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Temperature effects on structure and dynamics of the psychrophilic protease subtilisin S41 and its thermostable mutants inn solution

机译:温度对嗜冷蛋白酶枯草杆菌蛋白酶S41及其耐热突变体in溶液结构和动力学的影响

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The psychrophilic protease subtilisin S41 from the Antarctic bacillus TA41, and two variants with two and seven amino acid substitutions were studied using molecular dynamics simulation at 283 and 363 K. The analysis of protein dynamics revealed that the average global flexibility of both variants was slightly higher than wild type at both 283 and 363 K. Essential dynamics analysis evidenced that the most relevant collective motions, especially at 363 K, differ in distribution and intensity for each protein variant. At high temperature and for the thermo labile wild type, an amplification of a subset of the low-temperature largest collective motions was observed. On the other hand, the two thermostable variants showed a rather different pattern of essential motions at 363 K from those at 283 K. These results support the hypothesis that the introduced amino acid substitutions, rather than improving the global stability of the variants by increasing its rigidity, lead to a change on the principal fluxional modes allowing the protein to explore a different subset of conformations. A better understanding of this process can open alternative strategies to increase the enzyme stability in addition to increasing the rigidity of the protein scaffold.
机译:使用分子动力学模拟在283和363 K上研究了南极杆菌TA41的嗜冷蛋白酶枯草杆菌蛋白酶S41,以及两个具有两个和七个氨基酸取代的变体。蛋白质动力学分析表明,这两个变体的平均总体柔性稍高比野生型在283和363 K时要强于野生型。基本动力学分析表明,最相关的集体运动,尤其是在363 K时,每种蛋白质变体的分布和强度都不同。在高温和热不稳定的野生型中,观察到了低温最大集体运动的子集的放大。另一方面,这两个热稳定变异体在363 K时的基本运动与283 K时的基本运动模式截然不同。这些结果支持以下假设:引入氨基酸取代,而不是通过增加其氨基酸替代来提高其整体稳定性。刚性,导致主要通量模式发生变化,从而使蛋白质能够探索不同的构象子集。对这一过程的更好理解可以为提高酶稳定性以及增加蛋白支架的刚性打开替代策略。

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