Detailed information    

insolico Bioinformatically predicted

Overview


Name   priA   Type   Machinery gene
Locus tag   FORC9_RS01160 Genome accession   NZ_CP009984
Coordinates   230370..232574 (-) Length   734 a.a.
NCBI ID   WP_060530649.1    Uniprot ID   -
Organism   Vibrio vulnificus strain FORC_009     
Function   DNA puliing through the inner membrane (predicted from homology)   
DNA binding and uptake

Genomic Context


Location: 225370..237574
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  FORC9_RS01140 (FORC9_0204) hslU 226403..227734 (-) 1332 WP_011079331.1 HslU--HslV peptidase ATPase subunit -
  FORC9_RS01145 (FORC9_0205) hslV 227762..228316 (-) 555 WP_011079332.1 ATP-dependent protease subunit HslV -
  FORC9_RS01150 (FORC9_0206) - 228467..229024 (-) 558 WP_045620694.1 SPOR domain-containing protein -
  FORC9_RS01155 (FORC9_0207) cytR 229134..230141 (-) 1008 WP_011079334.1 DNA-binding transcriptional regulator CytR Regulator
  FORC9_RS01160 (FORC9_0208) priA 230370..232574 (-) 2205 WP_060530649.1 primosomal protein N' Machinery gene
  FORC9_RS01165 (FORC9_0209) rpmE 232855..233076 (+) 222 WP_011079336.1 50S ribosomal protein L31 -
  FORC9_RS01170 (FORC9_0210) - 233355..234632 (+) 1278 WP_011079337.1 malic enzyme-like NAD(P)-binding protein -
  FORC9_RS01175 (FORC9_0211) metJ 234719..235036 (-) 318 WP_011079338.1 met regulon transcriptional regulator MetJ -
  FORC9_RS01180 (FORC9_0212) - 235248..236414 (+) 1167 WP_060530650.1 O-succinylhomoserine (thiol)-lyase -

Sequence


Protein


Download         Length: 734 a.a.        Molecular weight: 81957.53 Da        Isoelectric Point: 8.5813

>NTDB_id=114496 FORC9_RS01160 WP_060530649.1 230370..232574(-) (priA) [Vibrio vulnificus strain FORC_009]
MRPSIARVALPVPLDKQFDYLVPGHLFPIIGGRVSVPFGRQTLIGIVTALVQESDFPREQLKPLKAVLDHRPIWPDSVYS
LLLWCSHFYQHPLGETLHNALPAALRKGKAADFATLQEWQLTELGKNQLMQGLNSRAIKQAKVLNMLANGPLPHQAFLDE
EVASTTLRTLEEKGWVTCEEKTPQLTRWGNPIEHPVDKPKLNQEQAIAIATVNSQTDFGCYLLEGVTGSGKTEVYLNLIK
PILEQGKQALVLVPEIGLTPQTINRFRQRFDVPVAVIHSGLNDTERLNAWLSARDKAAGIVIGTRSALLIPFAQLGIIIV
DEEHDASYKQQDSLRYHARDVAVMRAAKEGIPIVLGSATPALETLHNALTGKYHHLSLTQRAGVAVPTTNKVLDVKGLYL
ESGLSAPLIAEMRRHLKAGNQVMLFLNRRGFSPALMCHECGWIAECKRCDAYYTYHQYSNEIRCHHCGSQQPIIHQCQGC
GSTQLVTVGVGTEQLENQLTALFPDYKAIRIDRDSTRRKGSLESALEAIRKGEYQILIGTQMLAKGHHFPDVTLVALLDV
DGSLYSSDFRASERLAQLFIQVAGRAGRASKPGEVILQTHHPEHTLLKALLTKDYRHFAQSALEERKIAQLPPFSFLTLF
RAEANHSEIVETFLRQVRMTLESHPLFDHTCLVLGPTPAPLAKRAGKYRWQLLLQTQHRSLMQKILSSTKPAIDLLPDAK
KVRWNLDIEPQDLS

