Walther Straub Institute of Pharmacology and Toxicology, Ludwig Maximilian University of Munich, Goethestr. 33, 80336, Munich, Germany.
Institute for Cardiovascular Prevention (IPEK), Ludwig Maximilian University of Munich, Pettenkoferstr. 9, 80336, Munich, Germany.
Nat Commun. 2019 Dec 19;10(1):5784. doi: 10.1038/s41467-019-13722-0.
G-protein coupled receptors (GPCRs) are versatile cellular sensors for chemical stimuli, but also serve as mechanosensors involved in various (patho)physiological settings like vascular regulation, cardiac hypertrophy and preeclampsia. However, the molecular mechanisms underlying mechanically induced GPCR activation have remained elusive. Here we show that mechanosensitive histamine H receptors (HRs) are endothelial sensors of fluid shear stress and contribute to flow-induced vasodilation. At the molecular level, we observe that HRs undergo stimulus-specific patterns of conformational changes suggesting that mechanical forces and agonists induce distinct active receptor conformations. GPCRs lacking C-terminal helix 8 (H8) are not mechanosensitive, and transfer of H8 to non-responsive GPCRs confers, while removal of H8 precludes, mechanosensitivity. Moreover, disrupting H8 structural integrity by amino acid exchanges impairs mechanosensitivity. Altogether, H8 is the essential structural motif endowing GPCRs with mechanosensitivity. These findings provide a mechanistic basis for a better understanding of the roles of mechanosensitive GPCRs in (patho)physiology.
G 蛋白偶联受体 (GPCRs) 是化学刺激的多功能细胞传感器,但也作为机械感受器参与各种(病理)生理环境,如血管调节、心脏肥大和子痫前期。然而,机械诱导 GPCR 激活的分子机制仍然难以捉摸。在这里,我们表明机械敏感的组胺 H 受体 (HRs) 是流体切应力的内皮传感器,并有助于血流诱导的血管扩张。在分子水平上,我们观察到 HRs 经历刺激特异性构象变化模式,表明机械力和激动剂诱导不同的活性受体构象。缺乏 C 末端螺旋 8 (H8) 的 GPCRs 不具有机械敏感性,并且将 H8 转移到非响应性 GPCRs 赋予机械敏感性,而去除 H8 则排除了机械敏感性。此外,通过氨基酸交换破坏 H8 的结构完整性会损害机械敏感性。总之,H8 是赋予 GPCR 机械敏感性的必需结构基序。这些发现为更好地理解机械敏感 GPCR 在(病理)生理学中的作用提供了机制基础。