Department of Physiology and Biomedical Sciences, Seoul National University College of Medicine, Seoul, South Korea.
Physical Examination Center, Department of Internal Medicine, Yanbian University Hospital, Yanji, Jilin Province, China.
Cell Rep. 2018 Mar 20;22(12):3339-3350. doi: 10.1016/j.celrep.2018.02.088.
Despite being a highly enriched synaptic vesicle (SV) protein and a candidate gene for autism, the physiological function of SCAMP5 remains mostly enigmatic. Here, using optical imaging and electrophysiological experiments, we demonstrate that SCAMP5 plays a critical role in release site clearance at the active zone. Truncation analysis revealed that the 2/3 loop domain of SCAMP5 directly interacts with adaptor protein 2, and this interaction is critical for its role in release site clearance. Knockdown (KD) of SCAMP5 exhibited pronounced synaptic depression accompanied by a slower recovery of the SV pool. Moreover, it induced a strong frequency-dependent short-term depression of synaptic release, even under the condition of sufficient release-ready SVs. Super-resolution microscopy further proved the defects in SV protein clearance induced by KD. Thus, reduced expression of SCAMP5 may impair the efficiency of SV clearance at the active zone, and this might relate to the synaptic dysfunction observed in autism.
尽管突触小泡相关膜蛋白 5(SCAMP5)是一种高度富集的突触小泡(SV)蛋白,也是自闭症的候选基因,但它的生理功能仍然很大程度上是个谜。在这里,我们使用光学成像和电生理实验表明,SCAMP5 在活性区的释放位点清除中起着关键作用。截断分析显示,SCAMP5 的 2/3 环结构域直接与衔接蛋白 2 相互作用,这种相互作用对于其在释放位点清除中的作用至关重要。SCAMP5 的敲低(KD)表现出明显的突触抑制,伴随着 SV 池恢复缓慢。此外,它在 SV 释放准备充分的情况下,甚至在强频率依赖性条件下,也会引起强烈的短期抑制。超分辨率显微镜进一步证明了 KD 引起的 SV 蛋白清除缺陷。因此,SCAMP5 表达减少可能会损害活性区 SV 清除的效率,这可能与自闭症中观察到的突触功能障碍有关。