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首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >Endothelial beta-Catenin Signaling Supports Postnatal Brain and Retinal Angiogenesis by Promoting Sprouting, Tip Cell Formation, and VEGFR (Vascular Endothelial Growth Factor Receptor) 2 Expression
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Endothelial beta-Catenin Signaling Supports Postnatal Brain and Retinal Angiogenesis by Promoting Sprouting, Tip Cell Formation, and VEGFR (Vascular Endothelial Growth Factor Receptor) 2 Expression

机译:内皮β-catenin信号传导通过促进发芽,尖端细胞形成和VEGFR(血管内皮生长因子受体)2表达支持后脑脑和视网膜血管生成。2表达

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摘要

Objective: Activation of endothelial beta-catenin signaling by neural cell-derived Norrin or Wnt ligands is vital for the vascularization of the retina and brain. Mutations in members of the Norrin/beta-catenin pathway contribute to inherited blinding disorders because of defective vascular development and dysfunctional blood-retina barrier. Despite a vital role for endothelial beta-catenin signaling in central nervous system health and disease, its contribution to central nervous system angiogenesis and its interactions with downstream signaling cascades remains incompletely understood. Approach and Results: Here, using genetically modified mouse models, we show that impaired endothelial beta-catenin signaling caused hypovascularization of the postnatal retina and brain because of deficient endothelial cell proliferation and sprouting. Mosaic genetic analysis demonstrated that endothelial beta-catenin promotes but is not required for tip cell formation. In addition, pharmacological treatment revealed that angiogenesis under conditions of inhibited Notch signaling depends upon endothelial beta-catenin. Importantly, impaired endothelial beta-catenin signaling abrogated the expression of the VEGFR (vascular endothelial growth factor receptor)-2 and VEGFR3 in brain microvessels but not in the lung endothelium. Conclusions: Our study identifies molecular crosstalk between the Wnt/beta-catenin and the Notch and VEGF-A signaling pathways and strongly suggest that endothelial beta-catenin signaling supports central nervous system angiogenesis by promoting endothelial cell sprouting, tip cell formation, and VEGF-A/VEGFR2 signaling.
机译:目的:神经细胞衍生的诺林或Wnt配体的内皮β-连环素信号传导的激活对于视网膜和脑的血管形成至关重要。由于血管发育缺陷和功能障碍血尿屏障,诺林/β-连环蛋白途径成员的突变有助于遗传致盲障碍。尽管在中枢神经系统健康和疾病中对内皮β-catenin信号传导至关重要的作用,但其对中枢神经系统血管生成的贡献及其与下游信号级联的相互作用仍然不完全理解。方法和结果:在此,使用转基因小鼠模型,我们表明,由于内皮细胞增殖和发芽缺乏后视网膜和脑的后视网膜和脑的低血管形成,我们显示出损伤的内皮β-catenin信号传导。马赛克遗传分析证明内皮β-连环蛋白促进但尖端细胞形成不需要。此外,药理学治疗表明,在抑制的Notch信号传导条件下的血管生成取决于内皮β-catenin。重要的是,损害的内皮β-连环蛋白信号传导耗尽VEGFR(血管内皮生长因子受体)-2和VEGFR3在脑微血管中的表达,但不在肺内皮中。结论:我们的研究鉴定了WNT /β-连环蛋白和凹口和VEGF-A信号传导途径之间的分子串扰,并强烈表明内皮β-连环蛋白信号传导通过促进内皮细胞发芽,尖端细胞形成和VEGF来支持中枢神经系统血管生成。 A / VEGFR2信号传导。

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