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首页> 外文期刊>Current Medicinal Chemistry >Targeting Protein-Protein Interactions with Small Molecules: Challenges and Perspectives for omputational Binding Epitope Detection and Ligand Finding
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Targeting Protein-Protein Interactions with Small Molecules: Challenges and Perspectives for omputational Binding Epitope Detection and Ligand Finding

机译:靶向蛋白质与小分子的相互作用:omputational结合表位检测和配体的挑战和前景。

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A promising way to interfere with biological processes is through the control of protein-protein interactions by means of small molecules that modulate the formation of protein-protein complexes. Although the feasibility of this approach has been demonstrated in principle by recent results, many of the smallmolecule modulators known to date have not been found by rational design approaches. In large part this is due to the challenges that one faces in dealing with protein binding epitopes compared to, e.g., enzyme binding pockets.nnRecent advances in the understanding of the energetics and dynamics of protein binding interfaces and methodological developments in the field of structure-based drug design methods may open up a way to apply rational design approaches also for finding protein-protein interaction modulators. These advances and developments include (I) computational approaches to dissect binding interfaces in terms of energetic contributions of single residues (to identify hot spot residues), (II) prediction of potential binding sites from unbound protein structures, (III) recognition of allosteric binding sites as alternatives to directly targeting interfaces, (IV) docking approaches that consider protein flexibility and improved descriptions of the solvent influence on electrostatic interactions, and (V) data-driven docking approaches.nnHere, we will summarize these developments with a particular emphasis on their applicability to screen for or design small-molecule modulators of protein-protein interactions.
机译:干扰生物过程的一种有前途的方法是通过调节蛋白质-蛋白质复合物形成的小分子控制蛋白质-蛋白质相互作用。尽管原则上已通过最近的结果证明了该方法的可行性,但迄今为止,许多已知的小分子调节剂尚未通过合理的设计方法找到。在很大程度上,这是由于与酶结合袋相比,人们在处理蛋白结合表位时面临的挑战。nnRecent在理解蛋白结合界面的能量学和动力学以及结构领域的方法学发展方面取得了进步基于药物的设计方法可能会开辟一种方法,将合理的设计方法也用于寻找蛋白质-蛋白质相互作用调节剂。这些进步和发展包括(I)根据单个残基的能量贡献(识别热点残基)剖析结合界面的计算方法,(II)从未结合的蛋白质结构预测潜在的结合位点,(III)变构结合的识别网站作为直接靶向界面的替代方法,(IV)考虑蛋白质灵活性并改进了溶剂对静电相互作用影响的描述的对接方法,以及(V)数据驱动的对接方法.nn在此,我们将重点总结这些进展它们适用于筛选或设计蛋白质相互作用的小分子调节剂。

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