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Hydrophobic association of α-helices steric dewetting and enthalpic barriers to protein folding

机译:α螺旋空间去湿和焓折叠对蛋白质折叠的疏水关联

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摘要

Efficient protein folding implies a microscopic funnel-like multidimensional free-energy landscape. Macroscopically, conformational entropy reduction can manifest itself as part of an empirical barrier in the traditional view of folding, but experiments show that such barriers can also entail significant unfavorable enthalpy changes. This observation raises the puzzling possibility, irrespective of conformational entropy, that individual microscopic folding trajectories may encounter large uphill moves and thus the multidimensional free-energy landscape may not be funnel-like. Here, we investigate how nanoscale hydrophobic interactions might underpin this salient enthalpic effect in biomolecular assembly by computer simulations of the association of two preformed polyalanine or polyleucine helices in water. We observe a high, positive enthalpic signature at room temperature when the helix separation is less than a single layer of water molecules. Remarkably, this unfavorable enthalpy change, with a parallel increase in void volume, is largely compensated for by a concomitant increase in solvent entropy, netting only a small or nonexistent microscopic free-energy barrier. Thus, our findings suggest that high enthalpic folding barriers can be consistent with a funnel picture of folding and are mainly a desolvation phenomenon indicative of a cooperative mechanism of simultaneous formation of multiple side-chain contacts at the rate-limiting step.
机译:有效的蛋白质折叠意味着微观漏斗状多维自由能态。在宏观上,构象熵的减小可以表现为传统折叠观点中的经验障碍的一部分,但是实验表明,这种障碍也可能带来明显的不利的焓变。无论构象熵如何,这一观察结果都令人困惑,单个微观折叠轨迹可能会遇到较大的上坡运动,因此多维自由能景观可能不会像漏斗一样。在这里,我们通过计算机模拟水中两个预先形成的聚丙氨酸或聚亮氨酸螺旋的缔合关系,研究纳米级疏水相互作用如何在生物分子组装中增强这种显着的焓效应。当螺旋分离小于单层水分子时,我们在室温下观察到很高的正焓签名。值得注意的是,伴随着空隙体积的增加,这种不利的焓变在很大程度上被伴随着溶剂熵的增加所补偿,从而仅消除了很小的或不存在的微观自由能垒。因此,我们的发现表明,高焓折叠障碍可以与折叠的漏斗图像一致,并且主要是去溶剂化现象,其指示在限速步骤同时形成多个侧链接触的协同机制。

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