Biswas Indranil, Drake Laura, Biswas Saswati
Basic Biomedical Sciences, University of South Dakota, Lee Medical Building, 414 E. Clark Street, Vermillion, SD 57069, USA.
J Bacteriol. 2007 Sep;189(18):6521-31. doi: 10.1128/JB.00825-07. Epub 2007 Jul 6.
Streptococcus mutans, the principal causative agent of dental caries, produces four glucan-binding proteins (Gbp) that play major roles in bacterial adherence and pathogenesis. One of these proteins, GbpC, is an important cell surface protein involved in biofilm formation. GbpC is also important for cariogenesis, bacteremia, and infective endocarditis. In this study, we examined the regulation of gbpC expression in S. mutans strain UA159. We found that gbpC expression attains the maximum level at mid-exponential growth phase, and the half-life of the transcript is less than 2 min. Expression from PgbpC was measured using a PgbpC-gusA transcriptional fusion reporter and was analyzed under various stress conditions, including thermal, osmotic, and acid stresses. Expression of gbpC is induced under conditions of thermal stress but is repressed during growth at low pH, whereas osmotic stress had no effect on expression from PgbpC. The results from the expression analyses were further confirmed using semiquantitative reverse transcription-PCR analysis. Our results also reveal that CovR, a global response regulator in many Streptococcus spp., represses gbpC expression at the transcriptional level. We demonstrated that purified CovR protein binds directly to the promoter region of PgbpC to repress gbpC expression. Using a DNase I protection assay, we showed that CovR binds to DNA sequences surrounding PgbpC from bases -68 to 28 (where base 1 is the start of transcription). In summary, our results indicate that various stress conditions modulate the expression of gbpC and that CovR negatively regulates the expression of the gbpC gene by directly binding to the promoter region.
变形链球菌是龋齿的主要致病因子,它产生四种葡聚糖结合蛋白(Gbp),这些蛋白在细菌黏附和致病过程中起主要作用。其中一种蛋白GbpC是参与生物膜形成的重要细胞表面蛋白。GbpC对龋齿发生、菌血症和感染性心内膜炎也很重要。在本研究中,我们检测了变形链球菌UA159菌株中gbpC表达的调控。我们发现gbpC表达在指数生长中期达到最高水平,转录本的半衰期小于2分钟。使用PgbpC - gusA转录融合报告基因测量PgbpC的表达,并在各种应激条件下进行分析,包括热应激、渗透压应激和酸应激。gbpC的表达在热应激条件下被诱导,但在低pH值生长期间被抑制,而渗透压应激对PgbpC的表达没有影响。使用半定量逆转录 - PCR分析进一步证实了表达分析的结果。我们的结果还表明,CovR是许多链球菌属中的一种全局反应调节因子,在转录水平上抑制gbpC的表达。我们证明纯化的CovR蛋白直接结合到PgbpC的启动子区域以抑制gbpC的表达。使用DNase I保护试验,我们表明CovR结合到PgbpC周围从碱基 - 68到28的DNA序列(其中碱基1是转录起始点)。总之,我们的结果表明各种应激条件调节gbpC的表达,并且CovR通过直接结合启动子区域对gbpC基因的表达进行负调控。