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Protein-protein interactions: network analysis and applications in drug discovery

机译:蛋白质 - 蛋白质相互作用:网络分析和药物发现中的应用

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摘要

Physical interactions among proteins constitute the backbone of cellular function, making them an attractive source of therapeutic targets. Although the challenges associated with targeting protein-protein interactions (PPIs) -in particular with small molecules are considerable, a growing number of functional PPI modulators is being reported and clinically evaluated. An essential starting point for PPI inhibitor screening or design projects is the generation of a detailed map of the human interactome and the interactions between human and pathogen proteins. Different routes to produce these biological networks are being combined, including literature curation and computational methods. Experimental approaches to map PPIs mainly rely on the yeast two-hybrid (Y2H) technology, which have recently shown to produce reliable protein networks. However, other genetic and biochemical methods will be essential to increase both coverage and resolution of current protein networks in order to increase their utility towards the identification of novel disease-related proteins and PPIs, and their potential use as therapeutic targets.
机译:蛋白质之间的物理相互作用构成细胞功能的骨干,使其成为治疗靶标的诱人来源。尽管与靶向蛋白质-蛋白质相互作用(PPI)有关的挑战(尤其是与小分子有关)面临巨大挑战,但正在报道和临床评估越来越多的功能性PPI调节剂。 PPI抑制剂筛选或设计项目的基本出发点是生成人类相互作用组以及人类与病原体蛋白之间相互作用的详细图谱。正在组合产生这些生物网络的不同途径,包括文献管理和计算方法。绘制PPI的实验方法主要依赖于酵母双杂交(Y2H)技术,该技术最近已显示可产生可靠的蛋白质网络。但是,其他遗传和生化方法对于增加当前蛋白质网络的覆盖率和分辨率将是必不可少的,以便增加其在鉴定新型疾病相关蛋白质和PPI以及将其潜在用作治疗靶标方面的效用。

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