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Structural basis of active state coupling of metabotropic glutamate receptor 8 to beta-arrestins

Sep 2026 · Nature Communications · Vol 17 · 1 citation · 102 references
Medicine

Abstract

Metabotropic glutamate receptors (mGluRs) are prototypical, dimeric family C G protein-coupled receptors (GPCR) that perform crucial modulatory roles throughout the nervous system. While mGluR activation and signaling through G proteins has been studied extensively, how these receptors interact with and are desensitized by β-arrestins (β-arrs) is not well understood. Here, we use an integrative biophysical and structural approach to probe the coupling of mGluR8 and β-arrs. Using negative stain electron microscopy (EM), we identify tail- and core-bound orientations and stoichiometries of mGluR8/β-arr complexes. Cryo-EM structures of mGluR8 alone or bound to either G proteins or β-arr1 reveal mGluR8 active states with transducer-specific differences. The mGluR8/β-arr structure shows a distinct complex orientation compared to other GPCR/β-arr structures which supports a steric mechanism of mGluR desensitization involving interactions with both subunits and the lipid bilayer. Coupling of mGluR8 to β-arr1 in an active-like conformation is verified by live-cell and single molecule FRET analysis. Finally, molecular dynamics simulations further define the positioning and dynamics of mGluR8-bound β-arr1 and the importance of critical mGluR8 residues for stabilizing β-arr1 complexes. Together, our data provide a framework for agonist-driven family C GPCR/β-arr coupling. Metabotropic glutamate receptors (mGluRs) are synaptic, neuromodulatory G protein-coupled receptors which are regulated by beta-arrestins (β- arrs). Here, authors use a combination of structural and biophysical techniques to dissect the mechanisms by which active state mGluR8 couples to β-arrs.

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