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首页> 外文期刊>Protein Science: A Publication of the Protein Society >The topomer search model: A simple, quantitative theory of two-state protein folding kinetics.
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The topomer search model: A simple, quantitative theory of two-state protein folding kinetics.

机译:拓扑异构体搜索模型:一种简单的定量理论的二态蛋白质折叠动力学。

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摘要

Most small, single-domain proteins fold with the uncomplicated, single-exponential kinetics expected for diffusion on a smooth energy landscape. Despite this energetic smoothness, the folding rates of these two-state proteins span a remarkable million-fold range. Here, we review the evidence in favor of a simple, mechanistic description, the topomer search model, which quantitatively accounts for the broad scope of observed two-state folding rates. The model, which stipulates that the search for those unfolded conformations with a grossly correct topology is the rate-limiting step in folding, fits observed rates with a correlation coefficient of approximately 0.9 using just two free parameters. The fitted values of these parameters, the pre-exponential attempt frequency and a measure of the difficulty of ordering an unfolded chain, are consistent with previously reported experimental constraints. These results suggest that the topomer search process may dominate the relative barrier heights of two-state protein-folding reactions.
机译:大多数小的单结构域蛋白都以简单的单指数动力学折叠,从而有望在平滑的能量环境中扩散。尽管具有这种高能量的平滑性,但这些两种状态蛋白的折叠率却达到了惊人的百万倍。在这里,我们回顾了一个简单的机制描述即拓扑搜索模型的证据,该模型定量说明了观察到的两态折叠速率的广泛范围。该模型规定,对那些具有大致正确拓扑的未折叠构象的搜索是折叠中的限速步骤,该模型仅使用两个自由参数即可将观察到的速率与相关系数拟合为0.9。这些参数的拟合值,指数前尝试频率和排序未折叠链的难度的量度与先前报道的实验约束一致。这些结果表明,拓扑异构体搜索过程可能主导着两种状态蛋白质折叠反应的相对屏障高度。

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