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使用β-arrestin 和 miniGα 招募测定评估 A 腺苷受体的偏激动作用。

Assessment of biased agonism at the A adenosine receptor using β-arrestin and miniGα recruitment assays.

机构信息

Laboratory of Toxicology, Department of Bioanalysis, Faculty of Pharmaceutical Sciences, Ghent University, Campus Heymans, Ottergemsesteenweg 460, B-9000 Ghent, Belgium.

Laboratory of Bioorganic Chemistry, National Institute of Diabetes & Digestive & Kidney Diseases, National Institutes of Health, Bethesda, MD 20802, USA.

出版信息

Biochem Pharmacol. 2020 Jul;177:113934. doi: 10.1016/j.bcp.2020.113934. Epub 2020 Mar 26.

Abstract

The A adenosine receptor (AAR) is a G protein-coupled receptor that is involved in a wide variety of physiological and pathological processes, such as cancer. However, the use of compounds pharmacologically targeting this receptor remains limited in clinical practice, despite extensive efforts for compound synthesis. Moreover, the possible occurrence of biased agonism further complicates the interpretation of the functional characteristics of compounds. Hence the need for simple assays, which are comparable in terms of the used cell lines and read-out technique. We previously established a stable β-arrestin 2 (βarr2) bioassay, employing a simple, luminescent read-out via functional complementation of a split nanoluciferase enzyme. Here, we developed a complementary, new bioassay in which coupling of an engineered miniGα protein to activated AAR is monitored using a similar approach. Application of both bioassays for the concurrent determination of the potencies and efficacies of a set of 19 N-substituted adenosine analogues not only allowed for the characterization of structure-activity relationships, but also for the quantification of biased agonism. Although a broad distribution in potency and efficacy values was obtained within the test panel, no significant bias was observed toward either the βarr2 or miniGα pathway.

摘要

A 腺苷受体 (AAR) 是一种 G 蛋白偶联受体,参与多种生理和病理过程,如癌症。然而,尽管在化合物合成方面进行了广泛的努力,但是药理学上靶向该受体的化合物的应用在临床实践中仍然有限。此外,可能发生的偏激动作用进一步复杂化了对化合物功能特征的解释。因此,需要简单的测定方法,这些方法在使用的细胞系和读出技术方面具有可比性。我们之前建立了一种稳定的β-抑制蛋白 2(βarr2)生物测定法,采用通过分裂纳米荧光素酶酶的功能互补进行简单的发光读出。在这里,我们开发了一种互补的新生物测定法,其中通过类似的方法监测工程 miniGα 蛋白与激活的 AAR 的偶联。两种生物测定法的应用可同时测定一组 19 个 N-取代腺苷类似物的效力和效价,不仅允许对结构-活性关系进行表征,还可以对偏激动作用进行定量。尽管在测试面板中获得了效力和效价值的广泛分布,但在βarr2 或 miniGα 途径中没有观察到明显的偏向。

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