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首页> 外文期刊>The Journal of Chemical Physics >Folding behavior of model proteins with weak energetic frustration
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Folding behavior of model proteins with weak energetic frustration

机译:能量挫败弱的模型蛋白的折叠行为

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The native structure of fast-folding proteins,albeit a deep local free-energy minimum,may involve a relatively small energetic penalty due to nonoptimal,though favorable,contacts between amino acid residues.The weak energetic frustration that such contacts represent varies among different proteins and may account for folding behavior not seen in unfrustrated models.Minimalist model proteins with heterogeneous contacts-as represented by lattice heteropolymers consisting of three types of monomers-also give rise to weak energetic frustration in their corresponding native structures,and the present study of their equilibrium and nonequilibrium properties reveals some of the breadth in their behavior.In order to capture this range within a detailed study of only a few proteins,four candidate protein structures (with their cognate sequences) have been selected according to a figure of merit called the winding index-a characteristic of the number of turns the protein winds about an axis.The temperature-dependent heat capacities reveal a high-temperature collapse transition,and an infrequently observed low-temperature rearrangement transition that arises because of the presence of weak energetic frustration.Simulation results motivate the definition of a new measure of folding affinity as a sequence-dependent free energy-a function of both a reduced stability gap and high accessibility to non-native structures-that correlates strongly with folding rates.
机译:快速折叠蛋白的天然结构尽管具有很深的局部自由能最小值,但由于氨基酸残基之间的接触不是最佳的(尽管是有利的),可能涉及相对较小的能量损失。这种接触所表现出的弱能量挫败感在不同的蛋白质之间有所不同具有异质接触的极简主义模型蛋白质(以由三种类型的单体组成的晶格杂聚物表示)也会在其相应的天然结构中产生弱的能量挫败感,并且目前对其研究平衡和非平衡性质揭示了它们行为的广度。为了在仅对几种蛋白质进行详细研究的过程中捕获该范围,已根据称为“蛋白质”的品质因数选择了四个候选蛋白质结构(及其同源序列)。缠绕指数-蛋白质绕轴缠绕的匝数的特征。与温度相关的热容量显示出高温塌陷转变,并且由于存在弱的能量挫折而很少出现观察到的低温重排转变。模拟结果激发了一种新的折叠亲和力测量方法的定义,即序列依赖性自由能-减小的稳定性差和对非原生结构的高可达性的功能-与折叠率密切相关。

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