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全自动、顺序聚焦离子束铣削用于冷冻电子断层扫描。

Fully automated, sequential focused ion beam milling for cryo-electron tomography.

机构信息

Institute of Molecular Biology and Biophysics, Eidgenössische Technische Hochschule Zürich, Zürich, Switzerland.

Carl Zeiss Microscopy GmbH, Zeiss Customer Center Europe, Oberkochen, Germany.

出版信息

Elife. 2020 Mar 9;9:e52286. doi: 10.7554/eLife.52286.

Abstract

Cryo-electron tomography (cryoET) has become a powerful technique at the interface of structural biology and cell biology, due to its unique ability for imaging cells in their native state and determining structures of macromolecular complexes in their cellular context. A limitation of cryoET is its restriction to relatively thin samples. Sample thinning by cryo-focused ion beam (cryoFIB) milling has significantly expanded the range of samples that can be analyzed by cryoET. Unfortunately, cryoFIB milling is low-throughput, time-consuming and manual. Here, we report a method for fully automated sequential cryoFIB preparation of high-quality lamellae, including rough milling and polishing. We reproducibly applied this method to eukaryotic and bacterial model organisms, and show that the resulting lamellae are suitable for cryoET imaging and subtomogram averaging. Since our method reduces the time required for lamella preparation and minimizes the need for user input, we envision the technique will render previously inaccessible projects feasible.

摘要

冷冻电子断层扫描(cryoET)技术在结构生物学和细胞生物学的交叉领域已成为一种强大的技术,因为它具有在天然状态下成像细胞并确定细胞内大分子复合物结构的独特能力。cryoET 的一个局限性在于它只能适用于相对较薄的样品。通过冷冻聚焦离子束(cryoFIB)铣削对样品进行减薄,显著扩展了可通过 cryoET 进行分析的样品范围。不幸的是,cryoFIB 铣削的效率低、耗时长且手动操作。在这里,我们报告了一种全自动顺序冷冻 FIB 制备高质量薄片的方法,包括粗铣和抛光。我们可重复地将此方法应用于真核生物和细菌模式生物,并表明得到的薄片适用于 cryoET 成像和子断层平均化。由于我们的方法减少了薄片制备所需的时间,并最大限度地减少了用户输入的需求,因此我们设想该技术将使以前无法实现的项目成为可能。

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