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X射线自由电子激光辐照下单核糖体分子衍射图像形成的计算研究。

Computational study of diffraction image formation from XFEL irradiated single ribosome molecule.

作者信息

Stransky Michal, E Juncheng, Jurek Zoltan, Santra Robin, Bean Richard, Ziaja Beata, Mancuso Adrian P

机构信息

European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.

Institute of Nuclear Physics, Polish Academy of Sciences, Radzikowskiego 152, 31-342, Krakow, Poland.

出版信息

Sci Rep. 2024 May 9;14(1):10617. doi: 10.1038/s41598-024-61314-w.

Abstract

Single particle imaging at atomic resolution is perhaps one of the most desired goals for ultrafast X-ray science with X-ray free-electron lasers. Such a capability would create great opportunity within the biological sciences, as high-resolution structural information of biosamples that may not crystallize is essential for many research areas therein. In this paper, we report on a comprehensive computational study of diffraction image formation during single particle imaging of a macromolecule, containing over one hundred thousand non-hydrogen atoms. For this study, we use a dedicated simulation framework, SIMEX, available at the European XFEL facility. Our results demonstrate the full feasibility of computational single-particle imaging studies for biological samples of realistic size. This finding is important as it shows that the SIMEX platform can be used for simulations to inform relevant single-particle-imaging experiments and help to establish optimal parameters for these experiments. This will enable more focused and more efficient single-particle-imaging experiments at XFEL facilities, making the best use of the resource-intensive XFEL operation.

摘要

利用X射线自由电子激光实现原子分辨率的单粒子成像,或许是超快X射线科学最期望达成的目标之一。这样的能力将在生物科学领域创造巨大机遇,因为对于其中许多研究领域而言,无法结晶的生物样品的高分辨率结构信息至关重要。在本文中,我们报告了一项对包含超过十万个非氢原子的大分子进行单粒子成像时衍射图像形成的全面计算研究。对于这项研究,我们使用了欧洲X射线自由电子激光设施提供的专用模拟框架SIMEX。我们的结果证明了对实际尺寸生物样品进行计算单粒子成像研究的完全可行性。这一发现很重要,因为它表明SIMEX平台可用于模拟,为相关的单粒子成像实验提供信息,并有助于为这些实验确定最佳参数。这将使X射线自由电子激光设施的单粒子成像实验更具针对性、更高效,从而充分利用资源密集型的X射线自由电子激光运行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f0c/11078940/54b9b793787d/41598_2024_61314_Fig1_HTML.jpg

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