Li Yung-Hua, Tian Xiao-Lin, Layton Gillian, Norgaard Chris, Sisson Gary
Department of Microbiology and Immunology, Dalhousie University, Halifax, NS, Canada.
Department of Applied Oral Sciences, Dalhousie University, Halifax, NS, Canada.
Microbiology (Reading). 2008 Nov;154(Pt 11):3256-3265. doi: 10.1099/mic.0.2008/019455-0.
The genome of Streptococcus mutans harbours 13 two-component signal transduction systems (TCSTSs). Of these, a peptide-mediated quorum-sensing system, ComCDE, and the HK/RR11 two-component system are well known to regulate several virulence-associated traits in in vitro experiments, including genetic competence, bacteriocin production, biofilm formation and stress responses. In this study, we investigated the hypothesis that inactivation of ComCDE, HK/RR11 or both systems would attenuate the virulence and cariogenicity of S. mutans. The results showed that simultaneous inactivation of both signal transduction systems additively attenuated S. mutans virulence and cariogenicity, since inactivation of either of these systems alone did not result in the same degree of effect. The double deletion mutant SMcde-hk11 was defective in genetic competence, had a reduced acid production, was unable to grow at pH 5.0 and formed an abnormal biofilm with reduced biomass. Animal studies showed that this mutant had reduced capabilities for oral colonization, succession and initiation of dental caries. A competitive index (CI) analysis using a mixed-infection animal model revealed that all the mutants, particularly SMcde-hk11, had reduced fitness in their ecological niches and were unable to compete with the wild-type strain for persistence in dental biofilms. The evidence from this study suggests that the ComCDE and HK/RR11 signal transduction systems can be considered to be novel targets for the development of strategies in the prevention and treatment of S. mutans infections.
变形链球菌的基因组含有13个双组分信号转导系统(TCSTSs)。其中,一种肽介导的群体感应系统ComCDE以及HK/RR11双组分系统在体外实验中调节多种与毒力相关的特性,包括遗传感受态、细菌素产生、生物膜形成和应激反应,这是广为人知的。在本研究中,我们调查了以下假说:ComCDE、HK/RR11或这两个系统的失活会减弱变形链球菌的毒力和致龋性。结果表明,这两个信号转导系统的同时失活会累加性地减弱变形链球菌的毒力和致龋性,因为单独失活其中任何一个系统都不会产生相同程度的效果。双缺失突变体SMcde-hk11在遗传感受态方面存在缺陷,产酸减少,在pH 5.0时无法生长,并且形成了生物量减少的异常生物膜。动物研究表明,该突变体在口腔定植、演替和引发龋齿方面的能力降低。使用混合感染动物模型进行的竞争指数(CI)分析表明,所有突变体,特别是SMcde-hk11,在其生态位中的适应性降低,并且无法与野生型菌株竞争以在牙生物膜中持续存在。本研究的证据表明,ComCDE和HK/RR11信号转导系统可被视为开发预防和治疗变形链球菌感染策略的新靶点。