Detailed information
Overview
| Name | luxQ | Type | Regulator |
| Locus tag | MRO11_RS16860 | Genome accession | NZ_CP095337 |
| Coordinates | 679302..681833 (-) | Length | 843 a.a. |
| NCBI ID | WP_342639462.1 | Uniprot ID | - |
| Organism | Vibrio metschnikovii strain 19GA03SH07 | ||
| Function | autoinducer sensor (predicted from homology) Competence regulation |
||
Genomic Context
Location: 674302..686833
| Locus tag | Gene name | Coordinates (strand) | Size (bp) | Protein ID | Product | Description |
|---|---|---|---|---|---|---|
| MRO11_RS16835 (MRO11_16765) | - | 674631..675890 (+) | 1260 | WP_004396671.1 | hydroxymethylglutaryl-CoA reductase | - |
| MRO11_RS16840 (MRO11_16770) | modC | 675951..677063 (-) | 1113 | WP_342639345.1 | molybdenum ABC transporter ATP-binding protein ModC | - |
| MRO11_RS16845 (MRO11_16775) | modB | 677063..677761 (-) | 699 | WP_050782752.1 | molybdate ABC transporter permease subunit | - |
| MRO11_RS16850 (MRO11_16780) | modA | 677742..678524 (-) | 783 | WP_342639346.1 | molybdate ABC transporter substrate-binding protein | - |
| MRO11_RS16855 (MRO11_16785) | - | 678714..679238 (+) | 525 | WP_342639347.1 | hypothetical protein | - |
| MRO11_RS16860 (MRO11_16790) | luxQ | 679302..681833 (-) | 2532 | WP_342639462.1 | LuxQ periplasmic sensor domain-containing protein | Regulator |
| MRO11_RS16865 (MRO11_16795) | luxP | 681891..682982 (-) | 1092 | WP_217538486.1 | substrate-binding domain-containing protein | Regulator |
| MRO11_RS16870 (MRO11_16800) | - | 683033..683314 (-) | 282 | WP_158137233.1 | GIY-YIG nuclease family protein | - |
| MRO11_RS16875 (MRO11_16805) | - | 683317..683949 (-) | 633 | WP_332405121.1 | YceH family protein | - |
| MRO11_RS16880 (MRO11_16810) | - | 683992..684195 (-) | 204 | WP_040905109.1 | hypothetical protein | - |
| MRO11_RS16885 (MRO11_16815) | - | 684586..684915 (+) | 330 | WP_004396679.1 | DUF496 family protein | - |
| MRO11_RS16890 (MRO11_16820) | - | 685239..685490 (+) | 252 | WP_072670703.1 | YgjV family protein | - |
Sequence
Protein
Download Length: 843 a.a. Molecular weight: 95089.75 Da Isoelectric Point: 4.9932
>NTDB_id=676457 MRO11_RS16860 WP_342639462.1 679302..681833(-) (luxQ) [Vibrio metschnikovii strain 19GA03SH07]
MATLISRAIVMALSVLTLGILFHTYQVSSRLITQEVIRTTNQTANLIQNIFNSRLTILKIHQDSSAKNATLVHALHGHLT
NELEQYFLSVDRSDISHMADFRFIANVTQPIWDDGNAQFYGLTDNTFIHIIEQVAFSHDWHLITTRSLIGDVYLLVRRTP
