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蛋白质复合物对接与评分:CAPRI第3版。

Docking and scoring protein complexes: CAPRI 3rd Edition.

作者信息

Lensink Marc F, Méndez Raúl, Wodak Shoshana J

机构信息

Centre de Biologie Structurale et Bioinformatique, CP 263, BC6, Université Libre de Bruxelles, Blvd du Triomphe, 1050 Bruxelles, Belgium.

出版信息

Proteins. 2007 Dec 1;69(4):704-18. doi: 10.1002/prot.21804.

Abstract

The performance of methods for predicting protein-protein interactions at the atomic scale is assessed by evaluating blind predictions performed during 2005-2007 as part of Rounds 6-12 of the community-wide experiment on Critical Assessment of PRedicted Interactions (CAPRI). These Rounds also included a new scoring experiment, where a larger set of models contributed by the predictors was made available to groups developing scoring functions. These groups scored the uploaded set and submitted their own best models for assessment. The structures of nine protein complexes including one homodimer were used as targets. These targets represent biologically relevant interactions involved in gene expression, signal transduction, RNA, or protein processing and membrane maintenance. For all the targets except one, predictions started from the experimentally determined structures of the free (unbound) components or from models derived by homology, making it mandatory for docking methods to model the conformational changes that often accompany association. In total, 63 groups and eight automatic servers, a substantial increase from previous years, submitted docking predictions, of which 1994 were evaluated here. Fifteen groups submitted 305 models for five targets in the scoring experiment. Assessment of the predictions reveals that 31 different groups produced models of acceptable and medium accuracy-but only one high accuracy submission-for all the targets, except the homodimer. In the latter, none of the docking procedures reproduced the large conformational adjustment required for correct assembly, underscoring yet again that handling protein flexibility remains a major challenge. In the scoring experiment, a large fraction of the groups attained the set goal of singling out the correct association modes from incorrect solutions in the limited ensembles of contributed models. But in general they seemed unable to identify the best models, indicating that current scoring methods are probably not sensitive enough. With the increased focus on protein assemblies, in particular by structural genomics efforts, the growing community of CAPRI predictors is engaged more actively than ever in the development of better scoring functions and means of modeling conformational flexibility, which hold promise for much progress in the future.

摘要

通过评估2005年至2007年期间作为蛋白质相互作用预测关键评估(CAPRI)全社区实验第6 - 12轮一部分进行的盲预测,来评估原子尺度上预测蛋白质 - 蛋白质相互作用方法的性能。这些轮次还包括一个新的评分实验,在该实验中,预测者提供的更大一组模型可供开发评分函数的团队使用。这些团队对上传的模型集进行评分,并提交自己最好的模型进行评估。九个蛋白质复合物(包括一个同二聚体)的结构被用作目标。这些目标代表了参与基因表达、信号转导、RNA或蛋白质加工以及膜维持的生物学相关相互作用。对于除一个目标之外的所有目标,预测从游离(未结合)组分的实验确定结构或通过同源性推导的模型开始,这使得对接方法必须对通常伴随结合的构象变化进行建模。总共有63个团队和8个自动服务器提交了对接预测,与前几年相比大幅增加,其中1994个预测在此进行评估。15个团队为评分实验中的五个目标提交了305个模型。对预测的评估表明,除同二聚体外,对于所有目标,有31个不同的团队产生了可接受和中等准确性的模型,但只有一个高精度提交。在同二聚体的情况下(后者),没有一个对接程序能够重现正确组装所需的大构象调整,再次强调了处理蛋白质灵活性仍然是一个重大挑战。在评分实验中,很大一部分团队达到了从有限的贡献模型集合中从错误解决方案中挑选出正确关联模式的既定目标。但总体而言,他们似乎无法识别出最佳模型,表示当前的评分方法可能不够灵敏。随着对蛋白质组装的关注度增加,特别是通过结构基因组学的努力,CAPRI预测者群体比以往任何时候都更积极地参与开发更好的评分函数和构象灵活性建模方法,这有望在未来取得很大进展。

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