Conformational signatures in beta-arrestin2 reveal natural biased agonism at a G-protein-coupled receptor
- Authors
- Reyes-Alcaraz, Arfaxad; Lee, Yoo-Na; Yun, Seongsik; Hwang, Jong-Ik; Seong, Jae Young
- Issue Date
- 2018
- Publisher
- NATURE PUBLISHING GROUP
- Citation
- COMMUNICATIONS BIOLOGY, v.1
- Indexed
- SCOPUS
- Journal Title
- COMMUNICATIONS BIOLOGY
- Volume
- 1
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/81067
- DOI
- 10.1038/s42003-018-0134-3
- ISSN
- 2399-3642
- Abstract
- Discovery of biased ligands and receptor mutants allows characterization of G-protein- and beta-arrestin-mediated signaling mechanisms of G-protein-coupled receptors (GPCRs). However, the structural mechanisms underlying biased agonism remain unclear for many GPCRs. We show that while Galanin induces the activation of the galanin receptor 2 (Galr2) that leads to a robust stimulation toward Gaq-protein and beta-arrestin1/2, an alternative ligand Spexin and its analog have biased agonism toward G-protein signaling relative to Galanin. We used intramolecular fluorescein arsenical hairpin bioluminescence resonance energy transfer-based biosensors of beta-arrestin2 combined with NanoBit technology to measure beta-arrestin2-Galr2 interactions in real-time living systems. We found that Spexin and Galanin induce specific active conformations of Galr2, which may lead to different internalization rates of the receptor as well as different signaling outputs. This work represents an additional pharmacological evidence of endogenous G-protein-biased agonism at a GPCR.
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Collections - Graduate School > Department of Biomedical Sciences > 1. Journal Articles
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