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Temperature dependence of protein dynamics: computer simulation analysis of neutron scattering properties.

机译:蛋白质动力学的温度依赖性:中子散射特性的计算机模拟分析。

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摘要

The temperature dependence of the internal dynamics of an isolated protein, bovine pancreatic trypsin inhibitor, is examined using normal mode analysis and molecular dynamics (MD) simulation. It is found that the protein exhibits marked anharmonic dynamics at temperatures of approximately 100-120 K, as evidenced by departure of the MD-derived average mean square displacement from that of the harmonic model. This activation of anharmonic dynamics is at lower temperatures than previously detected in proteins and is found in the absence of solvent molecules. The simulation data are also used to investigate neutron scattering properties. The effects are determined of instrumental energy resolution and of approximations commonly used to extract mean square displacement data from elastic scattering experiments. Both the presence of a distribution of mean square displacements in the protein and the use of the Gaussian approximation to the dynamic structure factor lead to quantified underestimation of the mean square displacement obtained.
机译:使用正常模式分析和分子动力学(MD)模拟来检查分离的蛋白质(牛胰胰蛋白酶抑制剂)内部动力学的温度依赖性。发现该蛋白质在大约100-120 K的温度下表现出明显的非谐动力学,这是由MD衍生的平均均方位移与谐波模型的平均方差所证明的。非谐波动力学的这种活化在比以前在蛋白质中检测到的温度更低的温度下,并且在没有溶剂分子的情况下被发现。模拟数据还用于研究中子散射特性。这些影响取决于仪器的能量分辨率以及通常用于从弹性散射实验中提取均方位移数据的近似值。蛋白质中均方位移分布的存在以及对动态结构因子的高斯近似的使用都导致对所得均方位移的量化低估。

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