Detailed information    

insolico Bioinformatically predicted

Overview


Name   pepF   Type   Regulator
Locus tag   CQJ38_RS05690 Genome accession   NZ_CP023748
Coordinates   1096561..1098390 (+) Length   609 a.a.
NCBI ID   WP_007409107.1    Uniprot ID   -
Organism   Bacillus velezensis strain LABIM40     
Function   degradation of XIP; competence shut-off (predicted from homology)   
Competence regulation

Genomic Context


Location: 1091561..1103390
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  CQJ38_RS05665 (CQJ38_05665) - 1092224..1092802 (+) 579 WP_007409110.1 GNAT family N-acetyltransferase -
  CQJ38_RS05670 (CQJ38_05670) spx 1092981..1093376 (+) 396 WP_003155034.1 transcriptional regulator Spx -
  CQJ38_RS05675 (CQJ38_05675) - 1093434..1094090 (-) 657 WP_015417213.1 TerC family protein -
  CQJ38_RS05680 (CQJ38_05680) mecA 1094366..1095022 (+) 657 WP_003155032.1 adaptor protein MecA Regulator
  CQJ38_RS05685 (CQJ38_05685) - 1095173..1096333 (+) 1161 WP_098081293.1 competence protein CoiA family protein -
  CQJ38_RS05690 (CQJ38_05690) pepF 1096561..1098390 (+) 1830 WP_007409107.1 oligoendopeptidase F Regulator
  CQJ38_RS20045 (CQJ38_05695) - 1098428..1098595 (-) 168 WP_003155026.1 hypothetical protein -
  CQJ38_RS05700 (CQJ38_05700) spxH 1098881..1099783 (-) 903 WP_003155024.1 protease adaptor protein SpxH -
  CQJ38_RS05705 (CQJ38_05705) - 1099780..1100178 (-) 399 WP_003155023.1 thiol management oxidoreductase -
  CQJ38_RS05710 (CQJ38_05710) - 1100407..1101093 (-) 687 WP_007409105.1 lytic transglycosylase domain-containing protein -
  CQJ38_RS05715 (CQJ38_05715) - 1101098..1101670 (-) 573 WP_014417426.1 CYTH domain-containing protein -
  CQJ38_RS05720 (CQJ38_05720) - 1101795..1102160 (+) 366 WP_003155020.1 hypothetical protein -
  CQJ38_RS05725 (CQJ38_05725) yjbM 1102188..1102823 (+) 636 WP_007610625.1 GTP diphosphokinase -

Sequence


Protein


Download         Length: 609 a.a.        Molecular weight: 69813.45 Da        Isoelectric Point: 5.2024

>NTDB_id=249676 CQJ38_RS05690 WP_007409107.1 1096561..1098390(+) (pepF) [Bacillus velezensis strain LABIM40]
MTEENKAAQLPDRSEVKAEHTWRLEDIFPSDEAWNKEFQAVKELIPNLSSFKGTLAHSADNLYAALTAQDEVTNRLGKLY
AYAHMRSDQDTGNSFYQGLNDKAASLYSQAASATAYIEPEILAIQEDKLHQFILEKEELKLYSHAIEEITKQRPHVLSEQ
EEALLAEASEALSSPSNTFSVLNNADITFPSIKDENGKETQITHGNFINFLESSNREVRKNAFEAVYKTYGQYKNTMATT
LSGTVKKDNFYARVKKYKSAREAALSNNSIPEEVYDNLIKTINKHLPLLHRYIDLRKKVLGLDEVHIYDLYTPLVKDSGM
KVTYEEAKDYMLKGLAPLGEEYASILKEGLENRWVDIYENKGKRSGAYSSGTYGTNPYILMNWHDNVNNLFTLVHEFGHS
VHSYYTRKYQPYPYGNYSIFVAEVASTTNEALLGEYMLNSLKDEKQRLYLLNHMLEGFRGTVFRQTMFAEFEHLIHTKAQ
EGEPLTPELLNELYYDLNKKYFGDNMVIDKEISLEWSRIPHFYYNYYVYQYATGYSAAQALSSQILKEGKPAVERYTEFL
KAGSSEYPIDILKKAGVDMTSPEPIEAACKMFEEKLNEMEELLSKVNPS

