Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   vm_RS16975 Genome accession   NZ_CP016384
Coordinates   390927..393500 (-) Length   857 a.a.
NCBI ID   WP_070382846.1    Uniprot ID   -
Organism   Vibrio mimicus strain SCCF01     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 385927..398500
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  vm_RS16950 (VM_16955) modA 386570..387328 (-) 759 WP_070382843.1 molybdate ABC transporter substrate-binding protein -
  vm_RS16955 (VM_16960) - 387340..388803 (-) 1464 WP_070382844.1 cobyric acid synthase -
  vm_RS16960 (VM_16965) - 388982..389380 (+) 399 WP_005525727.1 YgiW/YdeI family stress tolerance OB fold protein -
  vm_RS16965 (VM_16970) - 389593..390111 (+) 519 WP_000932976.1 hypothetical protein -
  vm_RS16970 (VM_16975) - 390270..390935 (+) 666 WP_070382845.1 PilZ domain-containing protein -
  vm_RS16975 (VM_16980) luxQ 390927..393500 (-) 2574 WP_070382846.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  vm_RS16980 (VM_16985) luxP 393520..394617 (-) 1098 WP_000827826.1 autoinducer 2-binding periplasmic protein LuxP Regulator
  vm_RS16985 (VM_16990) traF 394816..395976 (-) 1161 WP_070382847.1 conjugal transfer protein TraF -
  vm_RS16990 (VM_16995) - 396077..396376 (-) 300 WP_000387992.1 GIY-YIG nuclease family protein -
  vm_RS16995 (VM_17000) - 396376..397026 (-) 651 WP_005525716.1 YceH family protein -
  vm_RS17000 (VM_17005) - 397069..397266 (-) 198 WP_005525715.1 hypothetical protein -
  vm_RS17005 (VM_17010) - 397455..397775 (+) 321 WP_001089530.1 DUF496 family protein -
  vm_RS17010 (VM_17015) - 398187..398438 (+) 252 WP_005520676.1 YgjV family protein -

Sequence


Protein


Download         Length: 857 a.a.        Molecular weight: 96887.75 Da        Isoelectric Point: 5.8315

>NTDB_id=187710 vm_RS16975 WP_070382846.1 390927..393500(-) (luxQ) [Vibrio mimicus strain SCCF01]
MNIRPSQIKHKQRIASFITHAVVATLGVLILSVLFQSYQISSRLMAQEGQRTSVQTSSLIQSLFDFRLAALKIHQDSTAK
NVSLISALASRQSGRLDEFFSSVDELELANAPDLRFISSNDKILWDDGNASFYGISVPEQNKLIRKVAISGNWHLVQTPS
DGKSIHLLVRRSSLIESGTGQVMGYLYVGIVLNDNFALVETIRSGSNSENLVLAVDSNLLVSTLKGNEPYTLDYVMNSAN
DAMNDSFIVGQTFLDVEGVPTYLCVYSIQPNKNVLTLRDNFYFWMAFALVSMIAVSIASRWWLQKRIQSEIETLMSYTHK
LMELDTKSQFAGSKIYEFDYFGRTLEQSFRRLANKEKQFEDLFNFALSPTMLWNTAGRLIRMNPSAQIQFLREDAQNHFL
FEILERQLLPMITYAAQGKNPSEVTTEVDGRVYRWNLSPIMVEGQIISIITQGQDVTSIAEAEKQSQVARREAEESARVR
AEFLAKMSHELRTPLNGVLGVSQLLKRTPLTDEQREHVAVLCSSGEHLLAVLNDILDFSRLEQGKFRIQKSEFRLKELVC
AIDRIYRPLCNDKGIELVVESNITSATLVRSDQIRINQILFNLLNNAIKFTHQGSIRVALELIEGDPLAQLVIQVVDTGI
GIREEDLTVIFEPFMQAESTTTREYGGSGLGLTIVHSLVEMLSGQLHVSSEYGHGTRFEIQLPIELVEMTATPQQLAPPQ
EPYRLFEKPLRVLLVEDNHTNAFIAQAFCRKYGLDVRWVTDGLQAIEELKLHTYDLVLMDNQLPYLDGVETTKTIKQVLH
LPVVVYACTADGLEETRQAFFHAGAEYVLVKPLKEQTLHKALEHYKNQYLNNNDRSN

