Detailed information    

insolico Bioinformatically predicted

Overview


Name   luxQ   Type   Regulator
Locus tag   EAE30_RS00475 Genome accession   NZ_CP033077
Coordinates   88909..91488 (+) Length   859 a.a.
NCBI ID   WP_123014170.1    Uniprot ID   -
Organism   Vibrio zhugei strain HBUAS61001     
Function   autoinducer sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 83909..96488
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  EAE30_RS00450 - 86178..86390 (-) 213 Protein_82 IS66 family transposase -
  EAE30_RS00455 tnpB 86450..86803 (-) 354 WP_164711753.1 IS66 family insertion sequence element accessory protein TnpB -
  EAE30_RS00460 - 86800..87120 (-) 321 Protein_84 IS66 family insertion sequence element accessory protein TnpB -
  EAE30_RS00465 - 87434..87610 (+) 177 Protein_85 conjugal transfer protein TraF -
  EAE30_RS00470 luxP 87842..88897 (+) 1056 WP_241967623.1 substrate-binding domain-containing protein Regulator
  EAE30_RS00475 luxQ 88909..91488 (+) 2580 WP_123014170.1 quorum-sensing autoinducer 2 sensor kinase/phosphatase LuxQ Regulator
  EAE30_RS00480 - 91485..92009 (-) 525 WP_123014171.1 hypothetical protein -
  EAE30_RS00485 modA 92402..93184 (+) 783 WP_123014172.1 molybdate ABC transporter substrate-binding protein -
  EAE30_RS00490 modB 93187..93876 (+) 690 WP_123014173.1 molybdate ABC transporter permease subunit -
  EAE30_RS00495 modC 93876..95000 (+) 1125 WP_123014174.1 molybdenum ABC transporter ATP-binding protein ModC -
  EAE30_RS00500 - 94997..96217 (-) 1221 WP_123014175.1 hydroxymethylglutaryl-CoA reductase -

Sequence


Protein


Download         Length: 859 a.a.        Molecular weight: 97385.94 Da        Isoelectric Point: 6.0346

>NTDB_id=321202 EAE30_RS00475 WP_123014170.1 88909..91488(+) (luxQ) [Vibrio zhugei strain HBUAS61001]
MMQQEKIIKPKKHIANFVSYAIIIVLGVLILSVLFQSYQISSRIMSQEVKRTSRQTSNLVQSLFDYRLSTLQIHQDSSAQ
SQSLVSLIENHQLRAIDQYFNRVDQLEITNTPDIRFITTTNGLVWDDGNAQFYGIVGKSLSKIINRVAFNSNWHLVASPS
QLKTMYLLMRRSPMVDQETGQVSGFLYAGIVLNNNYALLETMRDGSNSESLIMTAGKHVLASTLSGREAYQATDIIDSKQ
DQGIYNQYMVSSATLMVEGVSTYLKVYSVQNNHNALSLRNSYYFWMAFALVAMAIVAFVTRWWLQRRIECEISRLMSYTH
QVANQGDDKSFPGSVIYEFDHFGRTLEQTFSRLADQEKQFEDLFNYTTSPMLLWSADGSLIKMNPSARDECLNQYENGKT
LYTALAEQLQTMVRDTTQGLQTESVLTKLGDKMFRWNLSPITVNDEITSVIAQGHDITTILEAEKQSRLARKEAEESARL
RADFLAQMSHELRTPLNGIIGVSQLLQRTVKTKEQIEQVKVLCSSGEHLLAVLSDILDFSRIEQGKFTLKPTEFRLADLA
MTIEQIYQPLCREKHLSLNVTSNIPDTMYVRNDQVRINQILFNLLNNSTKFTHEGRIDVDMRVHESPESTYLSVDVRDTG
IGINEDDLNVVFEPFMQVGAPNTREYGGSGLGLSIVKNLLDMLDGEIKVTSAMNEGTQFSLFIPLTVISHAHSLPVVAPD
EIDFALFEHPIEVLLVEDNHTNAFIARTFCEKYNIHTDWVTNGIQAIEKLKNQHYDLVLMDNQLPHLGGVEATQRIKQEL
QLPVVVYACTADGMGDTRDAFIAAGAEYVLVKPIKELNLYRALRHFKTKYVQRTPSSTH

