Unraveling allostery within the angiotensin II type 1 receptor for Gαq and β-arrestin coupling

揭示血管紧张素 II 1 型受体内 Gαq 和 β-arrestin 偶联的变构

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作者:Yubo Cao, Wijnand J C van der Velden, Yoon Namkung, Anita K Nivedha, Aaron Cho, Dana Sedki, Brian Holleran, Nicholas Lee, Richard Leduc, Sanychen Muk, Keith Le, Supriyo Bhattacharya, Nagarajan Vaidehi, Stéphane A Laporte

Abstract

G protein-coupled receptors engage both G proteins and β-arrestins, and their coupling can be biased by ligands and mutations. Here, to resolve structural elements and mechanisms underlying effector coupling to the angiotensin II (AngII) type 1 receptor (AT1R), we combined alanine scanning mutagenesis of the entire sequence of the receptor with pharmacological profiling of Gαq and β-arrestin engagement to mutant receptors and molecular dynamics simulations. We showed that Gαq coupling to AT1R involved a large number of residues spread across the receptor, whereas fewer structural regions of the receptor contributed to β-arrestin coupling regulation. Residue stretches in transmembrane domain 4 conferred β-arrestin bias and represented an important structural element in AT1R for functional selectivity. Furthermore, we identified allosteric small-molecule binding sites that were enclosed by communities of residues that produced biased signaling when mutated. Last, we showed that allosteric communication within AT1R emanating from the Gαq coupling site spread beyond the orthosteric AngII-binding site and across different regions of the receptor, including currently unresolved structural regions. Our findings reveal structural elements and mechanisms within AT1R that bias Gαq and β-arrestin coupling and that could be harnessed to design biased receptors for research purposes and to develop allosteric modulators.

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