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大肠杆菌酸感应组氨酸激酶EvgS的结构与功能分析

Structural and Functional Analysis of the Escherichia coli Acid-Sensing Histidine Kinase EvgS.

作者信息

Sen Hrishiraj, Aggarwal Nikhil, Ishionwu Chibueze, Hussain Nosheen, Parmar Chandni, Jamshad Mohammed, Bavro Vassiliy N, Lund Peter A

机构信息

School of Biosciences, University of Birmingham, Birmingham, United Kingdom.

School of Biological Sciences, University of Essex, Colchester, United Kingdom.

出版信息

J Bacteriol. 2017 Aug 22;199(18). doi: 10.1128/JB.00310-17. Print 2017 Sep 15.

Abstract

The EvgS/EvgA two-component system of is activated in response to low pH and alkali metals and regulates many genes, including those for the glutamate-dependent acid resistance system and a number of efflux pumps. EvgS, the sensor kinase, is one of five unconventional histidine kinases (HKs) in and has a large periplasmic domain and a cytoplasmic PAS domain in addition to phospho-acceptor, HK and dimerization, internal receiver, and phosphotransfer domains. Mutations that constitutively activate the protein at pH 7 map to the PAS domain. Here, we built a homology model of the periplasmic region of EvgS, based on the structure of the equivalent region of the BvgS homologue, to guide mutagenesis of potential key residues in this region. We show that histidine 226 is required for induction and that it is structurally colocated with a proline residue (P522) at the top of the predicted transmembrane helix that is expected to play a key role in passing information to the cytoplasmic domains. We also show that the constitutive mutations in the PAS domain can be further activated by low external pH. Expression of the cytoplasmic part of the protein alone also gives constitutive activation, which is lost if the constitutive PAS mutations are present. These findings are consistent with a model in which EvgS senses both external and internal pH and is activated by a shift from a tight inactive to a weak active dimer, and we present an analysis of the purified cytoplasmic portion of EvgS that supports this. One of the ways bacteria sense their environment is through two-component systems, which have one membrane-bound protein to do the sensing and another inside the cell to turn genes on or off in response to what the membrane-bound protein has detected. The membrane-bound protein must thus be able to detect the stress and signal this detection event to the protein inside the cell. To understand this process, we studied a protein that helps to survive exposure to low pH, which it must do before taking up residence in the gastrointestinal tract. We describe a predicted structure for the main sensing part of the protein and identify some key residues within it that are involved in the sensing and signaling processes. We propose a mechanism for how the protein may become activated and present some evidence to support our proposal.

摘要

肠道沙门氏菌的EvgS/EvgA双组分系统在低pH值和碱金属的刺激下被激活,并调控许多基因,包括那些与谷氨酸依赖型酸抗性系统及多个外排泵相关的基因。传感激酶EvgS是肠道沙门氏菌中五个非常规组氨酸激酶(HKs)之一,除了磷酸受体、HK和二聚化结构域、内部受体结构域以及磷酸转移结构域外,它还具有一个大的周质结构域和一个细胞质PAS结构域。在pH 7时组成型激活该蛋白的突变定位于PAS结构域。在此,我们基于BvgS同源物等效区域的结构构建了EvgS周质区域的同源模型,以指导对该区域潜在关键残基的诱变。我们发现组氨酸226是诱导所必需的,并且它在结构上与预测跨膜螺旋顶部的一个脯氨酸残基(P522)共定位,预计该脯氨酸残基在将信息传递到细胞质结构域中起关键作用。我们还表明,PAS结构域中的组成型突变可被低外部pH值进一步激活。单独表达该蛋白的细胞质部分也会导致组成型激活,如果存在组成型PAS突变则这种激活会丧失。这些发现与一个模型一致,即EvgS感知外部和内部pH值,并通过从紧密的无活性二聚体转变为弱活性二聚体而被激活,并且我们对纯化的EvgS细胞质部分进行了分析以支持这一点。细菌感知其环境的方式之一是通过双组分系统,该系统有一个膜结合蛋白进行传感,另一个在细胞内部,根据膜结合蛋白检测到的情况来开启或关闭基因。因此,膜结合蛋白必须能够检测到应激并将这种检测事件信号传递给细胞内的蛋白。为了理解这个过程,我们研究了一种有助于肠道沙门氏菌在暴露于低pH值环境下存活的蛋白,它在定居于胃肠道之前必须这样做。我们描述了该蛋白主要传感部分的预测结构,并确定了其中一些参与传感和信号传递过程的关键残基。我们提出了该蛋白可能被激活的机制,并提供了一些证据来支持我们的提议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/056d/5573083/5fda2bc66807/zjb9990945190001.jpg

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