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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Common Folding Processes of Mini-Proteins: Partial Formations of Secondary Structures Initiate the Immediate Protein Folding
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Common Folding Processes of Mini-Proteins: Partial Formations of Secondary Structures Initiate the Immediate Protein Folding

机译:迷你蛋白的常见折叠过程:二次结构的部分地层引发直接蛋白质折叠

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摘要

The folding processes of mini-proteins (FSD-EY/FBPWW28 domain) were computationally investigated by an enhanced conformational sampling method. Through the analyses of trajectories, these mini-proteins had multiple folding pathways different from a simple two-state folding, and the multiple folding processes were initiated by partial formations of secondary structures. These findings can be used to understand the folding of large proteins, that is, which secondary structures are partially folded in the early process, and how the remaining parts are sequentially folded. It is found that FSD-EY (alpha/beta topology) folds by a simple diffusion-collision mechanism, while the folding process of the FBPWW28 domain (all-beta topology) requires a modification of the diffusion-collision theory to adequately treat the coil-sheet transition for the beta sheet formation. (C) 2017 Wiley Periodicals, Inc.
机译:通过增强的构象采样方法计算迷你蛋白(FSD-EY / FBPWW28结构域)的折叠过程。 通过轨迹的分析,这些迷你蛋白有多个与简单的两态折叠不同的折叠通路,并且通过二次结构的部分地层启动多个折叠过程。 这些发现可用于理解大蛋白质的折叠,即,其中二次结构在早期工艺中部分折叠,以及剩余部分的顺序折叠方式。 发现FSD-EY(alpha / beta拓扑)通过简单的扩散碰撞机构折叠,而FBPWW28结构域(全β拓扑)的折叠过程需要修改漫射碰撞理论以充分处理线圈 - 表格形成β制图的转换。 (c)2017 Wiley期刊,Inc。

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