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The Behavior of the Hydrophobic Effect under Pressure and Protein Denaturation

机译:压力和蛋白质变性下疏水作用的行为

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摘要

It is well known that proteins denature under high pressure. The mechanism that underlies such a process is still not clearly understood, however, giving way to controversial interpretations. Using molecular dynamics simulation on systems that may be regarded experimentally as limiting examples of the effect of high pressure on globular proteins, such as lysozyme and apomyoglobin, we have effectively reproduced such similarities and differences in behavior as are interpreted from experiment. From the analysis of such data, we explain the experimental evidence at hand through the effect of pressure on the change of water structure, and hence the weakening of the hydrophobic effect that is known to be the main driving force in protein folding.
机译:众所周知,蛋白质在高压下会变性。然而,仍然不清楚这种过程的基础机制,而让位于有争议的解释。在可能被实验视为高压对球蛋白(如溶菌酶和载脂蛋白)影响的限制性例子的系统上使用分子动力学模拟,我们已经有效地重现了实验中解释的相似性和行为差异。通过对这些数据的分析,我们通过压力对水结构变化的影响,以及由此而来的疏水作用的减弱来解释当前的实验证据,疏水作用被认为是蛋白质折叠的主要驱动力。

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