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The role of microRNAs in human neural stem cells, neuronal differentiation and subtype specification

机译:microRNA在人类神经干细胞,神经元分化和亚型规范中的作用

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摘要

The impressive neuronal diversity found within the nervous system emerges from a limited pool of neural progenitor cells that proceed through different gene expression programs to acquire distinct cell fates. Here, we review recent evidence indicating that microRNAs (miRNAs) are critically involved in conferring neural cell identities during neural induction, neuronal differentiation and subtype specification. Several studies have shown that miRNAs act in concert with other gene regulatory factors and genetic switches to regulate the spatial and temporal expression profiles of important cell fate determinants. So far, most studies addressing the role of miRNAs during neurogenesis were conducted using animal models. With the advent of human pluripotent stem cells and the possibility to differentiate these into neural stem cells, we now have the opportunity to study miRNAs in a human context. More insight into the impact of miRNA-based regulation during neural fate choice could in the end be exploited to develop new strategies for the generation of distinct human neuronal cell types.
机译:在神经系统中发现的令人印象深刻的神经元多样性来自有限数量的神经祖细胞,这些祖细胞通过不同的基因表达程序进行操作以获取独特的细胞命运。在这里,我们审查了最近的证据,表明在神经诱导,神经元分化和亚型规范化过程中,微小RNA(miRNA)关键参与赋予神经细胞身份。多项研究表明,miRNA与其他基因调控因子和遗传开关协同作用,以调控重要细胞命运决定簇的时空表达谱。到目前为止,大多数针对miRNA在神经发生过程中作用的研究都是使用动物模型进行的。随着人类多能干细胞的出现以及将它们分化为神经干细胞的可能性,我们现在有机会在人类背景下研究miRNA。最终,可以利用更多关于基于miRNA的调控在神经命运选择过程中的影响的洞察力,以开发新的策略来生成独特的人类神经元细胞类型。

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