Kinetic operational models of agonism for G-protein-coupled receptors

被引:21
|
作者
Hoare, Samuel R. J. [1 ]
Pierre, Nicolas [2 ]
Moya, Arturo Gonzalez [2 ]
Larson, Brad [3 ]
机构
[1] Pharmechanics LLC, 14 Sunnyside Dr South, Owego, NY 13827 USA
[2] Cisbio US, 135 South Rd, Bedford, MA 01730 USA
[3] BioTek Instruments Inc, 100 Tigan St, Winooski, VT 05404 USA
关键词
Drug discovery; Drug kinetics; Ligand binding; Receptor binding; Kinetics; Receptor theory; TARGET RESIDENCE TIME; BINDING-KINETICS; MATHEMATICAL-METHODS; LAPLACE TRANSFORM; DISSOCIATION RATE; RATE CONSTANTS; DRUG EFFICACY; CONCISE GUIDE; ACTIVATION; PHARMACOLOGY;
D O I
10.1016/j.jtbi.2018.02.014
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The application of kinetics to research and therapeutic development of G-protein-coupled receptors has become increasingly valuable. Pharmacological models provide the foundation of pharmacology, providing concepts and measurable parameters such as efficacy and potency that have underlain decades of successful drug discovery. Currently there are few pharmacological models that incorporate kinetic activity in such a way as to yield experimentally-accessible drug parameters. In this study, a kinetic model of pharmacological response was developed that provides a kinetic descriptor of efficacy (the transduction rate constant, k(tau)) and allows measurement of receptor-ligand binding kinetics from functional data. The model assumes: (1) receptor interacts with a precursor of the response ("Transduction potential") and converts it to the response. (2) The response can decay. Familiar response vs time plots emerge, depending on whether transduction potential is depleted and/or response decays. These are the straight line, the "association" exponential curve, and the rise-and-fall curve. Convenient, familiar methods are described for measuring the model parameters and files are provided for the curve-fitting program Prism (GraphPad Software) that can be used as a guide. The efficacy parameter k(tau) is straightforward to measure and accounts for receptor reserve; all that is required is measurement of response over time at a maximally-stimulating concentration of agonist. The modular nature of the model framework allows it to be extended. Here this is done to incorporate antagonist-receptor binding kinetics and slow agonist-receptor equilibration. In principle, the modular framework can incorporate other cellular processes, such as receptor desensitization. The kinetic response model described here can be applied to measure kinetic pharmacological parameters than can be used to advance the understanding of GPCR pharmacology and optimize new and improved therapeutics. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:168 / 204
页数:37
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