Agonist-induced formation of unproductive receptor-G<sub>12</sub> complexes.

Okashah, Najeah; Wright, Shane C; Kawakami, Kouki; Mathiasen, Signe; Zhou, Joris; Lu, Sumin; Javitch, Jonathan A; Inoue, Asuka et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

Where this comes from

Abstract

G proteins are activated when they associate with G protein-coupled receptors (GPCRs), often in response to agonist-mediated receptor activation. It is generally thought that agonist-induced receptor-G protein association necessarily promotes G protein activation and, conversely, that activated GPCRs do not interact with G proteins that they do not activate. Here we show that GPCRs can form agonist-dependent complexes with G proteins that they do not activate. Using cell-based bioluminescence resonance energy transfer (BRET) and luminescence assays we find that vasopressin V<sub>2</sub> receptors (V<sub>2</sub>R) associate with both G<sub>s</sub> and G<sub>12</sub> heterotrimers when stimulated with the agonist arginine vasopressin (AVP). However, unlike V<sub>2</sub>R-G<sub>s</sub> complexes, V<sub>2</sub>R-G<sub>12</sub> complexes are not destabilized by guanine nucleotides and do not promote G<sub>12</sub> activation. Activating V<sub>2</sub>R does not lead to signaling responses downstream of G<sub>12</sub> activation, but instead inhibits basal G<sub>12</sub>-mediated signaling, presumably by sequestering G<sub>12</sub> heterotrimers. Overexpressing G<sub>12</sub> inhibits G protein receptor kinase (GRK) and arrestin recruitment to V<sub>2</sub>R and receptor internalization. Formyl peptide (FPR1 and FPR2) and Smoothened (Smo) receptors also form complexes with G<sub>12</sub> that are insensitive to nucleotides, suggesting that unproductive GPCR-G<sub>12</sub> complexes are not unique to V<sub>2</sub>R. These results indicate that agonist-dependent receptor-G protein association does not always lead to G protein activation and may in fact inhibit G protein activation.

Medical subject headings