Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   KQY33_RS12380 Genome accession   NZ_CP076733
Coordinates   2685725..2689117 (+) Length   1130 a.a.
NCBI ID   WP_284633758.1    Uniprot ID   -
Organism   Photobacterium damselae strain Pdd2008     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 2680725..2694117
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  KQY33_RS12360 (KQY33_12330) - 2680854..2681357 (-) 504 WP_284633755.1 hypothetical protein -
  KQY33_RS12365 (KQY33_12335) - 2681357..2682574 (-) 1218 WP_284633756.1 ATP-binding protein -
  KQY33_RS12370 (KQY33_12340) - 2683104..2684192 (+) 1089 WP_044176757.1 AI-2E family transporter -
  KQY33_RS12375 (KQY33_12345) rsmC 2684392..2685411 (+) 1020 WP_176284957.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  KQY33_RS12380 (KQY33_12350) chiS 2685725..2689117 (+) 3393 WP_284633758.1 response regulator Regulator
  KQY33_RS12385 (KQY33_12355) - 2689818..2691494 (+) 1677 WP_068946919.1 ABC transporter substrate-binding protein -
  KQY33_RS12390 (KQY33_12360) - 2691641..2692627 (+) 987 WP_065172285.1 ABC transporter permease -
  KQY33_RS12395 (KQY33_12365) - 2692630..2693655 (+) 1026 WP_068969481.1 ABC transporter permease -

Sequence


Protein


Download         Length: 1130 a.a.        Molecular weight: 127195.31 Da        Isoelectric Point: 6.6791

>NTDB_id=577826 KQY33_RS12380 WP_284633758.1 2685725..2689117(+) (chiS) [Photobacterium damselae strain Pdd2008]
MQTKQRFKRLQHTLMLAFLVLSITPLTLSALYFLNSHSKDLAEQSTSHLASLLENKKKQLSQFFAAKESEVQSFARSELA
NASGGRFYGLVGAYHQLGNINNLLNGLTREQYFKEILTAKGQKSTTNSASYVGHERYRLMYKRYNWAFDEYLKRSDFSDI
LLVDLKGNVVYSAKKPQYFALNLASGKGALKGLQPTFQAISTQAQQLKQDQEVVPVAFADFNLGGNNQSEQAWFAAPIIQ
QGYLHSYVFFQLDINKIATLLADKPQNGQTVQTLLVGQDHHMRLPNSGDLPQQLISPAINQALAGKTGVGSLLNYNNIAV
LSAFTPIKIFNHTWALVVELPEKEAFARIHQLEKIFFAAMLTAIVLVILAALWLSNSITAPLLRLTWASERVSAGDLEQK
IEGTERKDEIGRLATSFARMQCSIREKMSLISKQNQELEKNIHVIKQQNDDLQTADKLKDEFLATTSHELRTPLHGMIGI
AESLLAGANGPMQGAQRRQLEMLINSGQRLTNLVDDLLDYHKMRYGDLDIDKHAVDLASAVRLVLELSGHLLGTKPVRII
NQIPADLPLVQADEQRLEQVLYNLVGNAIKYTSEGKIVLSATVLENQVRIQVVDTGQGIPAEQLEHIFEPLVQANTNHAN
YRQGAGLGLTISRQLLELMGGRLYVSSQPMVGTTFSFTLNIASDEQIRQSHDHGKIHHFQAPLCDATPIEMANLPENLNG
ELLLVVDDEPVNLQILNNFLRLEGYRVLTAENGKQALELVQSHKPALILLDIMMPEMSGYEVCSQLRQQYTPLELPIMML
SALGQVKDRVKGFECGANDYLTKPFNKEELTARIKAHLQAGKTEFEREKNRQLAQEIQQRKQVELSLLETQTRLLGLLES
TTEAILCIQNSGRIRYANDAAAKLFKRTPEQLERHSIDELLLTHLPDELQNNHHYSGSLCFKIGEQQQNLATDILNLPEE
SGLKQMFIFGNSGPSPQQRVQMLEEAIDVLSSYAFDGDKDNLQQLRELGGEFTRLADKLGNDAPNKQDILRELLVDAMRT
TLEVWEQDTKKTKFDLAEESGLWRVYLDRSTLQTRTLDKYLHVETLPKTPRWRTVISTIDYVLDKGSAQNIQHQQLSQMR
DKLQNLLRAS

