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基于坐标的小分子和大分子组装体对距离分布函数的模拟:实现与应用

Coordinate-based simulation of pair distance distribution functions for small and large molecular assemblies: implementation and applications.

作者信息

Zuo Xiaobing, Tiede David M

机构信息

X-ray Science Division Argonne National Laboratory Lemont IllinoisUSA.

Chemical Sciences and Engineering Division Argonne National Laboratory Lemont IllinoisUSA.

出版信息

J Appl Crystallogr. 2024 Sep 17;57(Pt 5):1446-1455. doi: 10.1107/S1600576724007222. eCollection 2024 Oct 1.

Abstract

X-ray scattering has become a major tool in the structural characterization of nanoscale materials. Thanks to the widely available experimental and computational atomic models, coordinate-based X-ray scattering simulation has played a crucial role in data interpretation in the past two decades. However, simulation of real-space pair distance distribution functions (PDDFs) from small- and wide-angle X-ray scattering, SAXS/WAXS, has been relatively less exploited. This study presents a comparison of PDDF simulation methods, which are applied to molecular structures that range in size from β-cyclo-dextrin [1 kDa molecular weight (MW), 66 non-hydrogen atoms] to the satellite tobacco mosaic virus capsid (1.1 MDa MW, 81 960 non-hydrogen atoms). The results demonstrate the power of interpretation of experimental SAXS/WAXS from the real-space view, particularly by providing a more intuitive method for understanding of partial structure contributions. Furthermore, the computational efficiency of PDDF simulation algorithms makes them attractive as approaches for the analysis of large nanoscale materials and biological assemblies. The simulation methods demonstrated in this article have been implemented in stand-alone software, , which is available to download from https://12idb.xray.aps.anl.gov/solx.html.

摘要

X射线散射已成为纳米级材料结构表征的主要工具。由于广泛可用的实验和计算原子模型,基于坐标的X射线散射模拟在过去二十年的数据解释中发挥了关键作用。然而,从小角和广角X射线散射(SAXS/WAXS)模拟实空间对距离分布函数(PDDF)的应用相对较少。本研究对PDDF模拟方法进行了比较,这些方法应用于从β-环糊精(分子量1 kDa,66个非氢原子)到烟草花叶病毒卫星衣壳(分子量1.1 MDa,81960个非氢原子)等不同尺寸的分子结构。结果表明,从实空间角度解释实验SAXS/WAXS具有强大功能,特别是通过提供一种更直观的方法来理解部分结构贡献。此外,PDDF模拟算法的计算效率使其成为分析大型纳米级材料和生物组装体的有吸引力的方法。本文展示的模拟方法已在独立软件中实现,可从https://12idb.xray.aps.anl.gov/solx.html下载。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99c9/11460383/fc8e18b2b072/j-57-01446-fig1.jpg

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