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嗜压菌和嗜常温菌二氢叶酸还原酶的原子涨落受压力和温度的影响。

Effects of Pressure and Temperature on the Atomic Fluctuations of Dihydrofolate Reductase from a Psychropiezophile and a Mesophile.

机构信息

Department of Chemistry, Georgetown University, Washington, DC 20057, USA.

Department of Civil and Environmental Engineering, George Washington University, Washington, DC 20052, USA.

出版信息

Int J Mol Sci. 2019 Mar 22;20(6):1452. doi: 10.3390/ijms20061452.

Abstract

Determining the effects of extreme conditions on proteins from "extremophilic" and mesophilic microbes is important for understanding how life adapts to living at extremes as well as how extreme conditions can be used for sterilization and food preservation. Previous molecular dynamics simulations of dihydrofolate reductase (DHFR) from a psychropiezophile (cold- and pressure-loving), (Mp), and a mesophile, (Ec), at various pressures and temperatures indicate that atomic fluctuations, which are important for enzyme function, increase with both temperature and pressure. Here, the factors that cause increases in atomic fluctuations in the simulations are examined. The fluctuations increase with temperature not only because of greater thermal energy and thermal expansion of the protein but also because hydrogen bonds between protein atoms are weakened. However, the increase in fluctuations with pressure cannot be due to thermal energy, which remains constant, nor the compressive effects of pressure, but instead, the hydrogen bonds are also weakened. In addition, increased temperature causes larger increases in fluctuations of the loop regions of MpDHFR than EcDHFR, and increased pressure causes both increases and decreases in fluctuations of the loops, which differ between the two.

摘要

确定“嗜极生物”和嗜温微生物蛋白质在极端条件下的作用,对于理解生命如何适应极端环境以及如何利用极端条件进行杀菌和食品保存非常重要。先前对来自嗜冷/嗜压菌(psychropiezophile)(Mp)和嗜温菌(Ec)的二氢叶酸还原酶(DHFR)在不同压力和温度下的分子动力学模拟表明,对于酶功能很重要的原子波动会随温度和压力的升高而增加。在这里,我们检查了导致模拟中原子波动增加的因素。波动随温度的增加不仅是因为蛋白质的热能增加和热膨胀,还因为蛋白质原子之间的氢键减弱。然而,波动随压力的增加不能归因于热能(其保持不变),也不能归因于压力的压缩效应,而是氢键也减弱了。此外,高温导致 MpDHFR 的环区波动增加幅度大于 EcDHFR,而高压导致环区波动增加和减少,两者之间存在差异。

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