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Wnt-mediated activation of NeuroD1 and retro-elements during adult neurogenesis.

机译:成人神经发生过程中Wnt介导的NeuroD1激活和逆转录元素。

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摘要

In adult hippocampus, new neurons are continuously generated from neural stem cells (NSCs), but the molecular mechanisms regulating adult neurogenesis remain elusive. We found that Wnt signaling, together with the removal of Sox2, triggered the expression of NeuroD1 in mice. This transcriptional regulatory mechanism was dependent on a DNA element containing overlapping Sox2 and T-cell factor/lymphoid enhancer factor (TCF/LEF)-binding sites (Sox/LEF) in the promoter. Notably, Sox/LEF sites were also found in long interspersed nuclear element 1 (LINE-1) elements, consistent with their critical roles in the transition of NSCs to proliferating neuronal progenitors. Our results describe a previously unknown Wnt-mediated regulatory mechanism that simultaneously coordinates activation of NeuroD1 and LINE-1, which is important for adult neurogenesis and survival of neuronal progenitors. Moreover, the discovery that LINE-1 retro-elements embedded in the mammalian genome can function as bi-directional promoters suggests that Sox/LEF regulatory sites may represent a general mechanism, at least in part, for relaying environmental signals to other nearby loci to promote adult hippocampal neurogenesis.
机译:在成年海马中,神经干细胞(NSC)不断产生新的神经元,但调节成年神经发生的分子机制仍然难以捉摸。我们发现,Wnt信号传导以及Sox2的去除触发了NeuroD1在小鼠中的表达。这种转录调控机制取决于在启动子中包含重叠的Sox2和T细胞因子/淋巴增强因子(TCF / LEF)结合位点(Sox / LEF)的DNA元件。值得注意的是,Sox / LEF位点还存在于长穿插的核元素1(LINE-1)元素中,与其在NSC向增殖性神经元祖细胞过渡中的关键作用相一致。我们的结果描述了一个以前未知的Wnt介导的调节机制,该机制同时协调NeuroD1和LINE-1的激活,这对于成人神经发生和神经元祖细胞的存活很重要。此外,发现嵌入哺乳动物基因组中的LINE-1逆转录元件可以起双向启动子的作用,这表明Sox / LEF调控位点可能代表了至少部分将环境信号传递给其他附近基因座的通用机制。促进成年海马神经发生。

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