Wu Zizhen, Grillet Nicolas, Zhao Bo, Cunningham Christopher, Harkins-Perry Sarah, Coste Bertrand, Ranade Sanjeev, Zebarjadi Navid, Beurg Maryline, Fettiplace Robert, Patapoutian Ardem, Mueller Ulrich
The Solomon Snyder Department of Neuroscience, Johns Hopkins University, Baltimore, Maryland USA.
Department of Otolaryngology - Head and Neck Surgery, Stanford University, Stanford, California, USA.
Nat Neurosci. 2017 Jan;20(1):24-33. doi: 10.1038/nn.4449. Epub 2016 Nov 28.
Auditory hair cells contain mechanotransduction channels that rapidly open in response to sound-induced vibrations. We report here that auditory hair cells contain two molecularly distinct mechanotransduction channels. One ion channel is activated by sound and is responsible for sensory transduction. This sensory transduction channel is expressed in hair cell stereocilia, and previous studies show that its activity is affected by mutations in the genes encoding the transmembrane proteins TMHS, TMIE, TMC1 and TMC2. We show here that the second ion channel is expressed at the apical surface of hair cells and that it contains the Piezo2 protein. The activity of the Piezo2-dependent channel is controlled by the intracellular Ca concentration and can be recorded following disruption of the sensory transduction machinery or more generally by disruption of the sensory epithelium. We thus conclude that hair cells express two molecularly and functionally distinct mechanotransduction channels with different subcellular distributions.
听觉毛细胞含有机械转导通道,这些通道会在声音引起的振动作用下迅速打开。我们在此报告,听觉毛细胞含有两种分子结构不同的机械转导通道。一种离子通道由声音激活,负责感觉转导。这种感觉转导通道在毛细胞静纤毛中表达,先前的研究表明,其活性受编码跨膜蛋白TMHS、TMIE、TMC1和TMC2的基因突变影响。我们在此表明,第二种离子通道在毛细胞的顶端表面表达,并且它含有Piezo2蛋白。Piezo2依赖性通道的活性受细胞内钙浓度控制,并且在感觉转导机制被破坏后或者更普遍地在感觉上皮被破坏后可以被记录到。因此,我们得出结论,毛细胞表达两种分子和功能不同、亚细胞分布各异的机械转导通道。