Nucleotide


Download         Length: 2580 bp        

>NTDB_id=321202 EAE30_RS00475 WP_123014170.1 88909..91488(+) (luxQ) [Vibrio zhugei strain HBUAS61001]
ATGATGCAGCAAGAAAAGATAATTAAACCGAAAAAGCACATCGCGAACTTTGTCAGTTACGCGATTATCATTGTGCTTGG
CGTGTTAATTTTGAGTGTGTTGTTTCAAAGTTATCAAATCAGTAGTCGTATTATGTCTCAGGAAGTCAAACGAACGTCTC
GGCAAACGAGCAATTTAGTGCAGAGTTTGTTTGATTATCGCTTGTCTACCCTACAAATTCACCAAGATAGTAGCGCGCAA
AGTCAAAGCTTAGTGAGTTTGATCGAGAACCATCAATTAAGAGCCATTGATCAATATTTTAATCGTGTCGATCAACTTGA
GATTACCAATACCCCAGATATTCGTTTTATCACCACCACGAACGGCTTGGTGTGGGATGACGGCAACGCACAGTTTTATG
GCATTGTTGGCAAGAGTCTATCGAAAATCATCAACCGAGTGGCGTTTAACAGTAATTGGCACCTTGTTGCGTCTCCCTCA
CAGTTAAAAACCATGTATTTGTTGATGCGGCGCTCACCGATGGTGGATCAAGAAACAGGGCAGGTCAGTGGGTTTCTTTA
TGCCGGTATTGTATTAAATAACAACTATGCCTTGCTTGAAACCATGCGCGATGGCAGCAATTCTGAAAGCCTTATCATGA
CGGCCGGAAAGCATGTTTTGGCATCGACTTTGAGTGGACGCGAGGCGTATCAAGCGACGGACATTATTGATTCGAAACAA
GATCAAGGCATCTACAACCAGTATATGGTCAGTAGTGCGACATTAATGGTCGAAGGAGTCTCGACCTATTTGAAAGTCTA
CTCGGTACAAAATAACCACAACGCTTTATCATTAAGAAACAGTTATTACTTTTGGATGGCGTTCGCACTGGTTGCCATGG
CTATTGTTGCTTTTGTTACTCGTTGGTGGTTGCAACGGCGTATTGAATGTGAAATAAGCCGCTTAATGTCATACACCCAT
CAAGTCGCGAATCAAGGGGACGACAAATCCTTCCCTGGTTCCGTGATATATGAGTTTGATCATTTTGGCCGCACATTGGA
ACAAACCTTTTCTCGTTTAGCCGATCAAGAAAAACAATTCGAAGATTTGTTTAACTACACCACGTCTCCCATGTTGTTGT
GGTCGGCCGATGGTTCGTTAATCAAAATGAACCCTTCAGCGCGAGATGAGTGCTTAAACCAATACGAAAATGGTAAAACA
TTGTATACCGCGTTAGCTGAGCAGCTACAGACCATGGTTCGAGATACGACCCAAGGGTTACAAACGGAGTCTGTATTGAC
CAAGCTCGGAGATAAAATGTTTCGGTGGAACCTATCTCCGATCACCGTTAATGATGAAATTACTTCTGTAATCGCGCAGG
GGCATGACATCACAACGATTCTAGAAGCAGAAAAACAAAGTCGCCTAGCACGTAAAGAAGCGGAAGAGTCAGCGCGCTTA
CGTGCGGACTTTTTAGCACAAATGAGCCATGAATTACGCACGCCACTTAATGGGATTATCGGGGTTTCACAGTTATTGCA
GCGTACGGTGAAAACCAAAGAACAGATCGAACAAGTGAAGGTTTTGTGCAGTAGTGGTGAGCATTTACTGGCCGTATTAA
GCGATATTCTTGATTTTTCTCGTATTGAGCAAGGTAAGTTCACACTGAAACCGACGGAATTTCGTTTAGCGGATTTAGCG
ATGACCATCGAGCAAATCTATCAGCCGTTGTGTCGTGAAAAACACTTGAGCTTGAATGTGACGAGCAACATTCCTGACAC
GATGTACGTGCGCAATGACCAAGTTCGGATTAACCAAATTCTTTTTAACCTTCTTAATAATTCGACTAAGTTCACTCATG
AAGGCCGTATTGATGTCGATATGCGTGTGCATGAAAGTCCCGAATCTACCTACTTGAGTGTCGATGTGCGCGACACTGGG
ATTGGCATCAATGAAGACGATTTAAACGTGGTGTTTGAACCCTTTATGCAGGTCGGGGCGCCCAATACCCGTGAGTACGG
CGGCAGTGGTCTGGGATTGTCTATTGTGAAAAACTTACTAGACATGCTCGATGGAGAGATAAAGGTGACCTCTGCCATGA
ATGAAGGCACGCAATTTTCGTTATTCATTCCATTAACGGTGATTTCACATGCTCATTCTTTACCGGTGGTGGCGCCTGAT
GAGATCGACTTTGCCTTATTTGAGCATCCCATTGAGGTACTCCTAGTCGAAGATAATCATACCAATGCGTTTATTGCTCG
GACATTTTGTGAGAAATACAATATTCACACCGATTGGGTGACTAATGGCATTCAAGCGATTGAAAAGCTAAAAAACCAGC
ATTATGATTTAGTGTTGATGGATAACCAATTACCGCATTTAGGCGGGGTTGAAGCCACTCAGCGTATTAAGCAAGAATTA
CAATTACCCGTGGTAGTGTATGCCTGTACTGCCGATGGCATGGGGGATACCCGAGATGCTTTCATCGCGGCAGGGGCCGA
GTACGTGTTAGTCAAGCCCATTAAAGAACTCAATTTATATCGAGCGCTGCGTCACTTTAAAACAAAGTATGTACAGCGCA
CCCCATCATCGACACATTAA


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

55.437

98.487

0.546


Multiple sequence alignment