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MEGADOCK-Web: an integrated database of high-throughput structure-based protein-protein interaction predictions

机译:Megadock-Web:一种基于高通量结构的蛋白质 - 蛋白质相互作用预测的集成数据库

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Background: Protein-protein interactions (PPIs) play several roles in living cells, and computational PPI prediction is a major focus of many researchers. The three-dimensional (3D) structure and binding surface are important for the design of PPI inhibitors. Therefore, rigid body protein-protein docking calculations for two protein structures are expected to allow elucidation of PPIs different from known complexes in terms of 3D structures because known PPI information is not explicitly required. Wehave developed rapid PPI prediction software based on protein-protein docking, called MEGADOCK. In order to fully utilize the benefits of computational PPI predictions, it is necessary to construct a comprehensive database to gather prediction results and their predicted 3D complex structures and to make them easily accessible. Although several databases exist that provide predicted PPIs, the previous databases do not contain a sufficient number of entries for the purpose of discovering novel PPIs.Results: In this study, we constructed an integrated database of MEGADOCK PPI predictions, named MEGADOCK-Web. MEGADOCK-Web provides more than 10 times the number of PPI predictions than previous databases and enables users to conduct PPI predictions that cannot be found in conventional PPI prediction databases. In MEGADOCK-Web, there are 7528 protein chains and 28,331,628 predicted PPIs from all possible combinations of those proteins. Each protein structure is annotated with PDB ID, chain ID, UniProtAC, related KEGG pathway IDs, and known PPI pairs. Additionally, MEGADOCK-Web provides four powerful functions: 1) searching precalculated PPI predictions, 2) providing annotations for each predicted protein pair with an experimentally known PPI, 3) visualizing candidates that may interact with the query protein on biochemical pathways, and 4) visualizing predicted complex structures through a 3D molecular viewer.Conclusion: MEGADOCK-Web provides a huge amount of comprehensive PPI predictions based on docking calculations with biochemical pathways and enables users to easily and quickly assess PPI feasibilities by archiving PPI predictions. MEGADOCK-Web also promotes the discovery of new PPIs and protein functions and is freely available for use at http://www.bi.cs.titech.ac.jp/nnegadock-web/.
机译:背景:蛋白质 - 蛋白质相互作用(PPI)在活细胞中发挥几种作用,并且计算PPI预测是许多研究人员的主要焦点。三维(3D)结构和粘合表面对于PPI抑制剂的设计是重要的。因此,预期两种蛋白质结构的刚性体蛋白 - 蛋白 - 蛋白酶对接计算,以允许在3D结构方面阐明与已知复合物不同的PPI,因为未明确地要求已知的PPI信息。 Wehave基于蛋白质 - 蛋白质对接的快速PPI预测软件,称为Megadock。为了充分利用计算PPI预测的益处,需要构建一个综合的数据库以收集预测结果和预测的3D复杂结构,并使其容易地访问。虽然存在提供预测的PPI的几个数据库,但前一个数据库不包含足够数量的条目,以便发现新的PPIS.Results:在本研究中,我们构建了一个名为Megadock-Web的Megadock PPI预测的集成数据库。 MegAdock-Web提供超过前一个数据库的PPI预测数量的10多倍,使用户能够在传统的PPI预测数据库中进行无法找到的PPI预测。在Megadock-Web中,有7528个蛋白质链和28,331,628个预测的PPI从这些蛋白质的所有可能组合。每个蛋白质结构用PDB ID,链ID,UNIPROTAC,相关的KEGG途径ID和已知的PPI对注释。此外,MegAdock-Web提供了四种功能:1)搜索预测的PPI预测,2)为每个预测的蛋白质对的注释与实验已知的PPI,3)可视化可与生物化学途径上的查询蛋白相互作用,以及4)通过3D分子观众可视化预测的复杂结构。结论:Megadock-Web基于使用生物化学途径的对接计算提供了大量的全面的PPI预测,使用户能够通过归档PPI预测来轻松快速地评估PPI的可行性。 Megadock-Web还促进了新的PPI和蛋白质功能的发现,并自由地用于http://www.bi.cs.titech.ac.jp/nnegadock-web/。

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