IIDTVSGESLGFLYISVVLNNNVTLVENLRERSDSQQLVLAAGGDVLASTLTGAEAYQVDEVVKEGEEGYDIHGKYVVSR
TPLTLAGAPTVLTVYAVQSNQNALALRNNYLFWMFAVVAAIAFVFIIVRWWLQRKIENEMTRLMSYTHQVVELREGAYFP
GSQIVEFDHFGRTLESTFHQLAEQEKQFEDLFNFSLSPTLLWTAQGGLIRMNPSAEAYFLSHYSQQHSLFARVKPQLIVA
VQQAAQGNIVKALKTEFDGKTILWELSPIILDERIVSIITQGQDITSMVEAEQQSRLAREQAEESARLRADFLAKMSHEL
RTPLNGILGASQLLKQNSLTQEQQELVNVLCSSGEHLLAVLNDILDFSKIEQGKFLIQNSDFPVVAMVSAIRRIYNPLCK
EKGLELMIECAIEPEIRLHSDQIRLNQILFNLLSNAVKFTHQGSICIKLALIQQGGIDKLMISIEDTGIGIAATDLQRIF
DPFVQAESTTTREYGGSGLGLSIVSSLVELLHGEITVKSEVGYGTRFDLLFPIRIVVNEELSDAEQTNTDRYQLFTQPIR
ALLVEDNRTNAFILQAFCQKYSIQVDWVSDGLQAIERVKEQDYDLIFMDNQLPYLGGIDTARIIRHEMKLSLPIYACTAD
GLLETQQAFIEAGAEYVLVKPLKEEMFYQALCFFKQQRTNSER
MATLISRAIVMALSVLTLGILFHTYQVSSRLITQEVIRTTNQTANLIQNIFNSRLTILKIHQDSSAKNATLVHALHGHLT
NELEQYFLSVDRSDISHMADFRFIANVTQPIWDDGNAQFYGLTDNTFIHIIEQVAFSHDWHLITTRSLIGDVYLLVRRTP
IIDTVSGESLGFLYISVVLNNNVTLVENLRERSDSQQLVLAAGGDVLASTLTGAEAYQVDEVVKEGEEGYDIHGKYVVSR
TPLTLAGAPTVLTVYAVQSNQNALALRNNYLFWMFAVVAAIAFVFIIVRWWLQRKIENEMTRLMSYTHQVVELREGAYFP
GSQIVEFDHFGRTLESTFHQLAEQEKQFEDLFNFSLSPTLLWTAQGGLIRMNPSAEAYFLSHYSQQHSLFARVKPQLIVA
VQQAAQGNIVKALKTEFDGKTILWELSPIILDERIVSIITQGQDITSMVEAEQQSRLAREQAEESARLRADFLAKMSHEL
RTPLNGILGASQLLKQNSLTQEQQELVNVLCSSGEHLLAVLNDILDFSKIEQGKFLIQNSDFPVVAMVSAIRRIYNPLCK
EKGLELMIECAIEPEIRLHSDQIRLNQILFNLLSNAVKFTHQGSICIKLALIQQGGIDKLMISIEDTGIGIAATDLQRIF
DPFVQAESTTTREYGGSGLGLSIVSSLVELLHGEITVKSEVGYGTRFDLLFPIRIVVNEELSDAEQTNTDRYQLFTQPIR
ALLVEDNRTNAFILQAFCQKYSIQVDWVSDGLQAIERVKEQDYDLIFMDNQLPYLGGIDTARIIRHEMKLSLPIYACTAD
GLLETQQAFIEAGAEYVLVKPLKEEMFYQALCFFKQQRTNSER
Nucleotide
Download Length: 2532 bp
>NTDB_id=676457 MRO11_RS16860 WP_342639462.1 679302..681833(-) (luxQ) [Vibrio metschnikovii strain 19GA03SH07]
ATGGCCACCCTGATTAGCCGAGCCATCGTGATGGCATTGAGCGTGTTAACGCTCGGTATTTTATTTCATACTTATCAAGT
TAGTAGCCGATTAATTACGCAAGAAGTGATACGGACCACCAATCAAACGGCGAATTTGATCCAGAATATATTTAATTCTC
GTCTGACTATTTTAAAAATTCATCAAGACAGCAGTGCGAAAAATGCCACTTTAGTTCATGCCTTACATGGCCACTTAACT
AATGAGCTTGAACAGTATTTTCTCAGTGTTGATCGCAGTGATATCAGCCATATGGCGGACTTTCGGTTTATCGCTAATGT
TACTCAACCGATCTGGGATGATGGTAATGCCCAGTTTTATGGTTTAACTGACAACACGTTTATCCATATCATTGAACAAG
TCGCGTTTAGCCATGATTGGCACTTAATCACTACGCGATCTTTAATTGGCGATGTGTATCTTTTGGTTCGCCGTACGCCG
ATTATTGATACCGTGAGTGGTGAATCCCTAGGTTTTTTATACATCAGTGTGGTGCTGAACAATAATGTTACCTTAGTGGA
GAACTTACGTGAGCGCAGTGACTCACAGCAACTGGTACTTGCTGCGGGAGGTGATGTTTTAGCCTCGACATTGACAGGGG
