Shi Yanjun, Li Qian, Shao Zhiyong
Department of Neurology, State Key Laboratory of Medical Neurobiology and Institutes of Brain Science, Zhongshan Hospital, Fudan University, Shanghai, China.
Front Mol Neurosci. 2018 Jun 15;11:194. doi: 10.3389/fnmol.2018.00194. eCollection 2018.
Synapses are specialized neuronal connections essential for neuronal function. Defects in synaptic assembly or maintenance usually lead to various neurological disorders. Synaptic assembly is regulated by secreted molecules such as Wnts. Wnts are a large family of conserved glycosylated signaling molecules involved in many aspects of neural development and maintenance. However, the molecular mechanisms by which Wnts regulate synaptic assembly remain elusive due to the large number of ligands/receptors, the diversity of signaling cascades and the complexity of the nervous system. In this study, through genetic manipulation, we uncover that Wnt-2 (CWN-2) is required for synaptic development. The CWN-2 signal is required during both embryonic and postembryonic development, in the nervous system and intestine, for promoting synaptic assembly. Furthermore, we provide genetic evidence for CWN-2 promoting synaptogenesis through the Frizzled receptor (FZD) CFZ-2, the Dishevelled (DVL) DSH-2, the β-catenin SYS-1 and the only T-cell specific transcription factor POP-1/TCF. Importantly, it is the first time to report the requirement of a TCF for presynaptic assembly. These findings expand our understanding of the synaptogenic mechanisms and may provide therapeutic insights into Wnt-related neurological disorders.
突触是神经元功能所必需的特殊神经元连接。突触组装或维持的缺陷通常会导致各种神经疾病。突触组装受Wnts等分泌分子的调节。Wnts是一大类保守的糖基化信号分子,参与神经发育和维持的许多方面。然而,由于配体/受体数量众多、信号级联的多样性以及神经系统的复杂性,Wnts调节突触组装的分子机制仍不清楚。在本研究中,通过基因操作,我们发现Wnt-2(CWN-2)是突触发育所必需的。在胚胎发育和胚胎后发育期间,在神经系统和肠道中,CWN-2信号对于促进突触组装都是必需的。此外,我们提供了遗传证据,证明CWN-2通过卷曲受体(FZD)CFZ-2、散乱蛋白(DVL)DSH-2、β-连环蛋白SYS-1和唯一的T细胞特异性转录因子POP-1/TCF促进突触形成。重要的是,这是首次报道TCF对突触前组装的需求。这些发现扩展了我们对突触形成机制的理解,并可能为Wnt相关神经疾病提供治疗思路。