首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The CsrR/CsrS two-component system of group A Streptococcus responds to environmental Mg2+.
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The CsrR/CsrS two-component system of group A Streptococcus responds to environmental Mg2+.

机译:A组链球菌的CsrR / CsrS两组分系统对环境Mg2 +有反应。

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Group A streptococci control expression of key virulence determinants via the two-component sensorregulator system CsrRCsrS. The membrane-bound sensor CsrS is thought to respond to previously unknown environmental signal(s) by controlling phosphorylation of its cognate regulator component CsrR. Phosphorylation of CsrR increases its affinity for binding to the promoter regions of Csr-regulated genes to repress transcription. Here we show that environmental Mg(2+) concentration is a potent and specific stimulus for CsrRCsrS-mediated regulation. We studied the effect of divalent cations on expression of the Csr-regulated hyaluronic acid capsule genes (hasABC) by measuring chloramphenicol acetyltransferase (CAT) activity in a reporter strain of group A Streptococcus carrying a has operon promoter-cat fusion. Addition of Mg(2+), but not of Ca(2+), Mn(2+), or Zn(2+), repressed capsule gene expression by up to 80% in a dose-dependent fashion. The decrease in capsule gene transcription was associated with a marked reduction in cell-associated capsular polysaccharide. RNA hybridization analysis demonstrated reduced expression of the Csr-regulated hasABC operon, streptokinase (ska), and streptolysin S (sagA) during growth in the presence of 15 mM Mg(2+) for the wild-type strain 003CAT but not for an isogenic csrS mutant. We propose that Mg(2+) binds to CsrS to induce phosphorylation of CsrR and subsequent repression of virulence gene expression. The low concentration of Mg(2+) in extracellular body fluids predicts that the CsrRCsrS system is maintained in the inactive state during infection, thereby allowing maximal expression of critical virulence determinants in the human host.
机译:A组链球菌通过两组分传感器调节系统CsrRCsrS控制关键毒力决定因素的表达。膜结合的传感器CsrS被认为通过控制其同源调节因子CsrR的磷酸化来响应先前未知的环境信号。 CsrR的磷酸化增加了其与Csr调节基因的启动子区域结合以抑制转录的亲和力。在这里,我们显示环境Mg(2+)的浓度是CsrRCsrS介导的监管的有力和特定的刺激。我们通过测量携带A子链球菌的A型链球菌的报告株中的氯霉素乙酰转移酶(CAT)活性,研究了二价阳离子对Csr调节的透明质酸胶囊基因(hasABC)表达的影响。 Mg(2+),而不是Ca(2 +),Mn(2+)或Zn(2+)的添加,以剂量依赖的方式最多可将胶囊基因的表达抑制80%。胶囊基因转录的减少与细胞相关荚膜多糖的显着减少有关。 RNA杂交分析表明,在存在15 mM Mg(2+)的情况下,野生型003CAT的Csr调控的hasABC操纵子,链激酶(ska)和链球菌溶血素S(sagA)的表达降低,但同基因型却不存在csrS突变体。我们建议Mg(2+)绑定到CsrS,以诱导CsrR的磷酸化和随后的毒力基因表达的抑制。 Mg(2+)在细胞外体液中的低浓度预测CsrRCsrS系统在感染过程中保持在非活动状态,从而允许在人类宿主中最大程度地表达关键毒力决定因素。

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