Nucleotide


Download         Length: 1830 bp        

>NTDB_id=249676 CQJ38_RS05690 WP_007409107.1 1096561..1098390(+) (pepF) [Bacillus velezensis strain LABIM40]
ATGACTGAGGAAAATAAAGCAGCACAGCTGCCTGACAGAAGTGAAGTAAAGGCAGAGCATACATGGAGACTAGAGGATAT
TTTTCCTAGTGATGAGGCCTGGAATAAAGAATTTCAAGCAGTTAAAGAATTAATCCCGAATTTATCTTCTTTTAAAGGCA
CGCTTGCTCATTCGGCTGATAATTTATACGCGGCGCTTACGGCACAGGATGAAGTGACGAACCGCCTTGGGAAACTTTAT
GCATACGCGCATATGCGCTCAGACCAGGATACGGGAAATTCTTTCTACCAAGGGCTGAACGACAAAGCCGCAAGCCTGTA
TTCTCAGGCTGCCAGCGCGACTGCTTACATTGAACCGGAAATTCTGGCGATTCAGGAGGACAAGCTGCACCAGTTTATTC
TGGAAAAAGAGGAGCTTAAACTTTACTCCCATGCAATTGAAGAAATTACAAAACAGCGTCCGCACGTGCTGAGCGAACAA
GAAGAGGCCCTGCTTGCGGAAGCCTCTGAAGCGCTGTCGTCGCCTTCCAATACATTCAGCGTTTTAAATAACGCCGATAT
TACGTTTCCGTCGATTAAAGATGAAAACGGCAAGGAAACTCAAATCACACACGGCAACTTTATTAATTTCCTGGAAAGCA
GCAATCGTGAAGTCCGCAAAAACGCATTTGAAGCCGTATATAAAACATACGGACAGTATAAAAACACGATGGCGACTACA
CTCAGCGGCACTGTGAAAAAAGATAATTTTTACGCCCGTGTGAAAAAGTATAAATCAGCACGGGAAGCGGCTTTATCCAA
TAACAGCATCCCTGAAGAAGTTTACGATAACCTTATTAAAACGATCAATAAACATCTTCCGTTATTACACCGTTACATTG
ACCTGCGGAAAAAGGTTCTCGGCCTTGATGAAGTCCATATTTATGACCTTTATACACCGCTCGTAAAAGATTCGGGAATG
AAGGTCACATATGAGGAAGCGAAAGATTATATGCTCAAAGGACTTGCTCCGCTGGGCGAGGAATACGCGTCTATTTTAAA
AGAAGGACTTGAAAACCGCTGGGTCGATATATACGAAAATAAAGGAAAACGCAGCGGTGCTTATTCGTCCGGTACATACG
GCACGAATCCGTACATCTTGATGAACTGGCATGACAATGTCAATAATCTGTTTACGCTCGTTCACGAGTTCGGCCATTCC
GTGCACAGCTACTATACGAGAAAATATCAGCCGTATCCGTACGGTAACTACAGCATTTTTGTCGCTGAAGTCGCTTCAAC
GACCAATGAAGCGCTGCTCGGTGAATATATGCTGAACAGCTTAAAGGATGAAAAACAGCGTCTGTACCTGCTCAACCACA
TGCTTGAAGGATTCAGAGGCACAGTGTTCAGACAGACGATGTTCGCTGAATTTGAGCATCTGATTCATACGAAAGCGCAG
GAAGGCGAGCCGCTAACGCCTGAACTGCTGAACGAACTTTATTATGATCTGAATAAAAAGTATTTCGGTGACAACATGGT
GATTGATAAAGAAATCAGTCTGGAATGGTCAAGAATTCCGCATTTCTATTACAATTATTATGTGTATCAATATGCGACAG
GCTACAGTGCGGCCCAAGCGCTGAGCAGCCAGATCTTAAAAGAAGGCAAGCCTGCGGTGGAGCGCTATACCGAATTCTTA
AAAGCGGGAAGCTCGGAATATCCGATCGACATACTGAAAAAAGCGGGAGTCGATATGACATCGCCTGAACCGATCGAGGC
GGCCTGCAAAATGTTTGAAGAGAAACTGAACGAAATGGAAGAGCTTCTTTCAAAAGTGAACCCTTCGTAG


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
  pepF Streptococcus salivarius strain HSISS4

49.832

97.537

0.486


Multiple sequence alignment