Nucleotide


Download         Length: 3393 bp        

>NTDB_id=577826 KQY33_RS12380 WP_284633758.1 2685725..2689117(+) (chiS) [Photobacterium damselae strain Pdd2008]
ATGCAAACAAAACAACGATTTAAACGTCTTCAGCATACATTAATGCTGGCTTTTCTTGTTCTTAGTATTACGCCATTAAC
TCTCTCCGCACTGTATTTCCTCAACTCACACTCCAAGGATTTGGCAGAGCAAAGCACATCGCATTTGGCGTCTCTTCTTG
AGAATAAGAAAAAACAACTAAGCCAATTTTTTGCGGCTAAAGAGTCTGAGGTGCAAAGTTTTGCTCGATCAGAGCTTGCT
AATGCCAGTGGTGGCCGTTTCTATGGGTTAGTAGGGGCTTACCATCAATTAGGTAATATCAATAACCTGTTAAATGGCCT
GACGCGAGAGCAGTATTTTAAAGAGATTCTCACGGCAAAAGGGCAAAAAAGTACCACCAACAGTGCCAGTTATGTCGGCC
ATGAGCGCTATCGTTTAATGTATAAGCGTTATAACTGGGCATTTGATGAATATCTTAAGCGCTCAGATTTTAGTGATATC
TTATTGGTTGATTTAAAAGGTAATGTGGTCTATTCCGCGAAAAAACCACAGTACTTTGCTTTAAATCTTGCTTCAGGCAA
GGGGGCCTTAAAAGGGTTACAACCAACTTTCCAAGCCATTAGCACTCAAGCTCAACAGCTAAAACAAGACCAAGAAGTCG
TCCCCGTTGCTTTTGCCGATTTTAACCTAGGAGGCAATAATCAGTCAGAACAAGCCTGGTTTGCTGCCCCAATCATTCAG
CAAGGATATTTACACAGCTACGTATTTTTCCAGCTCGATATCAATAAAATCGCAACCTTACTGGCCGATAAACCGCAAAA
TGGGCAAACGGTGCAAACTCTATTGGTAGGCCAAGATCATCACATGCGCTTACCCAATAGTGGAGATTTGCCACAACAAT
TGATCAGCCCAGCCATCAACCAAGCACTTGCAGGTAAAACTGGGGTAGGCAGTTTACTTAACTACAATAATATTGCCGTA
CTCAGTGCCTTTACTCCGATTAAAATCTTTAACCACACCTGGGCATTGGTAGTTGAATTACCCGAAAAAGAAGCATTTGC
TCGTATTCATCAACTCGAAAAAATCTTTTTTGCAGCCATGCTTACTGCCATCGTATTAGTGATTTTAGCCGCTCTTTGGT
TATCAAACTCAATAACGGCTCCCCTATTACGCTTAACTTGGGCATCAGAGCGAGTCTCTGCAGGCGATCTAGAGCAAAAA
ATCGAAGGAACAGAACGTAAAGATGAAATTGGCCGTCTTGCCACTAGCTTTGCTCGAATGCAATGTTCTATTCGGGAAAA
GATGAGTTTGATTAGCAAGCAAAATCAAGAGCTTGAAAAAAACATTCACGTAATCAAACAACAAAATGATGATCTACAAA
CCGCCGACAAACTAAAAGATGAGTTCTTAGCGACGACTTCACATGAGTTGCGAACCCCTCTTCACGGGATGATTGGGATA
GCCGAATCCTTACTTGCTGGAGCAAATGGACCAATGCAAGGAGCCCAACGCCGTCAATTGGAAATGTTGATCAACAGTGG
GCAGCGTCTAACGAACTTAGTTGATGATTTACTTGATTATCACAAAATGCGTTATGGCGATCTCGATATTGATAAACATG
CGGTCGATCTTGCCAGCGCTGTTCGGTTAGTCCTTGAATTATCAGGCCATTTATTGGGAACCAAACCGGTTCGAATCATT
