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在冷冻电子显微镜的单颗粒分析中进行局部离焦估计。

Local defocus estimation in single particle analysis in cryo-electron microscopy.

机构信息

Centro Nac. Biotecnologia (CSIC), c/Darwin, 3, 28049 Cantoblanco, Madrid, Spain; Univ. Autonoma de Madrid, 28049 Cantoblanco, Madrid, Spain.

Centro Nac. Biotecnologia (CSIC), c/Darwin, 3, 28049 Cantoblanco, Madrid, Spain.

出版信息

J Struct Biol. 2023 Dec;215(4):108030. doi: 10.1016/j.jsb.2023.108030. Epub 2023 Sep 25.

Abstract

Single Particle analysis (SPA) aims to determine the three-dimensional structure of proteins and macromolecular complexes. The current state of the art has allowed us to achieve near-atomic and even atomic resolutions. To obtain high-resolution structures, a set of well-defined image processing steps is required. A critical one is the estimation of the Contrast Transfer Function (CTF), which considers the sample defocus and aberrations of the microscope. Defocus is usually globally estimated; in this case, it is the same for all the particles in each micrograph. But proteins are ice-embedded at different heights, suggesting that defocus should be measured in a local (per particle) manner. There are four state-of-the-art programs to estimate local defocus (Gctf, Relion, CryoSPARC, and Xmipp). In this work, we have compared the results of these software packages to check whether the resolution improves. We have used the Scipion framework and developed a specific program to analyze local defocus. The results produced by different programs do not show a clear consensus using the current test datasets in this study.

摘要

单颗粒分析(SPA)旨在确定蛋白质和大分子复合物的三维结构。目前的技术水平已经使我们能够达到近原子甚至原子分辨率。为了获得高分辨率结构,需要一组定义明确的图像处理步骤。其中一个关键步骤是估计对比传递函数(CTF),该函数考虑了样品的离焦和显微镜的像差。离焦通常是全局估计的;在这种情况下,每张显微照片中的所有颗粒都是相同的。但是蛋白质是在不同的高度嵌入在冰中,这表明应该以局部(每个颗粒)的方式测量离焦。有四个最先进的程序可以估计局部离焦(Gctf、Relion、CryoSPARC 和 Xmipp)。在这项工作中,我们比较了这些软件包的结果,以检查分辨率是否提高。我们使用了 Scipion 框架并开发了一个特定的程序来分析局部离焦。使用当前的测试数据集,不同程序的结果并没有显示出明确的一致性。

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