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Conformational Dynamics of Kir3.1/Kir3.2 Channel Activation Via δ-Opioid Receptors

机译:通过δ阿片受体激活Kir3.1 / Kir3.2通道的构象动力学

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摘要

This study assessed how conformational information encoded by ligand binding to δ-opioid receptors (DORs) is transmitted to Kir3.1/Kir3.2 channels. Human embryonic kidney 293 cells were transfected with bioluminescence resonance energy transfer (BRET) donor/acceptor pairs that allowed us to evaluate independently reciprocal interactions among signaling partners. These and coimmunoprecipitation studies indicated that DORs, Gβγ, and Kir3 subunits constitutively interacted with one another. GαoA associated with DORs and Gβγ, but despite being part of the complex, no evidence of its direct association with the channel was obtained. DOR activation by different ligands left DOR-Kir3 interactions unmodified but modulated BRET between DOR-GαoA, DOR-Gβγ, GαoA-Gβγ, and Gβγ-Kir3 interfaces. Ligand-induced BRET changes assessing Gβγ-Kir3.1 subunit interaction 1) followed similar kinetics to those monitoring the GαoA-Gβγ interface, 2) displayed the same order of efficacy as those observed at the DOR-Gβγ interface, 3) were sensitive to pertussis toxin, and 4) were predictive of whether a ligand could evoke channel currents. Conformational changes at the Gβγ/Kir3 interface were lost when Kir3.1 subunits were replaced by a mutant lacking essential sites for Gβγ-mediated activation. Thus, conformational information encoded by agonist binding to the receptor is relayed to the channel via structural rearrangements that involve repositioning of Gβγ with respect to DORs, GαoA, and channel subunits. Further, the fact that BRET changes at the Gβγ-Kir3 interface are predictive of a ligand’s ability to induce channel currents points to these conformational biosensors as screening tools for identifying GPCR ligands that induce Kir3 channel activation.
机译:这项研究评估了由与δ阿片受体(DOR)结合的配体编码的构象信息如何传输到Kir3.1 / Kir3.2通道。用生物发光共振能量转移(BRET)供体/受体对转染了人类胚胎肾293细胞,这使我们能够独立评估信号传导伙伴之间的相互作用。这些和共免疫沉淀研究表明,DOR,Gβγ和Kir3亚基组成性地相互作用。 GαoA与DOR和Gβγ相关,但尽管是复合物的一部分,但未获得其与通道直接相关的证据。不同配体的DOR激活使DOR-GαoA,DOR-Gβγ,GαoA-Gβγ和Gβγ-Kir3界面之间的DOR-Kir3相互作用保持不变,但调节了BRET。评估Gβγ-Kir3.1亚基相互作用的配体诱导的BRET变化1)遵循与监测GαoA-Gβγ界面相似的动力学,2)表现出与在DOR-Gβγ界面观察到的功效相同的顺序,3)对百日咳毒素,和4)可以预测配体是否会引起通道电流。当Kir3.1亚基被缺少Gβγ介导的激活必需位点的突变体替代时,Gβγ/ Kir3界面的构象变化丢失。因此,由激动剂与受体结合而编码的构象信息通过结构重排被传递至通道,该结构重排涉及Gβγ相对于DOR,G α oA和通道亚基的重新定位。此外,BRET在G γγ -Kir3界面发生变化的事实可预示配体诱导通道电流的能力,这些构象生物传感器可作为筛选工具,用于鉴定诱导Kir3通道激活的GPCR配体。

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