Stem Cells and Neuroregeneration Research Group, School of Clinical Sciences, Medical Sciences Building, University Walk, University of Bristol, Bristol, UK.
Brain Repair Group, School of Biosciences, Life Science Building, University of Cardiff, Cardiff, UK.
Cell Death Dis. 2014 Jan 23;5(1):e1017. doi: 10.1038/cddis.2013.546.
Connexin43 (Cx43) is the most widely and abundantly expressed gap junction (GJ) protein and it is strongly associated with the regulation of cell cycle progression. Emerging roles for Cx43 in cell adhesion and migration during neural differentiation have also been recently recognized, and this has emphasized the involvement of Cx43 in different physiological process beyond its role as a GJ protein. In this study, we explore the function of Cx43 in the differentiation of human neural progenitor cells (hNPCs) using viral vectors that mediate the overexpression or knockdown of the protein. Results showed that in the absence of this protein fetal cortex-derived hNPCs differentiated toward a neuronal phenotype at expenses of a glial phenotype. Furthermore, the silencing of Cx43 did not affect hNPC proliferation rate or numbers of apoptotic cells. The increase in the number of neurons was not recapitulated when GJ intercellular communications were pharmacologically blocked, and this suggested that Cx43 was influencing hNPCs differentiation with a GJ-independent effect. In addition, Cx43 knockdown significantly increased β-catenin signaling, which has been shown to regulate the transcription of pro-neuronal genes during embryonic neural development. Our results add further support to the hypothesis that Cx43 protein itself regulates key signaling pathways during development and neurogenesis beyond its role as GJ protein.
间隙连接蛋白 43(Cx43)是表达最广泛、最丰富的缝隙连接(GJ)蛋白,它与细胞周期进程的调控密切相关。最近还发现 Cx43 在神经分化过程中的细胞黏附和迁移中具有新的作用,这强调了 Cx43 在作为 GJ 蛋白以外的不同生理过程中的参与。在这项研究中,我们使用介导蛋白过表达或敲低的病毒载体来探索 Cx43 在人神经祖细胞(hNPC)分化中的作用。结果表明,在没有这种蛋白的情况下,来自胎皮层的 hNPC 分化为神经元表型,而牺牲了神经胶质表型。此外,沉默 Cx43 并不影响 hNPC 的增殖率或凋亡细胞的数量。当通过药理学方法阻断 GJ 细胞间通讯时,神经元数量的增加并没有被重现,这表明 Cx43 通过与 GJ 无关的效应影响 hNPC 的分化。此外,Cx43 敲低显著增加了β-连环蛋白信号,该信号已被证明在胚胎神经发育过程中调节神经元基因的转录。我们的结果进一步支持了这样一种假设,即 Cx43 蛋白本身在发育和神经发生过程中调节关键信号通路,而不仅仅是作为 GJ 蛋白。