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The Cpx Envelope Stress Response Is Controlled by Amplification and Feedback Inhibition

机译:Cpx包络线应力响应由放大和反馈抑制控制

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摘要

In Escherichia coli, the Cpx two-component regulatory system activates expression of protein folding and degrading factors in response to misfolded proteins in the bacterial envelope (inner membrane, periplasm, and outer membrane). It is comprised of the histidine kinase CpxA and the response regulator CpxR. This response plays a role in protection from stresses, such as elevated pH, as well as in the biogenesis of virulence factors. Here, we show that the Cpx periplasmic stress response is subject to amplification and repression through positive and negative autofeedback mechanisms. Western blot and operon fusion analyses demonstrated that the cpxRA operon is autoactivated. Conditions that lead to elevated levels of phosphorylated CpxR cause a concomitant increase in transcription of cpxRA. Conversely, overproduction of CpxP, a small, Cpx-regulated protein of previously unknown function, represses the regulon and can block activation of the pathway. This repression is dependent on an intact CpxA sensing domain. The ability to autoactivate and then subsequently repress allows for a temporary amplification of the Cpx response that may be important in rescuing cells from transitory stresses and cueing the appropriately timed elaboration of virulence factors.
机译:在大肠杆菌中,Cpx两组分调节系统响应细菌包膜(内膜,周质和外膜)中错误折叠的蛋白质而激活蛋白质折叠和降解因子的表达。它由组氨酸激酶CpxA和响应调节剂CpxR组成。该反应在防止压力(例如pH升高)以及毒力因子的生物发生中起作用。在这里,我们显示Cpx周质应激反应受到正负自动反馈机制的放大和抑制。 Western印迹和操纵子融合分析表明cpxRA操纵子是自动激活的。导致磷酸化CpxR水平升高的条件会引起cpxRA转录的同时增加。相反,CpxP(一种先前受未知功能的小Cpx调节蛋白)的过量生产会抑制调节子,并可能阻断该途径的激活。这种压制取决于完整的CpxA感应域。自动激活然后随后抑制的能力允许Cpx响应的暂时扩增,这对于从暂时性应激中拯救细胞和提示适当时机确定毒力因子可能是重要的。

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