| Literature DB >> 34168117 |
Marjorie Damian1, Maxime Louet1, Antoniel Augusto Severo Gomes1,2, Céline M'Kadmi1, Séverine Denoyelle1, Sonia Cantel1, Sophie Mary1, Paulo M Bisch2, Jean-Alain Fehrentz1, Laurent J Catoire3, Nicolas Floquet1, Jean-Louis Banères4.
Abstract
The membrane is an integral component of the G protein-coupled receptor signaling machinery. Here we demonstrate that lipids regulate the signaling efficacy and selectivity of the ghrelin receptor GHSR through specific interactions and bulk effects. We find that PIP2 shifts the conformational equilibrium of GHSR away from its inactive state, favoring basal and agonist-induced G protein activation. This occurs because of a preferential binding of PIP2 to specific intracellular sites in the receptor active state. Another lipid, GM3, also binds GHSR and favors G protein activation, but mostly in a ghrelin-dependent manner. Finally, we find that not only selective interactions but also the thickness of the bilayer reshapes the conformational repertoire of GHSR, with direct consequences on G protein selectivity. Taken together, this data illuminates the multifaceted role of the membrane components as allosteric modulators of how ghrelin signal could be propagated.Entities:
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Year: 2021 PMID: 34168117 PMCID: PMC8225672 DOI: 10.1038/s41467-021-23756-y
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919