首页> 外文期刊>Stem Cell Reviews and Reports >DLK1 Promotes Neurogenesis of Human and Mouse Pluripotent Stem Cell-Derived Neural Progenitors Via Modulating Notch and BMP Signalling
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DLK1 Promotes Neurogenesis of Human and Mouse Pluripotent Stem Cell-Derived Neural Progenitors Via Modulating Notch and BMP Signalling

机译:DLK1通过调节Notch和BMP信号促进人和小鼠多能干细胞来源的神经祖细胞的神经发生。

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摘要

A better understanding of the control of stem cell maintenance and differentiation fate choice is fundamental to effectively realising the potential of human pluripotent stem cells in disease modelling, drug screening and cell therapy. Dlk1 is a Notch related transmembrane protein that has been reportedly expressed in several neurogenic regions in the developing brain. In this study, we investigated the ability of Dlk1 in modulating the maintenance and differentiation of human and mouse ESC-derived neural progenitors. We found that DLK1, either employed as an extrinsic factor, or via transgene expression, consistently promoted the generation of neurons in both the mouse and human ESC-derived neural progenitors. DLK1 exerts this function by inducing cell cycle exit of the progenitors, as evidenced by an increase in the number of young neurons retaining BrdU labelling and cells expressing the cycling inhibitor P57Kip2. DLK1 antagonised the cell proliferation activity of Notch ligands Delta 1 and Jagged and inhibited Hes1-mediated Notch signaling as demonstrated by a luciferase reporter assay. Interestingly, we found that DLK1 promotes the neurogenic potential of human neural progenitor cells via suppression of Smad activation when they are challenged with BMP. Together, our data demonstrate for the first time a regulatory role for DLK1 in human and mouse neural progenitor differentiation and establish an interaction between DLK1 and Hes1-mediated Notch signaling in these cells. Furthermore, this study identifies DLK1 as a novel modulator of BMP/Smad signalling.
机译:对干细胞维持和分化命运选择的控制的更好理解是有效实现人类多能干细胞在疾病建模,药物筛选和细胞治疗中的潜力的基础。 Dlk1是与Notch相关的跨膜蛋白,据报道已在发育中的大脑的几个神经源性区域表达。在这项研究中,我们调查了Dlk1调节人类和小鼠ESC来源的神经祖细胞维持和分化的能力。我们发现DLK1既可以用作外在因子,也可以通过转基因表达,持续促进小鼠和人类ESC衍生的神经祖细胞中神经元的生成。 DLK1通过诱导祖细胞的细胞周期退出来发挥这种功能,这可以通过保留BrdU标记的年轻神经元和表达循环抑制剂P57Kip2的细胞数量增加来证明。 DLK1拮抗Notch配体Delta 1和Jagged的细胞增殖活性,并抑制了Hes1介导的Notch信号传导,如荧光素酶报告基因检测所证实。有趣的是,我们发现DLK1在受到BMP攻击时可通过抑制Smad激活来促进人类神经祖细胞的神经源性潜力。总之,我们的数据首次证明了DLK1在人和小鼠神经祖细胞分化中的调控作用,并在这些细胞中建立了DLK1和Hes1介导的Notch信号之间的相互作用。此外,这项研究确定DLK1是BMP / Smad信号的新型调节剂。

著录项

  • 来源
    《Stem Cell Reviews and Reports》 |2012年第2期|459-471|共13页
  • 作者单位

    Stem Cell Neurogenesis MRC Clinical Sciences Centre Faculty of Medicine Imperial College London London W12 0NN UK;

    Institute of Reproduction and Developmental Biology Faculty of Medicine Imperial College London London W12 0NN UK;

    Stem Cell Neurogenesis MRC Clinical Sciences Centre Faculty of Medicine Imperial College London London W12 0NN UK;

    Stem Cell Neurogenesis MRC Clinical Sciences Centre Faculty of Medicine Imperial College London London W12 0NN UK;

    Neurophysiology MRC Clinical Sciences Centre Faculty of Medicine Imperial College London London W12 0NN UK;

    Institute of Reproduction and Developmental Biology Faculty of Medicine Imperial College London London W12 0NN UK;

    Stem Cell Neurogenesis MRC Clinical Sciences Centre Faculty of Medicine Imperial College London London W12 0NN UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Embryonic stem cell (ESC); Neural progenitor; Proliferation; Differentiation; Notch signaling;

    机译:胚胎干细胞;神经祖细胞;增殖;分化;Notch信号;

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