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Epigenetic regulation of miR-184 by MBD1 governs neural stem cell proliferation and differentiation.

机译:MBD1对miR-184的表观遗传调控控制着神经干细胞的增殖和分化。

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Methyl-CpG binding protein 1 (MBD1) regulates gene expression via a DNA methylation-mediated epigenetic mechanism. We have previously demonstrated that MBD1 deficiency impairs adult neural stem/progenitor cell (aNSC) differentiation and neurogenesis, but the underlying mechanism was unclear. Here, we show that MBD1 regulates the expression of several microRNAs in aNSCs and, specifically, that miR-184 is directly repressed by MBD1. High levels of miR-184 promoted proliferation but inhibited differentiation of aNSCs, whereas inhibition of miR-184 rescued the phenotypes associated with MBD1 deficiency. We further found that miR-184 regulates the expression of Numblike (Numbl), a known regulator of brain development, by binding to the 3'-UTR of Numbl mRNA and affecting its translation. Expression of exogenous Numbl could rescue the aNSC defects that result from either miR-184 overexpression or MBD1 deficiency. Therefore, MBD1, miR-184, and Numbl form a regulatory network that helps control the balance between proliferation and differentiation of aNSCs.
机译:甲基-CpG结合蛋白1(MBD1)通过DNA甲基化介导的表观遗传机制调节基因表达。我们以前已经证明MBD1缺乏会损害成人神经干/祖细胞(aNSC)的分化和神经发生,但是其潜在机制尚不清楚。在这里,我们显示MBD1调节aNSC中几个microRNA的表达,特别是miR-184被MBD1直接抑制。高水平的miR-184促进了增殖,但抑制了aNSCs的分化,而抑制miR-184则挽救了与MBD1缺乏症相关的表型。我们进一步发现,miR-184通过与Numbl mRNA的3'-UTR结合并影响其翻译来调节Numblike(Numbl)(一种已知的大脑发育调节剂)的表达。外源Numbl的表达可以挽救由miR-184过表达或MBD1缺乏引起的aNSC缺陷。因此,MBD1,miR-184和Numbl形成了一个调控网络,可帮助控制aNSC增殖和分化之间的平衡。

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