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关于二组分系统信号机制的结构见解。

Structural insights into the signalling mechanisms of two-component systems.

机构信息

Université de Lille, CNRS, INSERM, CHU Lille, Institut Pasteur de Lille, U1019-UMR 8204 - Center for Infection and Immunity of Lille, Lille, France.

Institut Pasteur, Plateforme de Cristallographie, CNRS-UMR3528, Paris, France.

出版信息

Nat Rev Microbiol. 2018 Oct;16(10):585-593. doi: 10.1038/s41579-018-0055-7.

Abstract

Two-component systems reprogramme diverse aspects of microbial physiology in response to environmental cues. Canonical systems are composed of a transmembrane sensor histidine kinase and its cognate response regulator. They catalyse three reactions: autophosphorylation of the histidine kinase, transfer of the phosphoryl group to the regulator and dephosphorylation of the phosphoregulator. Elucidating signal transduction between sensor and output domains is highly challenging given the size, flexibility and dynamics of histidine kinases. However, recent structural work has provided snapshots of the catalytic mechanisms of the three enzymatic reactions and described the conformation and dynamics of the enzymatic moiety in the kinase-competent and phosphatase-competent states. Insight into signalling mechanisms across the membrane is also starting to emerge from new crystal structures encompassing both sensor and transducer domains of sensor histidine kinases. In this Progress article, we highlight such important advances towards understanding at the molecular level the signal transduction mechanisms mediated by these fascinating molecular machines.

摘要

双组分系统通过响应环境信号来重新编程微生物生理学的各个方面。典型的系统由跨膜传感器组氨酸激酶及其同源的反应调节子组成。它们催化三个反应:组氨酸激酶的自动磷酸化、磷酸基团向调节子的转移以及磷酸调节子的去磷酸化。鉴于组氨酸激酶的大小、灵活性和动力学,阐明传感器和输出结构域之间的信号转导极具挑战性。然而,最近的结构研究为三种酶反应的催化机制提供了快照,并描述了激酶有效状态和磷酸酶有效状态下酶部分的构象和动力学。从包含传感器组氨酸激酶的传感器和转换器结构域的新晶体结构中,也开始出现对跨膜信号机制的深入了解。在这篇专题文章中,我们重点介绍了在分子水平上理解这些迷人的分子机器介导的信号转导机制的重要进展。

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