Regulation of <i>Notch1</i> and <i>Dll4</i> by Vascular Endothelial Growth Factor in Arterial Endothelial Cells: Implications for Modulating Arteriogenesis and Angiogenesis

Zhaojun Liu(The Wistar Institute), Takashi Shirakawa(The Wistar Institute), Yan Li(The Wistar Institute), Akinobu Soma(The Wistar Institute), Masahiro Oka(The Wistar Institute), G. Paolo Dotto(Massachusetts General Hospital), Ronald M. Fairman(University of Pennsylvania), Omaida C. Velázquez(The Wistar Institute), Meenhard Herlyn(The Wistar Institute)
Molecular and Cellular Biology
December 13, 2002
Cited by 502Open Access
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Abstract

Notch and its ligands play critical roles in cell fate determination. Expression of Notch and ligand in vascular endothelium and defects in vascular phenotypes of targeted mutants in the Notch pathway have suggested a critical role for Notch signaling in vasculogenesis and angiogenesis. However, the angiogenic signaling that controls Notch and ligand gene expression is unknown. We show here that vascular endothelial growth factor (VEGF) but not basic fibroblast growth factor can induce gene expression of Notch1 and its ligand, Delta-like 4 (Dll4), in human arterial endothelial cells. The VEGF-induced specific signaling is mediated through VEGF receptors 1 and 2 and is transmitted via the phosphatidylinositol 3-kinase/Akt pathway but is independent of mitogen-activated protein kinase and Src tyrosine kinase. Constitutive activation of Notch signaling stabilizes network formation of endothelial cells on Matrigel and enhances formation of vessel-like structures in a three-dimensional angiogenesis model, whereas blocking Notch signaling can partially inhibit network formation. This study provides the first evidence for regulation of Notch/Delta gene expression by an angiogenic growth factor and insight into the critical role of Notch signaling in arteriogenesis and angiogenesis.


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