Departamento de Química Física Biológica, Instituto de Química Física Rocasolano (IQFR-CSIC), Serrano 119, 28006 Madrid, Spain.
Instituto de Química Médica (IQM-CSIC), Juan de la Cierva 3, 28006 Madrid, Spain.
Int J Mol Sci. 2020 Oct 30;21(21):8111. doi: 10.3390/ijms21218111.
Activation of the cannabinoid CB1 receptor induces different cellular signaling cascades through coupling to different effector proteins (G-proteins and β-arrestins), triggering numerous therapeutic effects. Conformational changes and rearrangements at the intracellular domain of this GPCR receptor that accompany ligand binding dictate the signaling pathways. The GPCR-binding interface for G proteins has been extensively studied, whereas β-arrestin/GPCR complexes are still poorly understood. To gain knowledge in this direction, we designed peptides that mimic the motifs involved in the putative interacting region: β-arrestin1 finger loop and the transmembrane helix 7-helix 8 (TMH7-H8) elbow located at the intracellular side of the CB1 receptor. According to circular dichroism and NMR data, these peptides form a native-like, helical conformation and interact with each other in aqueous solution, in the presence of trifluoroethanol, and using zwitterionic detergent micelles as membrane mimics. These results increase our understanding of the binding mode of β-arrestin and CB1 receptor and validate minimalist approaches to structurally comprehend complex protein systems.
大麻素 CB1 受体的激活通过与不同效应蛋白(G 蛋白和β-arrestin)偶联,诱导不同的细胞信号级联反应,从而触发众多治疗效果。配体结合伴随的 GPCR 受体细胞内结构域的构象变化和重排决定了信号通路。G 蛋白结合界面的 GPCR 已经得到了广泛的研究,而β-arrestin/GPCR 复合物仍然知之甚少。为了在这方面获得知识,我们设计了模拟假定相互作用区域的基序的肽:β-arrestin1 指环和位于 CB1 受体细胞内侧面的跨膜螺旋 7-8(TMH7-H8)肘。根据圆二色性和 NMR 数据,这些肽形成类似天然的螺旋构象,并在存在三氟乙醇的情况下在水溶液中相互作用,并使用两性离子去污剂胶束作为膜模拟物。这些结果增加了我们对β-arrestin 和 CB1 受体结合模式的理解,并验证了简化方法来结构理解复杂的蛋白质系统。