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从 ClpP 蛋白酶在 Newman、COL 和 SA564 株中的作用分析中获得的金黄色葡萄球菌应激耐受和毒力调节的新见解。

New insights into Staphylococcus aureus stress tolerance and virulence regulation from an analysis of the role of the ClpP protease in the strains Newman, COL, and SA564.

机构信息

Department of Veterinary Disease Biology, Faculty of Life Sciences, University of Copenhagen, Stigbøjlen 4 DK-1870, Frederiksberg C, Denmark.

出版信息

J Proteome Res. 2012 Jan 1;11(1):95-108. doi: 10.1021/pr200956s. Epub 2011 Dec 12.

Abstract

In Staphylococcus aureus, ClpP proteases were previously shown to be essential for virulence and stress tolerance in strains derived from NCTC8325. Because these strains exhibit a severely reduced activity of the alternative sigma factor, SigB, we here reassessed the role of ClpP in SigB-proficient clinical strains. To this end, clpP was deleted in strains COL, Newman, and SA564, and the strains were characterized phenotypically. The proteomic changes accomplished by the clpP deletion in the different strains were analyzed using the 2-D DIGE technique. The proteomic analyses revealed mostly conserved changes in the protein profiles of the ClpP-deficient strains. Among the strain-specific changes were the up-regulation of prophage proteins that coincided with an increased spontaneous release of prophages and the relatively poorer growth of the clpP mutants in some strain backgrounds. Interestingly, the effect of ClpP on the expression of selected virulence genes was strain-dependent despite the fact that the expression of the global virulence regulators RNAIII, mgrA, sarZ, sarR, and arlRS was similarly changed in all clpP mutants. ClpP affected the expression of sarS in a strain-dependent manner, and we propose that the differential expression of sarS is central to the strain-dependent effect of ClpP on the expression of virulence genes.

摘要

在金黄色葡萄球菌中,先前已经证明 ClpP 蛋白酶对于源自 NCTC8325 的菌株的毒力和应激耐受性是必不可少的。由于这些菌株的替代 sigma 因子 SigB 的活性严重降低,因此我们重新评估了 ClpP 在 SigB 有效临床菌株中的作用。为此,在 COL、Newman 和 SA564 菌株中缺失了 clpP,并对菌株进行了表型特征分析。使用 2-D DIGE 技术分析了不同菌株中 clpP 缺失所完成的蛋白质组变化。蛋白质组分析显示,ClpP 缺失的菌株的蛋白质图谱变化大多是保守的。在菌株特异性变化中,噬菌体蛋白的上调与噬菌体的自发释放增加以及在某些菌株背景下 clpP 突变体的相对较差生长相一致。有趣的是,尽管所有 clpP 突变体中全局毒力调节剂 RNAIII、mgrA、sarZ、sarR 和 arlRS 的表达都发生了类似的变化,但 ClpP 对选定毒力基因的表达的影响仍取决于菌株。ClpP 以菌株依赖性的方式影响 sarS 的表达,我们提出 sarS 的差异表达是 ClpP 对毒力基因表达的菌株依赖性影响的核心。

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