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冷冻电子显微镜的注意事项:大分子三维重建的样品制备和高质量数据收集入门指南。

Do's and don'ts of cryo-electron microscopy: a primer on sample preparation and high quality data collection for macromolecular 3D reconstruction.

作者信息

Cabra Vanessa, Samsó Montserrat

机构信息

Department of Physiology and Biophysics, Virginia Commonwealth University.

Department of Physiology and Biophysics, Virginia Commonwealth University;

出版信息

J Vis Exp. 2015 Jan 9(95):52311. doi: 10.3791/52311.

Abstract

Cryo-electron microscopy (cryoEM) entails flash-freezing a thin layer of sample on a support, and then visualizing the sample in its frozen hydrated state by transmission electron microscopy (TEM). This can be achieved with very low quantity of protein and in the buffer of choice, without the use of any stain, which is very useful to determine structure-function correlations of macromolecules. When combined with single-particle image processing, the technique has found widespread usefulness for 3D structural determination of purified macromolecules. The protocol presented here explains how to perform cryoEM and examines the causes of most commonly encountered problems for rational troubleshooting; following all these steps should lead to acquisition of high quality cryoEM images. The technique requires access to the electron microscope instrument and to a vitrification device. Knowledge of the 3D reconstruction concepts and software is also needed for computerized image processing. Importantly, high quality results depend on finding the right purification conditions leading to a uniform population of structurally intact macromolecules. The ability of cryoEM to visualize macromolecules combined with the versatility of single particle image processing has proven very successful for structural determination of large proteins and macromolecular machines in their near-native state, identification of their multiple components by 3D difference mapping, and creation of pseudo-atomic structures by docking of x-ray structures. The relentless development of cryoEM instrumentation and image processing techniques for the last 30 years has resulted in the possibility to generate de novo 3D reconstructions at atomic resolution level.

摘要

冷冻电子显微镜技术(cryoEM)是指将一薄层样品快速冷冻在一个支撑物上,然后通过透射电子显微镜(TEM)在其冷冻水合状态下观察样品。这可以在蛋白质用量非常少且在所选缓冲液中进行,无需使用任何染色剂,这对于确定大分子的结构-功能关系非常有用。当与单颗粒图像处理相结合时,该技术在纯化大分子的三维结构测定中得到了广泛应用。这里介绍的方案解释了如何进行冷冻电子显微镜技术,并分析了最常见问题的原因以便进行合理的故障排除;遵循所有这些步骤应该能够获得高质量的冷冻电子显微镜图像。该技术需要使用电子显微镜仪器和玻璃化装置。计算机图像处理还需要了解三维重建概念和软件。重要的是,高质量的结果取决于找到合适的纯化条件,从而获得结构完整的均匀大分子群体。冷冻电子显微镜技术可视化大分子的能力与单颗粒图像处理的多功能性相结合,已被证明在确定处于近天然状态的大蛋白质和大分子机器的结构、通过三维差异映射识别其多个组分以及通过对接X射线结构创建伪原子结构方面非常成功。在过去30年里,冷冻电子显微镜仪器和图像处理技术的不断发展使得在原子分辨率水平上从头生成三维重建成为可能。

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