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The role of hydration in protein stability: Comparison of the cold and heat unfolded states of Yfh1

机译:水合在蛋白质稳定性中的作用:Yfh1的冷热状态展开比较

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摘要

Protein unfolding occurs at both low and high temperatures, although in most cases, only the high-temperature transition can be experimentally studied. A pressing question is how much the low- and high-temperature denatured states, although thermodynamically equivalent, are structurally and kinetically similar. We have combined experimental and computational approaches to compare the high- and low-temperature unfolded states of Yfh1, a natural protein that, at physiologic pH, undergoes cold and heat denaturation around 0 °C and 40 °C without the help of ad hoc destabilization. We observe that the two denatured states have similar but not identical residual secondary structures, different kinetics and compactness and a remarkably different degree of hydration. We use molecular dynamics simulations to rationalize the role of solvation and its effect on protein stability.
机译:尽管在大多数情况下,只能通过实验研究高温转变,但蛋白质的解折叠在低温和高温下均会发生。一个紧迫的问题是,低温和高温变性状态在热力学上是等效的,但在结构和动力学上是相似的。我们结合了实验和计算方法来比较Yfh1的高温和低温未折叠状态,Yfh1是一种天然蛋白,在生理pH下会在0°C和40°C左右经历冷和热变性,而无需特别的去稳定。我们观察到,两个变性态具有相似但不相同的残留二级结构,不同的动力学和紧密度以及显着不同的水合度。我们使用分子动力学模拟来合理化溶剂化的作用及其对蛋白质稳定性的影响。

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