Noncanonical scaffolding of G<sub>αi</sub> and β-arrestin by G protein-coupled receptors.

Smith, Jeffrey S; Pack, Thomas F; Inoue, Asuka; Lee, Claudia; Zheng, Kevin; Choi, Issac; Eiger, Dylan S; Warman, Anmol et al. · Science · 2021

basic_science · Level V

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Abstract

Heterotrimeric guanine nucleotide-binding protein (G protein)-coupled receptors (GPCRs) are common drug targets and canonically couple to specific G<sub>α</sub> protein subtypes and β-arrestin adaptor proteins. G protein-mediated signaling and β-arrestin-mediated signaling have been considered separable. We show here that GPCRs promote a direct interaction between G<sub>αi</sub> protein subtype family members and β-arrestins regardless of their canonical G<sub>α</sub> protein subtype coupling. G<sub>αi</sub>:β-arrestin complexes bound extracellular signal-regulated kinase (ERK), and their disruption impaired both ERK activation and cell migration, which is consistent with β-arrestins requiring a functional interaction with G<sub>αi</sub> for certain signaling events. These results introduce a GPCR signaling mechanism distinct from canonical G protein activation in which GPCRs cause the formation of G<sub>αi</sub>:β-arrestin signaling complexes.

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