Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   FIU99_RS13735 Genome accession   NZ_CP045355
Coordinates   2962845..2966231 (+) Length   1128 a.a.
NCBI ID   WP_006958090.1    Uniprot ID   A0AAJ4DUN7
Organism   Vibrio sp. THAF64     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 2957845..2971231
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  FIU99_RS13715 (FIU99_13785) erpA 2958311..2958652 (-) 342 WP_019276906.1 iron-sulfur cluster insertion protein ErpA -
  FIU99_RS13720 (FIU99_13790) hemL 2958908..2960200 (+) 1293 WP_006958083.1 glutamate-1-semialdehyde 2,1-aminomutase -
  FIU99_RS13725 (FIU99_13795) - 2960464..2961549 (+) 1086 WP_006958085.1 AI-2E family transporter -
  FIU99_RS13730 (FIU99_13800) rsmC 2961628..2962650 (+) 1023 WP_039951301.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  FIU99_RS13735 (FIU99_13805) chiS 2962845..2966231 (+) 3387 WP_006958090.1 response regulator Regulator
  FIU99_RS13740 (FIU99_13810) - 2966918..2968600 (+) 1683 WP_006958092.1 ABC transporter substrate-binding protein -
  FIU99_RS13745 (FIU99_13815) - 2968771..2969757 (+) 987 WP_006958093.1 ABC transporter permease -
  FIU99_RS13750 (FIU99_13820) - 2969760..2970785 (+) 1026 WP_006958094.1 ABC transporter permease -

Sequence


Protein


Download         Length: 1128 a.a.        Molecular weight: 127189.06 Da        Isoelectric Point: 6.1929

>NTDB_id=393613 FIU99_RS13735 WP_006958090.1 2962845..2966231(+) (chiS) [Vibrio sp. THAF64]
MFKLYRKQRFKRLQHTLMLAFLVLSITPLTIIAIFFLQSHTKDLQEQSTSHLISVRDSKQQQVTDYMYAKESEVMGFVRS
ELAYASGGRFYGLVNAFRSLGLDMAQAREYAQRRYIPGSGDQIKTSILPQSNVYTGTERYRLLHKRYHRAYLELLKRSDF
DDALLVDLEGNVTYSIFKHDNYGTNLLTGRFRDTNLGRTFHKLKTQVTEKRKSNEDYTPVIISDFEMDRGKPVAWLGAPI
VQQGYLHSYAMFRLPNNGITKLIADTNNASAMKTLLVGADHKSRTMAYEQKDIDKSREVVDLALEGKTDVGTYTNTLGEA
TIAAYSPISFKGVDWAIVVEVPEKEAFARVHQLETLFVFAMLCAIVLVVAASHYLSNFITAPLLKLTWAAEKVSAGDLDT
DIINTERKDEIGRLAISFERMQRSIRDKILLIKQQNEELESNLKLIQKQNDELQLANKLKDEFLATTSHELRTPLHGMVG
IAEALISGANGPITADHKYQLDIIISSGQRLATLVDDLLDYHKMRYGNLDIETRAVDISGATRLVLELSTHLVGNKPIRI
INQVPNDPLWVCADPQRLEQVLYNLVGNAIKYTSEGKIVISATQVDDNIRVQVVDTGQGIPAEQLEHIFEPLIQAGSDSS
RYRQGAGLGLSISRQLIDLMQGTLYVSSQPMVGTTFSFTLPIASTEQIGLASHIEGAHFIAPENNDLEIIEGSNLPENPD
GPLLLVVDDEPVNLRVLDSFLRLEGYRVRTAKNGEEAVESVVHEKPELMLLDIMMPGMSGYQVCEVLRKDYDHAQLPVIM
LTALNQPDDRVRGFEAGANDYLSKPFNKQELAARITAHLTASKAEQRRIENQQLQTELKQRAMVEASLLETQGRLLEQLE
SAPEAIICVRDDNKIRFTNDAASRLFKRTTEQLRRSNADELIAPKFLNVEQPHYCGVIDVYVEDVRQHLSADILKLPEGS
GLKSMYIFNVGGSVNAARINNLETAVEALSSYAFEGDKAKLQELKELGGEFTRLADRATTDNKSKQEVMREVLVDAMTSA
LTYWESVTGQSKFAFAEQSGLWRVYLDRSTLQTRTLDKYLRVETLPKTPRWRTVLSSLEYILEHCKEMSPERTHIESLRD
KLQHLLTS

