Detailed information    

insolico Bioinformatically predicted

Overview


Name   chiS   Type   Regulator
Locus tag   FORC53_RS03135 Genome accession   NZ_CP019290
Coordinates   641831..645220 (-) Length   1129 a.a.
NCBI ID   WP_011079594.1    Uniprot ID   A0A3Q0L439
Organism   Vibrio vulnificus strain FORC_053     
Function   chitin sensor (predicted from homology)   
Competence regulation

Genomic Context


Location: 636831..650220
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  FORC53_RS03120 (FORC53_0553) - 637034..638059 (-) 1026 WP_011079591.1 ABC transporter permease -
  FORC53_RS03125 (FORC53_0554) - 638062..639048 (-) 987 WP_011079592.1 ABC transporter permease -
  FORC53_RS03130 (FORC53_0555) - 639217..640890 (-) 1674 WP_011079593.1 ABC transporter substrate-binding protein -
  FORC53_RS03135 (FORC53_0556) chiS 641831..645220 (-) 3390 WP_011079594.1 response regulator Regulator
  FORC53_RS03140 (FORC53_0557) rsmC 645467..646489 (-) 1023 WP_011079595.1 16S rRNA (guanine(1207)-N(2))-methyltransferase RsmC -
  FORC53_RS03145 (FORC53_0558) - 646563..647648 (-) 1086 WP_011079596.1 AI-2E family transporter -
  FORC53_RS03150 (FORC53_0559) hemL 647898..649193 (-) 1296 WP_011079597.1 glutamate-1-semialdehyde 2,1-aminomutase -
  FORC53_RS03155 (FORC53_0560) erpA 649480..649821 (+) 342 WP_011079598.1 iron-sulfur cluster insertion protein ErpA -

Sequence


Protein


Download         Length: 1129 a.a.        Molecular weight: 127535.48 Da        Isoelectric Point: 5.8196

>NTDB_id=214592 FORC53_RS03135 WP_011079594.1 641831..645220(-) (chiS) [Vibrio vulnificus strain FORC_053]
MFKFYRKQKFKRLQSTLMTAFLVLSITPLTITAIFFLQSHSKDLQEQSTSHLLSVRDTKQQQILDYFQAQETEVMGFVRS
ELAYASGGRFYGLVNAFKSLGVDMEQARENAQQRYIQGSGDQIKTSILPESSSFVGSERYRLLHKRYHWAYLELLKRSDF
DDILLVDLDGNVTYSIYKNENFGTNLIEGPFKESMLGKSFRQLANDVSEKRKQNEDYTPVYISDFSVEDGKQVAWLGAPI
IQQGYLHSYAMFRLPNNGITKLIADINKDAAIHTLLVGSDHLPRTMTTKQTDIESSIEVVDKALAGLTDVGTYINSSDEA
TIAAYAPISFKGQTWALVVQLPEKEAFARIHQLEKLFVIAMLIAIVLVFISSHYLSNFITSPLLKLTWAAERVSAGDLDE
NMINTERKDEIGRLAISFERMQRSIRDKIQLIKTQNAELEKNLQLIQKQNDELQLADKLKDEFLATTSHELRTPLHGMIG
IAETLISGANGPLPSNQRYQLDIIIKSGQRLATLVDDLLDYHKMRYGSLDIQKSAVNLASATRLVLELSHHLLGNKTLRI
INQVSNDVAPVSADPQRLEQVLYNLIGNAIKYTTEGKIVISANVVDDKVRVQVVDTGQGIPAEQLEHIFEPLIQAGRDSG
RYRQGAGLGLSISRQLIELMGGSLYVSSQPMVGTTFSFTLPLASADEISATEVMQNQHHFQAPDSNELISLDNSSLPENP
NGPLLIVADDEPVNLRVLESFLRIEGYRVQTASDGPDTLELIEHEKPALLLLDIMMPGMSGYQVCHQLRQQYDMAELPII
MLTALSQSEDRVRGFEAGANDYLTKPFNKQELAARIKAHLMASKAEARRLENNRLEAELRQRAMVEASLLETQGRLLEQL
ESAPEAIICIREDKRIRFANDAACKLFKRSLEQLKRSNAEELIAPKYLTVKQQHYCGNIDIYVDDVRQHIETDILKLPEG
SGLDAMFIFNVGGGAAASRVHNLETAVEVLSSYAFDGDKERLQSLKELGGEFTRLADKALGTNKNKQELMREVLVDLMTH
ALDYWESVTGENKFTFAEQSGLWRVYLDRSTLQTRTLDKYMRIETLPKTPRWRTVLSSIEYILEHCKEQSPERTYIEMQR
DKLQRLLTS

