Biosynthesis of bacteriocins in lactic acid bacteria
Open Access
- 1 October 1996
- journal article
- review article
- Published by Springer Nature in Antonie van Leeuwenhoek
- Vol. 70 (2-4), 113-128
- https://doi.org/10.1007/bf00395929
Abstract
A large number of new bacteriocins in lactic acid bacteria (LAB) has been characterized in recent years. Most of the new bacteriocins belong to the class II bacteriocins which are small (30–100 amino acids) heat-stable and commonly not post-translationally modified. While most bacteriocin producers synthesize only one bacteriocin, it has been shown that several LAB produce multiple bacteriocins (2–3 bacteriocins). Based on common features, some of the class II bacteriocins can be divided into separate groups such as the pediocin-like and strong anti-listeria bacteriocins, the two-peptide bacteriocins, and bacteriocins with a sec-dependent signal sequence. With the exception of the very few bacteriocins containing a sec-dependent signal sequence, class II bacteriocins are synthesized in a preform containing an N-terminal double-glycine leader. The double-glycine leader-containing bacteriocins are processed concomitant with externalization by a dedicated ABC-transporter which has been shown to possess an N-terminal proteolytic domain. The production of some class II bacteriocins (plantaricins of Lactobacillus plantarum C11 and sakacin P of Lactobacillus sake) have been shown to be transcriptionally regulated through a signal transduction system which consists of three components: an induction factor (IF), histidine protein kinase (HK) and a response regulator (RR). An identical regulatory system is probably regulating the transcription of the sakacin A and carnobacteriocin B2 operons. The regulation of bacteriocin production is unique, since the IF is a bacteriocin-like peptide with a double-glycine leader processed and externalized most probably by the dedicated ABC-transporter associated with the bacteriocin. However, IF is not constituting the bacteriocin activity of the bacterium, IF is only activating the transcripion of the regulated class II bacteriocin gene(s). The present review discusses recent findings concerning biosynthesis, genetics, and regulation of class II bacteriocins.Keywords
This publication has 102 references indexed in Scilit:
- Autoregulation of Nisin Biosynthesis in Lactococcus lactis by Signal TransductionJournal of Biological Chemistry, 1995
- Maturation pathway of nisin and other lantibiotics: post‐translationally modified antimicrobial peptides exported by Gram‐positive bacteriaMolecular Microbiology, 1995
- Induction of bacteriocin in Carnobacterium piscicola LV17Journal of Applied Bacteriology, 1995
- A family of bacteriocin ABC transporters carry out proteolytic processing of their substrates concomitant with exportMolecular Microbiology, 1995
- Purification and characterization of plantaricin A, a Lactobacillus plantarum bacteriocin whose activity depends on the action of two peptidesJournal of General Microbiology, 1993
- Association of the lactococcin A immunity factor with the cell membrane: purification and characterization of the immunity factorJournal of General Microbiology, 1993
- Characterization and purification of mesentericin Y105, an anti-Listeria bacteriocin from Leuconostoc mesenteroidesJournal of General Microbiology, 1992
- Purification and amino acid sequence of sakacin A, a bacteriocin from Lactobacillus sake Lb706Journal of General Microbiology, 1992
- Purification and amino acid sequence of a bacteriocin produced by Pediococcus acidilacticiJournal of General Microbiology, 1992
- ‘Pheromones’: a New Term for a Class of Biologically Active SubstancesNature, 1959