Churchward Gordon, Bates Christopher, Gusa Asiya A, Stringer Virginia, Scott June R
Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322, USA.
Microbiology (Reading). 2009 Feb;155(Pt 2):566-575. doi: 10.1099/mic.0.024620-0.
The important human pathogen Streptococcus pyogenes (the group A streptococcus or GAS) produces many virulence factors that are regulated by the two-component signal transduction system CovRS (CsrRS). Dissemination of GAS infection originating at the skin has been shown to require production of streptokinase, whose transcription is repressed by CovR. In this work we have studied the interaction of CovR and phosphorylated CovR (CovR-P) with the promoter for streptokinase, Pska. We found that, in contrast to the other CovR-repressed promoters, Pska regulation by CovR occurs through binding at a single ATTARA consensus binding sequence (CB) that overlaps the -10 region of the promoter. Binding of CovR to other nearby consensus sequences occurs upon phosphorylation of the protein, but these other CBs do not contribute to the regulation of Pska by CovR. Thus, binding at a specific site does not necessarily indicate that the site is involved in regulation by CovR. In addition, at Pska, CovR binding to the different sites does not appear to involve cooperative interactions, which simplifies the analysis of CovR binding and gives us insight into the modes of interaction that occur between CovR and its specific DNA-binding sites. Finally, the observation that regulation of transcription from Pska occurs at a very low concentration of phosphorylated CovR may have important implications for the regulation of virulence gene expression during GAS infection.
重要的人类病原体化脓性链球菌(A组链球菌或GAS)产生许多毒力因子,这些毒力因子由双组分信号转导系统CovRS(CsrRS)调控。已证明源自皮肤的GAS感染的传播需要产生链激酶,其转录受CovR抑制。在这项工作中,我们研究了CovR和磷酸化的CovR(CovR-P)与链激酶启动子Pska的相互作用。我们发现,与其他受CovR抑制的启动子不同,CovR对Pska的调控是通过结合在与启动子-10区域重叠的单一ATTARA共有结合序列(CB)上实现的。CovR与其他附近共有序列的结合发生在该蛋白磷酸化后,但这些其他CB对CovR对Pska的调控没有贡献。因此,在特定位点的结合不一定表明该位点参与了CovR的调控。此外,在Pska处,CovR与不同位点的结合似乎不涉及协同相互作用,这简化了对CovR结合的分析,并使我们深入了解CovR与其特定DNA结合位点之间发生的相互作用模式。最后,在非常低浓度的磷酸化CovR下发生Pska转录调控这一观察结果,可能对GAS感染期间毒力基因表达的调控具有重要意义。