Nucleotide


Download         Length: 3390 bp        

>NTDB_id=214592 FORC53_RS03135 WP_011079594.1 641831..645220(-) (chiS) [Vibrio vulnificus strain FORC_053]
ATGTTTAAGTTTTATCGCAAACAGAAGTTTAAACGCCTTCAAAGTACTCTGATGACTGCGTTTTTGGTGCTGAGTATCAC
GCCATTAACCATCACAGCGATTTTCTTTTTGCAATCACACAGTAAAGATCTCCAAGAACAGAGCACTTCTCACCTGCTTT
CTGTTCGAGACACCAAACAACAACAGATCCTGGATTATTTCCAAGCACAAGAAACGGAAGTGATGGGATTTGTCCGTTCA
GAGTTGGCTTACGCGAGTGGTGGCCGATTTTACGGGCTTGTCAACGCCTTCAAAAGCTTAGGCGTGGATATGGAACAGGC
TCGAGAAAACGCTCAACAGCGCTATATTCAGGGGTCTGGCGATCAAATAAAAACGTCGATTTTACCGGAATCCAGCTCTT
TTGTTGGTAGTGAACGCTACCGTTTACTACATAAGCGCTATCACTGGGCCTATTTGGAGCTTTTGAAGCGCTCCGATTTT
GACGATATTTTGTTGGTGGATCTCGATGGCAACGTCACCTACTCCATCTACAAAAATGAAAACTTTGGCACAAACTTAAT
TGAAGGGCCTTTTAAAGAGAGCATGCTCGGCAAAAGCTTCCGTCAATTGGCCAATGACGTCAGCGAAAAACGCAAGCAAA
ACGAAGACTATACCCCCGTCTATATTTCCGACTTCTCGGTTGAAGATGGCAAACAAGTCGCTTGGTTGGGTGCACCGATC
ATCCAGCAAGGCTATCTGCACAGCTACGCCATGTTCAGGCTACCCAACAATGGCATCACTAAACTGATTGCAGACATCAA
TAAAGATGCAGCTATCCACACTTTGCTGGTTGGAAGTGACCACTTACCTCGCACGATGACCACAAAGCAAACCGATATCG
AAAGCAGTATTGAAGTGGTCGATAAGGCCCTCGCGGGACTGACGGATGTGGGGACTTATATCAACAGCAGCGATGAGGCG
ACCATCGCCGCCTATGCGCCAATTTCATTCAAAGGTCAAACCTGGGCGTTAGTGGTTCAGTTGCCGGAGAAAGAAGCGTT
TGCACGCATTCATCAGTTAGAAAAACTGTTCGTCATCGCTATGTTGATTGCGATCGTGCTGGTGTTTATCTCATCTCACT
ACTTATCGAATTTCATCACCTCACCACTACTCAAACTCACTTGGGCTGCAGAGCGCGTTTCTGCAGGTGATCTCGATGAA
AACATGATTAATACCGAGCGCAAAGACGAAATTGGCCGTTTAGCGATCAGTTTTGAACGAATGCAACGCTCTATTCGCGA
TAAAATTCAGCTCATTAAAACGCAAAATGCGGAGCTAGAGAAAAATCTACAACTGATTCAAAAGCAAAATGACGAATTGC
AATTGGCCGATAAGCTCAAAGATGAATTTTTGGCGACGACCTCTCATGAGCTACGCACTCCACTGCATGGCATGATTGGT
ATTGCAGAAACCCTCATCTCAGGGGCAAACGGCCCACTGCCCTCTAACCAGCGCTATCAACTGGACATTATTATTAAGAG
TGGCCAGCGCTTAGCTACGCTTGTGGATGACTTGCTTGACTACCACAAAATGCGCTATGGCAGTTTGGATATTCAAAAGT
CCGCCGTCAATTTGGCCAGTGCAACTCGACTGGTATTAGAGCTCTCTCACCATTTATTGGGCAACAAAACTCTGCGCATC
