College of Bioscience and Biotechnology, Yangzhou University, PR China.
College of Bioscience and Biotechnology, Yangzhou University, PR China.
Microbiol Res. 2019 Feb;219:40-48. doi: 10.1016/j.micres.2018.11.001. Epub 2018 Nov 6.
In most signal transduction systems, coupling or scaffold proteins establish crucial connections between receptors and histidine kinases. These connections are important for signal transduction. The bacterial chemotaxis system is a canonical signal transduction system that relies on coupling proteins. The coupling proteins in the chemotaxis system have two architectures: CheW or CheV. In a typical chemotaxis signal transduction system, two CheW coupling protein molecules bridge a histidine kinase CheA dimer and two chemoreceptor (also called as methyl-accepting chemotaxis protein, MCP) trimers of dimers to form a core signaling complex and couple CheA activity to chemoreceptor control. Although CheW is a small cytoplasmic protein, it plays multiple functions in chemotaxis. CheW also builds connections between core signaling complexes, which leads to the formation of large chemosensory arrays that are responsible for collecting and amplifying signals from various chemoreceptors. Another coupling protein, CheV, shares a largely redundant ability with CheW; however, the function of CheV is not identical to that of CheW in chemotaxis. In this article, we summarize the molecular mechanism of chemotaxis in Escherichia coli and review the recent advances in the structural details and functions of CheW and CheV. Furthermore, we focus on the diversity of coupling proteins and discuss the relationship among multiple coupling proteins in one organism.
在大多数信号转导系统中,偶联蛋白或支架蛋白在受体和组氨酸激酶之间建立关键连接。这些连接对于信号转导很重要。细菌趋化性系统是一种依赖偶联蛋白的典型信号转导系统。趋化性系统中的偶联蛋白有两种结构:CheW 或 CheV。在典型的趋化性信号转导系统中,两个 CheW 偶联蛋白分子桥接一个组氨酸激酶 CheA 二聚体和两个化学感受器(也称为甲基接受趋化性蛋白,MCP)二聚体三聚体,形成核心信号复合物,并将 CheA 活性与化学感受器控制偶联。尽管 CheW 是一种小的细胞质蛋白,但它在趋化性中发挥多种功能。CheW 还在核心信号复合物之间建立连接,从而形成负责收集和放大来自各种化学感受器信号的大型化学感觉阵列。另一种偶联蛋白 CheV 具有与 CheW 基本相同的冗余能力;然而,CheV 在趋化性中的功能与 CheW 并不相同。在本文中,我们总结了大肠杆菌趋化性的分子机制,并回顾了 CheW 和 CheV 的结构细节和功能的最新进展。此外,我们重点讨论了偶联蛋白的多样性,并讨论了一个生物体中多种偶联蛋白之间的关系。