Department of Chemistry, Saint Louis University, Saint Louis, Missouri, USA.
Department of Chemistry and Biochemistry, School of Green Chemistry and Engineering, The University of Toledo, Toledo, Ohio, USA.
J Biol Chem. 2024 Jul;300(7):107481. doi: 10.1016/j.jbc.2024.107481. Epub 2024 Jun 18.
Beta-adrenergic receptors (βARs) are G protein-coupled receptors (GPCRs) that mediate catecholamine hormone-induced stress responses, such as elevation of heart rate. Besides those that are plasma membrane-bound, endomembrane βARs are also signaling competent. Dysregulation of βAR pathways underlies severe pathological conditions. Emerging evidence indicates pathological molecular signatures in deeper endomembrane βARs signaling, likely contributing to conditions such as cardiomyocyte hypertrophy and apoptosis. However, the lack of approaches to control endomembrane β1ARs has impeded linking signaling with pathology. Informed by the β1AR-catecholamine interactions, we engineered an efficient photolabile proligand (OptoIso) to trigger βAR signaling exclusively in endomembrane regions using blue light stimulation. Not only does OptoIso undergo blue light deprotection in seconds, but also efficiently enters cells and allows examination of G protein heterotrimer activation exclusively at endomembranes. OptoIso also allows optical activation of plasma membrane βAR signaling in selected single cells with native fidelity, which can be reversed by terminating blue light. Thus, OptoIso will be a valuable experimental tool to elicit spatial and temporal control of βAR signaling in user-defined endomembrane or plasma membrane regions in unmodified cells with native fidelity.
β-肾上腺素能受体(βAR)是 G 蛋白偶联受体(GPCR),可介导儿茶酚胺激素诱导的应激反应,如心率升高。除了那些与质膜结合的βAR 外,内质网βAR 也具有信号转导能力。βAR 途径的失调是严重病理状况的基础。新出现的证据表明,内质网βAR 信号转导中存在病理性分子特征,可能导致心肌细胞肥大和凋亡等情况。然而,缺乏控制内质网β1AR 的方法阻碍了将信号与病理学联系起来。受β1AR-儿茶酚胺相互作用的启发,我们设计了一种有效的光不稳定前配体(OptoIso),使用蓝光刺激仅在内质网区域触发βAR 信号转导。OptoIso 不仅在数秒内进行蓝光保护,而且还能有效地进入细胞,并允许仅在内质网上检查 G 蛋白异三聚体的激活。OptoIso 还允许以天然保真度在选定的单个细胞中光学激活质膜 βAR 信号转导,并且可以通过终止蓝光来逆转。因此,OptoIso 将是一种有价值的实验工具,可以在未修饰的细胞中以天然保真度在用户定义的内质网或质膜区域中引发βAR 信号转导的时空控制。