Section on Sensory Cell Development and Function, NIDCD/National Institutes of Health, Bethesda, MD, 20892, USA.
Advanced Imaging Core, NIDCD/National Institutes of Health, Bethesda, MD, 20892, USA.
Nat Commun. 2018 Apr 11;9(1):1388. doi: 10.1038/s41467-018-03806-8.
Analysis of mechanotransduction among ensembles of sensory hair cells in vivo is challenging in many species. To overcome this challenge, we used optical indicators to investigate mechanotransduction among collections of hair cells in intact zebrafish. Our imaging reveals a previously undiscovered disconnect between hair-cell mechanosensation and synaptic transmission. We show that saturating mechanical stimuli able to open mechanically gated channels are unexpectedly insufficient to evoke vesicle fusion in the majority of hair cells. Although synaptically silent, latent hair cells can be rapidly recruited after damage, demonstrating that they are synaptically competent. Therefore synaptically silent hair cells may be an important reserve that acts to maintain sensory function. Our results demonstrate a previously unidentified level of complexity in sculpting sensory transmission from the periphery.
在许多物种中,对感觉毛细胞集合体中的机械转导进行分析是具有挑战性的。为了克服这一挑战,我们使用光学指示剂来研究完整斑马鱼中毛细胞集合体之间的机械转导。我们的成像揭示了以前未被发现的毛细胞机械感觉和突触传递之间的脱节。我们表明,能够打开机械门控通道的饱和机械刺激出乎意料地不足以在大多数毛细胞中引发囊泡融合。尽管突触沉默,潜在的毛细胞在损伤后可以迅速被募集,表明它们具有突触能力。因此,突触沉默的毛细胞可能是维持感觉功能的重要储备。我们的结果表明,在塑造从外围传入的感觉传递方面存在着以前未被识别的复杂性。