Institute of Structural and Molecular Biology, Birkbeck College, Malet St., London WC1E 7HX, U.K.
Biochem J. 2021 May 28;478(10):1827-1845. doi: 10.1042/BCJ20200715.
Cryo-electron tomography (cryo-ET) can be used to reconstruct three-dimensional (3D) volumes, or tomograms, from a series of tilted two-dimensional images of biological objects in their near-native states in situ or in vitro. 3D subvolumes, or subtomograms, containing particles of interest can be extracted from tomograms, aligned, and averaged in a process called subtomogram averaging (STA). STA overcomes the low signal to noise ratio within the individual subtomograms to generate structures of the particle(s) of interest. In recent years, cryo-ET with STA has increasingly been capable of reaching subnanometer resolution due to improvements in microscope hardware and data processing strategies. There has also been an increase in the number and quality of software packages available to process cryo-ET data with STA. In this review, we describe and assess the data processing strategies available for cryo-ET data and highlight the recent software developments which have enabled the extraction of high-resolution information from cryo-ET datasets.
低温电子断层扫描(cryo-ET)可用于从生物物体在其近天然状态下的一系列倾斜二维图像中重建三维(3D)体积或断层扫描图像。可以从断层扫描图像中提取包含感兴趣颗粒的 3D 子体积或子断层扫描图像,并通过称为子断层扫描图像平均(subtomogram averaging,STA)的过程进行对齐和平均。STA 克服了单个子断层扫描图像中低信噪比的问题,从而生成了感兴趣颗粒的结构。近年来,由于显微镜硬件和数据处理策略的改进, cryo-ET 结合 STA 越来越能够达到亚纳米分辨率。此外,可用于处理 cryo-ET 数据和 STA 的软件包的数量和质量也有所增加。在这篇综述中,我们描述和评估了 cryo-ET 数据的可用数据处理策略,并强调了最近的软件发展,这些发展使我们能够从 cryo-ET 数据集提取高分辨率信息。