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Approaches to altering particle distributions in cryo-electron microscopy sample preparation

机译:改变电子显微镜样品制备过程中颗粒分布的方法

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摘要

Cryo-electron microscopy (cryo-EM) can now be used to determine high-resolution structural information on a diverse range of biological specimens. Recent advances have been driven primarily by developments in microscopes and detectors, and through advances in image-processing software. However, for many single-particle cryo-EM projects, major bottlenecks currently remain at the sample-preparation stage; obtaining cryo-EM grids of sufficient quality for high-resolution single-particle analysis can require the careful optimization of many variables. Common hurdles to overcome include problems associated with the sample itself (buffer components, labile complexes), sample distribution (obtaining the correct concentration, affinity for the support film), preferred orientation, and poor reproducibility of the grid-making process within and between batches. This review outlines a number of methodologies used within the electron-microscopy community to address these challenges, providing a range of approaches which may aid in obtaining optimal grids for high-resolution data collection.
机译:低温电子显微镜(cryo-EM)现在可以用于确定各种生物样本上的高分辨率结构信息。最近的进步主要是由显微镜和检测器的发展以及图像处理软件的发展所驱动的。但是,对于许多单颗粒低温EM项目,当前的主要瓶颈仍在样品制备阶段。要获得足够高质量的低温EM网格以进行高分辨率单颗粒分析,可能需要仔细优化许多变量。要克服的常见障碍包括与样品本身(缓冲液成分,不稳定的络合物),样品分布(获得正确的浓度,对支撑膜的亲和力)相关的问题,优选的方向以及批次内和批次之间的制栅格工艺的重现性差。这篇综述概述了电子显微镜界用于解决这些挑战的多种方法,并提供了一系列方法,这些方法可能有助于获得用于高分辨率数据收集的最佳网格。

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