Corns Laura F, Marcotti Walter
Department of Biomedical Science, University of Sheffield, Sheffield, UK.
Department of Biomedical Science, University of Sheffield, Sheffield, UK
Physiol Rep. 2016 Feb;4(3). doi: 10.14814/phy2.12701.
The mechanoelectrical transducer (MET) channels located at the stereocilia tip of cochlear hair cells are crucial to convert the mechanical energy of sound into receptor potentials, but the identity of its pore-forming subunits remains uncertain. Piezo1, which has been identified in the transcriptome of mammalian cochlear hair cells, encodes a transmembrane protein that forms mechanosensitive channels in other tissues. We investigated the properties of the MET channel in outer hair cells (OHCs) of Piezo1 mice (postnatal day 6-9). The MET current was elicited by deflecting the hair bundle of OHCs using sinewave and step stimuli from a piezo-driven fluid jet. Apical and basal OHCs were investigated because the properties of the MET channel vary along the cochlea. We found that the maximal MET current amplitude and the resting open probability of the MET channel in OHCs were similar between Piezo1(+/-) haploinsufficient mice and wild-type littermates. The sensitivity to block by the permeant MET channel blocker dihydrostreptomycin was also similar between the two genotypes. Finally, the anomalous mechano-gated current, which is activated by sheer force and which is tip-link independent, was unaffected in OHCs from Piezo1(+/-) haploinsufficient mice. Our results suggest that Piezo1 is unlikely to be a component of the MET channel complex in mammalian cochlear OHCs.
位于耳蜗毛细胞静纤毛顶端的机械电换能器(MET)通道对于将声音的机械能转化为感受器电位至关重要,但其孔形成亚基的身份仍不确定。Piezo1在哺乳动物耳蜗毛细胞的转录组中被鉴定出来,它编码一种跨膜蛋白,该蛋白在其他组织中形成机械敏感通道。我们研究了Piezo1小鼠(出生后第6 - 9天)外毛细胞(OHC)中MET通道的特性。通过使用来自压电驱动流体喷射器的正弦波和阶跃刺激使OHC的毛束偏转来引发MET电流。由于MET通道的特性沿耳蜗变化,因此对顶端和基部的OHC进行了研究。我们发现,Piezo1(+/-)单倍体不足小鼠和野生型同窝小鼠的OHC中,MET通道的最大电流幅度和静息开放概率相似。两种基因型对渗透性MET通道阻滞剂二氢链霉素阻断的敏感性也相似。最后,由剪切力激活且与纤毛连接无关的异常机械门控电流在Piezo1(+/-)单倍体不足小鼠的OHC中未受影响。我们的结果表明,Piezo1不太可能是哺乳动物耳蜗OHC中MET通道复合物的一个组成部分。