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首页> 外文期刊>Journal of bacteriology >Identification of sarV (SA2062), a New Transcriptional Regulator, Is Repressed by SarA and MgrA (SA0641) and Involved in the Regulation of Autolysis in Staphylococcus aureus
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Identification of sarV (SA2062), a New Transcriptional Regulator, Is Repressed by SarA and MgrA (SA0641) and Involved in the Regulation of Autolysis in Staphylococcus aureus

机译:SarA和MgrA(SA0641)抑制了新型转录调节子sarV(SA2062)的鉴定,并参与了金黄色葡萄球菌自溶的调控。

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摘要

The expression of genes involved in the pathogenesis of Staphylococcus aureus is known to be controlled by global regulatory loci, including agr, sarA, sae, arlRS, lytSR, and sarA-like genes. Here we described a novel transcriptional regulator called sarV of the SarA protein family. The transcription of sarV is low or undetectable under in vitro conditions but is significantly augmented in sarA and mgrA (norR or rat) (SA0641) mutants. The sarA and mgrA genes act as repressors of sarV expression, as confirmed by transcriptional fusion and Northern analysis data. Purified SarA and MgrA proteins bound specifically to separate regions of the sarV promoter as determined by gel shift and DNase I footprinting assays. The expression of 19 potential target genes involved in autolysis and virulence, phenotypes affected by sarA and mgrA, was evaluated in an isogenic sarV mutant pair. Our data indicated that the sarV gene product played a role regulating some virulence genes and more genes involved in autolysis. The sarV mutant was more resistant to Triton X-100 and penicillin-induced lysis compared to the wild type and the sarA mutant, whereas hyperexpression of sarV in the parental strain or the sarV mutant rendered the resultant strain highly susceptible to lysis. Zymographic analysis of murein hydrolase activity revealed that inactivation of the sarV gene results in decreased extracellular murein hydrolase activity compared to that of wild-type S. aureus. We propose that sarV may be part of the common pathway by which mgrA and sarA gene products control autolysis in S. aureus.
机译:已知与金黄色葡萄球菌的发病机制有关的基因的表达受全球调控位点控制,包括 agr sarA sae arlRS lytSR sarA 样基因。在这里,我们描述了一种新的转录调节因子,称为SarA蛋白家族的 sarV 。在体外条件下, sarV 的转录水平较低或无法检测,但在 sarA mgrA norR rat )(SA0641)突变体。转录融合和Northern分析数据证实, sarA mgrA 基因充当 sarV 表达的阻遏物。纯化的SarA和MgrA蛋白与 sarV 启动子的分离区域特异性结合,这通过凝胶迁移和DNase I足迹测定法确定。在同基因的 sarV 突变对中评估了19个潜在的靶基因的表达,这些基因涉及自溶和毒力,受 sarA mgrA 影响的表型。我们的数据表明, sarV 基因产物在调节某些毒力基因和更多涉及自溶的基因方面发挥了作用。与野生型和 sarA 突变体相比, sarV 突变体对Triton X-100和青霉素诱导的裂解更具抵抗力,而 sarV 的高表达亲本菌株或 sarV 突变体中的>使得所得菌株极易裂解。对murein水解酶活性的酶谱分析表明,与野生型 S相比, sarV 基因的失活导致细胞外murein水解酶活性降低。金黄色。我们建议 sarV 可能是 mgrA sarA 基因产物控制 S中自溶的常见途径的一部分。金黄色

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