Tian Jin-Hua, Wu Zheng-Xing, Unzicker Michael, Lu Li, Cai Qian, Li Cuiling, Schirra Claudia, Matti Ulf, Stevens David, Deng Chuxia, Rettig Jens, Sheng Zu-Hang
Synaptic Function Unit, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892-3701, USA.
J Neurosci. 2005 Nov 9;25(45):10546-55. doi: 10.1523/JNEUROSCI.3275-05.2005.
Identification of the molecules that regulate the priming of synaptic vesicles for fusion and the structural coupling of the calcium sensor with the soluble N-ethyl maleimide sensitive factor adaptor protein receptor (SNARE)-based fusion machinery is critical for understanding the mechanisms underlying calcium-dependent neurosecretion. Snapin binds to synaptosomal-associated protein 25 kDa (SNAP-25) and enhances the association of the SNARE complex with synaptotagmin. In the present study, we abolished snapin expression in mice and functionally evaluated the role of Snapin in neuroexocytosis. We found that the association of synaptotagmin-1 with SNAP-25 in brain homogenates of snapin mutant mice is impaired. Consequently, the absence of Snapin in embryonic chromaffin cells leads to a significant reduction of calcium-dependent exocytosis resulting from a decreased number of vesicles in releasable pools. Overexpression of Snapin fully rescued this inhibitory effect in the mutant cells. Furthermore, Snapin is relatively enriched in the purified large dense-core vesicles of chromaffin cells and associated with synaptotagmin-1. Thus, our biochemical and electrophysiological studies using snapin knock-out mice demonstrate that Snapin plays a critical role in modulating neurosecretion by stabilizing the release-ready vesicles.
鉴定调节突触小泡融合引发以及钙传感器与基于可溶性N - 乙基马来酰亚胺敏感因子衔接蛋白受体(SNARE)的融合机制的结构偶联的分子,对于理解钙依赖性神经分泌的潜在机制至关重要。Snapin与25 kDa的突触体相关蛋白(SNAP - 25)结合,并增强SNARE复合体与突触结合蛋白的结合。在本研究中,我们敲除了小鼠体内的snapin表达,并对Snapin在神经分泌中的作用进行了功能评估。我们发现,snapin突变小鼠脑匀浆中突触结合蛋白-1与SNAP - 25的结合受损。因此,胚胎嗜铬细胞中缺乏Snapin会导致可释放池中囊泡数量减少,从而使钙依赖性胞吐作用显著降低。在突变细胞中过表达Snapin可完全挽救这种抑制作用。此外,Snapin在嗜铬细胞纯化的大致密核心囊泡中相对富集,并与突触结合蛋白-1相关。因此,我们使用snapin基因敲除小鼠进行的生化和电生理研究表明,Snapin通过稳定准备释放的囊泡在调节神经分泌中起关键作用。