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蛋白质动力学和变构:NMR 视角。

Protein dynamics and allostery: an NMR view.

机构信息

Department of Chemistry & Chemical Biology, Rutgers University, Piscataway, NJ 08854, USA.

出版信息

Curr Opin Struct Biol. 2011 Feb;21(1):62-7. doi: 10.1016/j.sbi.2010.10.007. Epub 2010 Nov 23.

Abstract

Allostery, the process by which distant sites within a protein system are energetically coupled, is an efficient and ubiquitous mechanism for activity regulation. A purely mechanical view of allostery invoking only structural changes has developed over the decades as the classical view of the phenomenon. However, a fast growing list of examples illustrate the intimate link between internal motions over a wide range of time scales and function in protein-ligand interactions. Proteins respond to perturbations by redistributing their motions and they use fluctuating conformational states for binding and conformational entropy as a carrier of allosteric energy to modulate association with ligands. In several cases allosteric interactions proceed with minimal or no structural changes. We discuss emerging paradigms for the central role of protein dynamics in allostery.

摘要

变构作用,即蛋白质系统中远程部位通过能量耦联的过程,是一种高效且普遍的活性调控机制。几十年来,一种纯粹的机械变构作用观点,只涉及结构变化,已发展成为该现象的经典观点。然而,越来越多的例子表明,在蛋白质-配体相互作用中,内部运动在广泛的时间尺度上与功能之间存在密切联系。蛋白质通过重新分配它们的运动来响应扰动,它们利用波动的构象状态进行结合,并利用构象熵作为变构能量的载体来调节与配体的结合。在某些情况下,变构相互作用几乎没有或没有结构变化。我们讨论了蛋白质动力学在变构作用中的核心作用的新兴范例。

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