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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Single-particle reconstruction statistics: a diagnostic tool in solving biomolecular structures by cryo-EM
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Single-particle reconstruction statistics: a diagnostic tool in solving biomolecular structures by cryo-EM

机译:单粒子重建统计:Cryo-EM解决生物分子结构的诊断工具

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摘要

In single-particle analysis (SPA), the aim is to obtain a 3D reconstruction of a biological molecule from 2D electron micrographs to the highest level of detail or resolution as possible. Current practice is to collect large volumes of data, hoping to reach high-resolution maps through sheer numbers. However, adding more particles from a specific data set eventually leads to diminishing improvements in resolution. Understanding what these resolution limits are and how to deal with them are important in optimization and automation of SPA. This study revisits the theory of 3D reconstruction and demonstrates how the associated statistics can provide a diagnostic tool to improve SPA. Small numbers of images already give sufficient information on micrograph quality and the amount of data required to reach high resolution. Such feedback allows the microscopist to improve sample-preparation and imaging parameters before committing to extensive data collection. Once a larger data set is available, a B factor can be determined describing the suppression of the signal owing to one or more causes, such as specimen movement, radiation damage, alignment inaccuracy and structural variation. Insight into the causes of signal suppression can then guide the user to consider appropriate actions to obtain better reconstructions.
机译:在单粒子分析(SPA)中,目的是从2D电子显微照片获得生物分子的3D重建,以尽可能最高的细节或分辨率。目前的做法是收集大量数据,希望通过纯粹的数字来达到高分辨率映射。然而,从特定数据集中添加更多粒子最终导致分辨率的改进递减。了解这些分辨率限制是什么以及如何处理它们在SPA的优化和自动化方面都很重要。本研究重新审视了3D重建理论,并演示了相关统计数据如何提供诊断工具来改善水疗中心。少量图像已经提供了有关显微照片质量的充分信息和达到高分辨率所需的数据量。此类反馈允许显微镜手术在提交广泛的数据收集之前改善样品准备和成像参数。一旦获得更大的数据集,可以确定一个B因子,可以确定由于一个或多个原因而抑制信号,例如样本运动,辐射损坏,对准不准确和结构变化。然后,深入了解信号抑制的原因,然后可以指导用户考虑适当的动作以获得更好的重建。

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