胰淀素
蛋白质亚单位
受体
化学
细胞生物学
信号转导
生物
内分泌学
生物化学
基因
小岛
胰岛素
作者
Sandra E. Gostynska,Jordan A. Karim,Bailee E. Ford,Peyton H. Gordon,Katie M. Babin,Asuka Inoue,Nevin A. Lambert,Augen A. Pioszak
标识
DOI:10.1101/2024.10.09.617487
摘要
Abstract Three amylin receptors (AMYRs) mediate the metabolic actions of the peptide hormone amylin and are drug targets for diabetes and obesity. AMY 1 R, AMY 2 R, and AMY 3 R are heterodimers consisting of the G protein-coupled calcitonin receptor (CTR) paired with a RAMP1, -2, or -3 accessory subunit, respectively, which increases amylin potency. Little is known about AMYR subunit interactions and their role in signaling. Here, we show that the AMYRs have distinct basal subunit equilibriums that are modulated by peptide agonists and determine the cAMP signaling phenotype. Using a novel biochemical assay that resolves the AMYR heterodimers and free subunits, we found that the AMY 1/2 R subunit equilibriums favored free CTR and RAMP1/2, and rat amylin and αCGRP agonists promoted subunit association. A stronger CTR-RAMP3 transmembrane domain interface yielded a more stable AMY 3 R, and human and salmon calcitonin agonists promoted AMY 3 R dissociation. Similar changes in subunit association-dissociation were observed in live cell membranes, and G protein coupling and cAMP signaling assays showed how these altered signaling. Our findings reveal regulation of heteromeric GPCR signaling through subunit interaction dynamics.
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