G-protein activation by a metabotropic glutamate receptor

代谢型谷氨酸受体激活 G 蛋白

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作者:Alpay B Seven, Ximena Barros-Álvarez, Marine de Lapeyrière, Makaía M Papasergi-Scott, Michael J Robertson, Chensong Zhang, Robert M Nwokonko, Yang Gao, Justin G Meyerowitz, Jean-Philippe Rocher, Dominik Schelshorn, Brian K Kobilka, Jesper M Mathiesen, Georgios Skiniotis

Abstract

Family C G-protein-coupled receptors (GPCRs) operate as obligate dimers with extracellular domains that recognize small ligands, leading to G-protein activation on the transmembrane (TM) domains of these receptors by an unknown mechanism1. Here we show structures of homodimers of the family C metabotropic glutamate receptor 2 (mGlu2) in distinct functional states and in complex with heterotrimeric Gi. Upon activation of the extracellular domain, the two transmembrane domains undergo extensive rearrangement in relative orientation to establish an asymmetric TM6-TM6 interface that promotes conformational changes in the cytoplasmic domain of one protomer. Nucleotide-bound Gi can be observed pre-coupled to inactive mGlu2, but its transition to the nucleotide-free form seems to depend on establishing the active-state TM6-TM6 interface. In contrast to family A and B GPCRs, G-protein coupling does not involve the cytoplasmic opening of TM6 but is facilitated through the coordination of intracellular loops 2 and 3, as well as a critical contribution from the C terminus of the receptor. The findings highlight the synergy of global and local conformational transitions to facilitate a new mode of G-protein activation.

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