首页> 外文期刊>Proteins: Structure, Function, and Genetics >Loop-closure events during protein folding: rationalizing the shape of Phi-value distributions.
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Loop-closure events during protein folding: rationalizing the shape of Phi-value distributions.

机译:蛋白质折叠过程中的闭环事件:合理化Phi值分布的形状。

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摘要

In the past years, the folding kinetics of many small single-domain proteins has been characterized by mutational Phi-value analysis. In this article, a simple, essentially parameter-free model is introduced which derives folding routes from native structures by minimizing the entropic loop-closure cost during folding. The model predicts characteristic folding sequences of structural elements such as helices and beta-strand pairings. Based on few simple rules, the kinetic impact of these structural elements is estimated from the routes and compared to average experimental Phi-values for the helices and strands of 15 small, well-characterized proteins. The comparison leads on average to a correlation coefficient of 0.62 for all proteins with polarized Phi-value distributions, and 0.74 if distributions with negative average Phi-values are excluded. The diffuse Phi-value distributions of the remaining proteins are reproduced correctly. The model shows that Phi-value distributions, averaged over secondary structural elements, can often be traced back to entropic loop-closure events, but also indicates energetic preferences in the case of a few proteins governed by parallel folding processes.
机译:在过去的几年中,许多小的单域蛋白的折叠动力学已经通过突变Phi值分析得到了表征。在本文中,介绍了一种简单的,基本没有参数的模型,该模型通过最小化折叠过程中的熵闭环成本来从本机结构派生折叠路径。该模型预测结构元素(例如螺旋和β链对)的特征性折叠序列。根据一些简单的规则,可以从这些路线估算出这些结构元素的动力学影响,并将其与15种特征明确的小螺旋和链的平均实验Phi值进行比较。对于具有极化的Phi值分布的所有蛋白质,该比较平均得出0.62的相关系数;如果排除具有平均Phi值为负的分布,则相关系数为0.74。其余蛋白质的弥散Phi值分布正确再现。该模型显示,在二级结构元素上平均的Phi值分布通常可以追溯到熵闭环事件,但在少数蛋白质受到平行折叠过程控制的情况下,也表明了能量偏好。

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