Nucleotide


Download         Length: 2205 bp        

>NTDB_id=114496 FORC9_RS01160 WP_060530649.1 230370..232574(-) (priA) [Vibrio vulnificus strain FORC_009]
ATGCGTCCATCCATTGCTCGTGTTGCGCTGCCAGTGCCACTCGATAAACAATTTGATTATCTCGTTCCTGGACACCTTTT
TCCGATCATTGGTGGTCGCGTGAGTGTGCCATTTGGACGACAAACCTTGATTGGTATTGTCACCGCTTTGGTTCAAGAAT
CAGACTTTCCACGCGAGCAACTTAAACCCCTTAAAGCGGTGTTGGATCATCGTCCTATTTGGCCCGATTCCGTCTACAGT
TTATTACTTTGGTGTAGCCACTTTTACCAACATCCCCTAGGTGAAACACTGCATAACGCCCTCCCTGCTGCACTAAGAAA
AGGAAAAGCGGCTGACTTTGCCACTCTACAAGAATGGCAACTGACCGAGTTAGGCAAAAACCAGTTGATGCAAGGGTTAA
ACAGTCGCGCGATAAAGCAAGCGAAAGTATTGAATATGCTTGCTAATGGCCCTCTGCCTCACCAGGCCTTTCTAGATGAG
GAAGTGGCATCCACAACCTTGCGCACCTTGGAAGAAAAAGGCTGGGTCACCTGTGAAGAAAAAACGCCACAGTTAACTCG
TTGGGGGAATCCGATTGAACATCCCGTCGATAAGCCGAAACTCAACCAAGAGCAAGCCATTGCCATTGCCACCGTTAACA
GCCAGACAGACTTTGGCTGTTATCTGTTGGAAGGGGTCACAGGTTCAGGCAAAACCGAAGTTTATCTCAACTTGATCAAA
CCCATTTTGGAACAAGGCAAACAGGCTCTGGTGTTGGTCCCTGAAATTGGTTTAACACCACAAACCATCAATCGTTTTCG
TCAACGGTTTGATGTGCCAGTCGCCGTCATCCATTCTGGTCTTAATGATACGGAACGTCTCAACGCTTGGCTTTCCGCAC
GAGATAAAGCGGCGGGCATTGTCATTGGTACACGCTCTGCACTACTGATCCCATTTGCCCAGCTAGGGATCATCATTGTC
GATGAAGAGCACGACGCTTCGTACAAACAGCAAGATAGCTTGCGTTACCATGCTCGCGATGTGGCTGTGATGCGAGCGGC
AAAAGAAGGCATTCCAATTGTTCTCGGTTCAGCCACACCCGCGTTAGAAACCTTACACAACGCACTTACGGGCAAATATC
ATCATCTCTCGCTAACCCAACGAGCAGGAGTGGCCGTACCAACCACCAACAAAGTGCTGGATGTCAAAGGGCTCTATCTG
GAAAGCGGCCTCTCAGCGCCACTCATTGCTGAAATGCGTCGTCATTTAAAAGCAGGCAATCAGGTGATGCTGTTTCTCAA
CCGTCGAGGCTTCTCCCCTGCGTTAATGTGTCATGAATGTGGTTGGATTGCCGAATGCAAACGCTGCGATGCCTATTACA
CTTATCACCAGTACAGCAATGAAATCCGCTGTCACCACTGTGGTTCTCAACAACCTATTATCCATCAATGCCAAGGTTGT
GGTTCGACACAACTGGTGACGGTTGGTGTCGGCACTGAGCAACTGGAAAACCAGTTGACGGCCCTGTTTCCCGACTACAA
AGCGATTCGCATCGACCGCGATAGCACACGACGCAAAGGCAGCCTCGAAAGCGCTTTAGAAGCCATTCGCAAAGGGGAAT
ACCAAATTTTAATTGGCACGCAAATGCTGGCTAAAGGGCATCATTTCCCAGACGTGACGTTAGTGGCACTGTTGGATGTG
GATGGGTCACTGTACAGCAGTGATTTCCGAGCGTCCGAACGATTGGCTCAGTTGTTTATTCAAGTGGCCGGACGAGCAGG
GCGTGCTAGCAAACCTGGCGAAGTGATATTACAAACCCACCATCCAGAACACACCTTGCTCAAAGCTCTGTTGACCAAGG
ATTACCGGCATTTTGCGCAGTCTGCACTGGAAGAACGGAAAATTGCCCAACTTCCCCCGTTTAGTTTTCTAACGCTATTT
CGCGCAGAAGCCAATCACAGCGAAATCGTCGAAACATTCTTACGTCAAGTGCGTATGACTCTCGAGTCTCATCCCTTGTT
TGATCACACTTGTCTCGTACTCGGTCCAACACCCGCTCCACTGGCCAAACGTGCGGGCAAATACCGCTGGCAGCTTCTGC
TTCAAACTCAACATCGTTCCTTGATGCAGAAAATACTCTCGAGCACGAAACCTGCTATCGATTTGTTACCAGATGCGAAA
AAAGTACGTTGGAATTTGGATATTGAGCCGCAGGATCTGAGTTAG


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
  priA Acinetobacter baumannii D1279779

43.342

100

0.435