Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   AB8599_RS02170 Genome accession   NZ_CP166194
Coordinates   481462..484839 (-) Length   1125 a.a.
NCBI ID   WP_407332179.1    Uniprot ID   -
Organism   Enterovibrio sp. 27052020O     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 476462..489839
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  AB8599_RS02155 (AB8599_02155) - 476799..477827 (-) 1029 WP_407332176.1 ABC transporter permease -
  AB8599_RS02160 (AB8599_02160) - 477830..478816 (-) 987 WP_407332177.1 ABC transporter permease -
  AB8599_RS02165 (AB8599_02165) - 478937..480619 (-) 1683 WP_407332178.1 ABC transporter substrate-binding protein -
  AB8599_RS02170 (AB8599_02170) chiS 481462..484839 (-) 3378 WP_407332179.1 response regulator Regulator
  AB8599_RS02175 (AB8599_02175) rsmC 485053..486078 (-) 1026 WP_407332180.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  AB8599_RS02180 (AB8599_02180) - 486164..487249 (-) 1086 WP_407332181.1 AI-2E family transporter -
  AB8599_RS02185 (AB8599_02185) hemL 487602..488891 (-) 1290 WP_407332182.1 glutamate-1-semialdehyde 2,1-aminomutase -
  AB8599_RS02190 (AB8599_02190) erpA 489109..489450 (+) 342 WP_407332183.1 iron-sulfur cluster insertion protein ErpA -

Sequence


Protein


Download         Length: 1125 a.a.        Molecular weight: 126612.25 Da        Isoelectric Point: 5.1846

>NTDB_id=1033622 AB8599_RS02170 WP_407332179.1 481462..484839(-) (chiS) [Enterovibrio sp. 27052020O]
MQKKQKFKRLQHKLMLAFLVLSITPLTLLAIFFLESHSSDLEQQSTTHLSFLRDNKKEQIISYFDARYSEVNTFSRSELA
TASGGRFYGLVAAFHQLGKTKEEARKVARLRYVDDPDNPLVTGSNDSNFIGSERYRLLHKRYDWAYKEHLKGSNFSDLLL
VDIDGNVVYSALKDEKFGANLLEEKWQTTPVGKTFTNIKNKISTPIVDTESNPIVFTDFSQEASGEIVAWFAAPITQQGY
LHSYVLMKLPNTALVDLLNKAPSEKGYISTLVVGSDQIPRNIETREPLSAVNGIAIEAALAGDRGVGSFLGSESQSVLGA
YAPVLINDKVWAIILELPEEEAFARIYQLEKIFIVVMVIAIFLVVLASHLLSNSITAPLLRLTWAAEQVSAGDLDQKISS
TDREDEIGRLAVSFARMQRSVRDKLALIREQNKELEQNIQIIKQKNEELQQADRMKDDFLATTSHELRTPLHGMVGIAES
MLAGAEGPLPDRQKHQLQMIINSGERLSNLVDDLLDYHKMRYGSLEISPQAVDTANAVRLVIELSSHLLGGKPVRIINQV
PIDLPLVRADEQRLEQVLYNLIGNAIKYTDEGKIIISATVLEGQLRIQVVDTGQGIPSDQLEYIFEPLTQAKSGTSVYRQ
GAGLGLSISRQLIEIMGGQLYVSSQPMVGATFSFTLPIATEEDKAKTRLANNVHFAVPRIELEHNELAQLPENPNGPLIL
IVDDEPVNLQILNNFLRLEGYRVKAVENGRQAIEFVTQEKPMLMLLDVMMPELSGYEVCTHLRERYSRADLPIIMLSALG
QVQDKVKGFDAGANDYLTKPFNKDELSARIRAYINASLTEQERENNRQLIKEIHFREQVEAGLREVQNRLLGLLDSASEA
ILCVQENGRISYANDACNSVFKLSAEQLERHNIDDFLAMALPDTESSRGHYSGQLRFKIDGDIVNIDTDVITLPETSGLQ
MMLLLNTGEKTSSHRVQLLESAVEALSEYAFDGDQNQLQQLRELGGEFTRMADKFSSDKPDKEDVLRETLVKVMLSTLNY
WNHATSKSKFDLAEESGLWRVYLDRSTLQTRTLDKYLHVETVPKSPRWRTVINTIDFVLERCSDDSKERQEVVQLRDKLQ
SLITR