Nucleotide


Download         Length: 2574 bp        

>NTDB_id=187710 vm_RS16975 WP_070382846.1 390927..393500(-) (luxQ) [Vibrio mimicus strain SCCF01]
TTGAACATTCGACCTAGCCAGATCAAGCATAAACAGCGTATCGCTTCATTTATTACTCATGCGGTGGTCGCGACCTTGGG
CGTGTTGATCCTGAGTGTTTTATTCCAAAGTTATCAGATCAGTAGCCGCTTGATGGCACAAGAGGGGCAACGAACCTCAG
TCCAAACCTCAAGCTTGATACAAAGCTTGTTCGATTTTCGTCTAGCGGCACTCAAAATTCACCAAGACAGTACGGCGAAA
AATGTCAGTTTAATCAGTGCATTGGCCAGTAGACAGTCTGGTCGGTTGGATGAATTCTTCTCCAGTGTTGATGAGCTTGA
ACTCGCTAATGCGCCCGATCTGCGTTTCATTTCGAGTAACGATAAAATCCTGTGGGATGACGGCAACGCCTCTTTTTATG
GGATCTCAGTGCCTGAACAGAATAAATTGATTCGCAAAGTGGCGATTAGCGGCAACTGGCATCTGGTACAAACCCCCAGT
GATGGTAAATCGATCCACCTTTTAGTACGTCGCTCGTCACTGATTGAATCCGGCACTGGCCAAGTGATGGGCTACCTCTA
TGTTGGCATCGTACTTAACGACAACTTTGCTTTAGTTGAAACCATACGCAGTGGCAGTAACTCTGAAAACCTGGTGTTGG
CGGTGGATTCTAATCTGCTGGTTTCTACACTGAAAGGTAACGAGCCTTATACGTTGGATTACGTGATGAACAGTGCCAAC
GACGCAATGAACGATAGCTTTATTGTGGGGCAGACCTTTTTAGATGTGGAAGGTGTGCCAACCTACCTTTGTGTTTACTC
GATTCAGCCCAACAAAAATGTTCTGACCTTACGTGATAATTTTTATTTCTGGATGGCCTTTGCGCTCGTCAGCATGATTG
CAGTATCAATTGCATCACGCTGGTGGTTGCAAAAACGTATTCAGTCTGAAATCGAAACCTTAATGAGCTACACCCACAAG
CTGATGGAGTTAGATACGAAAAGTCAGTTCGCGGGGTCGAAAATCTATGAATTTGACTATTTTGGGCGAACTCTCGAGCA
GTCATTCCGCCGTTTGGCCAACAAAGAGAAGCAGTTTGAAGATCTCTTCAACTTTGCTTTGTCGCCCACCATGCTATGGA
ATACGGCTGGGCGATTGATCCGTATGAACCCTTCGGCACAAATTCAGTTCTTGCGCGAAGATGCGCAGAATCATTTCTTA
TTTGAGATTCTTGAACGTCAATTGTTGCCAATGATCACCTATGCGGCACAAGGTAAAAACCCTAGTGAAGTAACGACAGA
GGTGGATGGGCGAGTCTATCGCTGGAACCTTTCGCCAATCATGGTGGAAGGGCAGATTATTTCGATAATCACCCAAGGCC
AGGATGTCACATCAATTGCAGAGGCAGAAAAACAGAGCCAAGTAGCAAGACGTGAAGCAGAAGAGTCTGCGCGCGTGAGG
GCGGAATTTTTGGCTAAGATGAGCCACGAGCTGCGTACGCCTCTCAACGGTGTGTTAGGTGTTTCTCAATTGCTTAAACG
TACTCCACTCACGGATGAGCAGCGTGAACATGTGGCGGTACTGTGTAGCAGTGGAGAACATCTGCTGGCGGTGCTGAATG
ATATTCTGGATTTCTCTCGTCTGGAACAAGGTAAATTCCGCATTCAAAAGAGTGAATTCCGTCTTAAGGAATTAGTCTGC
GCGATTGATCGAATCTATCGTCCATTGTGTAACGACAAAGGGATAGAGCTGGTGGTGGAATCAAACATCACGAGTGCGAC
CTTAGTACGCAGTGATCAGATCCGTATTAATCAGATTCTGTTTAACTTGCTCAATAACGCGATCAAATTTACTCACCAAG
GTTCCATTCGAGTCGCTCTGGAATTAATTGAAGGTGATCCTTTAGCGCAGCTGGTGATTCAGGTGGTGGATACCGGGATT
GGGATTCGAGAAGAAGATCTGACCGTAATTTTTGAGCCATTTATGCAGGCGGAATCGACGACAACTCGTGAATACGGCGG
CAGTGGTTTGGGGTTGACCATAGTTCATAGCTTGGTCGAGATGCTCAGTGGGCAATTGCACGTGAGTTCAGAATATGGTC
ACGGTACGCGCTTTGAGATTCAACTGCCGATAGAGTTGGTGGAAATGACCGCGACGCCTCAACAGCTTGCTCCACCGCAA
GAGCCGTATCGATTATTTGAAAAACCGCTACGTGTGCTGCTTGTTGAGGATAACCATACTAATGCGTTCATCGCTCAAGC
GTTTTGTCGTAAATATGGTCTTGATGTTAGGTGGGTCACCGATGGTTTACAGGCGATTGAGGAGCTCAAGCTCCACACTT
ATGACTTGGTGTTGATGGATAATCAGCTACCTTATCTTGATGGCGTAGAAACGACGAAAACCATCAAACAGGTTCTGCAT
TTGCCTGTTGTGGTGTATGCCTGTACGGCAGATGGTCTGGAAGAAACACGCCAAGCCTTCTTCCATGCAGGTGCAGAGTA
CGTACTTGTTAAACCACTCAAAGAGCAGACACTGCATAAAGCATTAGAGCACTATAAAAACCAGTATCTCAATAACAACG
ATCGCTCAAATTGA


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

89.566

99.533

0.891


Multiple sequence alignment