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首页> 外文期刊>Biophysics >SASCUBE: An Updated Method of Cubes for Calculation of the Intensity of X-Ray Scattering by Biopolymers in Solution
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SASCUBE: An Updated Method of Cubes for Calculation of the Intensity of X-Ray Scattering by Biopolymers in Solution

机译:SASCUBE:用于计算溶液中生物聚合物X射线散射强度的多维数据集的更新方法

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摘要

—This work describes an updated method of cubes, which allows calculation of the SAS curves for biopolymers in solution on the basis of the coordinates of their atoms without introducing any fitting parameters. The efficiency of the method was checked on a number of model systems. For eight globular proteins, the scattering intensities that were calculated using the SASCUBE software ( https://sourceforge.net/projects/sascube ) were compared with the corresponding experimental curves. This work addresses the contentious issue of the nature of distortions of the electron density of water near a protein surface. Molecular dynamics simulations were used to show that the electron density distribution of water in a 0.3-nm thick near-border protein layer could not be considered uniform, while its mean value could be less than the average electron density of water. It was shown that the conformational mobility significantly influenced the scattering curve of proteins. The possibility of using the method of cubes (SASCUBE software) in combination with molecular dynamics is discussed in order to find the intensities of protein scattering taking all the factors that influence the scattering curve into account (conformational mobility of proteins, distortions of water structures, etc.).
机译:- 该工作描述了一种多维数据集的更新方法,这允许基于其原子的坐标在溶液中计算生物聚合物的SAS曲线,而不会引入任何拟合参数。检查该方法的效率是在多个模型系统上进行检查。对于八个球状蛋白质,将使用SASCUBE软件(https://sourceforge.net/projects/sascube)计算的散射强度与相应的实验曲线进行比较。这项工作解决了蛋白质表面附近水密度的扭曲性质的争议问题。分子动力学模拟旨在表明,0.3nm厚的近边界蛋白层的水中的电子密度分布不​​能被认为是均匀的,而其平均值可能小于水的平均电子密度。结果表明,构象迁移率显着影响了蛋白质的散射曲线。讨论了使用立方体(SASCUBE软件)的方法与分子动力学结合的可能性,以找到蛋白质散射的强度,从而考虑散射曲线的所有因素(蛋白质的构象流动,水结构的扭曲,等等。)。

著录项

  • 来源
    《Biophysics 》 |2019年第1期| 共11页
  • 作者单位

    St. Petersburg National Research University of Information Technologies Mechanics and Optics;

    St. Petersburg National Research University of Information Technologies Mechanics and Optics;

    St. Petersburg National Research University of Information Technologies Mechanics and Optics;

    St. Petersburg National Research University of Information Technologies Mechanics and Optics;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学 ;
  • 关键词

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