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首页> 外文期刊>Journal of Medicinal Chemistry >Ligand Binding Thermodynamics in Drug Discovery: Still a Hot Tip?
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Ligand Binding Thermodynamics in Drug Discovery: Still a Hot Tip?

机译:药物发现中的配体结合热力学:还是一个热门提示?

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The use of ligand binding thermodynamics has been proposed as a potential success factor to accelerate drug discovery. However, despite the intuitive appeal of optimizing binding enthalpy, a number of factors complicate routine use of thermodynamic data. On a macroscopic level, a range of experimental parameters including temperature and buffer choice significantly influence the observed thermodynamic signatures. On a microscopic level, solute effects, structural flexibility, and cooperativity lead to nonlinear changes in enthalpy. This multifactorial character hides essential enthalpy contributions of intermolecular contacts, making them experimentally nonobservable. In this perspective, we present three case studies, reflect on some key factors affecting thermodynamic signatures, and investigate their relation to the hydrophobic effect, enthalpy entropy compensation, lipophilic ligand efficiency, and promiscuity. The studies highlight that enthalpy and entropy cannot be used as direct end points but can together with calculations increase our understanding of ligand binding and identify interesting outliers that do not behave as expected.
机译:已经提出使用配体结合热力学作为加速药物发现的潜在成功因素。然而,尽管优化结合焓具有直观的吸引力,但是许多因素使热力学数据的常规使用变得复杂。在宏观层面上,包括温度和缓冲液选择在内的一系列实验参数会显着影响观察到的热力学特征。在微观层面上,溶质效应,结构柔韧性和协作性会导致焓的非线性变化。这种多因素特征掩盖了分子间接触的基本焓贡献,从而使它们在实验上无法观察到。从这个角度出发,我们提供了三个案例研究,对影响热力学特征的一些关键因素进行了反思,并研究了它们与疏水作用,焓熵补偿,亲脂性配体效率和滥交的关系。研究强调,焓和熵不能用作直接终点,但可以与计算一起加深我们对配体结合的理解,并发现有趣的异常现象,其表现不如预期。

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