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The σB-dependent yabJ-spoVG operon is involved in the regulation of extracellular nuclease, lipase, and protease expression in Staphylococcus aureus

机译:依赖于σB的yabJ-spoVG操纵子参与金黄色葡萄球菌细胞外核酸酶,脂肪酶和蛋白酶表达的调节

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摘要

The alternative sigma factor σ(B) of Staphylococcus aureus is involved in the coordination of the general stress response, expression of virulence determinants, and modulation of antibiotic resistance levels. It controls a large regulon, either directly by recognizing conserved σ(B) promoter sequences or indirectly via σ(B)-dependent elements. The σ(B)-controlled yabJ-spoVG operon encodes two such putative downstream elements. We report here transcriptome analysis in S. aureus Newman, showing that inactivation of the yabJ-spoVG operon had primarily a repressing effect on a small subregulon encoding mainly virulence factors, including a nuclease (nuc), a protease (splE) and a lipase (lip). As a consequence, extracellular nuclease, protease, and lipase activities were reduced in a ΔyabJ-spoVG mutant. trans-complementation by SpoVG was sufficient to restore their reduced phenotypic expression and lowered transcription due to the yabJ-spoVG deletion. It did not restore, however, the changes triggered by σ(B) inactivation, indicating that both regulons only partially overlap, despite the σ(B) dependency of the yabJ-spoVG expression. Thus, σ(B) is likely to control additional, SpoVG-independent factors affecting the expression of numerous hydrolytic enzymes. SpoVG, on the other hand, seems to fine-tune the σ(B)-dependent regulation of a subset of virulence factors by antagonizing the σ(B) effect.
机译:金黄色葡萄球菌的另一个σ因子σ(B)参与一般应激反应的协调,毒力决定因子的表达和抗生素抗性水平的调节。它可以直接识别保守的σ(B)启动子序列,也可以通过依赖σ(B)的元件间接控制大型调节子。 σ(B)控制的yabJ-spoVG操纵子编码两个这样的假定下游元件。我们在此处报告金黄色葡萄球菌纽曼(S. aureus Newman)的转录组分析,显示yabJ-spoVG操纵子的失活对主要编码毒力因子的小的亚调节子主要具有抑制作用,所述毒力因子包括核酸酶(nuc),蛋白酶(splE)和脂肪酶(唇)。结果,ΔyabJ-spoVG突变体的细胞外核酸酶,蛋白酶和脂肪酶活性降低。由于yabJ-spoVG缺失,SpoVG进行的反式互补足以恢复其减少的表型表达和降低的转录。但是,它没有恢复由σ(B)失活触发的变化,表明尽管yabJ-spoVG表达具有σ(B)依赖性,但两个调节子仅部分重叠。因此,σ(B)可能控制其他SpoVG独立因子,从而影响多种水解酶的表达。另一方面,SpoVG似乎通过拮抗σ(B)效应来微调毒力因子子集的σ(B)依赖性调节。

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