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Dynamics of Wnt activity on the acquisition of ectoderm potency in epiblast stem cells

机译:WNT活性的动态对外血管干细胞中外胚层效力的影响

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During embryogenesis, the stringent regulation of Wnt activity is crucial for the morphogenesis of the head and brain. The loss of function of the Wnt inhibitor Dkk1 results in elevated Wnt activity, loss of ectoderm lineage attributes from the anterior epiblast, and the posteriorisation of anterior germ layer tissue towards the mesendoderm. The modulation of Wnt signalling may therefore be crucial for the allocation of epiblast cells to ectoderm progenitors during gastrulation. To test this hypothesis, we examined the lineage characteristics of epiblast stem cells (EpiSCs) that were derived and maintained under different signalling conditions. We showed that suppression of Wnt activity enhanced the ectoderm propensity of the EpiSCs. Neuroectoderm differentiation of these EpiSCs was further empowered by the robust re-activation of Wnt activity. Therefore, during gastrulation, the tuning of the signalling activities that mediate mesendoderm differentiation is instrumental for the acquisition of ectoderm potency in the epiblast.
机译:在胚胎发生期间,WNT活性的严格调节对于头脑和脑的形态发生至关重要。 WNT抑制剂DKK1的功能丧失导致WNT活性升高,从前卵细胞的突变谱系损失,以及朝向MesendoDerm的前胚芽层组织的后置化。因此,Wnt信号传导的调节可能在脱气过程中对外胚层祖细胞的外毛细胞分配至关重要。为了测试这一假设,我们检查了在不同信号条件下衍生和维持的表血管干细胞(EPISC)的谱系特征。我们表明,WNT活性的抑制增强了EPISC的外胚层倾向。通过WNT活性的稳健活化进一步赋予这些EPISC的神经分泌胚胎分化。因此,在腐殖过程中,调节介导MesendoDerm分化的信号传导活动是仪器用于获取外部细胞中的异位效力。

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