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Stabilization of Bacillus subtilis Spx under cell wall stress requires the anti-adaptor protein YirB

机译:在细胞壁压力下稳定枯草芽孢杆菌Spx需要抗适配器蛋白YirB

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摘要

Spx is a global transcriptional regulator present in low-GC Gram-positive bacteria, including the model bacterium Bacillus subtilis and various human pathogens. In B. subtilis, activation of Spx occurs in response to disulfide stress. We recently reported, however, that induction of Spx also occurs in response to cell wall stress, and that the molecular events that result in its activation under both stress conditions are mechanistically different. Here, we demonstrate that, in addition to up-regulation of spx transcription through the alternative sigma factor σM, full and timely activation of Spx-regulated genes by cell wall stress requires Spx stabilization by the anti-adaptor protein YirB. YirB is itself transcriptionally induced under cell wall stress, but not disulfide stress, and this induction requires the CssRS two-component system, which responds to both secretion stress and cell wall antibiotics. The yirB gene is repressed by YuxN, a divergently transcribed TetR family repressor, and CssR~P acts as an anti-repressor. Collectively, our results identify a physiological role for the YirB anti-adaptor protein and show that induction of the Spx regulon under disulfide and cell wall stress occurs through largely independent pathways.
机译:Spx是存在于低GC革兰氏阳性细菌(包括模型细菌枯草芽孢杆菌和各种人类病原体)中的全球转录调节因子。在枯草芽孢杆菌中,Spx的激活是对二硫键胁迫的响应。然而,我们最近报道,Spx的诱导也响应细胞壁应力而发生,并且在两种应力条件下导致其活化的分子事件在机理上是不同的。在这里,我们证明,除了通过可选的sigma因子σ M 上调spx转录外,通过细胞壁应激全面及时激活spx调控基因还需要通过抗spx来稳定Spx。衔接蛋白YirB。 YirB本身是在细胞壁压力下被转录诱导的,而不是在二硫键胁迫下被诱导的,并且这种诱导需要CssRS两组分系统,该系统对分泌压力和细胞壁抗生素都有反应。 yirB基因被有差异转录的TetR家族阻遏物YuxN阻遏,而CssR〜P充当抗阻遏物。总的来说,我们的结果确定了YirB抗适配蛋白的生理作用,并表明在二硫键和细胞壁应力下通过大量独立的途径诱导Spx调节子。

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