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使用mdx2对大分子漫散射进行缩放和合并。

Scaling and merging macromolecular diffuse scattering with mdx2.

作者信息

Meisburger Steve P, Ando Nozomi

机构信息

Cornell High Energy Synchrotron Source, Cornell University, Ithaca, NY 14850, USA.

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY 14850, USA.

出版信息

Acta Crystallogr D Struct Biol. 2024 May 1;80(Pt 5):299-313. doi: 10.1107/S2059798324002705. Epub 2024 Apr 12.

Abstract

Diffuse scattering is a promising method to gain additional insight into protein dynamics from macromolecular crystallography experiments. Bragg intensities yield the average electron density, while the diffuse scattering can be processed to obtain a three-dimensional reciprocal-space map that is further analyzed to determine correlated motion. To make diffuse scattering techniques more accessible, software for data processing called mdx2 has been created that is both convenient to use and simple to extend and modify. mdx2 is written in Python, and it interfaces with DIALS to implement self-contained data-reduction workflows. Data are stored in NeXus format for software interchange and convenient visualization. mdx2 can be run on the command line or imported as a package, for instance to encapsulate a complete workflow in a Jupyter notebook for reproducible computing and education. Here, mdx2 version 1.0 is described, a new release incorporating state-of-the-art techniques for data reduction. The implementation of a complete multi-crystal scaling and merging workflow is described, and the methods are tested using a high-redundancy data set from cubic insulin. It is shown that redundancy can be leveraged during scaling to correct systematic errors and obtain accurate and reproducible measurements of weak diffuse signals.

摘要

漫散射是一种很有前景的方法,可从大分子晶体学实验中获得有关蛋白质动力学的更多见解。布拉格强度产生平均电子密度,而漫散射可进行处理以获得三维倒易空间图,进而对其进行进一步分析以确定相关运动。为了使漫散射技术更易于使用,已创建了名为mdx2的数据处理软件,该软件既便于使用,又易于扩展和修改。mdx2用Python编写,并与DIALS接口以实现独立的数据简化工作流程。数据以NeXus格式存储,便于软件交换和可视化。mdx2可以在命令行上运行,也可以作为一个包导入,例如在Jupyter笔记本中封装完整的工作流程,以实现可重复计算和教学。本文介绍了mdx2版本1.0,这是一个包含最新数据简化技术的新版本。描述了完整的多晶体缩放和合并工作流程的实现,并使用来自立方胰岛素的高冗余数据集对这些方法进行了测试。结果表明,在缩放过程中可以利用冗余来校正系统误差,并获得对弱漫散射信号的准确且可重复的测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5719/11066883/662d88b38644/d-80-00299-fig1.jpg

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