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Detection of G Protein-selective G Protein-coupled Receptor (GPCR) Conformations in Live Cells

机译:活细胞中G蛋白选择性G蛋白偶联受体(GPCR)构象的检测

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摘要

Although several recent studies have reported that GPCRs adopt multiple conformations, it remains unclear how subtle conformational changes are translated into divergent downstream responses. In this study, we report on a novel class of FRET-based sensors that can detect the ligand/mutagenic stabilization of GPCR conformations that promote interactions with G proteins in live cells. These sensors rely on the well characterized interaction between a GPCR and the C terminus of a Gα subunit. We use these sensors to elucidate the influence of the highly conserved (E/D)RY motif on GPCR conformation. Specifically, Glu/Asp but not Arg mutants of the (E/D)RY motif are known to enhance basal GPCR signaling. Hence, it is unclear whether ionic interactions formed by the (E/D)RY motif (ionic lock) are necessary to stabilize basal GPCR states. We find that mutagenesis of the β2-AR (E/D)RY ionic lock enhances interaction with Gs. However, only Glu/Asp but not Arg mutants increase G protein activation. In contrast, mutagenesis of the opsin (E/D)RY ionic lock does not alter its interaction with transducin. Instead, opsin-specific ionic interactions centered on residue Lys-296 are both necessary and sufficient to promote interactions with transducin. Effective suppression of β2-AR basal activity by inverse agonist ICI 118,551 requires ionic interactions formed by the (E/D)RY motif. In contrast, the inverse agonist metoprolol suppresses interactions with Gs and promotes Gi binding, with concomitant pertussis toxin-sensitive inhibition of adenylyl cyclase activity. Taken together, these studies validate the use of the new FRET sensors while revealing distinct structural mechanisms for ligand-dependent GPCR function.
机译:尽管最近的一些研究报道了GPCR采用多种构象,但尚不清楚如何将微妙的构象变化转化为不同的下游反应。在这项研究中,我们报告了一种新型的基于FRET的传感器,该传感器可以检测GPCR构象的配体/诱变稳定性,从而促进与活细胞中G蛋白的相互作用。这些传感器依赖于GPCR和Gα亚基的C末端之间良好表征的相互作用。我们使用这些传感器来阐明高度保守的(E / D)RY基序对GPCR构象的影响。具体而言,已知(E / D)RY基序的Glu / Asp但不是Arg突变体可增强基础GPCR信号传导。因此,不清楚由(E / D)RY基序形成的离子相互作用(离子锁定)对于稳定基础GPCR状态是否必要。我们发现诱变的β2-AR(E / D)RY离子锁增强了与Gs的相互作用。但是,只有Glu / Asp而不是Arg突变体会增加G蛋白的激活。相比之下,视蛋白(E / D)RY离子锁的诱变作用不会改变其与转导蛋白的相互作用。相反,以残基Lys-296为中心的视蛋白特异性离子相互作用对于促进与转导蛋白的相互作用既必要又充分。通过反向激动剂ICI 118,551有效抑制β2-AR基础活性需要由(E / D)RY基序形成的离子相互作用。相反,反向激动剂美托洛尔抑制与Gs的相互作用并促进Gi的结合,同时伴随百日咳毒素敏感的腺苷酸环化酶活性的抑制。综上所述,这些研究验证了新型FRET传感器的使用,同时揭示了配体依赖性GPCR功能的独特结构机制。

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