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Ranking multiple docking solutions based on the conservation of inter-residue contacts

机译:根据残基间接触的保留对多个对接解决方案进行排名

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Molecular docking is the method of choice for investigating the molecular basis of recognition in a large number of functional protein complexes. However, correctly scoring the obtained docking solutions (decoys) to rank native-like (NL) conformations in the top positions is still an open problem. Herein we present CONSRANK, a simple and effective tool to rank multiple docking solutions, which relies on the conservation of inter-residue contacts in the analyzed decoys ensemble. First it calculates a conservation rate for each inter-residue contact, then it ranks decoys according to their ability to match the more frequently observed contacts. We applied CONSRANK to 102 targets from three different benchmarks, RosettaDock, DOCKGROUND, and Critical Assessment of PRedicted Interactions (CAPRI). The method performs consistently well, both in terms of NL solutions ranked in the top positions and of values of the area under the receiver operating characteristic curve. Its ideal application is to solutions coming from different docking programs and procedures, as in the case of CAPRI targets. For all the analyzed CAPRI targets where a comparison is feasible, CONSRANK outperforms the CAPRI scorers. The fraction of NL solutions in the top ten positions in the RosettaDock, DOCKGROUND, and CAPRI benchmarks is enriched on average by a factor of 3.0, 1.9, and 9.9, respectively. Interestingly, CONSRANK is also able to specifically single out the high/medium quality (HMQ) solutions from the docking decoys ensemble: it ranks 46.2 and 70.8% of the total HMQ solutions available for the RosettaDock and CAPRI targets, respectively, within the top 20 positions.
机译:分子对接是研究大量功能蛋白复合物中识别分子基础的一种选择方法。然而,正确地对获得的对接溶液(诱饵)评分以将天然(NL)构象排列在最高位置仍然是一个未解决的问题。在这里,我们介绍CONSRANK,这是一种简单有效的工具,可以对多个对接解决方案进行排名,它依赖于所分析诱饵集合中残基间接触的保守性。首先,它计算每个残基间接触的保守率,然后根据诱饵与更频繁观察到的接触相匹配的能力对诱饵进行排名。我们将CONSRANK应用于来自三个不同基准(RosettaDock,DOCKGROUND和PRedicted交互的关键评估(CAPRI))的102个目标。该方法在排名靠前的NL解和接收机工作特性曲线下的面积值方面均表现良好。它的理想应用是针对来自不同对接程序和过程的解决方案,例如CAPRI目标。对于所有比较可行的已分析CAPRI目标,CONSRANK均胜过CAPRI评分器。 RosettaDock,DOCKGROUND和CAPRI基准测试中前十名中的NL解决方案比例平均分别增加了3.0、1.9和9.9倍。有趣的是,CONSRANK还能够从对接诱饵系统中特别挑选出高/中质(HMQ)解决方案:在前20名中,RosettaDock和CAPRI目标的HMQ解决方案总数分别占46.2和70.8%。职位。

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