ATTAATCAGGTTTCTAACGATGTTGCGCCGGTATCTGCCGATCCACAGCGATTAGAACAGGTGCTGTATAACCTTATTGG
CAACGCGATCAAATACACCACTGAAGGGAAAATCGTCATTTCCGCCAATGTGGTTGACGATAAAGTTCGAGTGCAAGTCG
TCGATACCGGCCAAGGCATTCCCGCAGAACAGTTGGAGCATATTTTCGAACCGCTTATTCAAGCTGGTCGCGACTCTGGT
CGTTATCGCCAAGGTGCCGGTCTGGGACTTTCCATTAGCCGTCAGCTTATCGAGTTAATGGGAGGATCGCTCTACGTCAG
CAGTCAACCTATGGTTGGCACCACCTTTAGCTTCACCTTGCCATTGGCCAGCGCAGACGAAATCAGTGCCACGGAAGTCA
TGCAAAATCAACATCACTTCCAAGCGCCAGATAGCAATGAATTGATCTCATTAGATAATTCATCACTGCCAGAAAATCCC
AATGGTCCGCTACTGATTGTGGCCGATGATGAACCCGTCAACTTACGCGTGCTTGAAAGTTTCCTACGCATCGAAGGGTA
CCGAGTGCAAACGGCCTCAGATGGCCCAGACACTCTCGAACTCATTGAACATGAAAAACCCGCCTTGCTGTTGCTCGACA
TAATGATGCCAGGCATGAGCGGTTATCAAGTTTGCCATCAACTCCGACAGCAATACGACATGGCAGAATTGCCTATTATC
ATGCTAACGGCGTTGAGTCAGAGCGAAGATCGCGTGCGAGGATTCGAAGCTGGGGCCAATGATTACTTAACCAAACCATT
TAATAAGCAAGAGCTTGCGGCCCGAATTAAAGCGCATTTAATGGCAAGTAAAGCAGAAGCTCGTCGCTTGGAAAATAATC
GCCTTGAAGCGGAGCTTCGCCAACGTGCTATGGTAGAAGCGAGCTTACTGGAAACACAAGGGCGTTTATTAGAACAATTG
GAATCGGCCCCAGAAGCCATTATCTGTATTCGTGAAGATAAGCGTATTCGCTTTGCCAATGACGCGGCCTGTAAACTGTT
CAAACGCAGCTTAGAGCAACTCAAGCGCTCAAACGCAGAAGAACTTATTGCACCCAAATATTTAACCGTCAAACAGCAGC
ACTATTGCGGCAATATCGATATCTATGTCGACGATGTTCGACAGCATATTGAAACGGATATCCTTAAACTACCAGAAGGG
TCTGGCCTTGATGCGATGTTTATCTTTAATGTCGGGGGAGGCGCTGCTGCTTCTCGTGTGCACAACCTAGAAACCGCCGT
AGAAGTCCTTTCAAGCTATGCCTTTGATGGTGACAAAGAGCGCTTACAGAGCCTCAAAGAGCTAGGGGGAGAATTTACTC
GCCTGGCCGACAAAGCGCTGGGTACCAATAAGAATAAGCAAGAGCTGATGCGTGAAGTCCTCGTGGATTTGATGACGCAT
GCACTCGATTATTGGGAGTCAGTGACAGGTGAAAACAAATTTACCTTTGCTGAACAAAGTGGTTTATGGCGTGTTTATCT
CGACCGCAGCACGCTACAAACTCGCACACTTGATAAATACATGCGAATTGAAACCTTGCCAAAAACGCCGCGTTGGAGAA
CCGTGTTGAGTTCTATTGAGTACATTCTGGAGCACTGTAAAGAGCAAAGTCCTGAGCGTACTTACATTGAGATGCAGCGA
GATAAATTACAACGCCTGCTCACCAGCTAA


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure
  AlphaFold DB A0A3Q0L439

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

77.148

100

0.771


Multiple sequence alignment