首页> 美国卫生研究院文献>Biophysical Journal >On the temperature and pressure dependence of a range of properties of a type of water model commonly used in high-temperature protein unfolding simulations.
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On the temperature and pressure dependence of a range of properties of a type of water model commonly used in high-temperature protein unfolding simulations.

机译:对温度和压力的依赖关系是在高温蛋白质展开模拟中常用的一种水模型的一系列特性。

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摘要

Molecular dynamics simulations of protein folding and unfolding are often carried out at temperatures (400-600 K) that are much higher than physiological or room temperature to speed up the (un)folding process. Use of such high temperatures changes both the protein and solvent properties considerably, compared to physiological or room temperature. Water models designed for use in conjunction with biomolecules, such as the simple point charge (SPC) model, have generally been calibrated at room temperature and pressure. To determine the distortive effect of high simulation temperatures on the behavior of such "room temperature" water models, the structural, dynamic, and thermodynamic properties of the much-used SPC water model are investigated in the temperature range from 300 to 500 K. Both constant pressure and constant volume conditions, as used in protein simulations, were analyzed. We found that all properties analyzed change markedly with increasing temperature, but no phase transition in this temperature range was observed.
机译:蛋白质折叠和展开的分子动力学模拟通常是在高于生理或室温的温度(400-600 K)下进行的,以加速(展开)折叠过程。与生理或室温相比,使用这种高温会极大地改变蛋白质和溶剂的特性。设计用于与生物分子结合使用的水模型,例如简单点电荷(SPC)模型,通常已在室温和压力下进行了校准。为了确定高温模拟对这种“室温”水模型的行为的扭曲影响,研究了在300至500 K的温度范围内常用的SPC水模型的结构,动态和热力学性质。分析了蛋白质模拟中使用的恒定压力和恒定体积条件。我们发现,所分析的所有特性均随温度升高而显着变化,但在该温度范围内未观察到相变。

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