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Bioluminescence Resonance Energy Transfer Assays Reveal Ligand-specific Conformational Changes within Preformed Signaling Complexes Containing δ-Opioid Receptors and Heterotrimeric G Proteins*S⃞

机译:生物发光共振能量转移分析揭示了含δ-阿片受体和异三聚体G蛋白*S⃞的信号传导复合物中特定配体的构象变化

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摘要

Heptahelical receptors communicate extracellular information to the cytosolic compartment by binding an extensive variety of ligands. They do so through conformational changes that propagate to intracellular signaling partners as the receptor switches from a resting to an active conformation. This active state has been classically considered unique and responsible for regulation of all signaling pathways controlled by a receptor. However, recent functional studies have challenged this notion and called for a paradigm where receptors would exist in more than one signaling conformation. This study used bioluminescence resonance energy transfer assays in combination with ligands of different functional profiles to provide in vivo physical evidence of conformational diversity of δ-opioid receptors (DORs). DORs and αi1β1γ2 G protein subunits were tagged with Luc or green fluorescent protein to produce bioluminescence resonance energy transfer pairs that allowed monitoring DOR-G protein interactions from different vantage points. Results showed that DORs and heterotrimeric G proteins formed a constitutive complex that underwent structural reorganization upon ligand binding. Conformational rearrangements could not be explained by a two-state model, supporting the idea that DORs adopt ligand-specific conformations. In addition, conformational diversity encoded by the receptor was conveyed to the interaction among heterotrimeric subunits. The existence of multiple active receptor states has implications for the way we conceive specificity of signal transduction.
机译:庚型受体通过结合多种配体将胞外信息传递到胞质区室。它们通过构象变化来做到这一点,当受体从静止构象转变为活性构象时,构象变化传播到细胞内信号配偶体。传统上认为该活性状态是独特的,并且负责调节受受体控制的所有信号传导途径。但是,最近的功能研究挑战了这一概念,并呼吁一种范式,即受体将以多种信号形式存在。这项研究将生物发光共振能量转移测定法与不同功能谱的配体结合使用,以提供δ阿片受体(DOR)构象多样性的体内物理证据。用Luc或绿色荧光蛋白标记DOR和αi1β1γ2G蛋白亚基,以产生生物发光共振能量转移对,从而可以监测来自不同有利位置的DOR-G蛋白相互作用。结果表明,DOR和异源三聚体G蛋白形成了一个组成型复合物,在配体结合后会进行结构重组。构象重排不能用两态模型来解释,这支持DOR采用配体特异性构象的观点。另外,由受体编码的构象多样性被传递给异三聚体亚基之间的相互作用。多种活性受体状态的存在对我们构想信号转导特异性的方式有影响。

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