血管生成
萌芽血管生成
Wnt信号通路
生物
细胞生物学
Notch信号通路
内皮干细胞
血管内皮生长因子B
信号转导
血管内皮生长因子A
连环素
血管内皮生长因子
激酶插入结构域受体
新生血管
癌症研究
遗传学
体外
血管内皮生长因子受体
作者
Agnieszka Martowicz,Marta Trusohamn,Nina Jensen,Joanna Wisniewska‐Kruk,Monica Corada,Frank Chenfei Ning,Julianna Kele,Elisabetta Dejana,Daniel Nyqvist
标识
DOI:10.1161/atvbaha.119.312749
摘要
Objective: Activation of endothelial β-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/β-catenin pathway contribute to inherited blinding disorders because of defective vascular development and dysfunctional blood-retina barrier. Despite a vital role for endothelial β-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 β-catenin signaling caused hypovascularization of the postnatal retina and brain because of deficient endothelial cell proliferation and sprouting. Mosaic genetic analysis demonstrated that endothelial β-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 β-catenin. Importantly, impaired endothelial β-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/β-catenin and the Notch and VEGF-A signaling pathways and strongly suggest that endothelial β-catenin signaling supports central nervous system angiogenesis by promoting endothelial cell sprouting, tip cell formation, and VEGF-A/VEGFR2 signaling.
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