Structural and Computational Biology Unit, European Molecular Biology Laboratory.
Electron Microscopy Core Facility, European Molecular Biology Laboratory.
J Vis Exp. 2021 Mar 19(169). doi: 10.3791/62383.
Cryogenic electron tomography (cryoET) is a powerful method to study the 3D structure of biological samples in a close-to-native state. Current state-of-the-art cryoET combined with subtomogram averaging analysis enables the high-resolution structural determination of macromolecular complexes that are present in multiple copies within tomographic reconstructions. Tomographic experiments usually require a vast amount of tilt series to be acquired by means of high-end transmission electron microscopes with important operational running-costs. Although the throughput and reliability of automated data acquisition routines have constantly improved over the recent years, the process of selecting regions of interest at which a tilt series will be acquired cannot be easily automated and it still relies on the user's manual input. Therefore, the set-up of a large-scale data collection session is a time-consuming procedure that can considerably reduce the remaining microscope time available for tilt series acquisition. Here, the protocol describes the recently developed implementations based on the SerialEM package and the PyEM software that significantly improve the time-efficiency of grid screening and large-scale tilt series data collection. The presented protocol illustrates how to use SerialEM scripting functionalities to fully automate grid mapping, grid square mapping, and tilt series acquisition. Furthermore, the protocol describes how to use PyEM to select additional acquisition targets in off-line mode after automated data collection is initiated. To illustrate this protocol, its application in the context of high-end data collection of Sars-Cov-2 tilt series is described. The presented pipeline is particularly suited to maximizing the time-efficiency of tomography experiments that require a careful selection of acquisition targets and at the same time a large amount of tilt series to be collected.
低温电子断层扫描(cryoET)是一种强大的方法,可以在接近自然状态下研究生物样本的 3D 结构。目前最先进的 cryoET 结合亚断层平均分析,可以实现高分辨率的大分子复合物结构测定,这些复合物在断层重建中存在多个副本。断层扫描实验通常需要通过高端透射电子显微镜采集大量的倾斜系列,这需要高昂的运营成本。尽管近年来自动化数据采集程序的吞吐量和可靠性不断提高,但选择要采集倾斜系列的感兴趣区域的过程仍然不容易自动化,仍然依赖于用户的手动输入。因此,大规模数据采集会话的设置是一个耗时的过程,会大大减少剩余的显微镜倾斜系列采集时间。这里,该方案描述了基于 SerialEM 包和 PyEM 软件的最新实现,这些实现大大提高了网格筛选和大规模倾斜系列数据采集的效率。所提出的方案说明了如何使用 SerialEM 脚本功能来完全自动化网格映射、网格正方形映射和倾斜系列采集。此外,该方案还描述了如何在自动化数据采集启动后,在离线模式下使用 PyEM 选择其他采集目标。为了说明这个方案,它在 SARS-CoV-2 倾斜系列的高端数据采集背景下的应用被描述。所提出的方案特别适合于最大限度地提高需要仔细选择采集目标同时又需要采集大量倾斜系列的断层扫描实验的效率。