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变构调节的蛋白质动力学。

Protein dynamics underlying allosteric regulation.

机构信息

Center for Computational Biology, Flatiron Institute, New York, NY, USA; Center for Computational Mathematics, Flatiron Institute, New York, NY, USA. Electronic address: https://twitter.com/@miroastore.

Center for Computational Biology, Flatiron Institute, New York, NY, USA.

出版信息

Curr Opin Struct Biol. 2024 Feb;84:102768. doi: 10.1016/j.sbi.2023.102768. Epub 2024 Jan 11.

Abstract

Allostery is the mechanism by which information and control are propagated in biomolecules. It regulates ligand binding, chemical reactions, and conformational changes. An increasing level of experimental resolution and control over allosteric mechanisms promises a deeper understanding of the molecular basis for life and powerful new therapeutics. In this review, we survey the literature for an up-to-date biological and theoretical understanding of protein allostery. By delineating five ways in which the energy landscape or the kinetics of a system may change to give rise to allostery, we aim to help the reader grasp its physical origins. To illustrate this framework, we examine three systems that display these forms of allostery: allosteric inhibitors of beta-lactamases, thermosensation of TRP channels, and the role of kinetic allostery in the function of kinases. Finally, we summarize the growing power of computational tools available to investigate the different forms of allostery presented in this review.

摘要

变构作用是生物分子中信息和控制传递的机制。它调节配体结合、化学反应和构象变化。对变构机制的实验分辨率和控制水平的提高,有望加深对生命分子基础的理解,并为开发强大的新型治疗方法提供帮助。在这篇综述中,我们调查了文献中关于蛋白质变构作用的最新生物学和理论理解。通过描述系统的能量景观或动力学可能发生变化以产生变构作用的五种方式,我们旨在帮助读者理解其物理起源。为了说明这个框架,我们检查了三个显示这些形式变构作用的系统:β-内酰胺酶的变构抑制剂、TRP 通道的热感觉以及激酶功能中动力学变构作用的作用。最后,我们总结了可用于研究本文中介绍的不同形式变构作用的计算工具的日益增强的功能。

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