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Computational drug design targeting protein-protein interactions

机译:针对蛋白质-蛋白质相互作用的计算药物设计

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摘要

Novel discoveries in molecular disease pathways within the cell, combined with increasing information regarding protein binding partners has lead to a new approach in drug discovery. There is interest in designing drugs to modulate protein-protein interactions as opposed to solely targeting the catalytic active site within a single enzyme or protein. There are many challenges in this new approach to drug discovery, particularly since the protein-protein interface has a larger surface area, can comprise a discontinuous epitope, and is more amorphous and less well defined than the typical drug design target, a small contained enzyme-binding pocket. Computational methods to predict modes of protein-protein interaction, as well as protein interface hot spots, have garnered significant interest, in order to facilitate the development of drugs to successfully disrupt and inhibit protein-protein interactions. This review summarizes some current methods available for computational protein-protein docking, as well as tabulating some examples of the successful design of antagonists and small molecule inhibitors for protein-protein interactions. Several of these drugs are now beginning to appear in the clinic.
机译:细胞内分子疾病途径的新发现,加上有关蛋白质结合伴侣的信息不断增加,已导致药物发现的新方法。与仅靶向单一酶或蛋白质内的催化活性位点相反,设计药物来调节蛋白质-蛋白质相互作用是令人感兴趣的。这种新的药物发现方法面临许多挑战,特别是因为蛋白质-蛋白质界面具有较大的表面积,可以包含不连续的表位,并且比典型的药物设计目标(一种含酶少的酶)具有更多的无定形性和较差的定义装订袋。预测蛋白质-蛋白质相互作用方式以及蛋白质界面热点的计算方法已经引起了广泛的兴趣,以促进药物开发成功地破坏和抑制蛋白质-蛋白质相互作用。这篇综述总结了一些目前可用于蛋白质对蛋白质计算的方法,并列出了成功设计蛋白质和蛋白质相互作用的拮抗剂和小分子抑制剂的一些实例。这些药物中的几种现在已经开始出现在临床中。

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