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基于天然态几何结构预测折叠速率和过渡态位置。

Prediction of folding rates and transition-state placement from native-state geometry.

作者信息

Micheletti Cristian

机构信息

International School for Advanced Studies (SISSA) and INFM, Trieste, Italy.

出版信息

Proteins. 2003 Apr 1;51(1):74-84. doi: 10.1002/prot.10342.

Abstract

A variety of experimental and theoretical studies have established that the folding process of monomeric proteins is strongly influenced by the topology of the native state. In particular, folding times have been shown to correlate well with the contact order, a measure of contact locality. Our investigation focuses on identifying additional topologic properties that correlate with experimentally measurable quantities, such as folding rates and transition-state placement, for both two- and three-state folders. The validation against data from 40 experiments shows that a particular topological property that measures the interdependence of contacts, termed cliquishness or clustering coefficient, can account with statistically significant accuracy both for the transition state placement and especially for folding rates. The observed correlations can be further improved by optimally combining the distinct topological information captured by cliquishness and contact order.

摘要

大量实验和理论研究表明,单体蛋白质的折叠过程受天然态拓扑结构的强烈影响。特别是,折叠时间已被证明与接触序密切相关,接触序是一种衡量接触局部性的指标。我们的研究重点是确定与实验可测量量相关的其他拓扑性质,如两态和三态折叠蛋白的折叠速率和过渡态位置。对40个实验数据的验证表明,一种衡量接触相互依赖性的特定拓扑性质,称为聚集性或聚类系数,在统计上具有显著的准确性,既可以解释过渡态位置,尤其是折叠速率。通过最佳组合由聚集性和接触序所捕获的不同拓扑信息,可进一步改善所观察到的相关性。

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