Nucleotide


Download         Length: 3378 bp        

>NTDB_id=1033622 AB8599_RS02170 WP_407332179.1 481462..484839(-) (chiS) [Enterovibrio sp. 27052020O]
ATGCAAAAAAAACAGAAGTTCAAGCGACTTCAGCATAAGCTGATGCTGGCTTTTCTTGTGCTAAGTATTACTCCCCTCAC
CCTGCTGGCGATTTTCTTTCTTGAGTCACACAGCAGCGATTTAGAACAGCAAAGCACAACTCACCTTTCGTTCCTCAGAG
ATAACAAAAAAGAGCAAATCATCAGCTACTTTGATGCACGCTACTCCGAGGTCAATACCTTCTCTCGCTCGGAACTTGCA
ACTGCGAGCGGTGGCCGATTCTATGGTCTCGTTGCTGCCTTCCACCAGTTAGGGAAAACCAAAGAAGAGGCTCGCAAAGT
AGCTCGACTGCGCTACGTGGATGACCCAGACAACCCGTTAGTTACCGGTTCCAACGACAGTAATTTTATTGGTAGTGAGC
GCTATCGCTTGCTACATAAACGCTACGATTGGGCCTACAAAGAGCACCTCAAAGGGTCTAACTTTTCCGATCTTCTTCTC
GTCGATATTGACGGAAATGTCGTCTACTCAGCGCTAAAAGATGAAAAGTTTGGTGCCAATTTGCTTGAAGAAAAATGGCA
AACGACACCTGTTGGCAAGACATTTACCAATATCAAAAACAAAATCAGTACACCCATTGTCGATACAGAAAGTAATCCCA
TTGTATTTACCGATTTTAGCCAAGAAGCAAGCGGTGAAATCGTGGCATGGTTTGCTGCACCTATCACTCAGCAAGGATAT
TTGCACAGCTATGTTCTGATGAAACTACCAAACACTGCGCTGGTTGACTTGCTAAATAAAGCGCCAAGTGAAAAGGGATA
CATCAGCACTCTTGTTGTGGGCTCAGACCAAATTCCCCGAAATATAGAAACCAGAGAGCCACTCAGTGCCGTCAATGGCA
TTGCCATCGAAGCCGCACTCGCTGGTGATCGGGGTGTCGGAAGCTTTTTAGGTTCAGAAAGCCAGAGTGTGTTGGGTGCA
TATGCCCCTGTACTCATTAATGACAAGGTATGGGCTATCATTCTTGAGTTACCAGAAGAAGAGGCTTTCGCGCGCATCTA
TCAACTGGAGAAGATATTCATCGTCGTCATGGTCATTGCCATATTCTTAGTGGTGCTTGCCTCTCATTTACTCTCAAATT
CCATCACGGCTCCTTTGCTTAGACTGACATGGGCGGCAGAGCAAGTATCTGCAGGCGATCTTGACCAGAAAATCAGCAGT
ACTGATCGTGAAGATGAAATTGGCCGGCTGGCCGTCAGTTTTGCTCGTATGCAACGCTCTGTGCGTGACAAACTGGCGCT
GATCAGAGAGCAAAATAAAGAGCTTGAACAGAACATTCAGATCATCAAACAAAAGAACGAAGAGCTTCAACAAGCAGATC
GTATGAAAGATGATTTTCTGGCCACGACATCTCATGAACTTCGTACACCGCTTCACGGCATGGTTGGTATTGCTGAATCC
ATGCTGGCGGGCGCCGAAGGGCCGCTGCCTGATCGTCAAAAACATCAGTTACAAATGATCATTAACAGTGGTGAGCGTTT
ATCAAACTTGGTCGATGATCTGCTGGATTATCACAAGATGCGCTACGGTAGCCTTGAAATTTCTCCTCAAGCAGTCGATA
CCGCAAACGCAGTACGCTTAGTCATTGAGCTTTCAAGCCATTTACTGGGTGGCAAGCCTGTGCGGATCATTAATCAGGTA
