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Addressing recent docking challenges: A hybrid strategy to integrate template‐based and free protein‐protein docking

机译:解决最近的对接挑战:一种杂交策略,用于整合基于模板和游离蛋白质蛋白质对接的

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ABSTRACT Protein–protein docking is an important computational tool for predicting protein–protein interactions. With the rapid development of proteomics projects, more and more experimental binding information ranging from mutagenesis data to three‐dimensional structures of protein complexes are becoming available. Therefore, how to appropriately incorporate the biological information into traditional ab initio docking has been an important issue and challenge in the field of protein‐protein docking. To address these challenges, we have developed a Hybrid DOCKing protocol of template‐based and template‐free approaches, referred to as HDOCK. The basic procedure of HDOCK is to model the structures of individual components based on the template complex by a template‐based method if a template is available; otherwise, the component structures will be modeled based on monomer proteins by regular homology modeling. Then, the complex structure of the component models is predicted by traditional protein‐protein docking. With the HDOCK protocol, we have participated in the CPARI experiment for rounds 28‐35. Out of the 25 CASP‐CAPRI targets for oligomer modeling, our HDOCK protocol predicted correct models for 16 targets, ranking one of the top algorithms in this challenge. Our docking method also made correct predictions on other CAPRI challenges such as protein–peptide binding for 6 out of 8 targets and water predictions for 2 out of 2 targets. The advantage of our hybrid docking approach over pure template‐based docking was further confirmed by a comparative evaluation on 20 CASP‐CAPRI targets. Proteins 2017; 85:497–512. ? 2016 Wiley Periodicals, Inc.
机译:摘要蛋白质 - 蛋白酶对接是预测蛋白质 - 蛋白质相互作用的重要计算工具。随着蛋白质组学项目的快速发展,从诱变数据到蛋白质复合物的三维结构的越来越多的实验结合信息变得可用。因此,如何将生物信息适当地将生物信息纳入传统的AB Initio对接是蛋白质 - 蛋白蛋白对接领域的重要问题和挑战。为解决这些挑战,我们开发了一种基于模板和无模板方法的混合对接协议,称为HDOCK。 HDOCK的基本过程是通过基于模板的方法来模拟各个组件的结构,如果模板可用;否则,通过规则的同源造型,将基于单体蛋白质建模的组分结构。然后,通过传统的蛋白质对接预测组分模型的复杂结构。通过HDOCK协议,我们参与了CPARI实验,用于第28-35轮。除了低聚物建模的25个Casp-Capri靶标中,我们的HDOCK协议预测了16个目标的正确模型,在这一挑战中排名了顶级算法之一。我们的对接方法还对其他Capri挑战进行了正确预测,例如蛋白肽结合8个靶标和2个靶标的水预测。通过对20 Casp-Capri靶标的比较评估进一步证实了我们的混合基于模板的对接的混合对接方法的优点。蛋白质2017; 85:497-512。还2016 Wiley期刊,Inc。

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