Synaptic Vesicle Dynamics Group, European Neuroscience Institute (ENI), University Medical Center Göttingen, Göttingen, Germany.
Molecular Architecture of Synapses Group, Institute for Auditory Neuroscience, InnerEarLab and Center for Biostructural Imaging of Neurodegeneration, University Medical Center Göttingen, Göttingen, Germany.
EMBO J. 2019 Mar 1;38(5). doi: 10.15252/embj.2018100116. Epub 2019 Feb 7.
Ribbon synapses of cochlear inner hair cells (IHCs) operate with high rates of neurotransmission; yet, the molecular regulation of synaptic vesicle (SV) recycling at these synapses remains poorly understood. Here, we studied the role of endophilins-A1-3, endocytic adaptors with curvature-sensing and curvature-generating properties, in mouse IHCs. Single-cell RT-PCR indicated the expression of endophilins-A1-3 in IHCs, and immunoblotting confirmed the presence of endophilin-A1 and endophilin-A2 in the cochlea. Patch-clamp recordings from endophilin-A-deficient IHCs revealed a reduction of Ca influx and exocytosis, which we attribute to a decreased abundance of presynaptic Ca channels and impaired SV replenishment. Slow endocytic membrane retrieval, thought to reflect clathrin-mediated endocytosis, was impaired. Otoferlin, essential for IHC exocytosis, co-immunoprecipitated with purified endophilin-A1 protein, suggestive of a molecular interaction that might aid exocytosis-endocytosis coupling. Electron microscopy revealed lower SV numbers, but an increased occurrence of coated structures and endosome-like vacuoles at IHC active zones. In summary, endophilins regulate Ca influx and promote SV recycling in IHCs, likely via coupling exocytosis to endocytosis, and contributing to membrane retrieval and SV reformation.
ribbonsynapses耳蜗内毛细胞(IHC)以高频率的神经递质传递作用;然而,这些突触中突触小泡(SV)再循环的分子调节仍然知之甚少。在这里,我们研究了内啡肽-A1-3在小鼠 IHC 中的作用,内啡肽-A1-3 是一种具有曲率感应和产生曲率特性的内吞作用衔接蛋白。单细胞 RT-PCR 表明内啡肽-A1-3在 IHCs 中表达,免疫印迹证实内啡肽-A1 和内啡肽-A2 在耳蜗中存在。内啡肽-A 缺失 IHC 的膜片钳记录显示 Ca 内流和胞吐作用减少,我们认为这归因于突触前 Ca 通道的丰度降低和 SV 补充受损。被认为反映网格蛋白介导的内吞作用的慢速内吞膜回收受到损害。耳钙蛋白,对 IHC 胞吐作用至关重要,与纯化的内啡肽-A1 蛋白共免疫沉淀,提示可能有助于胞吐作用-内吞作用偶联的分子相互作用。电子显微镜显示 SV 数量减少,但 IHC 活性区的包被结构和类内体空泡的发生率增加。总之,内啡肽调节 Ca 内流并促进 IHC 中的 SV 再循环,可能通过将胞吐作用与内吞作用偶联,促进膜回收和 SV 再形成。