CAGAAGCTTATCAAGTGGATGAGGTGGTCAAAGAAGGCGAAGAAGGTTACGACATCCATGGCAAGTATGTGGTTAGTCGC
ACGCCATTAACTTTAGCCGGAGCGCCAACCGTTCTCACGGTATACGCTGTGCAGAGTAACCAAAATGCGCTCGCTCTACG
TAATAATTACTTATTTTGGATGTTTGCTGTCGTTGCGGCGATCGCTTTCGTTTTCATTATTGTTCGTTGGTGGCTACAAC
GTAAAATTGAAAACGAAATGACGCGCTTAATGTCTTATACCCATCAAGTGGTTGAGCTACGTGAAGGTGCCTATTTCCCT
GGTTCTCAAATTGTTGAGTTTGATCACTTTGGGCGCACGTTAGAAAGCACTTTTCATCAACTGGCCGAACAAGAAAAACA
GTTTGAGGATCTCTTTAATTTTTCGTTATCGCCGACGCTATTGTGGACGGCCCAGGGCGGTTTGATTCGTATGAATCCGT
CGGCTGAGGCTTATTTCTTGAGTCATTATTCTCAACAGCATTCTCTTTTTGCCCGCGTTAAGCCTCAGTTGATTGTCGCG
GTTCAGCAAGCGGCACAAGGTAATATTGTCAAAGCGCTCAAAACAGAGTTCGATGGTAAAACCATTCTATGGGAATTATC
ACCGATCATATTGGATGAGCGGATTGTTTCGATCATTACTCAAGGACAAGATATCACGTCGATGGTGGAAGCGGAGCAGC
AAAGTCGCCTTGCTCGTGAACAAGCGGAAGAGTCCGCTCGATTACGGGCTGATTTTCTCGCCAAAATGAGCCATGAATTA
CGGACGCCGTTAAACGGTATTTTAGGCGCTTCTCAATTATTAAAACAAAATTCGCTCACTCAGGAGCAGCAAGAGTTAGT
CAATGTATTGTGCAGCAGCGGTGAGCATCTGCTCGCTGTTTTGAATGATATCCTTGATTTTTCAAAAATTGAGCAGGGAA
AATTTCTGATCCAAAATAGTGATTTCCCAGTCGTAGCTATGGTTTCAGCGATTCGGCGTATCTATAACCCTTTATGCAAA
GAGAAGGGACTTGAGTTGATGATTGAGTGCGCGATTGAGCCGGAAATTCGCTTACACAGCGATCAAATACGCTTAAATCA
GATTTTATTCAATTTACTCAGTAATGCCGTTAAGTTTACTCATCAGGGGTCGATTTGCATTAAATTAGCGCTTATTCAAC
AAGGCGGCATCGATAAGTTAATGATTAGCATAGAAGATACGGGGATCGGGATTGCGGCGACGGATTTACAGCGTATTTTT
GACCCTTTTGTACAAGCAGAATCGACCACGACTCGGGAATACGGAGGTAGTGGTTTAGGCTTATCGATAGTCAGCAGTTT
AGTTGAATTATTGCATGGTGAGATCACGGTAAAATCAGAGGTTGGTTATGGTACGCGCTTTGATTTGCTGTTTCCTATTC
GTATTGTCGTGAATGAGGAATTGAGCGACGCCGAACAGACTAATACGGATCGCTATCAATTATTTACTCAGCCTATACGC
GCATTATTGGTAGAGGATAACCGTACGAATGCTTTTATTTTACAAGCATTTTGTCAGAAATATTCAATACAGGTCGATTG
GGTGAGTGATGGTTTACAAGCCATTGAGCGGGTAAAGGAACAAGATTACGATCTGATTTTTATGGACAATCAGTTACCGT
ATTTGGGGGGCATTGATACCGCACGAATCATTCGGCATGAGATGAAACTGTCGTTACCGATTTATGCCTGTACGGCCGAT
GGCTTGCTAGAGACACAACAAGCCTTCATTGAGGCCGGAGCGGAATACGTATTAGTGAAGCCACTCAAAGAAGAGATGTT
TTATCAAGCGCTGTGCTTTTTTAAACAACAACGTACTAATTCAGAGCGCTGA
ATGGCCACCCTGATTAGCCGAGCCATCGTGATGGCATTGAGCGTGTTAACGCTCGGTATTTTATTTCATACTTATCAAGT
TAGTAGCCGATTAATTACGCAAGAAGTGATACGGACCACCAATCAAACGGCGAATTTGATCCAGAATATATTTAATTCTC
GTCTGACTATTTTAAAAATTCATCAAGACAGCAGTGCGAAAAATGCCACTTTAGTTCATGCCTTACATGGCCACTTAACT
AATGAGCTTGAACAGTATTTTCTCAGTGTTGATCGCAGTGATATCAGCCATATGGCGGACTTTCGGTTTATCGCTAATGT
TACTCAACCGATCTGGGATGATGGTAATGCCCAGTTTTATGGTTTAACTGACAACACGTTTATCCATATCATTGAACAAG
TCGCGTTTAGCCATGATTGGCACTTAATCACTACGCGATCTTTAATTGGCGATGTGTATCTTTTGGTTCGCCGTACGCCG
