Frizzled gene expression and negative regulation of canonical WNT-β-catenin signaling in mouse F9 teratocarcinoma cells.

Gregory Golenia, Mohamed I. Gatie, G. Kelly
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引用次数: 7

Abstract

Mouse F9 cells differentiate into primitive endoderm (PrE) following the activation of the canonical WNT-β-catenin pathway. The upregulation of Wnt6 and activation of β-catenin-TCF-LEF-dependent transcription is known to accompany differentiation, but the Frizzled (FZD) receptor responsible for transducing the WNT6 signal is not known. Eight of the 10 Fzd genes were found to be expressed in F9 cells, with Fzd7 being the most highly expressed, and chosen for further analysis. To alter steady-state Fzd7 levels and test the effect this has on differentiation, siRNA and overexpression approaches were used to knock-down and ectopically express the Fzd7 message, respectively. siRNA knock-down of Fzd7 resulted in reduced DAB2 levels, and the overexpression activated a TCF-LEF reporter, but neither approach affected differentiation. Our focus turned to how canonical WNT6 signaling was attenuated to allow PrE cells to form parietal endoderm (PE). Dkk1, encoding a WNT antagonist, was examined and results showed that its expression increased in F9 cells treated with retinoic acid (RA) or overexpressing Wnt6. F9 cells overexpressing human DKK1 or treated with DKK1-conditioned medium and then treated with RA failed to differentiate, indicating that a negative feedback loop involving WNT6 and DKK1 attenuates canonical WNT-β-catenin signaling, thereby allowing PE cells to differentiate.
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小鼠F9畸胎瘤细胞中典型WNT-β-catenin信号通路的卷曲基因表达和负调控
小鼠F9细胞在典型的WNT-β-catenin通路激活后分化为原始内胚层(PrE)。已知Wnt6的上调和β-catenin- tcf - lef依赖性转录的激活伴随着分化,但负责转导Wnt6信号的卷曲(FZD)受体尚不清楚。10个Fzd基因中有8个在F9细胞中表达,其中Fzd7表达量最高,并被选中进行进一步分析。为了改变稳态Fzd7水平并测试其对分化的影响,分别使用siRNA和过表达方法敲除和异位表达Fzd7信息。siRNA敲除Fzd7导致DAB2水平降低,过表达激活TCF-LEF报告基因,但两种方法都不影响分化。我们的重点转向了典型WNT6信号如何减弱以允许PrE细胞形成顶壁内胚层(PE)。我们检测了编码WNT拮抗剂的Dkk1,结果显示,在视黄酸(RA)或过表达Wnt6的F9细胞中,Dkk1的表达增加。过表达人DKK1或用DKK1条件培养基处理后再用RA处理的F9细胞未能分化,这表明WNT6和DKK1参与的负反馈回路减弱了典型的WNT-β-catenin信号,从而使PE细胞能够分化。
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