQKRQK

Nucleotide


Download         Length: 2547 bp        

>NTDB_id=242081 CCZ37_RS15185 WP_094501295.1 421019..423565(+) (luxQ) [Vibrio qinghaiensis strain Q67]
ATGAGTTTAAGGTCAAGCAGCGTCAAGAAAAAACAAAAGATAGCCACCGTGATTACCAAATCAATGATTGCGGTAATTGG
CGCGTTGACGCTCAGTGTTTTATTTCAAAGTTATCAGATCAGTAGCAAAATCATTGCTCAAGAAGTGCAACGTACGGCTT
CTCAAACCTCCAGTCTTATTCAGAATCTCTTTAACTTCCGTCTTTCATTACTGCAGGTAAACCAAGATAGCAGCGCAAAA
AATACAGGCTTAGTTAAAGCAATTCGTAAGGGCGATAATGACAGCATTGATCAGTTCTTTTTTGGGGTTGACCAGCTAGA
AGTAACCAATACGCCAGATATTCGTTTCATTTCTGATTCTGACAGCCTGATGTGGGAAGATGGCAATGCGCAGTTTTATG
GTATTGAACAGAACGAGCTGGTAAACATGTCTCATAAAGTTGCGTTAAGTAATAACTGGCATATGATCAAATCGCCTTCT
CAATTGGGCTATACCTACTTAATGCTCAGACGTACACCCGTTATTGACTCACCATCTGGGGAAGTGATTGGCTTTTTGCA
TCTTGCTAGCGTACTTAACAACAATTACGTGCTGGCAGAAACATTACGTGAAGGCAGCAACTCAGAAAATCTCGTGATGA
CGACCGGTGACAAGGTCTTAGCCTCAACAATTAATGGTGATGATACCTACACGGAACATGATCTTTTAGACGATAATTTT
GACGCCTACAGTTTTGCAGATTACATGTTAAGCCGTACCGAGTTAACCACTGAAGGGGTACCAATTTATATTAATGTTCT
CAGTGTGCAGAGTAATAAGAACGTATTGCAATTGCGTGAAAATTATTTTTTTTGGATGATTTTTGCTCTTTTTGCCATGG
TGATAGTCTCTATTTTGACTCGTTGGTGGTTACATCGACGAGTCAAAATAGAGATCAGTAGCTTGATGAATTACACCCGC
AAAGCTTCTGAAGCGGGGAATTATGAGCTTTTTTCTGGTTCTAAAATCTATGAATTTGATCACTTCGGCAGAACGCTAGA
ACACACATTTCAACGTTTATCTGAGCAAGAAAAACAATTTGAGGATCTGTTCAATTTTTCACTTTCGCCCATCATAGTGT
GGAGTATCGACGGCGATATCATCAAAATGAACCCATCCGCAAAAAAATATTTCATGCGTCGCAATGATCAGCAGCAGTGC
ATTTTTGATGCATTAAAGCAGGAGTTGCAGCCAAAGATACGCCTTGCGGTTGAACAAGAAACTTTCCGAGAGATAAATGT
TGAAGTCGGGAATAAGGTTTTTCGTTGGAATTTATCACCCATTATTTTTGAGCAAAGAATTGAGTCAATCATCACCCAAG
GACAAGATATTACGACAATCGCCGAGGCGGCTAAACAGAGCCGACTCGCAAGGCAAGAAGCGGAAGAGTCGGCGCGTATT
CGTGCTGAATTTCTTGCAAAAATGAGCCATGAATTGAGAACACCACTGAATGGAATTTTGGGTGTTTCTCAATTACTTAA
GCGTGAAATTAGCAACCATGAGCAACTTGAGCAAGTGAATGTGTTATGCAGCAGTGGTGAACATTTATTGGCGGTGCTTA
ATGATATCCTTGATTTTTCAAAGATAGAGGAGGAGCAGTTTAGAATTCAAGAGTCTGATTTTAAGCTGGTTGAAGTCATC
TCTGCTGTGGAAAGTATCTATCGACCTTTATGTGCCGAAAAAGAGATTGAGTTCAGCCTGAAGAGCAATATTCCGCCTGA
TATGATGATCCATGGCGATCAAGTCCGCCTGAACCAAATTCTGTTCAATCTATTAAATAATGCCACTAAGTTTACCCACA
ATGGGCTGATTAGCATTGAGTTCCAGCAAAAGAATAGCAGCCATCTGTTGATTTCGATTAGCGATACAGGTATCGGCATC
AGAGAGCAAGATCTCGCGCTTATTTTTGAGCCTTTTACTCAAGTAGAATCAAACACCACACGAGAATACGGCGGGAGTGG
TTTGGGGCTTGCAATTGTCAAAAGCTTGATTGAGATGCTTGATGGTACAGTAAGCGTAAAAAGTCAATTTGGTGTAGGTA
CGACGTTTTCTATCAAACTCCCATTAGTTGCAGTCAGTGGCTGTAAGAAGGAGGTAACATCCTATGCGTCTACTCCACCA
CATGAGCTGTTTGAAAAACCAATCAAAGTGTTGCTAGTCGAAGATAACCATACCAATGCTTTTATTGCTCAAGCATTTTG
CAAAAAATACCGTATGGAAGTGTCAAGAGTGGAAGATGGCCTACAGGCGATTGATTATTTGAAAGATCATCCAGTGGATC
TTATCTTAATGGATAACCAACTGCCTTATTTAGGAGGGGTTGAAACAACCCATTTGATCAAACACGAGCTGATGATGGAT
GTACCTATTTATGCGTGTACAGCTGATGGTATGCAATCGACTAACGAAGCATTCATGGCTGCAGGTGCAGAATATGTGAT
AGTTAAACCCATCAAAGAGAAAGCATTGCATGAGGCTTTTTGTCATTTCCAAAAACGGCAGAAATAA


Secondary structure


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



3D structure


Source ID Structure
  AlphaFold DB A0A223N1Y1

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

55.49

99.882

0.554


Multiple sequence alignment