CCTATCGATTTACCACTGGTTCGCGCTGATGAACAGCGCTTAGAACAAGTGCTGTACAACTTGATTGGCAATGCCATTAA
ATACACCGACGAAGGCAAAATTATCATTTCCGCCACCGTACTCGAAGGGCAATTGCGTATTCAGGTTGTCGACACAGGAC
AAGGGATTCCGTCGGATCAATTGGAGTATATCTTTGAGCCTCTCACTCAGGCGAAATCTGGTACTAGTGTATACCGCCAA
GGCGCAGGGTTAGGGCTATCCATTAGTCGCCAGCTTATCGAAATCATGGGTGGGCAACTTTATGTCAGTAGCCAGCCAAT
GGTTGGTGCCACGTTTAGCTTTACCCTGCCTATCGCCACCGAAGAAGACAAAGCAAAAACACGCCTTGCAAACAACGTGC
ACTTTGCCGTACCAAGAATAGAGTTAGAACATAACGAACTCGCCCAACTCCCAGAAAATCCTAATGGACCATTAATCCTT
ATTGTTGATGACGAACCCGTTAATTTGCAGATACTGAATAACTTTCTCCGCCTAGAGGGTTATCGTGTCAAAGCCGTCGA
AAATGGTCGTCAGGCGATAGAGTTTGTGACCCAAGAAAAACCCATGCTCATGCTACTCGATGTCATGATGCCTGAGCTTA
GCGGCTACGAAGTGTGTACTCACCTGCGTGAACGCTATAGCCGTGCCGATCTCCCTATTATCATGTTGTCCGCCCTAGGG
CAGGTACAAGACAAAGTGAAAGGCTTTGATGCTGGTGCTAATGACTACCTGACCAAACCGTTCAATAAGGACGAGTTAAG
CGCACGTATCCGCGCTTACATCAATGCTTCACTGACCGAACAAGAGCGAGAAAACAACCGTCAATTGATCAAGGAAATCC
ACTTCAGAGAGCAAGTTGAAGCAGGGCTTCGTGAAGTACAAAACCGCCTGTTGGGTCTGTTAGACTCTGCGTCAGAGGCC
ATTTTATGTGTACAGGAAAACGGAAGGATCAGCTACGCCAATGATGCTTGCAATTCGGTTTTCAAACTGAGTGCCGAGCA
ACTAGAGCGACACAATATTGATGACTTCCTTGCCATGGCGCTACCTGATACTGAATCAAGTCGTGGGCATTATAGCGGCC
AACTTCGCTTCAAGATCGATGGTGATATTGTCAATATCGATACAGATGTGATTACTCTACCGGAAACATCAGGCCTACAA
ATGATGCTGCTATTGAACACCGGTGAGAAAACCTCATCACATCGTGTTCAATTGCTTGAAAGCGCGGTGGAAGCGTTGTC
CGAGTATGCATTTGACGGCGACCAGAACCAATTACAACAACTTCGTGAGCTGGGTGGTGAGTTCACCCGCATGGCAGACA
AGTTCTCCAGCGATAAGCCAGACAAAGAAGATGTGTTGCGAGAAACCTTGGTGAAAGTCATGCTCTCCACATTGAATTAC
TGGAACCACGCAACTAGCAAGTCTAAATTCGACTTGGCAGAAGAGAGCGGCCTATGGCGAGTCTACCTTGACAGAAGCAC
CCTTCAAACGCGGACACTCGACAAATATCTACATGTGGAAACCGTACCTAAATCACCCCGTTGGCGGACTGTCATCAATA
CCATAGACTTTGTGCTCGAACGCTGCAGTGACGACAGCAAAGAAAGGCAAGAAGTCGTGCAGTTACGAGATAAACTGCAG
TCCCTTATTACTCGCTAG


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

56.306

100

0.564


Multiple sequence alignment