首页> 美国卫生研究院文献>Biochemical Journal >Homo- and hetero-oligomeric interactions between G-protein-coupled receptors in living cells monitored by two variants of bioluminescence resonance energy transfer (BRET): hetero-oligomers between receptor subtypes form more efficiently than between less closely related sequences.
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Homo- and hetero-oligomeric interactions between G-protein-coupled receptors in living cells monitored by two variants of bioluminescence resonance energy transfer (BRET): hetero-oligomers between receptor subtypes form more efficiently than between less closely related sequences.

机译:通过生物发光共振能量转移(BRET)的两个变体监测活细胞中G蛋白偶联受体之间的同质和异源寡聚相互作用:受体亚型之间的异源寡聚体比不那么紧密相关的序列之间形成的效率更高。

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摘要

Homo- and hetero-oligomerization of G-protein-coupled receptors (GPCRs) were examined in HEK-293 cells using two variants of bioluminescence resonance energy transfer (BRET). BRET(2) (a variant of BRET) offers greatly improved separation of the emission spectra of the donor and acceptor moieties compared with traditional BRET. Previously recorded homo-oligomerization of the human delta-opioid receptor was confirmed using BRET(2). Homo-oligomerization of the kappa-opioid receptor was observed using both BRET techniques. Both homo- and hetero-oligomers, containing both delta- and kappa-opioid receptors, were unaffected by the presence of receptor ligands. BRET detection of opioid receptor homo- and hetero-oligomers required expression of 50,000-100,000 copies of the receptor energy acceptor construct per cell. The effectiveness of delta-kappa-opioid receptor hetero-oligomer formation was as great as for homomeric interactions. The capacity of the two opioid receptors to form oligomeric complexes with the beta(2)-adrenoceptor was also assessed. Although such interactions were detected, at least 250,000 copies per cell of the energy acceptor were required. Requirement for high levels of receptor expression was equally pronounced in attempts to measure hetero-oligomer formation between the kappa-opioid receptor and the thyrotropin-releasing hormone receptor-1. These studies indicate that constitutively formed homo- and hetero-oligomers of opioid receptor subtypes can be detected in living cells containing less than 100,000 copies of the receptors. However, although hetero-oligomeric interactions between certain less closely related GPCRs can be detected, they appear to be of lower affinity than homo- or hetero-oligomers containing closely related sequences. Interactions recorded between certain GPCR family members in heterologous expression systems are likely to be artefacts of extreme levels of overexpression.
机译:使用生物发光共振能量转移(BRET)的两个变体,在HEK-293细胞中检查了G蛋白偶联受体(GPCR)的均聚和异聚。与传统的BRET相比,BRET(2)(BRET的变体)极大地改善了供体和受体部分的发射光谱分离。使用BRET(2)证实了先前记录的人类δ阿片受体的均聚。使用两种BRET技术均观察到了阿片受体的均聚。含有δ-阿片受体和κ-阿片受体的均聚物和杂聚物均不受受体配体的影响。 BRET检测阿片受体均聚物和异源寡聚物需要每个细胞表达50,000-100,000拷贝的受体能量受体构建体。 δ-阿片受体异质低聚物形成的有效性与同聚体相互作用一样有效。还评估了两个阿片受体与β(2)-肾上腺素受体形成寡聚复合物的能力。尽管检测到这种相互作用,但每个单元的能量受体至少需要250,000拷贝。在尝试测量κ阿片受体与促甲状腺激素释放激素受体-1之间的异源寡聚体形成方面,对高水平受体表达的要求也同样明显。这些研究表明,在包含少于100,000个受体拷贝的活细胞中,可以检测到阿片受体亚型的组成性形成的同型和异型寡聚体。但是,尽管可以检测到某些不太紧密相关的GPCR之间的异源寡聚体相互作用,但它们似乎比包含紧密相关序列的同源或异源寡聚体的亲和力低。异源表达系统中某些GPCR家族成员之间记录的相互作用可能是极端过表达水平的假象。

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