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In vivo fate mapping and expression analysis reveals molecular hallmarks of prospectively isolated adult neural stem cells.

机译:体内的命运作图和表达分析揭示了预期分离的成年神经干细胞的分子标志。

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Until now, limitations in the ability to enrich adult NSCs (aNSCs) have hampered meaningful analysis of these cells at the transcriptome level. Here we show via a split-Cre technology that coincident activity of the hGFAP and prominin1 promoters is a hallmark of aNSCs in vivo. Sorting of cells from the adult mouse subependymal zone (SEZ) based on their expression of GFAP and prominin1 isolates all self-renewing, multipotent stem cells at high purity. Comparison of the transcriptome of these purified aNSCs to parenchymal nonneurogenic astrocytes and other SEZ cells reveals aNSC hallmarks, including neuronal lineage priming and the importance of cilia- and Ca-dependent signaling pathways. Inducible deletion of the ciliary protein IFT88 in aNSCs validates the role of ciliary function in aNSCs. Our work reveals candidate molecular regulators for unique features of aNSCs and facilitates future selective analysis of aNSCs in other functional contexts, such as aging and injury.
机译:到现在为止,富集成年NSC(aNSC)能力的限制已经阻碍了在转录组水平上对这些细胞的有意义的分析。在这里,我们通过split-Cre技术显示,hGFAP和prominin1启动子的重合活性是aNSC在体内的标志。根据成年小鼠表皮下区(SEZ)的GFAP和prominin1的表达对细胞进行分类,可以高纯度分离所有自我更新的多能干细胞。这些纯化的aNSC的转录组与实质性非神经源性星形胶质细胞和其他SEZ细胞的比较表明aNSC的标志,包括神经元谱系启动以及纤毛和Ca依赖性信号通路的重要性。 aNSC中睫状蛋白IFT88的诱导型缺失证实了aNSC中睫状功能的作用。我们的工作揭示了aNSC独特功能的候选分子调节剂,并有助于将来在其他功能范围内(例如衰老和损伤)对aNSC进行选择性分析。

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