Schelin Jenny, Cohn Marianne Thorup, Frisk Barbro, Frees Dorte
Division of Applied Microbiology, Department of Chemistry, Lund University, SE-221 00 Lund, Sweden.
Department of Veterinary and Animal Sciences, University of Copenhagen, 1870 Frederikberg C, Denmark.
Toxins (Basel). 2020 Aug 28;12(9):553. doi: 10.3390/toxins12090553.
Staphylococcal toxic shock syndrome is a potentially lethal illness attributed to superantigens produced by , in particular toxic shock syndrome toxin 1 (TSST-1), but staphylococcal enterotoxins (SEs) are also implicated. The genes encoding these important toxins are carried on mobile genetic elements, and the regulatory networks controlling expression of these toxins remain relatively unexplored. We show here that the highly conserved ClpXP protease stimulates transcription of (TSST-1), (SEC), and (SED) genes in the prototypical strains, SA564 and RN4282. In the wild-type cells, the post-exponential upregulation of toxin gene transcription was proposed to occur via RNAIII-mediated downregulation of the Rot repressor. Contradictive to this model, we showed that the post-exponential induction of , and transcription did not occur in cells devoid of ClpXP activity, despite the Rot level being diminished. To identify transcriptional regulators with a changed expression in cells devoid of ClpXP activity, RNA sequencing was performed. The RNAseq analysis revealed a number of global virulence regulators that might act downstream of ClpXP, to control expression of and other virulence genes. Collectively, the results extend our understanding of the complex transcriptional regulation of the and genes.
葡萄球菌中毒性休克综合征是一种潜在的致命疾病,由葡萄球菌产生的超抗原引起,特别是中毒性休克综合征毒素1(TSST-1),但葡萄球菌肠毒素(SEs)也与之有关。编码这些重要毒素的基因位于移动遗传元件上,而控制这些毒素表达的调控网络仍相对未被探索。我们在此表明,高度保守的ClpXP蛋白酶可刺激典型菌株SA564和RN4282中TSST-1、SEC和SED基因的转录。在野生型细胞中,毒素基因转录在指数期后上调被认为是通过RNAIII介导的Rot阻遏物下调而发生的。与该模型相反,我们发现,尽管Rot水平降低,但在缺乏ClpXP活性的细胞中,TSST-1、SEC和SED转录在指数期后并未诱导发生。为了鉴定在缺乏ClpXP活性的细胞中表达发生变化的转录调节因子,我们进行了RNA测序。RNA测序分析揭示了一些可能在ClpXP下游起作用以控制TSST-1和其他毒力基因表达的全局毒力调节因子。总的来说,这些结果扩展了我们对TSST-1和SE基因复杂转录调控的理解。