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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Biophysical and physicochemical methods differentiate highly ligand-efficient human D-amino acid oxidase inhibitors.
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Biophysical and physicochemical methods differentiate highly ligand-efficient human D-amino acid oxidase inhibitors.

机译:生物物理和物理化学方法可区分高度配体效率高的人D-氨基酸氧化酶抑制剂。

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摘要

Many early drug research efforts are too reductionist thereby not delivering key parameters such as kinetics and thermodynamics of target-ligand binding. A set of human D-Amino Acid Oxidase (DAAO) inhibitors 1-6 was applied to demonstrate the impact of key biophysical techniques and physicochemical methods in the differentiation of chemical entities that cannot be adequately distinguished on the basis of their normalized potency (ligand efficiency) values. The resulting biophysical and physicochemical data were related to relevant pharmacodynamic and pharmacokinetic properties. Surface Plasmon Resonance data indicated prolonged target-ligand residence times for 5 and 6 as compared to 1-4, based on the observed k(off) values. The Isothermal Titration Calorimetry-derived thermodynamic binding profiles of 1-6 to the DAAO enzyme revealed favorable contributions of both DeltaH and DeltaS to their DeltaG values. Surprisingly, the thermodynamic binding profile of 3 elicited a substantially higher favorable contribution of DeltaH to DeltaG in comparison with the structurally closely related fused bicyclic acid 4. Molecular dynamics simulations and free energy calculations of 1, 3, and 4 led to novel insights into the thermodynamic properties of the binding process at an atomic level and in the different thermodynamic signatures of 3 and 4. The presented holistic approach is anticipated to facilitate the identification of compounds with best-in-class properties at an early research stage.
机译:许多早期的药物研究工作都过于简化,因此无法提供关键参数,例如目标配体结合的动力学和热力学。应用了一组人类D-氨基酸氧化酶(DAAO)抑制剂1-6,以证明关键的生物物理技术和理化方法对化学实体分化的影响,这些化学实体的标准化效价(配体效率)无法充分区分)值。所得的生物物理和理化数据与相关的药效学和药代动力学性质有关。表面等离子体共振数据表明,基于观察到的k(off)值,与1-4相比,5和6的目标配体停留时间延长。等温滴定量热法得出的1-6与DAAO酶的热力学结合曲线表明DeltaH和DeltaS对其DeltaG值均具有有利作用。出乎意料的是,与结构上密切相关的稠合双环酸4相比,3的热力学结合特征引起了DeltaH对DeltaG的显着更高的有利贡献。分子动力学模拟和1、3和4的自由能计算带来了对在原子级和3和4的不同热力学特征下,结合过程的热力学性质。预期所提出的整体方法有助于在早期研究阶段鉴定具有最佳性质的化合物。

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