Matsumoto-Nakano Michiyo
Department of Pediatric Dentistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, 2-5-1, Shikata-cho, Kita-ku, Okayama, Japan.
Jpn Dent Sci Rev. 2018 Feb;54(1):22-29. doi: 10.1016/j.jdsr.2017.08.002. Epub 2017 Sep 29.
has been implicated as a primary causative agent of dental caries in humans. An important virulence property of the bacterium is its ability to form biofilm known as dental plaque on tooth surfaces. In addition, this organism also produces glucosyltransferases, multiple glucan-binding proteins, protein antigen c, and collagen-binding protein, surface proteins that coordinate to produce dental plaque, thus inducing dental caries. Bacteria utilize quorum-sensing systems to modulate environmental stress responses. A major mechanism of response to signals is represented by the so called two-component signal transduction system, which enables bacteria to regulate their gene expression and coordinate activities in response to environmental stress. As for , a signal peptide-mediated quorum-sensing system encoded by has been found to be a regulatory system that responds to cell density and certain environmental stresses by excreting a peptide signal molecule termed CSP (competence-stimulating peptide). One of its principal virulence factors is production of bacteriocins (peptide antibiotics) referred to as mutacins. Two-component signal transduction systems are commonly utilized by bacteria to regulate bacteriocin gene expression and are also related to biofilm formation by .
已被认为是人类龋齿的主要致病因素。该细菌的一个重要毒力特性是其在牙齿表面形成称为牙菌斑的生物膜的能力。此外,这种微生物还产生葡糖基转移酶、多种葡聚糖结合蛋白、蛋白抗原c和胶原结合蛋白,这些表面蛋白协同作用产生牙菌斑,从而引发龋齿。细菌利用群体感应系统来调节环境应激反应。对信号作出反应的主要机制由所谓的双组分信号转导系统代表,该系统使细菌能够调节其基因表达并在应对环境应激时协调活动。至于,已发现由编码的信号肽介导的群体感应系统是一种调节系统,它通过分泌一种称为CSP(感受态刺激肽)的肽信号分子来响应细胞密度和某些环境应激。其主要毒力因子之一是产生被称为变链菌素的细菌素(肽抗生素)。双组分信号转导系统通常被细菌用于调节细菌素基因表达,并且也与的生物膜形成有关。