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通过单颗粒分析和微晶电子衍射对冷冻电镜中电子辐射损伤评估的分析与比较

Analysis and comparison of electron radiation damage assessments in Cryo-EM by single particle analysis and micro-crystal electron diffraction.

作者信息

Shi Dan, Huang Rick

机构信息

Center for Structural Biology, Center for Cancer Research, National Cancer Institute, Frederick, MD, United States.

Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, Bethesda, MD, United States.

出版信息

Front Mol Biosci. 2022 Oct 5;9:988928. doi: 10.3389/fmolb.2022.988928. eCollection 2022.

Abstract

Electron radiation damage to macromolecules is an inevitable resolution limit factor in all major structural determination applications using cryo-electron microscopy (cryo-EM). Single particle analysis (SPA) and micro-crystal electron diffraction (MicroED) have been employed to assess radiation damage with a variety of protein complexes. Although radiation induced sidechain density loss and resolution decay were observed by both methods, the minimum dose of electron irradiation reducing high-resolution limit reported by SPA is more than ten folds higher than measured by MicroED using the conventional dose concept, and there is a gap between the attained resolutions assessed by these two methods. We compared and analyzed these two approaches side-by-side in detail from several aspects to identify some crucial determinants and to explain this discrepancy. Probability of a high energy electron being inelastically scattered by a macromolecule is proportional to number of layers of the molecules in its transmission path. As a result, the same electron dose could induce much more site-specific damage to macromolecules in 3D protein crystal than single particle samples. Major differences in data collection and processing scheme are the key factors to different levels of sensitivity to radiation damage at high resolution between the two methods. High resolution electron diffraction in MicroED dataset is very sensitive to global damage to 3D protein crystals with low dose accumulation, and its intensity attenuation rates at atomic resolution shell could be applied for estimating ratio of damaged and total selected single particles for SPA. More in-depth systematically radiation damage assessments using SPA and MicroED will benefit all applications of cryo-EM, especially cellular structure analysis by tomography.

摘要

在所有使用冷冻电子显微镜(cryo-EM)的主要结构测定应用中,电子对大分子的辐射损伤是一个不可避免的分辨率限制因素。单颗粒分析(SPA)和微晶电子衍射(MicroED)已被用于评估各种蛋白质复合物的辐射损伤。虽然两种方法都观察到了辐射诱导的侧链密度损失和分辨率衰减,但根据传统剂量概念,SPA报告的降低高分辨率极限的最小电子辐照剂量比MicroED测量的高出十多倍,并且这两种方法评估的分辨率之间存在差距。我们从几个方面对这两种方法进行了详细的并排比较和分析,以确定一些关键决定因素并解释这种差异。高能电子被大分子非弹性散射的概率与其传输路径中分子的层数成正比。因此,相同的电子剂量对三维蛋白质晶体中的大分子造成的位点特异性损伤可能比单颗粒样品多得多。数据收集和处理方案的主要差异是这两种方法在高分辨率下对辐射损伤敏感度不同的关键因素。MicroED数据集中的高分辨率电子衍射对低剂量积累的三维蛋白质晶体的整体损伤非常敏感,其在原子分辨率壳层的强度衰减率可用于估计SPA中受损和总选择单颗粒的比例。使用SPA和MicroED进行更深入的系统辐射损伤评估将有利于cryo-EM的所有应用,特别是通过断层扫描进行的细胞结构分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e555/9585622/327f865f3079/fmolb-09-988928-g001.jpg

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