Faculty of Dentistry, University of Toronto, Toronto, ON M5G 1G6, Canada.
Genes (Basel). 2022 Aug 12;13(8):1434. doi: 10.3390/genes13081434.
Bacteria use quorum sensing (QS) to communicate with each other via secreted small autoinducers produced by individuals. QS allows bacteria to display a unified response that benefits the species during adaptation to environment, colonization, and defense against competitors. In oral streptococci, the CSP-ComDE QS is an inducible DNA damage repair system that is pivotal for bacterial survival. In the oral pathogen Streptococcus mutans, the QS system positively influences the formation of antibiotic persisters, cells that can survive antibiotic attack by entering a non-proliferative state. We recently identified a novel gene, pep299, that is activated in the persister cell fraction induced by QS. In this study, we focused our investigation on the role of pep299, a gene encoding a bacteriocin-like peptide, in the formation of antibiotic persisters. Mutant Δ299, unable to produce Pep299, showed a dramatic reduction in the number of stress-induced persisters. Using a co-culture assay, we showed that cells overproducing pep299 induced the formation of persisters in the mutant, suggesting that Pep299 was actively secreted and detected by neighboring cells. Cells exposed to DNA damage conditions activated the gene expression of pep299. Interestingly, our results suggested that the pep299 gene was also involved in the regulation of a QS-inducible toxin−antitoxin system. Our study suggests that the pep299 gene is at the core of the triggered persistence phenotype in S. mutans, allowing cells to transition into a state of reduced metabolic activity and antibiotic tolerance.
细菌使用群体感应(QS)通过个体分泌的小分子自动诱导剂相互交流。QS 允许细菌在适应环境、定植和抵御竞争者时表现出有利于物种的统一反应。在口腔链球菌中,CSP-ComDE QS 是一种诱导型 DNA 损伤修复系统,对细菌的生存至关重要。在口腔病原体变形链球菌中,QS 系统积极影响抗生素持久菌的形成,这些细胞可以通过进入非增殖状态来抵抗抗生素的攻击而存活。我们最近发现了一个新基因 pep299,它在由 QS 诱导的持久细胞部分中被激活。在这项研究中,我们专注于 Pep299 基因的作用,该基因编码一种细菌素样肽,在抗生素持久菌的形成中发挥作用。不能产生 Pep299 的突变体 Δ299 显示出应激诱导持久菌数量的显著减少。通过共培养实验,我们表明,过度表达 pep299 的细胞在突变体中诱导了持久菌的形成,这表明 Pep299 被主动分泌并被邻近细胞检测到。暴露于 DNA 损伤条件下的细胞激活了 pep299 基因的表达。有趣的是,我们的结果表明,pep299 基因也参与了 QS 诱导的毒素-抗毒素系统的调节。我们的研究表明,pep299 基因是变形链球菌中触发持久表型的核心,允许细胞进入代谢活性和抗生素耐受性降低的状态。