Center for Human Genetics, Katholieke Universiteit Leuven, Vlaams Instituut voor Biotechnologie (VIB), 3000 Leuven, Belgium.
J Neurosci. 2010 Apr 7;30(14):4833-44. doi: 10.1523/JNEUROSCI.5221-09.2010.
The metalloproteinase and major amyloid precursor protein (APP) alpha-secretase candidate ADAM10 is responsible for the shedding of proteins important for brain development, such as cadherins, ephrins, and Notch receptors. Adam10(-/-) mice die at embryonic day 9.5, due to major defects in development of somites and vasculogenesis. To investigate the function of ADAM10 in brain, we generated Adam10 conditional knock-out (cKO) mice using a Nestin-Cre promotor, limiting ADAM10 inactivation to neural progenitor cells (NPCs) and NPC-derived neurons and glial cells. The cKO mice die perinatally with a disrupted neocortex and a severely reduced ganglionic eminence, due to precocious neuronal differentiation resulting in an early depletion of progenitor cells. Premature neuronal differentiation is associated with aberrant neuronal migration and a disorganized laminar architecture in the neocortex. Neurospheres derived from Adam10 cKO mice have a disrupted sphere organization and segregated more neurons at the expense of astrocytes. We found that Notch-1 processing was affected, leading to downregulation of several Notch-regulated genes in Adam10 cKO brains, in accordance with the central role of ADAM10 in this signaling pathway and explaining the neurogenic phenotype. Finally, we found that alpha-secretase-mediated processing of APP was largely reduced in these neurons, demonstrating that ADAM10 represents the most important APP alpha-secretase in brain. Our study reveals that ADAM10 plays a central role in the developing brain by controlling mainly Notch-dependent pathways but likely also by reducing surface shedding of other neuronal membrane proteins including APP.
金属蛋白酶和主要淀粉样前体蛋白 (APP) α-分泌酶候选物 ADAM10 负责切割对大脑发育很重要的蛋白质,如钙黏蛋白、表皮生长因子受体和 Notch 受体。由于体节和血管生成的主要发育缺陷,Adam10(-/-) 小鼠在胚胎第 9.5 天死亡。为了研究 ADAM10 在大脑中的功能,我们使用巢蛋白启动子生成了 Adam10 条件敲除 (cKO) 小鼠,将 ADAM10 的失活限制在神经祖细胞 (NPC) 和 NPC 衍生的神经元和神经胶质细胞中。cKO 小鼠在围产期死亡,由于前体细胞过早分化导致祖细胞早期耗竭,新皮层发育中断,神经节隆起严重减少。过早的神经元分化与异常的神经元迁移和新皮层中分层结构的紊乱有关。来自 Adam10 cKO 小鼠的神经球具有破坏的球体组织,并且由于以牺牲星形胶质细胞为代价而产生更多的神经元而分离。我们发现 Notch-1 加工受到影响,导致 Adam10 cKO 大脑中几个 Notch 调节基因的下调,这与 ADAM10 在这条信号通路中的核心作用一致,并解释了神经发生表型。最后,我们发现 APP 的 α-分泌酶介导的加工在这些神经元中大大减少,证明 ADAM10 是大脑中最重要的 APP α-分泌酶。我们的研究表明,ADAM10 通过主要控制 Notch 依赖途径,但也可能通过减少包括 APP 在内的其他神经元膜蛋白的表面脱落,在发育中的大脑中发挥核心作用。