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用于预测相互作用蛋白质环区的新计算方法。

New computational method for prediction of interacting protein loop regions.

机构信息

Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Proteins. 2010 May 15;78(7):1748-59. doi: 10.1002/prot.22690.

Abstract

Flexible loop regions of proteins play a crucial role in many biological functions such as protein-ligand recognition, enzymatic catalysis, and protein-protein association. To date, most computational methods that predict the conformational states of loops only focus on individual loop regions. However, loop regions are often spatially in close proximity to one another and their mutual interactions stabilize their conformations. We have developed a new method, titled CorLps, capable of simultaneously predicting such interacting loop regions. First, an ensemble of individual loop conformations is generated for each loop region. The members of the individual ensembles are combined and are accepted or rejected based on a steric clash filter. After a subsequent side-chain optimization step, the resulting conformations of the interacting loops are ranked by the statistical scoring function DFIRE that originated from protein structure prediction. Our results show that predicting interacting loops with CorLps is superior to sequential prediction of the two interacting loop regions, and our method is comparable in accuracy to single loop predictions. Furthermore, improved predictive accuracy of the top-ranked solution is achieved for 12-residue length loop regions by diversifying the initial pool of individual loop conformations using a quality threshold clustering algorithm.

摘要

蛋白质的柔性环区在许多生物功能中起着至关重要的作用,例如蛋白质-配体识别、酶催化和蛋白质-蛋白质相互作用。迄今为止,大多数预测环构象状态的计算方法仅关注单个环区。然而,环区通常在空间上彼此靠近,它们的相互作用稳定了它们的构象。我们开发了一种新方法,名为 CorLps,能够同时预测这种相互作用的环区。首先,为每个环区生成一组单个环构象。个体集合的成员组合在一起,并根据空间冲突过滤器接受或拒绝。在随后的侧链优化步骤之后,通过源自蛋白质结构预测的统计评分函数 DFIRE 对相互作用环的构象进行排名。我们的结果表明,使用 CorLps 预测相互作用的环优于顺序预测两个相互作用的环区,并且我们的方法在准确性上与单个环预测相当。此外,通过使用质量阈值聚类算法对单个环构象的初始池进行多样化,可将 12 残基长度环区的最优解的预测准确性提高。

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