Hou Xiang-Hua, Zhang Jia-Qin, Song Xiu-Yu, Ma Xiao-Bo, Zhang Shi-Yang
Department of Clinical Laboratory, The First Affiliated Hospital of Xiamen University, Xiamen, China.
J Basic Microbiol. 2014 Nov;54(11):1222-32. doi: 10.1002/jobm.201300747. Epub 2014 Jun 30.
Abilities to tolerate environmental stresses and to form biofilms on teeth surface are key virulence attributes of Streptococcus mutans, the primary causative agent of human dental caries. ClpP, the chief intracellular protease of S. mutans, along with ATPases degrades altered proteins that might be toxic for bacteria, and thus plays important roles in stress response. To further understand the roles of ClpP in stress response of S. mutans, a ClpP deficient strain was constructed and used for general stress tolerance, autolysis, mutacins production, and virulence assays. Here, we demonstrated that inactivation of ClpP in S. mutans resulted in a sensitive phenotype to several environmental stresses, including acid, cold, thermal, and oxidative stresses. The ClpP deficient strain displayed slow growth rates, poor growth yields, formation of long chains, increased clumping in broth, and reduced capacity to form biofilms in presence of glucose. Mutacins production and autolysis of S. mutans were also impaired by mutation of clpP. Animals study showed that clpP mutation increased virulence of S. mutans but not significant. However, enhanced abilities to survive lethal acid and to form biofilm in sucrose were observed in ClpP deficient strain. Our findings revealed a broad impact of ClpP on several virulence properties of S. mutans and highlighted the relevance of ClpP proteolysis with progression of diseases caused by S. mutans.
耐环境压力以及在牙齿表面形成生物膜的能力是变形链球菌的关键毒力属性,变形链球菌是人类龋齿的主要致病菌。ClpP是变形链球菌主要的细胞内蛋白酶,它与ATP酶一起降解可能对细菌有毒的改变后的蛋白质,因此在应激反应中发挥重要作用。为了进一步了解ClpP在变形链球菌应激反应中的作用,构建了一株ClpP缺陷菌株,并用于一般应激耐受性、自溶、变链菌素产生和毒力测定。在此,我们证明了变形链球菌中ClpP的失活导致对几种环境压力敏感的表型,包括酸、冷、热和氧化应激。ClpP缺陷菌株显示出生长速率缓慢、生长产量低、形成长链、在肉汤中聚集增加以及在有葡萄糖存在时形成生物膜的能力降低。变形链球菌的变链菌素产生和自溶也因clpP突变而受损。动物研究表明,clpP突变增加了变形链球菌的毒力,但不显著。然而,在ClpP缺陷菌株中观察到在致死酸中存活和在蔗糖中形成生物膜的能力增强。我们的研究结果揭示了ClpP对变形链球菌几种毒力特性的广泛影响,并突出了ClpP蛋白水解与变形链球菌引起的疾病进展的相关性。