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首页> 外文期刊>The Journal of Chemical Physics >Quasiharmonic analysis of protein energy landscapes from pressure-temperature molecular dynamics simulations
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Quasiharmonic analysis of protein energy landscapes from pressure-temperature molecular dynamics simulations

机译:压力 - 温度分子动力学模拟蛋白质能量景观的准谐波分析

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摘要

Positional fluctuations of an atom in a protein can be described as motion in an effective local energy minimum created by the surrounding protein atoms. The dependence of atomic fluctuations on both temperature (T) and pressure (P) has been used to probe the nature of these minima, which are generally described as harmonic in experiments such as x-ray crystallography and neutron scattering. Here, a quasiharmonic analysis method is presented in which the P-T dependence of atomic fluctuations is in terms of an intrinsic isobaric thermal expansivity alpha(P) and an intrinsic isothermal compressibility kappa(T). The method is tested on previously reported mean-square displacements from P-T molecular dynamics simulations of lysozyme, which were interpreted to have a pressure-independent dynamical transition T-g near 200 K and a change in the pressure dependence near 480 MPa. Our quasiharmonic analysis of the same data shows that the P-T dependence can be described in terms of alpha(P) and kappa(T) where below T-g, the temperature dependence is frozen at the T-g value. In addition, the purported transition at 480 MPa is reinterpreted as a consequence of the pressure dependence of T-g and the quasiharmonic frequencies. The former also indicates that barrier heights between substates are pressure dependent in these data. Furthermore, the insights gained from this quasiharmonic analysis, which was of the energy landscape near the native state of a protein, suggest that similar analyses of other simulations may be useful in understanding such phenomena as pressure-induced protein unfolding. Published by AIP Publishing.
机译:在蛋白质中的原子的位置波动可以被描述为由周围蛋白质原子产生的有效局部能量的运动。原子波动对温度(t)和压力(P)的依赖性用于探测这些最小值的性质,这些最小值通常被描述为X射线晶体学和中子散射等实验中的谐波。这里,提出了一种拟气旋分析方法,其中原子波动的P-T依赖性是根据固有的同位热膨胀性α(P)和本征等温可压缩性Kappa(T)。该方法在先前报告的来自溶菌酶的P-T分子动力学模拟的先前报告的平均方形位移,这被解释为具有近200k的压力无关动态转变T-G和压力依赖性靠近480MPa的变化。我们对相同数据的Quasiharconic分析表明,可以根据α(P)和Kappa(t)描述P-T依赖性,其中低于T-G,温度依赖性在T-G值下冻结。另外,由于T-G的压力依赖性和Quasiharmonic频率而重新涂上480MPa的声称转变。前者还表明,代形位板之间的屏障高度是依赖于这些数据的压力。此外,从该蛋白质的天然状态附近的能量景观中获得的识别性,表明其他模拟的类似分析可用于理解这种现象作为压力诱导的蛋白质展开。通过AIP发布发布。

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