几种变形链球菌中gtfB、gtfC和gbpB的转录分析及其可能的应答调节因子。

R N Stipp, R B Gonçalves, J F Höfling, D J Smith, R O Mattos-Graner
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引用次数: 48

摘要

背景:变形链球菌(Streptococcus mutans)是一种主要的龋齿病原体,表达了几种介导其生长、在牙齿表面积聚和酸介导的牙齿脱矿的毒力基因。GtfB和GtfC可以催化蔗糖在细胞外合成不溶于水的葡聚糖基质,对细菌在牙生物膜中的积累至关重要。GbpB是变形链球菌的一种必需蛋白,也可能介导细胞表面与葡聚糖的相互作用。目的/方法:在本研究中,我们测定了11株S. mutans菌株浮游生长不同阶段gtfB、gtfC和gbpB以及几种可能的转录反应调节因子(rr)的转录水平。结果:gtfB和gtfC的活性依赖于生长阶段,在不同菌株的特定生长阶段表现出不同的模式,而gbpB的活性受生长阶段的影响不大。rr、vicR、covR、comE、ciaR和rr1的转录模式依赖于生长阶段,其中一些基因以高度协调的方式表达。除comE外,其余rr均被所有菌株表达。然而,毒力和调控基因的模式是菌株特异性的。结论:研究结果表明,控制毒力基因表达的机制在不同的基因型中是可变的,这表明突变链球菌的遗传多样性可能对理解该物种毒力基因表达的调控机制具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcriptional analysis of gtfB, gtfC, and gbpB and their putative response regulators in several isolates of Streptococcus mutans.

Background: Streptococcus mutans, a major dental caries pathogen, expresses several virulence genes that mediate its growth, accumulation on tooth surfaces, and acid-mediated tooth demineralization. GtfB and GtfC catalyze the extracellular synthesis of water-insoluble glucan matrix from sucrose, and are essential for accumulation of bacteria in the dental biofilm. GbpB, an essential protein of S. mutans, might also mediate cell-surface interaction with glucan.

Aim/methods: In this study, we determined the transcription levels of gtfB, gtfC, and gbpB, and several putative transcriptional response regulators (rr) at different phases of planktonic growth in 11 S. mutans strains.

Results: Activities of gtfB and gtfC were growth-phase dependent and assumed divergent patterns in several strains during specific phases of growth, while gbpB activities appeared to be under modest influence of the growth phase. Transcription patterns of the rr vicR, covR, comE, ciaR, and rr1 were growth-phase dependent and some of these genes were expressed in a highly coordinated way. Each rr, except comE, was expressed by all the strains. Patterns of virulence and regulatory genes were, however, strain-specific.

Conclusions: The findings suggest that mechanisms controlling virulence gene expression are variable among genotypes, providing the notion that the genetic diversity of S. mutans may have important implications for understanding mechanisms that regulate the expression of virulence genes in this species.

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