Centre d'étude et de valorisation de la diversité microbienne, Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, Quebec, Canada.
PLoS One. 2013 May 21;8(5):e65018. doi: 10.1371/journal.pone.0065018. Print 2013.
Staphylococcus aureus small-colony variants (SCVs) are persistent pathogenic bacteria characterized by slow growth and, for many of these strains, an increased ability to form biofilms and to persist within host cells. The virulence-associated gene expression profile of SCVs clearly differs from that of prototypical strains and is often influenced by SigB rather than by the agr system. One objective of this work was to confirm the role of SigB in the control of the expression of virulence factors involved in biofilm formation and intracellular persistence of SCVs. This study shows that extracellular proteins are involved in the formation of biofilm by three SCV strains, which, additionally, have a low biofilm-dispersing activity. It was determined that SigB activity modulates biofilm formation by strain SCV CF07-S and is dominant over that of the agr system without being solely responsible for the repression of proteolytic activity. On the other hand, the expression of fnbA and the control of nuclease activity contributed to the SigB-dependent formation of biofilm of this SCV strain. SigB was also required for the replication of CF07-S within epithelial cells and may be involved in the colonization of lungs by SCVs in a mouse infection model. This study methodically investigated SigB activity and associated mechanisms in the various aspects of SCV pathogenesis. Results confirm that SigB activity importantly influences the production of virulence factors, biofilm formation and intracellular persistence for some clinical SCV strains.
金黄色葡萄球菌小菌落变异体(SCVs)是一种持续性的致病菌,其特征是生长缓慢,并且其中许多菌株具有形成生物膜和在宿主细胞内持续存在的能力增强。SCVs 的毒力相关基因表达谱明显不同于原型菌株,并且通常受 SigB 而不是 Agr 系统的影响。这项工作的一个目标是确认 SigB 在控制与生物膜形成和 SCVs 细胞内持续存在相关的毒力因子表达中的作用。这项研究表明,三种 SCV 菌株的细胞外蛋白参与生物膜的形成,并且这些菌株的生物膜分散活性较低。确定 SigB 活性调节了 SCV CF07-S 菌株的生物膜形成,并且在不单独负责抑制蛋白水解活性的情况下,SigB 活性优于 Agr 系统。另一方面,fnbA 的表达和核酸酶活性的控制有助于该 SCV 菌株依赖 SigB 的生物膜形成。SigB 还需要在 CF07-S 上皮细胞内复制,并且可能在小鼠感染模型中参与 SCVs 对肺部的定植。这项研究系统地研究了 SigB 活性及其在 SCV 发病机制的各个方面的相关机制。结果证实 SigB 活性对某些临床 SCV 菌株的毒力因子产生、生物膜形成和细胞内持续存在具有重要影响。