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Structural biology and drug discovery for protein-protein interactions

机译:蛋白质-蛋白质相互作用的结构生物学和药物发现

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Although targeting protein-protein interfaces of regulatory multiprotein complexes has become a significant focus in drug discovery, it continues to pose major challenges. Most interfaces would be classed as 'undruggable' by conventional analyses, as they tend to be large, flat and featureless. Over the past decade, encouragement has come from the discovery of hotspots that contribute much of the free energy of interaction, and this has led to the development of tethering methods that target small molecules to these sites, often inducing adaptive changes. Equally important has been the recognition that many protein-protein interactions involve a continuous epitope of one partner and a well-defined groove or series of specific small pockets. These observations have stimulated the development of stapled α-helical peptides and other proteomimetic approaches. They have also led to the realisation that fragments might gain low-affinity 'footholds' on some protein-protein interfaces, and that these fragments might be elaborated to useful modulators of the interactions.
机译:尽管靶向调节性多蛋白复合物的蛋白-蛋白界面已成为药物发现中的重要重点,但它继续构成重大挑战。传统的分析方法将大多数界面归类为“难以吸收”,因为它们往往较大,平坦且无特征。在过去的十年中,发现热点贡献了很大的动力,这些热点贡献了相互作用的大部分自由能,这导致了将小分子靶向这些位点的束缚方法的发展,通常会引起适应性变化。同样重要的是,认识到许多蛋白质-蛋白质相互作用涉及一个伴侣的连续表位和明确定义的凹槽或一系列特定的小口袋。这些发现刺激了钉合α-螺旋肽和其他蛋白质模拟方法的发展。他们还导致人们意识到片段可能会在某些蛋白质-蛋白质界面上获得低亲和力的“立足点”,并且这些片段可能被精制为相互作用的有用调节剂。

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