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通过定量生物发光共振能量转移检测活细胞中的阿片受体同源和异源二聚化

Opioid receptor homo- and heterodimerization in living cells by quantitative bioluminescence resonance energy transfer.

作者信息

Wang Danxin, Sun Xiaochun, Bohn Laura M, Sadée Wolfgang

机构信息

Department of Pharmacology, School of Medicine and Public Health, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Mol Pharmacol. 2005 Jun;67(6):2173-84. doi: 10.1124/mol.104.010272. Epub 2005 Mar 18.

Abstract

Opioid receptors have been shown to dimerize or oligomerize among themselves and each other, affecting their functional properties. This study used bioluminescence resonance energy transfer (BRET) between the mu, delta, and kappa opioid receptors to study opioid receptor aggregation in transfected human embryonic kidney 293 cells. Titration of receptor levels indicated that all three opioid receptors have a similar affinity to form homo- or hetero-oligomers in combination with any other opioid receptor type. In contrast, none of the opioid receptors formed detectable oligomers with the muscarinic M2 receptor, indicating that interactions among opioid receptors are selective. The formation of opioid receptor dimers, rather than higher order oligomers, is supported by binding kinetics in competition experiments between labeled and unlabeled receptors. Opioid receptor dimerization occurred at physiological temperatures upon receptor biosynthesis, before trafficking to the plasma membrane. Moreover, using BRET, coimmunoprecipitation, receptor binding, and G protein coupling, we demonstrate for the first time functional mu opioid receptor-kappa opioid receptor heterodimerization. These combined results demonstrate that opioid receptors can undergo homo- and heterodimerization, a process with potential implications for opioid physiology and pharmacology.

摘要

阿片受体已被证明可在自身之间以及相互之间形成二聚体或寡聚体,从而影响其功能特性。本研究利用μ、δ和κ阿片受体之间的生物发光共振能量转移(BRET)来研究转染的人胚肾293细胞中的阿片受体聚集情况。受体水平的滴定表明,所有三种阿片受体与任何其他阿片受体类型结合形成同源或异源寡聚体的亲和力相似。相比之下,没有一种阿片受体与毒蕈碱M2受体形成可检测到的寡聚体,这表明阿片受体之间的相互作用具有选择性。标记受体与未标记受体之间的竞争实验中的结合动力学支持阿片受体二聚体而非高阶寡聚体的形成。阿片受体二聚化在生理温度下于受体生物合成时发生,在转运至质膜之前。此外,通过BRET、免疫共沉淀、受体结合和G蛋白偶联,我们首次证明了功能性μ阿片受体-κ阿片受体异二聚化。这些综合结果表明,阿片受体可发生同源和异源二聚化,这一过程对阿片生理学和药理学具有潜在影响。

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