Molecular Biology of Cochlear Neurotransmission, Department of Otolaryngology, University Medical Center Göttingen, 37099 Göttingen, Germany.
J Neurosci. 2011 Mar 30;31(13):4886-95. doi: 10.1523/JNEUROSCI.5122-10.2011.
Cochlear inner hair cells (IHCs) use Ca(2+)-dependent exocytosis of glutamate to signal sound information. Otoferlin (Otof), a C(2) domain protein essential for IHC exocytosis and hearing, may serve as a Ca(2+) sensor in vesicle fusion in IHCs that seem to lack the classical neuronal Ca(2+) sensors synaptotagmin 1 (Syt1) and Syt2. Support for the Ca(2+) sensor of fusion hypothesis for otoferlin function comes from biochemical experiments, but additional roles in late exocytosis upstream of fusion have been indicated by physiological studies. Here, we tested the functional equivalence of otoferlin and Syt1 in three neurosecretory model systems: auditory IHCs, adrenal chromaffin cells, and hippocampal neurons. Long-term and short-term ectopic expression of Syt1 in IHCs of Otof (-/-) mice by viral gene transfer in the embryonic inner ear and organotypic culture failed to rescue their Ca(2+) influx-triggered exocytosis. Conversely, virally mediated overexpression of otoferlin did not restore phasic exocytosis in Syt1-deficient chromaffin cells or neurons but enhanced asynchronous release in the latter. We further tested exocytosis in Otof (-/-) hippocampal neurons and in Syt1(-/-) IHCs but found no deficits in vesicle fusion. Expression analysis of different synaptotagmin isoforms indicated that Syt1 and Syt2 are absent from mature IHCs. Our data argue against a simple functional equivalence of the two C(2) domain proteins in exocytosis of IHC ribbon synapses, chromaffin cells, and hippocampal synapses.
耳蜗内毛细胞 (IHC) 通过谷氨酸的 Ca(2+)-依赖性胞吐作用来传递声音信息。耳声发射蛋白 (Otof) 是一种 C(2) 结构域蛋白,对 IHC 胞吐作用和听力至关重要,它可能作为 IHC 融合中 Ca(2+) 传感器,而 IHC 似乎缺乏经典的神经元 Ca(2+) 传感器突触结合蛋白 1 (Syt1) 和 Syt2。支持 otoferlin 功能的融合假说 Ca(2+) 传感器来自生化实验,但生理学研究表明其在融合前的晚期胞吐作用中具有额外的作用。在这里,我们在三个神经分泌模型系统中测试了 otoferlin 和 Syt1 的功能等效性:听觉 IHC、肾上腺嗜铬细胞和海马神经元。通过在胚胎内耳和器官型培养中通过病毒基因转移在 Otof(-/-) 小鼠的 IHC 中长期和短期异位表达 Syt1,未能挽救其 Ca(2+) 流入触发的胞吐作用。相反,病毒介导的 otoferlin 过表达不能恢复 Syt1 缺陷型嗜铬细胞或神经元中的相分离胞吐作用,但增强了后者的异步释放。我们进一步测试了 Otof(-/-) 海马神经元和 Syt1(-/-) IHC 中的胞吐作用,但没有发现囊泡融合缺陷。不同突触结合蛋白同工型的表达分析表明 Syt1 和 Syt2 不存在于成熟的 IHC 中。我们的数据表明,在 IHC 带状突触、嗜铬细胞和海马突触的胞吐作用中,两种 C(2) 结构域蛋白之间没有简单的功能等效性。