Interfaculty Institute of Microbiology and Infection Medicine, University of Tübingen, Tübingen, Germany.
J Bacteriol. 2010 Feb;192(3):613-23. doi: 10.1128/JB.01242-09. Epub 2009 Nov 20.
The saePQRS system of Staphylococcus aureus controls the expression of major virulence factors and encodes a histidine kinase (SaeS), a response regulator (SaeR), a membrane protein (SaeQ), and a lipoprotein (SaeP). The widely used strain Newman is characterized by a single amino acid change in the sensory domain of SaeS (Pro18 in strain Newman [SaeS(P)], compared with Leu18 in other strains [SaeS(L)]). SaeS(P) determines activation of the class I sae target genes (coa, fnbA, eap, sib, efb, fib, sae), which are highly expressed in strain Newman. In contrast, class II target genes (hla, hlb, cap) are not sensitive to the SaeS polymorphism. The SaeS(L) allele (saeS(L)) is dominant over the SaeS(P) allele, as shown by single-copy integration of saePQRS(L) in strain Newman, which results in severe repression of class I target genes. The differential effect on target gene expression is explained by different requirements for SaeR phosphorylation. From an analysis of saeS deletion strains and strains with mutated SaeR phosphorylation sites, we concluded that a high level of SaeR phosphorylation is required for activation of class I target genes. However, a low level of SaeR phosphorylation, which can occur independent of SaeS, is sufficient to activate class II target genes. Using inducible saeRS constructs, we showed that the expression of both types of target genes is independent of the saeRS dosage and that the typical growth phase-dependent gene expression pattern is not driven by SaeRS.
金黄色葡萄球菌的 saePQRS 系统控制主要毒力因子的表达,并编码组氨酸激酶(SaeS)、应答调节子(SaeR)、膜蛋白(SaeQ)和脂蛋白(SaeP)。常用菌株 Newman 的特征是 SaeS 感应结构域中的单个氨基酸变化(Newman 菌株中的 Pro18[SaeS(P)],而其他菌株中的 Leu18[SaeS(L)])。SaeS(P)决定了 I 类 sae 靶基因(coa、fnbA、eap、sib、efb、fib、sae)的激活,这些基因在 Newman 菌株中高度表达。相比之下,II 类靶基因(hla、hlb、cap)对 SaeS 多态性不敏感。SaeS(L)等位基因(saeS(L))在 Newman 菌株中通过 saePQRS(L)的单拷贝整合表现出对 SaeS(P)等位基因的显性,这导致 I 类靶基因的严重抑制。对靶基因表达的不同影响可以通过对 SaeR 磷酸化的不同要求来解释。通过对 saeS 缺失菌株和突变 SaeR 磷酸化位点的菌株进行分析,我们得出结论,I 类靶基因的激活需要高水平的 SaeR 磷酸化。然而,SaeR 独立于 SaeS 发生的低水平磷酸化足以激活 II 类靶基因。使用诱导型 saeRS 构建体,我们表明两种类型的靶基因的表达都独立于 saeRS 剂量,并且典型的生长阶段依赖性基因表达模式不是由 SaeRS 驱动的。