Di Giovanni Jerome, Sheng Zu-Hang
Synaptic Functions Section, The Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, USA.
Synaptic Functions Section, The Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, USA
EMBO J. 2015 Aug 4;34(15):2059-77. doi: 10.15252/embj.201591125. Epub 2015 Jun 24.
Recycling synaptic vesicles (SVs) transit through early endosomal sorting stations, which raises a fundamental question: are SVs sorted toward endolysosomal pathways? Here, we used snapin mutants as tools to assess how endolysosomal sorting and trafficking impact presynaptic activity in wild-type and snapin(-/-) neurons. Snapin acts as a dynein adaptor that mediates the retrograde transport of late endosomes (LEs) and interacts with dysbindin, a subunit of the endosomal sorting complex BLOC-1. Expressing dynein-binding defective snapin mutants induced SV accumulation at presynaptic terminals, mimicking the snapin(-/-) phenotype. Conversely, over-expressing snapin reduced SV pool size by enhancing SV trafficking to the endolysosomal pathway. Using a SV-targeted Ca(2+) sensor, we demonstrate that snapin-dysbindin interaction regulates SV positional priming through BLOC-1/AP-3-dependent sorting. Our study reveals a bipartite regulation of presynaptic activity by endolysosomal trafficking and sorting: LE transport regulates SV pool size, and BLOC-1/AP-3-dependent sorting fine-tunes the Ca(2+) sensitivity of SV release. Therefore, our study provides new mechanistic insights into the maintenance and regulation of SV pool size and synchronized SV fusion through snapin-mediated LE trafficking and endosomal sorting.
回收性突触小泡(SVs)会经过早期内体分选站,这就引发了一个基本问题:SVs是否会被分选至内溶酶体途径?在此,我们使用Snapin突变体作为工具,来评估内溶酶体分选和运输如何影响野生型和Snapin基因敲除(-/-)神经元的突触前活性。Snapin作为动力蛋白衔接蛋白,介导晚期内体(LEs)的逆行运输,并与内体分选复合物BLOC-1的一个亚基dysbindin相互作用。表达与动力蛋白结合缺陷的Snapin突变体可诱导SVs在突触前终末积累,模拟Snapin基因敲除(-/-)的表型。相反,过表达Snapin可通过增强SVs向内溶酶体途径的运输来减小SVs池的大小。使用一种靶向SVs的Ca²⁺传感器,我们证明Snapin-dysbindin相互作用通过BLOC-1/AP-3依赖性分选来调节SVs的位置引发。我们的研究揭示了内溶酶体运输和分选对突触前活性的双重调节:LEs运输调节SVs池的大小,而BLOC-1/AP-3依赖性分选则微调SVs释放的Ca²⁺敏感性。因此,我们的研究为通过Snapin介导的LEs运输和内体分选来维持和调节SVs池大小以及同步SVs融合提供了新的机制见解。