PROTEIN DYNAMICS IN PHOSPHORYLATION-MEDIATED ALLOSTERY PROBED BY AMIDE EXCHANGE MASS SPECTROMETRY

Madhubrata Ghosh, G. Anand
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Abstract

A major goal of molecular biology is to correlate molecular structure with function. Since most enzymes and biological catalysts are proteins, the focus for correlating 'form' with 'function' has been entirely on protein macromolecular structure. It is obvious that any understanding of protein function must come through an understanding protein dynamics. Furthermore, all of the regulatory reactions are through changes in dynamics brought about by post-translational modifications, the most important of which is phosphorylation. This review highlights the important role of covalent phosphorylation and noncovalent phosphates in regulating allosteric effects and function through a study of protein dynamics. Mass spectrometry is a relatively new and increasingly important tool for describing protein dynamics. All examples described in this review have been studied by amide hydrogen/deuterium exchange mass spectrometry.
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酰胺交换质谱法探测磷酸化介导变构的蛋白质动力学
分子生物学的一个主要目标是将分子结构与功能联系起来。由于大多数酶和生物催化剂都是蛋白质,因此将“形式”与“功能”联系起来的重点完全放在蛋白质大分子结构上。很明显,任何对蛋白质功能的理解都必须通过对蛋白质动力学的理解。此外,所有的调节反应都是通过翻译后修饰带来的动力学变化,其中最重要的是磷酸化。本文从蛋白质动力学的角度综述了共价磷酸化和非共价磷酸化在调节变构效应和功能中的重要作用。质谱法是一种相对较新的、越来越重要的描述蛋白质动力学的工具。本文所述的所有例子都已通过酰胺氢/氘交换质谱法进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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