Amsterdam Institute for Molecules, Medicines and Systems (AIMMS), Division of Medicinal Chemistry, Faculty of Science, Vrije Universiteit Amsterdam, De Boelelaan 1108, 1081 HZ, Amsterdam, The Netherlands.
Division of Physiology, Pharmacology and Neuroscience, School of Life Sciences, University of Nottingham, Nottingham, NG7 2UH, UK.
Sci Rep. 2019 May 27;9(1):7906. doi: 10.1038/s41598-019-44025-5.
Drug-target binding kinetics are suggested to be important parameters for the prediction of in vivo drug-efficacy. For G protein-coupled receptors (GPCRs), the binding kinetics of ligands are typically determined using association binding experiments in competition with radiolabelled probes, followed by analysis with the widely used competitive binding kinetics theory developed by Motulsky and Mahan. Despite this, the influence of the radioligand binding kinetics on the kinetic parameters derived for the ligands tested is often overlooked. To address this, binding rate constants for a series of histamine H receptor (HR) antagonists were determined using radioligands with either slow (low k) or fast (high k) dissociation characteristics. A correlation was observed between the probe-specific datasets for the kinetic binding affinities, association rate constants and dissociation rate constants. However, the magnitude and accuracy of the binding rate constant-values was highly dependent on the used radioligand probe. Further analysis using recently developed fluorescent binding methods corroborates the finding that the Motulsky-Mahan methodology is limited by the employed assay conditions. The presented data suggest that kinetic parameters of GPCR ligands depend largely on the characteristics of the probe used and results should therefore be viewed within the experimental context and limitations of the applied methodology.
药物-靶标结合动力学被认为是预测体内药物疗效的重要参数。对于 G 蛋白偶联受体(GPCR),配体的结合动力学通常使用与放射性标记探针竞争的结合结合实验来确定,然后使用由 Motulsky 和 Mahan 开发的广泛使用的竞争结合动力学理论进行分析。尽管如此,放射性配体结合动力学对所测试配体得出的动力学参数的影响往往被忽视。为了解决这个问题,使用具有缓慢(低 k)或快速(高 k)解离特性的放射性配体确定了一系列组胺 H 受体(HR)拮抗剂的结合速率常数。观察到动力学结合亲和力、缔合速率常数和解离速率常数的探针特异性数据集之间存在相关性。然而,结合速率常数值的大小和准确性高度依赖于所用的放射性配体探针。使用最近开发的荧光结合方法进行的进一步分析证实了 Motulsky-Mahan 方法学受到所采用的测定条件的限制。所提出的数据表明,GPCR 配体的动力学参数在很大程度上取决于所用探针的特性,因此结果应在实验背景和应用方法学的局限性内进行观察。