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Molecular and proteome analyses highlight the importance of the Cpx envelope stress system for acid stress and cell wall stability in Escherichia coli

机译:分子和蛋白质组学分析凸显了Cpx包膜胁迫系统对于大肠杆菌的酸胁迫和细胞壁稳定性的重要性

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摘要

Two‐component systems (TCS) play a pivotal role for bacteria in stress regulation and adaptation. However, it is not well understood how these systems are modulated to meet bacterial demands. Especially, for those TCS using an accessory protein to integrate additional signals, no data concerning the role of the accessory proteins within the coordination of the response is available. The Cpx envelope stress two‐component system, composed of the sensor kinase CpxA and the response regulator CpxR, is orchestrated by the periplasmic protein CpxP which detects misfolded envelope proteins and inhibits the Cpx system in unstressed cells. Using selected reaction monitoring, we observed that the amount of CpxA and CpxR, as well as their stoichiometry, are only marginally affected, but that a 10‐fold excess of CpxP over CpxA is needed to switch off the Cpx system. Moreover, the relative quantification of the proteome identified not only acid stress response as a new indirect target of the Cpx system, but also suggests a general function of the Cpx system for cell wall stability.
机译:两成分系统(TCS)对于细菌在压力调节和适应中起着关键作用。然而,人们对如何调节这些系统以满足细菌的需求还没有很好的理解。尤其是,对于那些使用辅助蛋白整合其他信号的TCS,尚无有关辅助蛋白在反应协调中的作用的数据。由传感器激酶CpxA和响应调节剂CpxR组成的Cpx包膜应激两组分系统由周质蛋白CpxP精心编排,该蛋白检测错折叠的包膜蛋白并抑制未应激细胞中的Cpx系统。使用选定的反应监测,我们观察到CpxA和CpxR的量以及它们的化学计量仅受到很小的影响,但是关闭Cpx系统所需的CpxP比CpxA超出10倍。此外,蛋白质组学的相对定量不仅将酸应激反应确定为Cpx系统的新的间接靶标,而且还暗示了Cpx系统对于细胞壁稳定性的一般功能。

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