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首页> 外文期刊>Journal of Medicinal Chemistry >DARC: Mapping Surface Topography by Ray-Casting for Effective Virtual Screening at Protein Interaction Sites
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DARC: Mapping Surface Topography by Ray-Casting for Effective Virtual Screening at Protein Interaction Sites

机译:DARC:通过射线铸模绘制表面形貌,以在蛋白质相互作用位点进行有效的虚拟筛选

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Protein-protein interactions represent an exciting and challenging target class for therapeutic intervention using small molecules. Protein interaction sites are often devoid of the deep surface pockets presented by "traditional" drug targets, and crystal structures reveal that inhibitors typically engage these sites using very shallow binding modes. As a consequence, modern virtual screening tools developed to identify inhibitors of traditional drug targets do not perform as well when they are instead deployed at protein interaction sites. To address the need for novel inhibitors of important protein interactions, here we introduce an alternate docking strategy specifically designed for this regime. Our method, termed DARC (Docking Approach using Ray-Casting), matches the topography of a surface pocket "observed" from within the protein to the topography "observed" when viewing a potential ligand from the same vantage point. We applied DARC to carry out a virtual screen against the protein interaction site of human antiapoptotic protein Md-1 and found that four of the top-scoring 21 compounds showed clear inhibition in a biochemical assay. The K-i values for these compounds ranged from 1.2 to 21 mu M, and each had ligand efficiency comparable to promising small-molecule inhibitors of other protein protein interactions. These hit compounds do not resemble the natural (protein) binding partner of Mcl-1, nor do they resemble any known inhibitors of Md-1. Our results thus demonstrate the utility of DARC for identifying novel inhibitors of protein-protein interactions.
机译:蛋白质-蛋白质相互作用代表了使用小分子进行治疗干预的令人兴奋且具有挑战性的目标类别。蛋白质相互作用位点通常没有“传统”药物靶标所呈现的深层表面囊袋,并且晶体结构显示抑制剂通常使用非常浅的结合模式来结合这些位点。结果,开发用于识别传统药物靶标抑制剂的现代虚拟筛选工具在将其部署在蛋白质相互作用位点时表现不佳。为了满足对重要蛋白质相互作用的新型抑制剂的需求,我们在此介绍了专门为该方案设计的替代对接策略。我们的方法称为DARC(使用射线铸造的对接方法),当从同一有利位置观察潜在的配体时,将从蛋白质内部“观察到”的表面袋形貌与“观察到”的形貌相匹配。我们应用DARC对人抗凋亡蛋白Md-1的蛋白相互作用位点进行了虚拟筛选,发现在生物化学分析中,得分最高的21种化合物中有4种表现出明显的抑制作用。这些化合物的K-i值在1.2至21μM之间,并且每个配体的效率都可与其他蛋白质相互作用的有希望的小分子抑制剂相媲美。这些命中的化合物既不类似于Mcl-1的天然(蛋白质)结合伴侣,也不类似于任何已知的Md-1抑制剂。因此,我们的结果证明了DARC在鉴定蛋白-蛋白相互作用的新型抑制剂方面的实用性。

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