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Cryo-EM structure of an activated GPCR-G protein complex in lipid nanodiscs.

Meng ZhangMiao GuiZi-Fu WangChristoph GorgullaJames J YuHao WuZhen-Yu J SunChristoph KlenkLisa MerklingerLena MorsteinFranz HagnAndreas PlückthunAlan BrownMahmoud L NasrGerhard Wagner
Published in: Nature structural & molecular biology (2021)
G-protein-coupled receptors (GPCRs) are the largest superfamily of transmembrane proteins and the targets of over 30% of currently marketed pharmaceuticals. Although several structures have been solved for GPCR-G protein complexes, few are in a lipid membrane environment. Here, we report cryo-EM structures of complexes of neurotensin, neurotensin receptor 1 and Gαi1β1γ1 in two conformational states, resolved to resolutions of 4.1 and 4.2 Å. The structures, determined in a lipid bilayer without any stabilizing antibodies or nanobodies, reveal an extended network of protein-protein interactions at the GPCR-G protein interface as compared to structures obtained in detergent micelles. The findings show that the lipid membrane modulates the structure and dynamics of complex formation and provide a molecular explanation for the stronger interaction between GPCRs and G proteins in lipid bilayers. We propose an allosteric mechanism for GDP release, providing new insights into the activation of G proteins for downstream signaling.
Keyphrases
  • fatty acid
  • high resolution
  • drug delivery
  • molecular dynamics simulations
  • gene expression
  • single molecule
  • drug release
  • network analysis