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优化“标准”样品制备用于单颗粒 cryo-EM 时的当前结果。

Current outcomes when optimizing 'standard' sample preparation for single-particle cryo-EM.

机构信息

Simon Electron Microscopy Center, New York Structural Biology Center, New York, U.S.A.

HHMI and Department of Biochemistry and Biophysics, University of California, San Francisco, California, U.S.A.

出版信息

J Microsc. 2019 Oct;276(1):39-45. doi: 10.1111/jmi.12834. Epub 2019 Oct 7.

Abstract

Although high-resolution single-particle cryo-electron microscopy (cryo-EM) is now producing a rapid stream of breakthroughs in structural biology, it nevertheless remains the case that the preparation of suitable frozen-hydrated samples on electron microscopy grids is often quite challenging. Purified samples that are intact and structurally homogeneous - while still in the test tube - may not necessarily survive the standard methods of making extremely thin, aqueous films on grids. As a result, it is often necessary to try a variety of experimental conditions before finally finding an approach that is optimal for the specimen at hand. Here, we summarize some of our collective experiences to date in optimizing sample preparation, in the hope that doing so will be useful to others, especially those new to the field. We also hope that an open discussion of these common challenges will encourage the development of more generally applicable methodology. Our collective experiences span a diverse range of biochemical samples and most of the commonly used variations in how grids are currently prepared. Unfortunately, none of the currently used optimization methods can be said, in advance, to be the one that ultimately will work when a project first begins. Nevertheless, there are some preferred first steps to explore when facing specific problems that can be more generally recommended, based on our experience and that of many others in the cryo-EM field.

摘要

虽然高分辨率单颗粒冷冻电子显微镜(cryo-EM)现在在结构生物学方面取得了快速突破,但在电子显微镜网格上制备合适的冷冻水合样品仍然具有挑战性。在试管中仍然完整且结构均一的纯化样品不一定能经受住在网格上制备极薄水膜的标准方法。因此,通常需要尝试各种实验条件,才能最终找到一种最适合手头样品的方法。在这里,我们总结了迄今为止在优化样品制备方面的一些集体经验,希望这对其他人有用,特别是对该领域的新手。我们还希望对这些常见挑战进行公开讨论,以鼓励开发更普遍适用的方法。我们的集体经验涵盖了各种生物化学样品以及目前用于制备网格的最常用的变化。不幸的是,在一个项目开始时,不能预先确定目前使用的任何优化方法最终会奏效。然而,根据我们的经验和许多其他人在 cryo-EM 领域的经验,当面临特定问题时,有一些首选的步骤可以更普遍地推荐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82b5/7050573/3941a08dbd82/nihms-1066733-f0001.jpg

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