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通过甲基-TROSY NMR 聚焦动态分子机器。

Bringing dynamic molecular machines into focus by methyl-TROSY NMR.

机构信息

Departments of 1Biochemistry and.

出版信息

Annu Rev Biochem. 2014;83:291-315. doi: 10.1146/annurev-biochem-060713-035829.

Abstract

Large macromolecular assemblies, so-called molecular machines, are critical to ensuring proper cellular function. Understanding how proper function is achieved at the atomic level is crucial to advancing multiple avenues of biomedical research. Biophysical studies often include X-ray diffraction and cryo-electron microscopy, providing detailed structural descriptions of these machines. However, their inherent flexibility has complicated an understanding of the relation between structure and function. Solution NMR spectroscopy is well suited to the study of such dynamic complexes, and continued developments have increased size boundaries; insights into function have been obtained for complexes with masses as large as 1 MDa. We highlight methyl-TROSY (transverse relaxation optimized spectroscopy) NMR, which enables the study of such large systems, and include examples of applications to several cellular machines. We show how this emerging technique contributes to an understanding of cellular function and the role of molecular plasticity in regulating an array of biochemical activities.

摘要

大型大分子组装体,即所谓的分子机器,对于确保细胞的正常功能至关重要。了解在原子水平上如何实现正常功能对于推进多个生物医学研究领域至关重要。生物物理学研究通常包括 X 射线衍射和冷冻电子显微镜,为这些机器提供详细的结构描述。然而,它们固有的灵活性使得理解结构与功能之间的关系变得复杂。溶液 NMR 光谱学非常适合研究这种动态复合物,并且不断的发展增加了尺寸的限制;对于质量高达 1 MDa 的复合物,已经获得了功能方面的深入了解。我们重点介绍甲基-TROSY(横向弛豫优化光谱学)NMR,它可以研究这种大型系统,并包括将其应用于几种细胞机器的示例。我们展示了这种新兴技术如何有助于理解细胞功能以及分子可塑性在调节一系列生化活性中的作用。

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