ATTATTGATACCGTGAGTGGTGAATCCCTAGGTTTTTTATACATCAGTGTGGTGCTGAACAATAATGTTACCTTAGTGGA
GAACTTACGTGAGCGCAGTGACTCACAGCAACTGGTACTTGCTGCGGGAGGTGATGTTTTAGCCTCGACATTGACAGGGG
CAGAAGCTTATCAAGTGGATGAGGTGGTCAAAGAAGGCGAAGAAGGTTACGACATCCATGGCAAGTATGTGGTTAGTCGC
ACGCCATTAACTTTAGCCGGAGCGCCAACCGTTCTCACGGTATACGCTGTGCAGAGTAACCAAAATGCGCTCGCTCTACG
TAATAATTACTTATTTTGGATGTTTGCTGTCGTTGCGGCGATCGCTTTCGTTTTCATTATTGTTCGTTGGTGGCTACAAC
GTAAAATTGAAAACGAAATGACGCGCTTAATGTCTTATACCCATCAAGTGGTTGAGCTACGTGAAGGTGCCTATTTCCCT
GGTTCTCAAATTGTTGAGTTTGATCACTTTGGGCGCACGTTAGAAAGCACTTTTCATCAACTGGCCGAACAAGAAAAACA
GTTTGAGGATCTCTTTAATTTTTCGTTATCGCCGACGCTATTGTGGACGGCCCAGGGCGGTTTGATTCGTATGAATCCGT
CGGCTGAGGCTTATTTCTTGAGTCATTATTCTCAACAGCATTCTCTTTTTGCCCGCGTTAAGCCTCAGTTGATTGTCGCG
GTTCAGCAAGCGGCACAAGGTAATATTGTCAAAGCGCTCAAAACAGAGTTCGATGGTAAAACCATTCTATGGGAATTATC
ACCGATCATATTGGATGAGCGGATTGTTTCGATCATTACTCAAGGACAAGATATCACGTCGATGGTGGAAGCGGAGCAGC
AAAGTCGCCTTGCTCGTGAACAAGCGGAAGAGTCCGCTCGATTACGGGCTGATTTTCTCGCCAAAATGAGCCATGAATTA
CGGACGCCGTTAAACGGTATTTTAGGCGCTTCTCAATTATTAAAACAAAATTCGCTCACTCAGGAGCAGCAAGAGTTAGT
CAATGTATTGTGCAGCAGCGGTGAGCATCTGCTCGCTGTTTTGAATGATATCCTTGATTTTTCAAAAATTGAGCAGGGAA
AATTTCTGATCCAAAATAGTGATTTCCCAGTCGTAGCTATGGTTTCAGCGATTCGGCGTATCTATAACCCTTTATGCAAA
GAGAAGGGACTTGAGTTGATGATTGAGTGCGCGATTGAGCCGGAAATTCGCTTACACAGCGATCAAATACGCTTAAATCA
GATTTTATTCAATTTACTCAGTAATGCCGTTAAGTTTACTCATCAGGGGTCGATTTGCATTAAATTAGCGCTTATTCAAC
AAGGCGGCATCGATAAGTTAATGATTAGCATAGAAGATACGGGGATCGGGATTGCGGCGACGGATTTACAGCGTATTTTT
GACCCTTTTGTACAAGCAGAATCGACCACGACTCGGGAATACGGAGGTAGTGGTTTAGGCTTATCGATAGTCAGCAGTTT
AGTTGAATTATTGCATGGTGAGATCACGGTAAAATCAGAGGTTGGTTATGGTACGCGCTTTGATTTGCTGTTTCCTATTC
GTATTGTCGTGAATGAGGAATTGAGCGACGCCGAACAGACTAATACGGATCGCTATCAATTATTTACTCAGCCTATACGC
GCATTATTGGTAGAGGATAACCGTACGAATGCTTTTATTTTACAAGCATTTTGTCAGAAATATTCAATACAGGTCGATTG
GGTGAGTGATGGTTTACAAGCCATTGAGCGGGTAAAGGAACAAGATTACGATCTGATTTTTATGGACAATCAGTTACCGT
ATTTGGGGGGCATTGATACCGCACGAATCATTCGGCATGAGATGAAACTGTCGTTACCGATTTATGCCTGTACGGCCGAT
GGCTTGCTAGAGACACAACAAGCCTTCATTGAGGCCGGAGCGGAATACGTATTAGTGAAGCCACTCAAAGAAGAGATGTT
TTATCAAGCGCTGTGCTTTTTTAAACAACAACGTACTAATTCAGAGCGCTGA
3D structure
| Source | ID | Structure |
|---|
Similar proteins
Only experimentally validated proteins are listed.
| Protein | Organism | Identities (%) | Coverage (%) | Ha-value |
|---|---|---|---|---|
| luxQ | Vibrio cholerae strain A1552 |
54.221 |
99.763 |
0.541 |