化学
生物物理学
核磁共振波谱
G蛋白偶联受体
构象变化
分子动力学
膜
血浆蛋白结合
受体
蛋白质结构
信号转导
磷酸化
结合位点
活化能
能源景观
膜蛋白
分子构象
细胞生物学
屏障激活
结构生物学
生物化学
细胞膜
蛋白质-蛋白质相互作用
氟-19核磁共振
细胞信号
作者
Ruibo Zhai,Zhuoqi Wang,Zhaofei Chai,Xiaogang Niu,Conggang Li,Changwen Jin,Yunfei Hu
标识
DOI:10.1038/s41467-023-43694-1
摘要
Abstract β-Arrestins (βarrs) are functionally versatile proteins that play critical roles in the G-protein-coupled receptor (GPCR) signaling pathways. While it is well established that the phosphorylated receptor tail plays a central role in βarr activation, emerging evidence highlights the contribution from membrane lipids. However, detailed molecular mechanisms of βarr activation by different binding partners remain elusive. In this work, we present a comprehensive study of the structural changes in critical regions of βarr1 during activation using 19 F NMR spectroscopy. We show that phosphopeptides derived from different classes of GPCRs display different βarr1 activation abilities, whereas binding of the membrane phosphoinositide PIP 2 stabilizes a distinct partially activated conformational state. Our results further unveil a sparsely-populated activation intermediate as well as complex cross-talks between different binding partners, implying a highly multifaceted conformational energy landscape of βarr1 that can be intricately modulated during signaling.
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