Nucleotide


Download         Length: 3387 bp        

>NTDB_id=393613 FIU99_RS13735 WP_006958090.1 2962845..2966231(+) (chiS) [Vibrio sp. THAF64]
ATGTTTAAGTTGTACCGAAAACAAAGATTTAAGCGCCTGCAACATACTTTAATGCTGGCATTTCTTGTATTGAGTATTAC
ACCGCTCACGATCATCGCGATTTTTTTCCTCCAATCTCATACCAAAGATTTGCAGGAGCAAAGTACTTCGCACTTAATCT
CCGTACGAGACAGTAAGCAGCAACAAGTCACTGACTACATGTATGCCAAAGAATCGGAAGTCATGGGCTTTGTCCGCTCT
GAACTGGCTTATGCCAGTGGCGGGCGTTTCTACGGCTTGGTCAATGCATTTCGCAGCTTAGGACTGGATATGGCTCAGGC
ACGCGAGTACGCTCAGCGGCGTTACATTCCTGGCTCAGGCGATCAGATCAAAACCTCAATACTTCCTCAGTCCAATGTTT
ATACCGGCACTGAGCGCTATCGACTGCTGCATAAGCGCTATCACAGAGCCTATCTGGAACTGCTCAAACGCTCAGACTTT
GACGACGCTTTGCTGGTTGATTTAGAAGGTAACGTCACCTACTCCATCTTTAAACACGACAACTACGGCACCAATCTGCT
TACTGGCCGCTTTCGTGATACCAATCTAGGCAGAACCTTCCACAAGCTGAAAACTCAGGTTACTGAAAAGCGTAAATCCA
ATGAAGATTACACACCGGTGATCATCTCAGACTTTGAGATGGACAGAGGTAAACCTGTCGCGTGGCTCGGCGCTCCCATC
GTTCAGCAAGGTTATCTCCACAGCTACGCCATGTTCCGTTTACCAAACAATGGCATCACTAAGCTAATAGCTGATACCAA
CAACGCTTCAGCAATGAAAACTTTACTGGTAGGTGCTGACCATAAATCAAGAACCATGGCGTATGAGCAAAAAGACATCG
ATAAGAGCCGCGAAGTTGTTGATTTAGCATTGGAAGGAAAAACCGATGTTGGAACATACACAAACACGCTAGGAGAGGCG
ACCATCGCGGCTTACAGTCCGATTTCGTTTAAAGGTGTCGACTGGGCCATTGTGGTAGAAGTGCCAGAAAAAGAAGCTTT
TGCACGCGTCCACCAACTCGAAACTCTTTTCGTATTTGCCATGCTATGTGCAATTGTACTGGTGGTTGCAGCGTCCCATT
ACTTGTCTAATTTTATTACCGCGCCTTTGTTGAAGCTGACGTGGGCGGCAGAAAAAGTCTCGGCTGGCGATCTCGATACA
GACATCATCAATACAGAGCGAAAAGATGAGATAGGCCGACTGGCCATCAGCTTTGAGCGCATGCAACGCTCCATTCGCGA
CAAAATACTGCTCATAAAACAGCAAAATGAAGAGCTGGAGAGCAACCTAAAGCTGATCCAAAAGCAAAATGACGAGCTGC
AATTGGCGAACAAACTCAAAGATGAGTTCCTCGCCACCACCTCTCATGAATTGCGAACTCCACTCCATGGCATGGTAGGT
ATCGCAGAAGCGCTGATCTCCGGCGCTAATGGGCCAATTACCGCGGATCACAAGTACCAGCTCGACATCATCATTAGTAG
CGGCCAGCGCTTGGCCACATTGGTTGATGACCTGCTTGATTACCACAAAATGCGTTACGGTAATCTCGATATTGAAACCC
GAGCTGTGGATATCTCCGGAGCAACGCGCTTGGTGCTCGAACTGTCGACTCACTTAGTGGGCAACAAACCCATTCGCATC
