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首页> 外文期刊>Stem cells and development >Expression of the human FSHD-linked DUX4 gene induces neurogenesis during differentiation of murine embryonic stem cells
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Expression of the human FSHD-linked DUX4 gene induces neurogenesis during differentiation of murine embryonic stem cells

机译:与人类FSHD相关的DUX4基因的表达在鼠胚胎干细胞分化过程中诱导神经发生

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Misexpression of the double homeodomain protein DUX4 in muscle is believed to cause facioscapulohumeral muscular dystrophy (FSHD). Although strategies are being devised to inhibit DUX4 activity in FSHD, there is little known about the normal function of this protein. Expression of DUX4 has been reported in pluripotent cells and testis. To test the idea that DUX4 may be involved in initiating a germ lineage program in pluripotent cells, we interrogated the effect of expressing the human DUX4 gene at different stages during in vitro differentiation of murine embryonic stem (ES) cells. We find that expression of even low levels of DUX4 is incompatible with pluripotency: DUX4-expressing ES cells downregulate pluripotency markers and rapidly differentiate even in the presence of leukemia inhibitory factor (LIF) and bone morphogenetic protein 4 (BMP4). Transcriptional profiling revealed unexpectedly that DUX4 induced a neurectodermal program. Embryoid bodies exposed to a pulse of DUX4 expression displayed severely inhibited mesodermal differentiation, but acquired neurogenic potential. In a serum-containing medium in which neurogenic differentiation is minimal, DUX4 expression served as a neural-inducing factor, enabling the differentiation of Tuj1+ neurites. These data suggest that besides effects in muscle and germ cells, the involvement of DUX4 in neurogenesis should be considered as anti-DUX4 therapies are developed.
机译:据信,肌肉中双重同源结构域蛋白DUX4的错误表达会引起面肩肱肱肌营养不良(FSHD)。尽管已制定了抑制FSHD中DUX4活性的策略,但对该蛋白的正常功能了解甚少。已经报道了DUX4在多能细胞和睾丸中的表达。为了测试DUX4可能参与多能细胞中的细菌谱系程序启动的想法,我们询问了在小鼠胚胎干(ES)细胞体外分化过程中在不同阶段表达人DUX4基因的效果。我们发现,即使是低水平的DUX4表达也与多能性不兼容:即使在存在白血病抑制因子(LIF)和骨形态发生蛋白4(BMP4)的情况下,表达DUX4的ES细胞也会下调多能性标记并迅速分化。转录谱分析出乎意料地揭示了DUX4诱导了神经直肠细胞程序。暴露于DUX4表达脉冲的胚状体显示出严重抑制中胚层分化的能力,但具有神经源性潜力。在神经源性分化最小的含血清培养基中,DUX4表达充当神经诱导因子,从而能够分化Tuj1 +神经突。这些数据表明,随着抗DUX4疗法的发展,除了对肌肉和生殖细胞的作用外,还应考虑DUX4参与神经发生。

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