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基于荧光素酶的分析方法可同时分析配体浓度和时间依赖性β-arrestin2 的募集。

Split luciferase-based assay for simultaneous analyses of the ligand concentration- and time-dependent recruitment of β-arrestin2.

机构信息

Institute of Pharmacy, University of Regensburg, Universitätsstraße 31, D-93053, Regensburg, Germany.

Institute of Pharmacy, University of Regensburg, Universitätsstraße 31, D-93053, Regensburg, Germany.

出版信息

Anal Biochem. 2019 May 15;573:8-16. doi: 10.1016/j.ab.2019.02.023. Epub 2019 Mar 8.

Abstract

Functional selectivity of agonists has gained increasing interest in G protein-coupled receptor (GPCR) research, e.g. due to expectations of drugs with reduced adverse effects. Different agonist-dependent GPCR conformations are conceived to selectively activate a balanced or imbalanced intracellular signalling response, involving e.g. different Gα subtypes, Gβγ-subunits and β-arrestins. To discriminate between the different signalling pathways (bias), sensitive techniques are needed that do not interfere with signalling. We applied split luciferase complementation to the GPCR/β-arrestin2 interaction and thoroughly analysed the influence of its implementation on intracellular signalling. This led to an assay enabling the functional characterization of ligands at the hHR, the hMR and the hNTSR in live HEK293T cells. As demonstrated at the hMR, the assay was sensitive enough to identify iperoxo as a superagonist. Time-dependent analyses of the recruitment of β-arrestin2 became possible, allowing the identification of class A and class B GPCRs, due to the differential duration of their interaction with β-arrestin2 and their recycling to the cell membrane. The developed β-arrestin2 recruitment assay, which provides concentration- and time-dependent information on the interaction between GPCRs and β-arrestin2 upon stimulation of the receptor, should be broadly applicable and of high value for the analysis of agonist bias.

摘要

激动剂的功能选择性在 G 蛋白偶联受体 (GPCR) 研究中引起了越来越多的关注,例如,人们期望开发出具有减少不良反应的药物。不同的激动剂依赖性 GPCR 构象被认为可以选择性地激活平衡或不平衡的细胞内信号反应,涉及例如不同的 Gα 亚型、Gβγ 亚基和β-arrestin。为了区分不同的信号通路(偏向),需要使用不干扰信号的敏感技术。我们将分裂荧光素互补应用于 GPCR/β-arrestin2 相互作用,并彻底分析了其实施对细胞内信号的影响。这导致了一种在活 HEK293T 细胞中能够对 hHR、hMR 和 hNTSR 中的配体进行功能表征的测定法。如在 hMR 中所示,该测定法足够灵敏,可以识别 iperoxo 作为超激动剂。由于它们与β-arrestin2 的相互作用持续时间不同,并且可以重新循环到细胞膜上,因此可以进行β-arrestin2 募集的时间依赖性分析,从而可以识别 A 类和 B 类 GPCR。所开发的β-arrestin2 募集测定法,在刺激受体时提供了关于 GPCR 和β-arrestin2 之间相互作用的浓度和时间依赖性信息,应该具有广泛的适用性,并且对于分析激动剂偏向具有很高的价值。

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