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Constitutively active Notch1 signaling promotes endothelial-mesenchymal transition in a conditional transgenic mouse model

机译:组成性活性Notch1信号在条件转基因小鼠模型中促进内皮-间质转化

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Endothelial-mesenchymal transition (EndoMT) is a process in which endothelial cells lose their cell-type-specific characteristics and gain a mesenchymal cell phenotype. The Notch signaling pathway is crucial in the regulation of EndoMT; however, its roles have not been fully studied in vivo. In a previous study, we reported the generation of transgenic mice with a foxed beta-geo/stop signal between a CMV promoter and the constitutively active intracellular domain of Notch1 (IC-Notch1) linked with a human placental alkaline phosphatase (hPLAP) reporter (ZAP-IC-Notch1). In this study, we examined the results of activating IC-Notch1 in endothelial cells. ZAP-IC-Notch1 mice were crossed with Tie2-Cre mice to activate IC-Notch1 expression specifically in endothelial cells. The ZAP-IC-Notchl/Tie2-Cre double transgenic embryos died at E9.5-10.5 with disruption of vasculature and enlargement of myocardium. VE-cadherin expression was decreased and EphrinB2 expression was increased in the heart of these embryos. Mesenchymal cell marker a-smooth muscle actin (SMA) was expressed in IC-Notch1-expressing endothelial cells. In addition, upregulation of Snail, the key effector in mediating EndoMT, was identified in the cardiac cushion of the double transgenic murine embryo heart. The results of the present study demonstrate that constitutively active Notch signaling promotes EndoMT and differentially regulates endothelial/mesenchymal cell markers during cardiac development.
机译:内皮-间质转化(EndoMT)是内皮细胞失去其细胞类型特异性特征并获得间充质细胞表型的过程。 Notch信号通路对EndoMT的调节至关重要。但是,其作用尚未在体内得到充分研究。在先前的研究中,我们报道了转基因小鼠的生成,该小鼠在CMV启动子和与人类胎盘碱性磷酸酶(hPLAP)报告分子连接的Notch1的组成型活性细胞内结构域(IC-Notch1)之间具有一个固定的beta-geo / stop信号。 ZAP-IC-Notch1)。在这项研究中,我们检查了激活内皮细胞IC-Notch1的结果。 ZAP-IC-Notch1小鼠与Tie2-Cre小鼠杂交,以特异性激活内皮细胞中的IC-Notch1表达。 ZAP-IC-Notchl / Tie2-Cre双转基因胚胎在E9.5-10.5处死亡,其脉管系统破裂且心肌扩大。在这些胚胎的心脏中,VE-钙黏着蛋白表达降低并且EphrinB2表达增加。间充质细胞标记α-平滑肌肌动蛋白(SMA)在表达IC-Notch1的内皮细胞中表达。此外,在双转基因鼠胚胎心脏的心脏垫层中发现了Snail(介导EndoMT的关键效应子)的上调。本研究的结果表明,在心脏发育过程中,组成型活性的Notch信号传导促进EndoMT并差异性调节内皮/间充质细胞标志物。

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