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Reproducibility of protein x-ray diffuse scattering and potential utility for modeling atomic displacement parameters

机译:蛋白质X射线漫射散射的再现性和用于建模原子位移参数的潜在效用

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摘要

Protein structure and dynamics can be probed using x-ray crystallography. Whereas the Bragg peaks are only sensitive to the average unit-cell electron density, the signal between the Bragg peaks—diffuse scattering—is sensitive to spatial correlations in electron-density variations. Although diffuse scattering contains valuable information about protein dynamics, the diffuse signal is more difficult to isolate from the background compared to the Bragg signal, and the reproducibility of diffuse signal is not yet well understood. We present a systematic study of the reproducibility of diffuse scattering from isocyanide hydratase in three different protein forms. Both replicate diffuse datasets and datasets obtained from different mutants were similar in pairwise comparisons (Pearson correlation coefficient ≥0.8). The data were processed in a manner inspired by previously published methods using custom software with modular design, enabling us to perform an analysis of various data processing choices to determine how to obtain the highest quality data as assessed using unbiased measures of symmetry and reproducibility. The diffuse data were then used to characterize atomic mobility using a liquid-like motions (LLM) model. This characterization was able to discriminate between distinct anisotropic atomic displacement parameter (ADP) models arising from different anisotropic scaling choices that agreed comparably with the Bragg data. Our results emphasize the importance of data reproducibility as a model-free measure of diffuse data quality, illustrate the ability of LLM analysis of diffuse scattering to select among alternative ADP models, and offer insights into the design of successful diffuse scattering experiments.
机译:可以使用X射线晶体学探测蛋白质结构和动力学。然而,布拉格峰仅对平均单元电池电子密度敏感,但布拉格峰衍射散射之间的信号对电子密度变化中的空间相关性敏感。虽然漫散射包含有关蛋白动力学的有价值的信息,所述扩散信号更难以从背景分离出相比于布拉格信号,和扩散信号的再现还没有很好地理解。我们在三种不同蛋白质形式中提出了对来自异氰酸酯水解酶的漫射散射的再现性的系统研究。两种复制弥散数据集和从不同突变体获得的数据集在成对比较中相似(Pearson相关系数≥0.8)。通过使用模块化设计的先前发布的方法的启发的方式处理数据,使我们能够对各种数据处理选择进行分析,以确定如何使用非偏见的对称性和再现性评估评估的最高质量数据。然后使用漫反射数据来使用液体样运动(LLM)模型来表征原子迁移率。该表征能够区分由不同各向异性缩放选择产生的不同的各向异性原子位移参数(ADP)模型与BRAGG数据相当同意。我们的结果强调数据再现性作为漫反射数据质量的无模型测量的重要性,说明了LLM分析对漫射散射的能力来选择替代ADP模型,并对成功漫射散射实验的设计提供见解。

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