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Single-domain response regulator involved in the general stress response of Methylobacterium extorquens

机译:单域响应调节剂参与甲基芽孢杆菌的一般应激反应

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摘要

The general stress response of alphaproteobacteria is regulated by a partner-switching mechanism that involves the alternative sigma factor σEcfG, the anti-sigma factor NepR and the anti-sigma factor antagonist PhyR. To address the question of how the PhyR–NepR–σEcfG cascade is activated and modulated in Methylobacterium extorquens, a forward genetic screen was applied. The screen identified the single-domain response regulator Mext_0407 as a novel regulatory element in the general stress response of M. extorquens. Analysis of phenotypes and of transcriptional fusions of PhyR-dependent genes shows that the mext_0407 deletion mutant fails to respond to various stresses. Mext_0407 requires the putative phosphorylatable aspartate-64 for its activity in vivo and genetic evidence indicates that Mext_0407 operates upstream of the PhyR–NepR–σEcfG cascade.
机译:α变形杆菌的一般应激反应受伙伴转换机制的调节,该机制涉及替代的sigma因子σEcfG,抗sigma因子NepR和抗sigma因子拮抗剂PhyR。为了解决在甲基芽胞杆菌中如何激活和调节PhyR–NepR–σEcfG级联的问题,应用了正向遗传筛选。该屏幕将单域响应调节剂Mext_0407鉴定为强力链球菌一般应激反应中的新型调节元件。 PhyR依赖基因的表型和转录融合的分析表明,mext_0407缺失突变体无法应对各种胁迫。 Mext_0407需要假定的磷酸化天冬氨酸64才能在体内发挥作用,遗传证据表明Mext_0407在PhyR–NepR–σEcfG级联的上游运行。

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