Gostynska Sandra E, Karim Jordan A, Ford Bailee E, Gordon Peyton H, Babin Katie M, Inoue Asuka, Lambert Nevin A, Pioszak Augen A
Department of Biochemistry and Physiology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104, USA.
Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai 980-8578, Japan.
Sci Signal. 2025 Aug 19;18(900):eadt8127. doi: 10.1126/scisignal.adt8127.
Three amylin receptors (AMYRs) mediate the metabolic actions of the peptide hormone amylin and are drug targets for diabetes and obesity. AMYR, AMYR, and AMYR are heterodimers consisting of the calcitonin receptor (CTR), a G protein-coupled receptor, paired with a RAMP1, RAMP2, or RAMP3 accessory subunit, respectively, which increases amylin potency. Here, we found that the AMYRs had distinct basal subunit equilibria that were modulated by peptide agonists and determined the extent of cAMP signaling downstream of receptor activation. By developing a biochemical assay that resolves the AMYR heterodimers and free subunits, we found that the AMYR and AMYR subunit distributions favored free CTR and RAMPs and that rat amylin promoted association of the constituent subunits of AMYR and AMYR. The agonist αCGRP also induced AMYR subunit association. A stronger interaction between the CTR and the RAMP3 transmembrane domains yielded a more stable AMYR, and human and salmon calcitonin agonists promoted AMYR dissociation. Similar changes in subunit association and dissociation were observed in live-cell membranes, and G protein coupling and cAMP signaling assays showed how these changes altered signaling. Our findings have implications for AMYR biology and drug development and reveal regulation of heteromeric GPCR signaling through subunit interaction dynamics.
三种胰淀素受体(AMYRs)介导肽激素胰淀素的代谢作用,并且是糖尿病和肥胖症的药物靶点。AMYR1、AMYR2和AMYR3是异源二聚体,分别由降钙素受体(CTR,一种G蛋白偶联受体)与RAMP1、RAMP2或RAMP3辅助亚基配对组成,这会增加胰淀素的效力。在此,我们发现AMYRs具有不同的基础亚基平衡,这些平衡受肽激动剂调节,并决定受体激活下游的cAMP信号传导程度。通过开发一种可解析AMYR异源二聚体和游离亚基的生化检测方法,我们发现AMYR1和AMYR2的亚基分布有利于游离的CTR和RAMP,并且大鼠胰淀素促进了AMYR1和AMYR2组成亚基的结合。激动剂αCGRP也诱导了AMYR2亚基的结合。CTR与RAMP3跨膜结构域之间更强的相互作用产生了更稳定的AMYR3,并且人和鲑鱼降钙素激动剂促进了AMYR3的解离。在活细胞膜中观察到了亚基结合和解离的类似变化,并且G蛋白偶联和cAMP信号传导检测显示了这些变化如何改变信号传导。我们的发现对AMYR生物学和药物开发具有启示意义,并揭示了通过亚基相互作用动力学对异源三聚体GPCR信号传导的调节。