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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Protein folding in the landscape perspective: chevron plots and non-Arrhenius kinetics.
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Protein folding in the landscape perspective: chevron plots and non-Arrhenius kinetics.

机译:从景观角度看蛋白质折叠:人字形图和非阿累尼乌斯动力学。

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We use two simple models and the energy landscape perspective to study protein folding kinetics. A major challenge has been to use the landscape perspective to interpret experimental data, which requires ensemble averaging over the microscopic trajectories usually observed in such models. Here, because of the simplicity of the model, this can be achieved. The kinetics of protein folding falls into two classes: multiple-exponential and two-state (single-exponential) kinetics. Experiments show that two-state relaxation times have "chevron plot" dependences on denaturant and non-Arrhenius dependences on temperature. We find that HP and HP+ models can account for these behaviors. The HP model often gives bumpy landscapes with many kinetic traps and multiple-exponential behavior, whereas the HP+ model gives more smooth funnels and two-state behavior. Multiple-exponential kinetics often involves fast collapse into kinetic traps and slower barrier climbing out of the traps. Two-state kinetics often involves entropic barriers where conformational searching limits the folding speed. Transition states and activation barriers need not define a single conformation; they can involve a broad ensemble of the conformations searched on the way to the native state. We find that unfolding is not always a direct reversal of the folding process.
机译:我们使用两个简单的模型和能量格局的角度来研究蛋白质折叠动力学。一个主要的挑战是使用景观角度来解释实验数据,这要求对此类模型中通常观察到的微观轨迹进行整体平均。在此,由于模型的简单性,可以实现这一点。蛋白质折叠的动力学分为两类:多指数动力学和二态(单指数)动力学。实验表明,两种状态的弛豫时间对变性剂具有“人字形”依赖性,而对温度则具有非阿累尼乌斯依赖性。我们发现HP和HP +模型可以解决这些问题。 HP模型通常提供具有许多动力学陷阱和多指数行为的颠簸景观,而HP +模型则提供更多的平滑漏斗和两态行为。多指数动力学经常涉及快速陷入动力学陷阱和较慢的势垒爬出陷阱。二态动力学通常涉及熵垒,其中构象搜索限制了折叠速度。过渡态和激活障碍不需要定义单一构象;它们可能涉及到原始状态时搜索到的构象的广泛集合。我们发现展开并不总是折叠过程的直接逆转。

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