首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Photobleaching fluorescence resonance energy transfer reveals ligand-induced oligomer formation of human somatostatin receptor subtypes.
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Photobleaching fluorescence resonance energy transfer reveals ligand-induced oligomer formation of human somatostatin receptor subtypes.

机译:光漂白荧光共振能量转移揭示了人类生长抑素受体亚型的配体诱导的低聚物形成。

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摘要

The existence of dimers and higher oligomers of G-protein-coupled receptors (GPCRs) has been frequently reported using strategies based on coimmunoprecipitation or Western blot assays. These methods rely on highly artificial systems with overexpressed receptors, resulting in conflicting observations on the question of whether GPCR dimers are preformed or are formed in response to agonist treatment. Fluorescence resonance energy transfer (FRET) microscopy is a superior and less perturbing technique which can be performed on selected cell regions, e.g., plasma membrane of intact cells with a sensitivity high enough to allow study under physiological levels of receptor expression. Here we describe the application of photobleaching (pb) FRET microscopy for investigating ligand-dependent oligomerization of somatostatin receptors. Procedures for the introduction of suitable donor-acceptor fluorophores in a given GPCR are described. The competitive nature of FRET and photobleaching is exploited to enable the indirect measurement of FRET via its effect on donor photobleaching lifetimes on a pixel-by-pixel basis. The method allows enhanced resolution between 10 and 100A and represents a sensitive and specific biophysical tool for characterizing the assembly and regulation of GPCR oligomers on the cell surface.
机译:使用基于共免疫沉淀或蛋白质印迹分析的策略,经常报告G蛋白偶联受体(GPCR)二聚体和高级寡聚体的存在。这些方法依赖于具有过度表达的受体的高度人工系统,从而导致关于GPCR二聚体是预先形成还是响应激动剂形成而产生的相互矛盾的观察结果。荧光共振能量转移(FRET)显微镜是一种优越且干扰较小的技术,可以在选定的细胞区域(例如完整细胞的质膜)上执行,其灵敏度足以在受体表达的生理水平下进行研究。在这里,我们描述了光漂白(pb)FRET显微镜在研究生长抑素受体的配体依赖性寡聚中的应用。描述了在给定的GPCR中引入合适的供体-受体荧光团的程序。利用FRET和光漂白的竞争性质,可以通过逐个像素地影响供体光漂白寿命来间接测量FRET。该方法可在10至100A之间实现更高的分辨率,并且代表了一种灵敏而特异的生物物理工具,用于表征细胞表面GPCR寡聚体的组装和调控。

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