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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Notch activity levels control the balance between quiescence and recruitment of adult neural stem cells.
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Notch activity levels control the balance between quiescence and recruitment of adult neural stem cells.

机译:Notch活性水平控制着成年神经干细胞的静止和募集之间的平衡。

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The limited generation of neurons during adulthood is controlled by a balance between quiescence and recruitment of neural stem cells (NSCs). We use here the germinal zone of the zebrafish adult telencephalon to examine how the frequency of NSC divisions is regulated. We show, using several in vivo techniques, that progenitors transit back and forth between the quiescent and dividing state, according to varying levels of Notch activity: Notch induction drives progenitors into quiescence, whereas blocking Notch massively reinitiates NSC division and subsequent commitment toward becoming neurons. Notch activation appears predominantly triggered by newly recruited progenitors onto their neighbors, suggesting an involvement of Notch in a self-limiting mechanism, once neurogenesis is started. These results identify for the first time a lateral inhibition-like mechanism in the context of adult neurogenesis and suggest that the equilibrium between quiescence and neurogenesis in the adult brain is controlled by fluctuations of Notch activity, thereby regulating the amount of adult-born neurons.
机译:成年期间神经元的有限生成受神经干细胞(NSC)的静止和募集之间的平衡控制。我们在这里使用斑马鱼成年细脑的生发区来检查NSC分裂的频率是如何调节的。我们显示,使用多种体内技术,根据不同水平的Notch活性,祖细胞在静止状态和分裂状态之间来回迁移:Notch诱导使祖细胞进入静止状态,而阻断Notch则可大量重新启动NSC分裂并随后致力于成为神经元。 。 Notch激活主要是由新招募的祖细胞触发向其邻居触发的,表明一旦神经发生开始,Notch就会参与自我限制机制。这些结果首次确定了成年神经发生背景下的侧向抑制样机制,并表明成年大脑的静止和神经发生之间的平衡受Notch活性的波动控制,从而调节了成年神经元的数量。

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