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首页> 外文期刊>Journal of cell biology >Coordinated control of self-renewal and differentiation of neural stem cells by Myc and the p19ARF–p53 pathway
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Coordinated control of self-renewal and differentiation of neural stem cells by Myc and the p19ARF–p53 pathway

机译:Myc和p19ARF–p53途径对神经干细胞自我更新和分化的协调控制

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The modes of proliferation and differentiation of neural stem cells (NSCs) are coordinately controlled during development, but the underlying mechanisms remain largely unknown. In this study, we show that the protooncoprotein Myc and the tumor suppressor p19ARF regulate both NSC self-renewal and their neuronal and glial fate in a developmental stage–dependent manner. Early-stage NSCs have low p19ARF expression and retain a high self-renewal and neurogenic capacity, whereas late-stage NSCs with higher p19ARF expression possess a lower self-renewal capacity and predominantly generate glia. Overexpression of Myc or inactivation of p19ARF reverts the properties of late-stage NSCs to those of early-stage cells. Conversely, inactivation of Myc or forced p19ARF expression attenuates self-renewal and induces precocious gliogenesis through modulation of the responsiveness to gliogenic signals. These actions of p19ARF in NSCs are mainly mediated by p53. We propose that opposing actions of Myc and the p19ARF–p53 pathway have important functions in coordinated developmental control of self-renewal and cell fate choices in NSCs.
机译:神经干细胞(NSCs)的增殖和分化方式在发育过程中受到协调控制,但其基本机制仍不清楚。在这项研究中,我们表明原癌蛋白Myc和抑癌基因p19ARF以发育阶段依赖性的方式调节NSC的自我更新及其神经元和神经胶质的命运。早期NSC的p19ARF表达低,并保持较高的自我更新和神经源性能力,而晚期p19ARF表达的NSC则具有较低的自我更新能力,并且主要产生神经胶质。 Myc的过表达或p19ARF的失活将晚期NSC的特性还原为早期细胞的特性。相反,Myc的失活或强制的p19ARF表达会减弱自我更新,并通过调节对胶质生成信号的响应性来诱导早熟胶质生成。 p19ARF在NSC中的这些作用主要由p53介导。我们提出Myc和p19ARF-p53通路的相反作用在NSC的自我更新和细胞命运选择的协调发展控制中具有重要功能。

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