Zhu Yunhua, Demidov Oleg N, Goh Amanda M, Virshup David M, Lane David P, Bulavin Dmitry V
J Clin Invest. 2014 Jul;124(7):3263-73. doi: 10.1172/JCI73015. Epub 2014 Jun 9.
The number of newly formed neurons declines rapidly during aging, and this decrease in neurogenesis is associated with decreased function of neural stem/progenitor cells (NPCs). Here, we determined that a WIP1-dependent pathway regulates NPC differentiation and contributes to the age-associated decline of neurogenesis. Specifically, we found that WIP1 is expressed in NPCs of the mouse subventricular zone (SVZ) and aged animals with genetically enhanced WIP1 expression exhibited higher NPC numbers and neuronal differentiation compared with aged WT animals. Additionally, augmenting WIP1 expression in aged animals markedly improved neuron formation and rescued a functional defect in fine odor discrimination in aged mice. We identified the WNT signaling pathway inhibitor DKK3 as a key downstream target of WIP1 and found that expression of DKK3 in the SVZ is restricted to NPCs. Using murine reporter strains, we determined that DKK3 inhibits neuroblast formation by suppressing WNT signaling and Dkk3 deletion or pharmacological activation of the WNT pathway improved neuron formation and olfactory function in aged mice. We propose that WIP1 controls DKK3-dependent inhibition of neuronal differentiation during aging and suggest that regulating WIP1 levels could prevent certain aspects of functional decline of the aging brain.
在衰老过程中,新生成神经元的数量迅速减少,而神经发生的这种减少与神经干/祖细胞(NPCs)功能的下降有关。在此,我们确定了一条依赖WIP1的通路调节NPC分化,并导致与年龄相关的神经发生衰退。具体而言,我们发现WIP1在小鼠脑室下区(SVZ)的NPCs中表达,与老年野生型动物相比,基因增强WIP1表达的老年动物表现出更高的NPC数量和神经元分化。此外,在老年动物中增强WIP1表达显著改善了神经元形成,并挽救了老年小鼠在精细气味辨别方面的功能缺陷。我们确定WNT信号通路抑制剂DKK3是WIP1的关键下游靶点,并发现DKK3在SVZ中的表达仅限于NPCs。使用小鼠报告菌株,我们确定DKK3通过抑制WNT信号来抑制神经母细胞形成,并且Dkk3缺失或WNT通路的药理学激活改善了老年小鼠的神经元形成和嗅觉功能。我们提出WIP1在衰老过程中控制DKK3依赖性的神经元分化抑制,并表明调节WIP1水平可以预防衰老大脑功能衰退的某些方面。