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Cryo-electron microscopy for structural analysis of dynamic biological macromolecules

机译:冷冻电子显微镜用于动态生物大分子的结构分析

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Abstract Background Since the introduction of what became today's standard for cryo-embedding of biological macromolecules at native conditions more than 30years ago, techniques and equipment have been drastically improved and the structure of biomolecules can now be studied at near atomic resolution by cryo-electron microscopy (cryo-EM) while capturing multiple dynamic states. Here we review the recent progress in cryo-EM for structural studies of dynamic biological macromolecules. Scope of review We provide an overview of the cryo-EM method and introduce contemporary studies to investigate biomolecular structure and dynamics, including examples from the recent literature. Major conclusions Cryo-EM is a powerful tool for the investigation of biological macromolecular structures including analysis of their dynamics by using advanced image-processing algorithms. The method has become even more widely applicable with present-day single particle analysis and electron tomography. General significance The cryo-EM method can be used to determine the three-dimensional structure of biomacromolecules in near native condition at close to atomic resolution, and has the potential to reveal conformations of dynamic molecular complexes. This article is part of a Special Issue entitled "Biophysical Exploration of Dynamical Ordering of Biomolecular Systems" edited by Dr. Koichi Kato. Highlights ? The recent progress in cryo-electron microscopy (cryo-EM) is reviewed. ? Two modalities of single particle analysis and subtomogram averaging are introduced. ? Recent advances of cryo-EM are provided by detector & image processing technologies. ? The technologies in cryo-EM make it possible to study the molecular dynamics.
机译:摘要背景自提出在当今在原生条件下嵌入的生物大分子的高温嵌入的标准以来超过30年前的备份时,技术和设备已经大大提高,现在可以通过冷冻电子显微镜近的原子分辨率研究生物分子的结构(Cryo-EM),同时捕获多个动态状态。在这里,我们审查了动态生物大分子的结构研究的最近Cryo-EM的进展。审查范围我们提供了Cryo-EM方法的概述,并引入了当代研究,以研究生物分子结构和动态,包括来自最近文献的实例。主要结论Cryo-EM是调查生物大分子结构的强大工具,包括通过使用先进的图像处理算法分析其动态。该方法具有更广泛应用的本日单颗粒分析和电子断层扫描。一般意义可用于在接近原子分辨率接近天然条件下确定近天然条件的二维结构,具有揭示动态分子复合物的构象。本文是Koichi Kato博士题为“生物分子系统动态排序的生物物理探索”的特殊问题的一部分。强调 ?综述了近期冷冻电子显微镜(Cryo-EM)的进展。还介绍了单颗粒分析和重组图平均的两种方式。还通过探测器和图像处理技术提供了Cryo-EM的最新进展。还Cryo-EM中的技术使得可以研究分子动力学。

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