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Wt1 controls retinoic acid signalling in embryonic epicardium through transcriptional activation of Raldh2

机译:Wt1通过Raldh2的转录激活控制胚胎心外膜中的视黄酸信号传导

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摘要

Epicardial-derived signals are key regulators of cardiac embryonic development. An important part of these signals is known to relate to a retinoic acid (RA) receptor-dependent mechanism. RA is a potent morphogen synthesised by Raldh enzymes, Raldh2 being the predominant one in mesodermal tissues. Despite the importance of epicardial retinoid signalling in the heart, the molecular mechanisms controlling cardiac Raldh2 transcription remain unknown. In the current study, we show that Wt1-null epicardial cells display decreased expression of Raldh2 both in vivo and in vitro. Using a RA-responsive reporter, we have confirmed that Wt1-null epicardial cells actually show reduced synthesis of RA. We also demonstrate that Raldh2 is a direct transcriptional target of Wt1 in epicardial cells. A secondary objective of this study was to identify the status of RA-related receptors previously reported to be critical to epicardial biology (PDGFRα,β; RXRα). PDGFRα and PDGFRβ mRNA and protein levels are downregulated in the absence of Wt1, but only Pdgfra expression is rescued by the addition of RA to Wt1-null epicardial cells. RXRα mRNA levels are not affected in Wt1-null epicardial cells. Taken together, our results indicate that Wt1 critically regulates epicardial RA signalling via direct activation of the Raldh2 gene, and identify a role for Wt1 in the regulation of morphogen receptors involved in the proliferation, migration, and differentiation of epicardial and epicardially-derived cells (EPDC).
机译:心外膜衍生的信号是心脏胚胎发育的关键调节因子。已知这些信号的重要部分与视黄酸(RA)受体依赖性机制有关。 RA是由Raldh酶合成的有效形态发生剂,Raldh2是中胚层组织中最主要的一种。尽管心脏中的心外膜类维生素A信号传导很重要,但控制心脏Raldh2转录的分子机制仍然未知。在当前的研究中,我们显示Wt1无心外膜细胞在体内和体外均显示Raldh2表达降低。使用RA反应的记者,我们已经确认Wt1空心外膜细胞实际上显示出减少的RA合成。我们还证明,Raldh2是心外膜细胞中Wt1的直接转录靶标。这项研究的第二个目的是确定先前报道过的对心外膜生物学至关重要的RA相关受体(PDGFRα,β;RXRα)的状态。在不存在Wt1的情况下,PDGFRα和PDGFRβ的mRNA和蛋白水平被下调,但是通过向Wt1无效的心外膜细胞中添加RA,只能挽救Pdgfra的表达。 RXRαmRNA水平在Wt1无心外膜细胞中不受影响。两者合计,我们的结果表明Wt1通过直接激活Raldh2基因来关键地调节心外膜RA信号传导,并确定Wt1在调节心外膜和心外膜来源的细胞的增殖,迁移和分化所涉及的吗啡受体中的作用( EPDC)。

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