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使用 TYGRESS 进行纳米分辨率的原位结构测定。

In situ structure determination at nanometer resolution using TYGRESS.

机构信息

Departments of Cell Biology and Biophysics, University of Texas Southwestern Medical Center, Dallas, TX, USA.

Cryo-EM Core Facility, University of Massachusetts Medical School, Worcester, MA, USA.

出版信息

Nat Methods. 2020 Feb;17(2):201-208. doi: 10.1038/s41592-019-0651-0. Epub 2019 Nov 25.

Abstract

The resolution of subtomogram averages calculated from cryo-electron tomograms (cryo-ET) of crowded cellular environments is often limited owing to signal loss in, and misalignment of, the subtomograms. By contrast, single-particle cryo-electron microscopy (SP-cryo-EM) routinely reaches near-atomic resolution of isolated complexes. We report a method called 'tomography-guided 3D reconstruction of subcellular structures' (TYGRESS) that is a hybrid of cryo-ET and SP-cryo-EM, and is able to achieve close-to-nanometer resolution of complexes inside crowded cellular environments. TYGRESS combines the advantages of SP-cryo-EM (images with good signal-to-noise ratio and contrast, as well as minimal radiation damage) and subtomogram averaging (three-dimensional alignment of macromolecules in a complex sample). Using TYGRESS, we determined the structure of the intact ciliary axoneme with up to resolution of 12 Å. These results reveal many structural details that were not visible by cryo-ET alone. TYGRESS is generally applicable to cellular complexes that are amenable to subtomogram averaging.

摘要

从拥挤的细胞环境的冷冻电子断层图像(cryo-ET)中计算的子断层平均的分辨率通常受到子断层中的信号损失和不对准的限制。相比之下,单颗粒冷冻电子显微镜(SP-cryo-EM)通常可以达到分离复合物的近原子分辨率。我们报告了一种称为“细胞内结构的断层成像指导 3D 重建”(TYGRESS)的方法,它是 cryo-ET 和 SP-cryo-EM 的混合体,能够在拥挤的细胞环境中实现复合物的接近纳米分辨率。TYGRESS 结合了 SP-cryo-EM 的优点(具有良好的信噪比和对比度的图像,以及最小的辐射损伤)和子断层平均的优点(复杂样品中大分子的三维对准)。使用 TYGRESS,我们确定了完整的纤毛轴丝的结构,分辨率高达 12Å。这些结果揭示了许多仅通过 cryo-ET 无法看到的结构细节。TYGRESS 通常适用于可进行子断层平均的细胞复合物。

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