Detailed information    

insolico Bioinformatically predicted

Overview


Name   coiA   Type   Machinery gene
Locus tag   FGE23_RS10795 Genome accession   NZ_CP040672
Coordinates   2097503..2098663 (+) Length   386 a.a.
NCBI ID   WP_146276507.1    Uniprot ID   -
Organism   Bacillus amyloliquefaciens strain X030     
Function   homologous recombination; DNA uptake (predicted from homology)   
Homologous recombination DNA binding and uptake

Genomic Context


Location: 2092503..2103663
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  FGE23_RS10770 - 2093249..2094436 (+) 1188 WP_146276505.1 putative glycoside hydrolase -
  FGE23_RS10775 - 2094554..2095132 (+) 579 WP_003155035.1 GNAT family N-acetyltransferase -
  FGE23_RS10780 spx 2095311..2095706 (+) 396 WP_003155034.1 transcriptional regulator Spx -
  FGE23_RS10785 - 2095764..2096420 (-) 657 WP_003155033.1 TerC family protein -
  FGE23_RS10790 mecA 2096696..2097352 (+) 657 WP_003155032.1 adaptor protein MecA Regulator
  FGE23_RS10795 coiA 2097503..2098663 (+) 1161 WP_146276507.1 competence protein CoiA family protein Machinery gene
  FGE23_RS10800 pepF 2098891..2100720 (+) 1830 WP_003155028.1 oligoendopeptidase F Regulator
  FGE23_RS19820 - 2100758..2100925 (-) 168 WP_003155026.1 hypothetical protein -
  FGE23_RS10805 spxH 2101211..2102113 (-) 903 WP_146276509.1 protease adaptor protein SpxH -
  FGE23_RS10810 - 2102110..2102508 (-) 399 WP_003155023.1 thiol management oxidoreductase -
  FGE23_RS10815 - 2102737..2103423 (-) 687 WP_146276511.1 lytic transglycosylase domain-containing protein -

Sequence


Protein


Download         Length: 386 a.a.        Molecular weight: 44429.23 Da        Isoelectric Point: 9.9174

>NTDB_id=323081 FGE23_RS10795 WP_146276507.1 2097503..2098663(+) (coiA) [Bacillus amyloliquefaciens strain X030]
MFSAVTADGRLIQLAGSYSKEKAAELRKKRWFCPVCKSELDIKLGREKLPHFAHKKSRLCPGESEPESEYHLEGKRQLFL
WLKTQGCSVSLEPYLTSAGQRPDLTAESGEERLAFEFQCANLSADSLKSRTAGLKSAGYRPVWIIGAKRLKRMAAQFFRL
SAFHWQFFEVNSFSSLMFYCPDVRSFYRLHSITPFYTGYSYAGLTTIPLHKANLKDICHPEGRHSVRLPSWGRAVAGFRN
KSGRFLSEDAGLIRRLFYERHQVAFPFLPSEVFIPVSAGFVFASPVFVWQGHLYLRLAELFEKGAPIRLSGMVHDLRQKI
RHKEIRMRYGSQDSLIGMAVKQYADFLCLQDFLREIENEVYMPSSQQKRPQTAEELRRRDLLFLGE

Nucleotide


Download         Length: 1161 bp        

>NTDB_id=323081 FGE23_RS10795 WP_146276507.1 2097503..2098663(+) (coiA) [Bacillus amyloliquefaciens strain X030]
ATGTTCAGTGCTGTGACTGCCGACGGACGGCTCATTCAGCTGGCCGGAAGCTATTCAAAGGAAAAAGCGGCCGAGCTGAG
AAAGAAACGCTGGTTCTGCCCCGTCTGCAAAAGTGAGCTTGATATCAAACTGGGACGGGAGAAACTGCCGCACTTCGCTC
ATAAAAAAAGCAGGCTGTGTCCCGGGGAATCCGAACCTGAAAGCGAATACCATCTGGAAGGAAAAAGACAGCTTTTTCTC
TGGCTGAAGACACAAGGGTGCAGCGTCAGCCTGGAACCGTATCTGACTTCCGCTGGACAGCGGCCTGACTTGACGGCAGA
AAGCGGAGAAGAGAGGCTGGCTTTTGAATTTCAATGTGCGAACCTTTCGGCGGACTCTTTAAAGAGCCGGACGGCAGGCC
TGAAAAGTGCCGGGTACCGGCCGGTCTGGATCATCGGGGCAAAACGGTTAAAACGGATGGCTGCGCAATTTTTCCGGCTT
TCTGCTTTTCACTGGCAGTTCTTTGAAGTCAATTCATTTTCCTCCTTAATGTTTTACTGCCCCGACGTCCGCTCCTTTTA
CAGGCTGCATTCCATCACTCCGTTTTACACCGGCTATTCTTATGCCGGCTTAACCACAATCCCTCTTCACAAAGCAAACC
TGAAAGACATTTGTCATCCGGAAGGGCGGCACAGCGTCAGACTTCCCTCGTGGGGGCGTGCCGTTGCCGGCTTCCGCAAC
AAAAGCGGGCGGTTTTTATCAGAAGATGCCGGTCTTATCCGGCGTCTTTTTTACGAAAGACATCAGGTTGCATTTCCATT
TCTCCCCTCTGAAGTGTTTATTCCCGTTTCAGCGGGCTTTGTGTTTGCAAGTCCCGTTTTTGTGTGGCAGGGCCATTTAT
ACTTGCGGCTTGCGGAACTTTTTGAAAAAGGCGCTCCGATCCGATTATCCGGCATGGTTCATGATTTACGGCAAAAAATC
AGGCATAAGGAGATCCGGATGCGGTATGGTTCACAAGACAGCCTTATCGGAATGGCGGTAAAACAATATGCTGATTTCTT
ATGCTTGCAGGATTTTTTAAGGGAAATTGAGAATGAAGTATATATGCCCTCATCTCAGCAGAAGCGCCCTCAAACGGCAG
AAGAGCTGCGCCGGCGGGACCTGCTCTTTTTGGGGGAATGA


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
  coiA Bacillus subtilis subsp. subtilis str. 168

46.486

95.855

0.446


Multiple sequence alignment