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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Folding transition-state and denatured-state ensembles of FSD-1 from folding and unfolding simulations
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Folding transition-state and denatured-state ensembles of FSD-1 from folding and unfolding simulations

机译:从折叠和展开模拟得出FSD-1的折叠过渡状态和变性状态合奏

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摘要

Characterization of the folding transition-state ensemble and the denatured-state ensemble is an important step toward a full elucidation of protein folding mechanisms. We report herein an investigation of the free-energy landscape of FSD-1 protein by a total of four sets of folding and unfolding molecular dynamics simulations with explicit solvent. The transition-state ensemble was initially identified from unfolding simulations at 500 K and was verified by simulations at 300 K starting from the ensemble structures. The denatured-state ensemble and the early-stage folding were studied by a combination of unfolding simulations at 500 K and folding simulations at 300 K starting from the extended conformation. A common feature of the transition-state ensemble was the substantial formation of the native secondary structures, including both the alpha-helix and beta-sheet, with partial exposure of the hydrophobic core in the solvent. Both the native and non-native secondary structures were observed in the denatured-state ensemble and early-stage folding, consistent with the smooth experimental melting curve. Interestingly, the contact orders of the transition-state ensemble structures were similar to that of the native structure and were notably lower than those of the compact structures found in early-stage folding, implying that chain and topological entropy might play significant roles in protein folding. Implications for FSD-1 folding mechanisms and the rate-limiting step are discussed. Analyses further revealed interesting non-native interactions in the denatured-state ensemble and early-stage folding and the possibility that destabilization of these interactions could help to enhance the stability and folding rate of the protein.
机译:折叠过渡态集合和变性态集合的表征是朝着全面阐明蛋白质折叠机制迈出的重要一步。我们在此报告了由FSD-1蛋白自由能态势的研究,该过程由总共四组具有明确溶剂的折叠和展开分子动力学模拟组成。过渡状态集合最初是从500 K的展开模拟中识别出来的,并通过从集合结构开始的300 K的模拟进行了验证。从扩展构象出发,结合500 K的展开模拟和300 K的折叠模拟,研究了变性状态的合奏和早期折叠。过渡态集合体的一个共同特征是大量形成天然的二级结构,包括α-螺旋和β-片层,疏水核心在溶剂中部分暴露。在变性状态的集合体和早期折叠中均观察到天然和非天然二级结构,这与平滑的实验熔解曲线一致。有趣的是,过渡态集合体结构的接触顺序与天然结构的接触顺序相似,并且显着低于早期折叠中发现的紧密结构的接触顺序,这意味着链和拓扑结构的熵可能在蛋白质折叠中起重要作用。 。讨论了对FSD-1折叠机制的影响和限速步骤。分析进一步揭示了在变性状态集合和早期折叠中有趣的非天然相互作用,以及这些相互作用的不稳定可能有助于增强蛋白质的稳定性和折叠速率的可能性。

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