ATTAATCAGGTTCCTAACGATCCGCTATGGGTATGCGCCGACCCTCAACGCTTAGAGCAAGTTCTATACAATCTCGTTGG
TAACGCCATCAAATACACCAGTGAAGGTAAAATCGTCATTTCCGCCACTCAGGTCGACGACAACATCCGCGTTCAAGTAG
TAGATACTGGTCAGGGGATCCCTGCTGAGCAACTTGAGCACATTTTTGAACCCCTGATTCAGGCTGGCAGTGATAGTAGC
CGTTATCGCCAAGGGGCCGGCCTTGGTCTATCTATCAGCCGTCAGTTGATTGATTTGATGCAAGGCACGCTCTACGTAAG
CAGCCAACCTATGGTTGGTACGACCTTTAGTTTCACTTTGCCAATCGCCTCAACCGAGCAAATAGGCCTCGCAAGCCATA
TCGAAGGCGCGCATTTCATTGCTCCAGAAAACAATGACCTAGAAATAATCGAAGGCTCAAATTTACCGGAAAATCCTGAC
GGGCCATTGCTGTTAGTGGTCGATGATGAACCGGTCAATCTGCGTGTCTTAGACAGCTTCCTTCGCCTCGAAGGCTACCG
AGTACGCACCGCTAAAAATGGCGAAGAAGCCGTTGAATCCGTTGTTCATGAAAAACCAGAACTGATGCTACTCGATATCA
TGATGCCGGGAATGAGCGGCTATCAGGTGTGTGAAGTGTTGCGTAAAGACTATGATCATGCTCAGCTCCCCGTCATCATG
CTCACAGCATTGAATCAGCCCGATGACAGAGTTCGAGGTTTCGAAGCCGGAGCCAATGACTACTTATCAAAACCTTTTAA
CAAACAAGAGCTCGCCGCACGGATTACAGCACATTTGACCGCGAGCAAAGCTGAACAGCGTCGGATTGAAAACCAGCAAC
TACAAACTGAGCTTAAGCAGCGCGCCATGGTTGAAGCTAGTTTACTGGAAACTCAGGGGCGTTTATTGGAACAATTGGAA
TCCGCACCAGAAGCGATTATCTGCGTACGTGACGACAATAAAATCCGCTTCACCAATGATGCTGCGTCTCGCCTATTTAA
ACGCACCACAGAACAATTACGCCGTTCCAATGCAGATGAGTTGATTGCACCAAAATTCCTTAACGTAGAGCAACCGCACT
ACTGTGGCGTCATTGATGTTTATGTCGAAGATGTCCGCCAGCACTTGTCCGCAGACATTCTCAAACTTCCAGAAGGCTCT
GGACTCAAATCCATGTACATCTTTAACGTGGGGGGCAGTGTCAATGCCGCGCGGATCAATAACCTAGAAACCGCGGTTGA
AGCCCTTTCCAGCTACGCGTTTGAAGGGGATAAGGCCAAACTGCAAGAGTTAAAAGAGTTAGGTGGAGAGTTTACGCGGT
TAGCTGATCGAGCCACCACTGATAACAAGTCCAAGCAAGAAGTCATGCGTGAAGTTTTAGTTGATGCAATGACAAGTGCG
CTAACTTATTGGGAAAGCGTTACTGGTCAAAGCAAGTTTGCTTTCGCAGAGCAAAGCGGGTTATGGCGTGTGTACCTCGA
CCGTAGCACCTTACAGACTCGGACTCTGGACAAATACCTGCGAGTCGAAACGTTACCAAAAACACCGCGCTGGCGAACGG
TACTGAGTTCTCTTGAGTACATCCTTGAACACTGTAAAGAGATGAGCCCTGAGCGTACTCATATTGAGAGCCTTCGCGAT
AAGCTGCAACACCTCCTAACCAGCTAA


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

79.167

100

0.792


Multiple sequence alignment