作者
Anthony H. Nguyen,A. Thomsen,Thomas J. Cahill,Rick Huang,Li-Yin Huang,Tara C. Marcink,Oliver B. Clarke,Søren Heissel,Ali Masoudi,Danya Ben-Hail,Fadi Samaan,Venkata P. Dandey,Yong Zi Tan,Chuan Hong,Jacob P. Mahoney,Sarah Triest,John R. Little,Xin Chen,Roger K. Sunahara,Jan Steyaert,Henrik Molina,Zhiheng Yu,Amédée des Georges,Robert J. Lefkowitz
摘要
Classically, G-protein-coupled receptors (GPCRs) are thought to activate G protein from the plasma membrane and are subsequently desensitized by β-arrestin (β-arr). However, some GPCRs continue to signal through G protein from internalized compartments, mediated by a GPCR-G protein-β-arr 'megaplex'. Nevertheless, the molecular architecture of the megaplex remains unknown. Here, we present its cryo-electron microscopy structure, which shows simultaneous engagement of human G protein and bovine β-arr to the core and phosphorylated tail, respectively, of a single active human chimeric β2-adrenergic receptor with the C-terminal tail of the arginine vasopressin type 2 receptor (β2V2R). All three components adopt their canonical active conformations, suggesting that a single megaplex GPCR is capable of simultaneously activating G protein and β-arr. Our findings provide a structural basis for GPCR-mediated sustained internalized G protein signaling.