ILSONG Institute of Life Science, Hallym University, Anyang, Republic of Korea.
Department of Bio-Medical Gerontology, Hallym University Graduate School, Chuncheon, Republic of Korea.
Exp Mol Med. 2018 Mar 23;50(3):e462. doi: 10.1038/emm.2017.303.
Nervous wreck (Nwk), a protein that is present at Type 1 glutamatergic synapses that contains an SH3 domain and an FCH motif, is a Drosophila homolog of the human srGAP3/MEGAP protein, which is associated with mental retardation. Confocal microscopy revealed that circles in Nwk reticulum enclosed T-shaped active zones (T-AZs) and partially colocalized with synaptic vesicle (SV) markers and both exocytosis and endocytosis components. Results from an electron microscopic (EM) analysis showed that Nwk proteins localized at synaptic edges and in SV pools. Both the synaptic areas and the number of SVs in the readily releasable (RRPs) and reserve (RPs) SV pools in nwk were significantly reduced. Synergistic, morphological phenotypes observed from eag;;nwk neuromuscular junctions suggested that Nwk may regulate synaptic plasticity differently from activity-dependent Hebbian plasticity. Although the synaptic areas in eag;;nwk boutons were not significantly different from those of nwk, the number of SVs in the RRPs was similar to those of Canton-S. In addition, three-dimensional, high-voltage EM tomographic analysis demonstrated that significantly fewer enlarged SVs were present in nwk RRPs. Furthermore, Nwk formed protein complexes with Drosophila Synapsin and Synaptotagmin 1 (DSypt1). Taken together, these findings suggest that Nwk is able to maintain synaptic architecture and both SV size and distribution at T-AZs by interacting with Synapsin and DSypt1.
神经崩溃蛋白(Nwk)是一种存在于 1 型谷氨酸能突触中的蛋白质,它含有一个 SH3 结构域和一个 FCH 基序,是人类 srGAP3/MEGAP 蛋白的果蝇同源物,与智力迟钝有关。共聚焦显微镜显示,Nwk 网络中的圆圈包围着 T 形活性区(T-AZs),并与突触小泡(SV)标记物部分共定位,以及胞吐和胞吞成分。电子显微镜(EM)分析的结果表明,Nwk 蛋白定位于突触边缘和 SV 池。nwk 中的突触区和 SV 池数量,无论是易释放(RRPs)还是储备(RPs)SV 池都明显减少。eag;;nwk 神经肌肉接头观察到的协同形态表型表明,Nwk 可能以不同于活动依赖性海伯尔可塑性的方式调节突触可塑性。尽管 eag;;nwk 末梢中的突触区与 nwk 的无显著差异,但 RRPs 中的 SV 数量与 Canton-S 相似。此外,三维、高压 EM 断层扫描分析表明,nwk RRPs 中存在的放大 SV 明显减少。此外,Nwk 与果蝇突触素和突触结合蛋白 1(DSypt1)形成蛋白质复合物。综上所述,这些发现表明,Nwk 通过与突触素和 DSypt1 相互作用,能够维持 T-AZs 的突触结构以及 SV 的大小和分布。