Neurophysiologie de la Synapse Auditive, Institut National de la Santé et de la Recherche Médicale, UMR 1120, Université de Bordeaux, 33076 Bordeaux, France.
Génétique et Physiologie de l'Audition, Institut National de la Santé et de la Recherche Médicale, UMR 1120, Institut Pasteur, 75015 Paris, France.
J Neurosci. 2019 May 1;39(18):3394-3411. doi: 10.1523/JNEUROSCI.1550-18.2018. Epub 2019 Mar 4.
Transmitter release at auditory inner hair cell (IHC) ribbon synapses involves exocytosis of glutamatergic vesicles during voltage activation of L-type Ca1.3 calcium channels. At these synapses, the fast and indefatigable release of synaptic vesicles by IHCs is controlled by otoferlin, a six-C2-domain (C2-ABCDEF) protein that functions as a high-affinity Ca sensor. The molecular events by which each otoferlin C2 domain contributes to the regulation of the synaptic vesicle cycle in IHCs are still incompletely understood. Here, we investigate their role using a cochlear viral cDNA transfer approach , where IHCs of mouse lacking otoferlin ( mice of both sexes) were virally transduced with cDNAs of various mini-otoferlins. Using patch-clamp recordings and membrane capacitance measurements, we show that the viral transfer of mini-otoferlin containing C2-ACEF, C2-EF, or C2-DEF partially restores the fast exocytotic component in mouse IHCs. The restoration was much less efficient with C2-ACDF, underlining the importance of the C2-EF domain. None of the mini-otoferlins tested restored the sustained component of vesicle release, explaining the absence of hearing recovery. The restoration of the fast exocytotic component in the transduced IHCs was also associated with a recovery of Ca currents with normal amplitude and fast time inactivation, confirming that the C-terminal C2 domains of otoferlin are essential for normal gating of Ca1.3 channels. Finally, the reintroduction of the mini-otoferlins C2-EF, C2-DEF, or C2-ACEF allowed us to uncover and characterize for the first time a dynamin-dependent ultrafast endocytosis in IHCs. Otoferlin, a large six-C2-domain protein, is essential for synaptic vesicle exocytosis at auditory hair cell ribbon synapses. Here, we show that the viral expression of truncated forms of otoferlin (C2-EF, C2-DEF, and C2-ACEF) can partially rescue the fast and transient release component of exocytosis in mouse hair cells lacking otoferlin, yet cannot sustain exocytosis after long repeated stimulation. Remarkably, these hair cells also display a dynamin-dependent ultrafast endocytosis. Overall, our study uncovers the pleiotropic role of otoferlin in the hair cell synaptic vesicle cycle, notably in triggering both ultrafast exocytosis and endocytosis and recruiting synaptic vesicles to the active zone.
在听觉内毛细胞 (IHC) 带状突触中,谷氨酸能囊泡的释放涉及 L 型钙通道 Ca1.3 的电压激活引发的胞吐作用。在这些突触中,IHC 通过 otoferlin 控制着突触囊泡的快速而持久的释放,otoferlin 是一种具有六个 C2 结构域(C2-ABCDEF)的蛋白,作为高亲和力 Ca 传感器发挥作用。每个 otoferlin C2 结构域对调节 IHC 中突触囊泡循环的分子事件仍不完全了解。在这里,我们使用耳蜗病毒 cDNA 转移方法研究了它们的作用,其中缺乏 otoferlin 的小鼠 IHC(雌雄两性)通过各种 mini-otoferlin 的 cDNA 病毒转导。通过膜片钳记录和膜电容测量,我们表明,含有 C2-ACEF、C2-EF 或 C2-DEF 的 mini-otoferlin 的病毒转移部分恢复了 小鼠 IHC 中的快速胞吐作用。用 C2-ACDF 测试的 mini-otoferlin 的恢复效率要低得多,这突出了 C2-EF 结构域的重要性。测试的 mini-otoferlin 均未恢复囊泡释放的持续成分,解释了听力恢复的缺失。转导的 IHC 中快速胞吐成分的恢复也与 Ca 电流的恢复相关,具有正常幅度和快速失活,证实 otoferlin 的 C 末端 C2 结构域对于 Ca1.3 通道的正常门控是必不可少的。最后,mini-otoferlin C2-EF、C2-DEF 或 C2-ACEF 的重新引入使我们首次能够揭示和表征 IHC 中的 dynamin 依赖性超快胞吞作用。Otoferlin 是一种大型六 C2 结构域蛋白,是听觉毛细胞带状突触中突触囊泡胞吐作用所必需的。在这里,我们表明,otoferlin 的截断形式(C2-EF、C2-DEF 和 C2-ACEF)的病毒表达可以部分挽救缺乏 otoferlin 的小鼠毛细胞中胞吐作用的快速和短暂释放成分,但不能在长时间重复刺激后维持胞吐作用。值得注意的是,这些毛细胞还表现出 dynamin 依赖性超快胞吞作用。总的来说,我们的研究揭示了 otoferlin 在毛细胞突触囊泡循环中的多效性作用,特别是在触发超快胞吐作用和胞吞作用以及将突触囊泡募集到活性区方面。