AACCAAATACCCGCTGATTTACCTTTAGTTCAAGCCGATGAACAACGCCTAGAGCAAGTGCTGTATAACTTGGTTGGTAA
TGCAATCAAATATACCTCTGAAGGTAAGATTGTGCTTTCTGCAACAGTATTGGAAAACCAAGTTCGCATTCAAGTGGTTG
ATACGGGACAAGGAATTCCAGCAGAACAACTTGAACACATCTTTGAACCATTAGTTCAAGCCAACACCAATCATGCTAAC
TATCGTCAAGGAGCGGGCCTTGGTTTAACCATTAGCCGTCAATTACTGGAGTTAATGGGTGGTCGCCTGTACGTCAGCAG
TCAGCCAATGGTGGGAACCACTTTTAGTTTCACCCTAAACATCGCCTCCGACGAACAAATTCGCCAAAGCCATGATCACG
GTAAAATTCATCACTTCCAAGCTCCATTGTGTGATGCCACTCCGATTGAAATGGCAAATTTACCTGAAAACTTAAATGGT
GAACTACTACTCGTGGTTGATGATGAACCCGTTAATCTTCAGATACTCAATAACTTCCTAAGACTTGAAGGGTATCGAGT
TCTCACTGCAGAAAACGGAAAACAGGCCCTTGAGTTAGTACAAAGCCACAAACCTGCACTGATTTTGCTCGATATTATGA
TGCCAGAAATGAGTGGTTATGAGGTTTGTAGCCAATTGCGCCAACAATACACCCCATTAGAACTACCGATCATGATGCTA
TCTGCCTTGGGGCAAGTGAAAGATCGCGTTAAAGGTTTTGAATGCGGCGCCAATGATTACCTAACAAAACCTTTTAATAA
AGAAGAGCTTACCGCACGTATAAAAGCCCATCTTCAAGCGGGAAAAACTGAATTTGAGCGAGAAAAAAATCGTCAATTAG
CTCAAGAAATTCAACAACGTAAGCAAGTTGAGTTAAGTTTACTTGAGACCCAAACTCGACTACTTGGCCTATTAGAATCC
ACCACCGAAGCCATTTTATGTATTCAAAATAGTGGGCGAATTCGTTATGCCAATGACGCTGCGGCTAAGTTATTTAAACG
CACCCCAGAACAATTGGAGCGCCACTCTATCGATGAACTACTGCTAACCCACCTACCTGATGAGTTACAAAATAATCATC
ATTACAGTGGTTCACTGTGTTTCAAAATTGGCGAACAACAACAAAACCTGGCTACCGATATCCTCAATTTGCCAGAAGAG
TCTGGACTTAAGCAGATGTTTATCTTCGGCAATAGCGGGCCATCGCCACAGCAACGAGTACAAATGCTTGAAGAAGCTAT
TGATGTTTTATCAAGCTATGCTTTTGATGGTGACAAAGACAACTTACAACAATTGCGTGAGCTAGGTGGAGAATTCACCA
GACTGGCAGACAAATTGGGTAATGATGCCCCTAATAAACAAGATATTTTGCGCGAATTGCTGGTTGATGCCATGCGTACA
ACGCTTGAGGTTTGGGAGCAAGATACGAAAAAAACCAAGTTTGATTTAGCCGAAGAGAGTGGATTATGGCGTGTTTATCT
CGATCGCAGTACGCTACAAACTCGCACCTTAGATAAATATCTCCATGTTGAGACTCTTCCTAAAACGCCGCGTTGGCGCA
CGGTTATTAGCACCATAGACTATGTTCTTGATAAAGGCAGTGCTCAAAATATCCAACATCAACAGCTGAGCCAGATGCGA
GATAAATTGCAGAACTTATTACGAGCAAGTTAA


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
  chiS Vibrio cholerae strain A1552

58.938

100

0.589