Structural and Functional Analysis of a β<sub>2</sub>-Adrenergic Receptor Complex with GRK5.

Komolov, Konstantin E; Du, Yang; Duc, Nguyen Minh; Betz, Robin M; Rodrigues, João P G L M; Leib, Ryan D; Patra, Dhabaleswar; Skiniotis, Georgios et al. · Cell · 2017

basic_science · Level V

Where this comes from

Abstract

The phosphorylation of agonist-occupied G-protein-coupled receptors (GPCRs) by GPCR kinases (GRKs) functions to turn off G-protein signaling and turn on arrestin-mediated signaling. While a structural understanding of GPCR/G-protein and GPCR/arrestin complexes has emerged in recent years, the molecular architecture of a GPCR/GRK complex remains poorly defined. We used a comprehensive integrated approach of cross-linking, hydrogen-deuterium exchange mass spectrometry (MS), electron microscopy, mutagenesis, molecular dynamics simulations, and computational docking to analyze GRK5 interaction with the β<sub>2</sub>-adrenergic receptor (β<sub>2</sub>AR). These studies revealed a dynamic mechanism of complex formation that involves large conformational changes in the GRK5 RH/catalytic domain interface upon receptor binding. These changes facilitate contacts between intracellular loops 2 and 3 and the C terminus of the β<sub>2</sub>AR with the GRK5 RH bundle subdomain, membrane-binding surface, and kinase catalytic cleft, respectively. These studies significantly contribute to our understanding of the mechanism by which GRKs regulate the function of activated GPCRs. PAPERCLIP.

Medical subject headings