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组胺 H 受体上抗组胺药动力学结合特性的分子决定因素。

Molecular Determinants of the Kinetic Binding Properties of Antihistamines at the Histamine H Receptors.

机构信息

Department of Pharmacodynamics, Meiji Pharmaceutical University, 2-522-1 Noshio, Kiyose, Tokyo 204-8588, Japan.

Department of Medical Molecular Informatics, Meiji Pharmaceutical University, 2-522-1 Noshio, Kiyose, Tokyo 204-8588, Japan.

出版信息

Int J Mol Sci. 2021 Feb 27;22(5):2400. doi: 10.3390/ijms22052400.

Abstract

The binding affinity of ligands for their receptors is determined by their kinetic and thermodynamic binding properties. Kinetic analyses of the rate constants of association and dissociation ( and , respectively) of antihistamines have suggested that second-generation antihistamines have a long duration of action owing to the long residence time (1/) at the H receptors. In this study, we examined the relationship between the kinetic and thermodynamic binding properties of antihistamines, followed by an evaluation of the structural determinants responsible for their kinetic binding properties using quantitative structure-activity relationship (QSAR) analyses. We found that whereas the binding enthalpy and entropy might contribute to the increase and decrease, respectively, in the values, there was no significant relationship with the values. QSAR analyses indicated that and values could be determined by the descriptors FASA_H (water-accessible surface area of all hydrophobic atoms divided by total water-accessible surface area) and vsurf_CW2 (a 3D molecular field descriptor weighted by capacity factor 2, the ratio of the hydrophilic surface to the total molecular surface), respectively. These findings provide further insight into the mechanisms by which the kinetic binding properties of antihistamines are regulated by their thermodynamic binding forces and physicochemical properties.

摘要

配体与受体的结合亲和力取决于它们的动力学和热力学结合特性。抗组胺药的结合常数的动力学分析表明,第二代抗组胺药由于在 H 受体上的停留时间较长(1/),因此具有较长的作用持续时间。在这项研究中,我们研究了抗组胺药的动力学和热力学结合特性之间的关系,然后使用定量构效关系(QSAR)分析评估了其动力学结合特性的结构决定因素。我们发现,虽然结合焓和熵可能分别有助于增加和减少 值,但与 值没有显著关系。QSAR 分析表明, 和 值可以分别由描述符 FASA_H(所有疏水分子的可及表面积除以总可及表面积)和 vsurf_CW2(通过容量因子 2 加权的 3D 分子场描述符,亲水面与总分子表面的比值)来确定。这些发现进一步深入了解了动力学结合特性是如何受到热力学结合力和物理化学性质调节的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65de/7957501/90dcfaf141cc/ijms-22-02400-g001.jpg

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