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Zrf1 is required to establish and maintain neural progenitor identity

机译:需要Zrf1来建立和维护神经祖细胞身份

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摘要

The molecular mechanisms underlying specification from embryonic stem cells (ESCs) and maintenance of neural progenitor cells (NPCs) are largely unknown. Recently, we reported that the Zuotin-related factor 1 (Zrf1) is necessary for chromatin displacement of the Polycomb-repressive complex 1 (PRC1). We found that Zrf1 is required for NPC specification from ESCs and that it promotes the expression of NPC markers, including the key regulator Pax6. Moreover, Zrf1 is essential to establish and maintain Wnt ligand expression levels, which are necessary for NPC self-renewal. Reactivation of proper Wnt signaling in Zrf1-depleted NPCs restores Pax6 expression and the self-renewal capacity. ESC-derived NPCs in vitro resemble most of the characteristics of the self-renewing NPCs located in the developing embryonic cortex, which are termed radial glial cells (RGCs). Depletion of Zrf1 in vivo impairs the expression of key self-renewal regulators and Wnt ligand genes in RGCs. Thus, we demonstrate that Zrf1 plays an essential role in NPC generation and maintenance.
机译:胚胎干细胞(ESC)规范和神经祖细胞(NPC)维持的分子机制尚不清楚。最近,我们报道了与佐汀相关的因子1(Zrf1)对多梳抑制复合物1(PRC1)的染色质置换是必需的。我们发现Zrf1是ESC的NPC规范所必需的,并且它可以促进NPC标记(包括关键调控因子Pax6)的表达。此外,Zrf1对于建立和维持Wnt配体表达水平至关重要,这对于NPC自我更新是必需的。 Zrf1耗尽的NPC中适当Wnt信号的重新激活可恢复Pax6表达和自我更新能力。 ESC衍生的NPC体外特性与位于发育中的胚皮质的自我更新型NPC的大多数特征相似,这些特性被称为放射状神经胶质细胞(RGC)。 Zrf1的体内耗竭削弱了RGC中关键自我更新调节子和Wnt配体基因的表达。因此,我们证明Zrf1在NPC的产生和维护中起着至关重要的作用。

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