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首页> 外文期刊>Stem Cell Reports >Long Non-coding RNA T-UCstem1 Controls Progenitor Proliferation and Neurogenesis in the Postnatal Mouse Olfactory Bulb through Interaction with miR-9
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Long Non-coding RNA T-UCstem1 Controls Progenitor Proliferation and Neurogenesis in the Postnatal Mouse Olfactory Bulb through Interaction with miR-9

机译:长期非编码RNA T-Ucstem1通过与miR-9的相互作用控制产后小鼠嗅球中的祖细胞增殖和神经发生

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Neural stem cell populations generate a wide spectrum of neuronal and glial cell types in a highly ordered fashion. MicroRNAs are essential regulators of this process. T-UCstem1 is a long non-coding RNA containing an ultraconserved element, and in?vitro analyses in pluripotent stem cells provided evidence that it regulates the balance between proliferation and differentiation. Here we investigate the in?vivo function of T-UCstem1. We show that T-UCstem1 is expressed in the forebrain neurogenic lineage that generates interneurons for the postnatal olfactory bulb. Gain of function in neural stem cells increased progenitor proliferation at the expense of neuron production, whereas knockdown had the opposite effect. This regulatory function is mediated by its interaction with miR-9-3p and miR-9-5p. Based thereon, we propose a mechanistic model for the role of T-UCstem1 in the dynamic regulation of neural progenitor proliferation during neurogenesis.
机译:神经干细胞群以高度有序的方式产生广谱的神经元和胶质细胞类型。 MicroRNA是该过程的必备调节因素。 T-ucstem1是含有超委托元素的长非编码RNA,在多能干细胞中的体外分析提供了它调节增殖和分化之间的平衡。在这里,我们调查T-Ucstem1的in?体内功能。我们表明T-Ucstem1以前脑神经发生谱系的表达,从而为产后嗅灯泡产生型号。神经干细胞的功能的增益增加了神经元生产的祖细胞增殖,而敲低的效果相反。该调节功能是通过与MIR-9-3P和MIR-9-5P的互动介导的。基于此,我们提出了一种机械模型,用于T-Ucstem1在神经发生过程中神经祖细胞增殖的动态调节中的作用。

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