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Hybrid Methods for Modeling Protein Structures Using Molecular Dynamics Simulations and Small-Angle X-Ray Scattering Data

机译:用于使用分子动力学模拟和小角度X射线散射数据建模蛋白质结构的杂化方法

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摘要

Small-angle X-ray scattering (SAXS) is an efficient experimental tool to measure the overall shape of macromolecular structures in solution. However, due to the low resolution of SAXS data, high-resolution data obtained from X-ray crystallography or NMR and computational methods such as molecular dynamics (MD) simulations are complementary to SAXS data for understanding protein functions based on their structures at atomic resolution. Because MD simulations provide a physicochemically proper structural ensemble for flexible proteins in solution and a precise description of solvent effects, the hybrid analysis of SAXS and MD simulations is a promising method to estimate reasonable solution structures and structural ensembles in solution. Here, we review typical and useful in silico methods for modeling three dimensional protein structures, calculating theoretical SAXS profiles, and analyzing ensemble structures consistent with experimental SAXS profiles. We also review two examples of the hybrid analysis, termed MD-SAXS method in which MD simulations are carried out without any knowledge of experimental SAXS data, and the experimental SAXS data are used only to assess the consistency of the solution model from MD simulations with those observed in experiments. One example is an investigation of the intrinsic dynamics of EcoO109I using the computational method to obtain a theoretical profile from the trajectory of an MD simulation. The other example is a structural investigation of the vitamin D receptor ligand-binding domain using snapshots generated by MD simulations and assessment of the snapshots by experimental SAXS data.
机译:小角度X射线散射(萨克斯)是一种有效的实验工具,用于测量溶液中大分子结构的整体形状。然而,由于SAXS数据的低分辨率,从X射线晶体学或NMR获得的高分辨率数据和诸如分子动力学(MD)模拟的计算方法是互补的,以根据原子分辨率的结构来理解蛋白质功能的数据。由于MD模拟为溶液中的柔性蛋白质提供了物理化学上适当的结构集合,并且精确描述了溶剂效应,所以SAXS和MD模拟的杂化分析是估算解决方案中合理的解决方案结构和结构集合的有希望的方法。在此,我们在典型和有用的典型和有用的用于建模三维蛋白质结构,计算理论淋浴型材,并分析与实验套型型材一致的集成结构。我们还回顾了混合分析的两个例子,称为MD-SAXS方法,其中在没有任何实验型SAXS数据的情况下执行MD模拟的MD模拟,并且实验萨克斯数据仅用于评估MD模拟的解决方案模型的一致性在实验中观察到的那些。一个例子是使用计算方法研究ECOO109i的内在动力学,从MD模拟的轨迹获得理论轮廓。另一个例子是使用MD模拟产生的快照和通过实验型SAX数据评估快照的快照对维生素D受体配体结合结构域的结构研究。

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