Syeda Ruhma, Xu Jie, Dubin Adrienne E, Coste Bertrand, Mathur Jayanti, Huynh Truc, Matzen Jason, Lao Jianmin, Tully David C, Engels Ingo H, Petrassi H Michael, Schumacher Andrew M, Montal Mauricio, Bandell Michael, Patapoutian Ardem
Department of Molecular and Cellular Neuroscience, Howard Hughes Medical Institute, The Scripps Research Institute, La Jolla, United States.
Genomics Institute of the Novartis Research Foundation, San Diego, United States.
Elife. 2015 May 22;4:e07369. doi: 10.7554/eLife.07369.
Piezo ion channels are activated by various types of mechanical stimuli and function as biological pressure sensors in both vertebrates and invertebrates. To date, mechanical stimuli are the only means to activate Piezo ion channels and whether other modes of activation exist is not known. In this study, we screened ~3.25 million compounds using a cell-based fluorescence assay and identified a synthetic small molecule we termed Yoda1 that acts as an agonist for both human and mouse Piezo1. Functional studies in cells revealed that Yoda1 affects the sensitivity and the inactivation kinetics of mechanically induced responses. Characterization of Yoda1 in artificial droplet lipid bilayers showed that Yoda1 activates purified Piezo1 channels in the absence of other cellular components. Our studies demonstrate that Piezo1 is amenable to chemical activation and raise the possibility that endogenous Piezo1 agonists might exist. Yoda1 will serve as a key tool compound to study Piezo1 regulation and function.
Piezo离子通道可被多种类型的机械刺激激活,并在脊椎动物和无脊椎动物中作为生物压力传感器发挥作用。迄今为止,机械刺激是激活Piezo离子通道的唯一手段,尚不清楚是否存在其他激活方式。在本研究中,我们使用基于细胞的荧光测定法筛选了约325万种化合物,并鉴定出一种合成小分子,我们将其命名为Yoda1,它可作为人类和小鼠Piezo1的激动剂。细胞功能研究表明,Yoda1影响机械诱导反应的敏感性和失活动力学。Yoda1在人工液滴脂质双层中的特性表明,Yoda1在没有其他细胞成分的情况下可激活纯化的Piezo1通道。我们的研究表明,Piezo1适合化学激活,并增加了内源性Piezo1激动剂可能存在的可能性。Yoda1将作为研究Piezo1调节和功能的关键工具化合物。