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双组分感应与调控:组氨酸激酶如何在分子水平上与应答调控因子进行对话?

Two-Component Sensing and Regulation: How Do Histidine Kinases Talk with Response Regulators at the Molecular Level?

机构信息

Laboratory of Molecular and Structural Microbiology, Institut Pasteur de Montevideo, Montevideo 11400, Uruguay; email:

Integrative Microbiology of Zoonotic Agents, Department of Microbiology, Institut Pasteur, Paris 75015, France.

出版信息

Annu Rev Microbiol. 2019 Sep 8;73:507-528. doi: 10.1146/annurev-micro-091018-054627. Epub 2019 Jun 21.

Abstract

Perceiving environmental and internal information and reacting in adaptive ways are essential attributes of living organisms. Two-component systems are relevant protein machineries from prokaryotes and lower eukaryotes that enable cells to sense and process signals. Implicating sensory histidine kinases and response regulator proteins, both components take advantage of protein phosphorylation and flexibility to switch conformations in a signal-dependent way. Dozens of two-component systems act simultaneously in any given cell, challenging our understanding about the means that ensure proper connectivity. This review dives into the molecular level, attempting to summarize an emerging picture of how histidine kinases and cognate response regulators achieve required efficiency, specificity, and directionality of signaling pathways, properties that rely on protein:protein interactions. α helices that carry information through long distances, the fine combination of loose and specific kinase/regulator interactions, and malleable reaction centers built when the two components meet emerge as relevant universal principles.

摘要

感知环境和内部信息并以适应性的方式做出反应是生物体的基本属性。双组分系统是原核生物和低等真核生物中相关的蛋白质机制,使细胞能够感知和处理信号。感应组氨酸激酶和响应调节蛋白都涉及其中,这两个组件利用蛋白质磷酸化和构象灵活性,以信号依赖的方式进行构象转换。数十种双组分系统在任何给定的细胞中同时发挥作用,这挑战了我们对确保适当连接性的手段的理解。本综述深入探讨了分子水平,试图总结出一个新兴的图景,即组氨酸激酶和同源响应调节剂如何实现信号通路所需的效率、特异性和方向性,这些特性依赖于蛋白质-蛋白质相互作用。携带信息的α 螺旋、松散和特异性激酶/调节剂相互作用的精细组合以及当两个组件相遇时形成的可塑反应中心,这些都是相关的普遍原则。

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