Low-cooling-rate freezing in biomolecular cryo-electron microscopy for recovery of initial frames.

Q3 Biochemistry, Genetics and Molecular Biology QRB Discovery Pub Date : 2021-01-01 DOI:10.1017/qrd.2021.8
Chunling Wu, Huigang Shi, Dongjie Zhu, Kelong Fan, Xinzheng Zhang
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引用次数: 4

Abstract

When biological samples are first exposed to electrons in cryo-electron microcopy (cryo-EM), proteins exhibit a rapid 'burst' phase of beam-induced motion that cannot be corrected with software. This lowers the quality of the initial frames, which are the least damaged by the electrons. Hence, they are commonly excluded or down-weighted during data processing, reducing the undamaged signal and the resolution in the reconstruction. By decreasing the cooling rate during sample preparation, either with a cooling-rate gradient or by increasing the freezing temperature, we show that the quality of the initial frames for various protein and virus samples can be recovered. Incorporation of the initial frames in the reconstruction increases the resolution by an amount equivalent to using ~60% more data. Moreover, these frames preserve the high-quality cryo-EM densities of radiation-sensitive residues, which is often damaged or very weak in canonical three-dimensional reconstruction. The improved freezing conditions can be easily achieved using existing devices and enhance the overall quality of cryo-EM structures.

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生物分子低温电子显微镜中用于恢复初始骨架的低冷却速率冷冻。
当生物样品首次暴露在低温电子显微复制(cryo-EM)中的电子中时,蛋白质表现出快速的“爆发”阶段,即光束诱导的运动,无法用软件纠正。这降低了初始帧的质量,而初始帧受到电子的破坏最小。因此,在数据处理过程中,它们通常被排除或降低权重,从而降低了未损坏的信号和重建中的分辨率。通过在样品制备过程中降低冷却速率,无论是用冷却速率梯度还是通过提高冷冻温度,我们都表明可以恢复各种蛋白质和病毒样品的初始框架的质量。在重构中加入初始帧增加的分辨率相当于多使用了约60%的数据。此外,这些框架保留了辐射敏感残留物的高质量低温em密度,这在典型的三维重建中经常被损坏或非常弱。改进的冷冻条件可以很容易地利用现有的设备来实现,并提高冷冻电镜结构的整体质量。
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来源期刊
QRB Discovery
QRB Discovery Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
3.60
自引率
0.00%
发文量
18
审稿时长
12 weeks
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