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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >High Hes1 expression and resultant Ascl1 suppression regulate quiescent vs. active neural stem cells in the adult mouse brain
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High Hes1 expression and resultant Ascl1 suppression regulate quiescent vs. active neural stem cells in the adult mouse brain

机译:高HES1表达和结果ASCL1抑制调节成年小鼠脑中的活性神经干细胞

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摘要

Somatic stem/progenitor cells are active in embryonic tissues but quiescent in many adult tissues. The detailed mechanisms that regulate active versus quiescent stem cell states are largely unknown. In active neural stem cells, Hes1 expression oscillates and drives cyclic expression of the proneural gene Ascl1 which activates cell proliferation. Here, we found that in quiescent neural stem cells in the adult mouse brain, Hes1 levels are oscillatory, although the peaks and troughs are higher than those in active neural stem cells, causing Ascl1 expression to be continuously suppressed. Inactivation of Hes1 and its related genes up-regulates Ascl1 expression and increases neurogenesis. This causes rapid depletion of neural stem cells and premature termination of neurogenesis. Conversely, sustained Hes1 expression represses Ascl1, inhibits neurogenesis, and maintains quiescent neural stem cells. In contrast, induction of Ascl1 oscillations activates neural stem cells and increases neurogenesis in the adult mouse brain. Thus, Ascl1 oscillations, which normally depend on Hes1 oscillations, regulate the active state, while high Hes1 expression and resultant Ascl1 suppression promote quiescence in neural stem cells.
机译:体细胞茎/祖细胞在胚胎组织中活跃,但在许多成年组织中静脉静脉。调节活性与静态干细胞状态的详细机制很大程度上是未知的。在活性神经干细胞中,HES1表达振荡并驱动活性基因ASCL1的循环表达,其激活细胞增殖。在这里,我们发现在成年小鼠脑中的静态神经干细胞中,HES1水平是振荡的,尽管峰和槽高于活性神经干细胞中的峰值,导致ASCL1表达被连续抑制。 HES1的失活及其相关基因上调ASCL1表达并增加神经发生。这导致神经干细胞的快速消耗和神经发生的过早终止。相反,持续的HES1表达抑制ASCL1,抑制神经发生,并保持静态神经干细胞。相反,ASCL1振荡的诱导激活神经干细胞并增加成年小鼠脑中的神经发生。因此,通常取决于HES1振荡,调节活性状态的ASCL1振荡,而HES1表达和得到的ASCL1抑制促进神经干细胞中的静脉。

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