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Cross-talk Suppression between the CpxA-CpxR and EnvZ-OmpR Two-Component Systems in E. coli

机译:大肠杆菌中CpxA-CpxR和EnvZ-OmpR两组分系统之间的串扰抑制

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摘要

Many bacteria possess large numbers of two-component signaling systems, which are composed of histidine kinase-response regulator pairs. The high level of sequence similarity between some systems raises the possibility of undesired cross-talk between a histidine kinase and a non-cognate response regulator. Although molecular specificity ensures that phospho-transfer occurs primarily between correct partners, even a low level of inappropriate cross-talk could lead to unacceptable levels of noise or interference in signal transduction. To explore mechanisms that provide insulation against such interference, we have examined cross-talk between the histidine kinase CpxA and non-cognate response regulator OmpR in Escherichia coli. Our results show that there are two mechanisms that suppress cross-talk between these two proteins, which depend on the corresponding cognate partners CpxR and EnvZ and on the bifunctional nature of the histidine kinases CpxA and EnvZ. When cross-talk is detectable, we find it is independent of CpxA stimulus. We also show that cross-talk suppression leads to mutational robustness, i.e. it masks the effects of mutations that would otherwise lead to increased cross-talk. The mechanisms that provide insulation against interference described here may be applicable to many other two-component systems.
机译:许多细菌拥有大量的由组氨酸激酶反应调节剂对组成的两组分信号系统。一些系统之间高度的序列相似性增加了组氨酸激酶和非同源响应调节剂之间不期望的串扰的可能性。尽管分子特异性确保磷酸转移主要发生在正确的配偶之间,但即使是低水平的不适当串扰也可能导致不可接受的噪声水平或干扰信号传导。为了探索能提供绝缘抗这种干扰的机制,我们检查了大肠杆菌中组氨酸激酶CpxA与非同源响应调节因子OmpR之间的串扰。我们的结果表明,有两种机制可以抑制这两种蛋白质之间的串扰,这取决于相应的同源伴侣CpxR和EnvZ以及组氨酸激酶CpxA和EnvZ的双功能性质。当发现串扰时,我们发现它与CpxA刺激无关。我们还表明,串扰抑制可导致突变鲁棒性,即它掩盖了否则会导致串扰增加的突变的影响。此处描述的提供抗干扰绝缘的机制可能适用于许多其他两组件系统。

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    Albert Siryaporn; Mark Goulian;

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  • 年(卷),期 -1(70),2
  • 年度 -1
  • 页码 494–506
  • 总页数 21
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