Pharmechanics LLC, 14 Sunnyside Drive South, Owego, NY, 13827, USA.
Montana Molecular, 366 Gallatin Park Dr. Suite A, Bozeman, MT, 59715, USA.
Sci Rep. 2020 Feb 4;10(1):1766. doi: 10.1038/s41598-020-58421-9.
The kinetics/dynamics of signaling are of increasing value for G-protein-coupled receptor therapeutic development, including spatiotemporal signaling and the kinetic context of biased agonism. Effective application of signaling kinetics to developing new therapeutics requires reliable kinetic assays and an analysis framework to extract kinetic pharmacological parameters. Here we describe a platform for measuring arrestin recruitment kinetics to GPCRs using a high quantum yield, genetically encoded fluorescent biosensor, and a data analysis framework to quantify the recruitment kinetics. The sensor enabled high temporal resolution measurement of arrestin recruitment to the angiotensin AT and vasopressin V receptors. The analysis quantified the initial rate of arrestin recruitment (k), a biologically-meaningful kinetic drug efficacy parameter, by fitting time course data using routine curve-fitting methods. Biased agonism was assessed by comparing k values for arrestin recruitment with those for Gq signaling via the AT receptor. The k ratio values were in good agreement with bias estimates from existing methods. This platform potentially improves and simplifies assessment of biased agonism because the same assay modality is used to compare pathways (potentially in the same cells), the analysis method is parsimonious and intuitive, and kinetic context is factored into the bias measurement.
信号转导的动力学/动态学对于 G 蛋白偶联受体治疗开发具有越来越大的价值,包括时空信号转导和偏向激动剂的动力学背景。将信号转导动力学有效地应用于开发新的治疗方法需要可靠的动力学测定法和分析框架,以提取动力学药理学参数。在这里,我们描述了一种使用高量子产率、基因编码荧光生物传感器测量 GPCR 衔接蛋白募集动力学的平台,以及一种用于量化募集动力学的数据分析框架。该传感器能够实现对血管紧张素 AT 和血管升压素 V 受体的衔接蛋白募集的高时间分辨率测量。通过使用常规曲线拟合方法拟合时间过程数据,该分析量化了衔接蛋白募集的初始速率(k),这是一个具有生物学意义的动力学药物功效参数。通过比较 AT 受体的衔接蛋白募集和 Gq 信号转导的 k 值来评估偏向激动剂。k 比值与现有方法的偏倚估计值吻合良好。由于该平台使用相同的测定模式来比较途径(可能在同一细胞中),分析方法简单直观,并且将动力学背景纳入了偏倚测量中,因此该平台有可能改善和简化偏向激动剂的评估。