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使用荧光激动剂直接可视化腺苷A3受体的内化及与阻遏蛋白3的定位。

Direct visualisation of internalization of the adenosine A3 receptor and localization with arrestin3 using a fluorescent agonist.

作者信息

Stoddart Leigh A, Vernall Andrea J, Briddon Stephen J, Kellam Barrie, Hill Stephen J

机构信息

Cell Signalling Research Group, School of Life Sciences, Queen's Medical Centre, University of Nottingham, NG7 2UH, UK.

School of Pharmacy, Centre for Biomolecular Sciences, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

出版信息

Neuropharmacology. 2015 Nov;98:68-77. doi: 10.1016/j.neuropharm.2015.04.013. Epub 2015 Apr 30.

Abstract

Fluorescence based probes provide a novel way to study the dynamic internalization process of G protein-coupled receptors (GPCRs). Recent advances in the rational design of fluorescent ligands for GPCRs have been used here to generate new fluorescent agonists containing tripeptide linkers for the adenosine A3 receptor. The fluorescent agonist BY630-X-(D)-A-(D)-A-G-ABEA was found to be a highly potent agonist at the adenosine A3 receptor in both reporter gene (pEC50 = 8.48 ± 0.09) and internalization assays (pEC50 = 7.47 ± 0.11). Confocal imaging studies showed that BY630-X-(D)-A-(D)-A-G-ABEA was internalized with A3 linked to yellow fluorescent protein, which was blocked by the competitive antagonist MRS1220. Internalization of untagged adenosine A3 could also be visualized with BY630-X-(D)-A-(D)-A-G-ABEA treatment. Further, BY630-X-(D)-A-(D)-A-G-ABEA stimulated the formation of receptor-arrestin3 complexes and was found to localize with these intracellular complexes. This highly potent agonist with excellent imaging properties should be a valuable tool to study receptor internalization. This article is part of the Special Issue entitled 'Fluorescent Tools in Neuropharmacology'.

摘要

基于荧光的探针为研究G蛋白偶联受体(GPCRs)的动态内化过程提供了一种新方法。本文利用GPCRs荧光配体合理设计的最新进展,生成了含三肽接头的新型荧光激动剂,用于腺苷A3受体。荧光激动剂BY630-X-(D)-A-(D)-A-G-ABEA在报告基因(pEC50 = 8.48 ± 0.09)和内化试验(pEC50 = 7.47 ± 0.11)中均被发现是腺苷A3受体的高效激动剂。共聚焦成像研究表明,BY630-X-(D)-A-(D)-A-G-ABEA与连接黄色荧光蛋白的A3一起内化,这一过程被竞争性拮抗剂MRS1220阻断。用BY630-X-(D)-A-(D)-A-G-ABEA处理也可观察到未标记的腺苷A3的内化。此外,BY630-X-(D)-A-(D)-A-G-ABEA刺激了受体-阻遏蛋白3复合物的形成,并发现其与这些细胞内复合物共定位。这种具有优异成像特性的高效激动剂应是研究受体内化的有价值工具。本文是名为“神经药理学中的荧光工具”特刊的一部分。

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