首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Notch alters VEGF responsiveness in human and murine endothelial cells by direct regulation of VEGFR-3 expression
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Notch alters VEGF responsiveness in human and murine endothelial cells by direct regulation of VEGFR-3 expression

机译:Notch通过直接调节VEGFR-3表达来改变人和鼠内皮细胞的VEGF反应性

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摘要

The Notch family of cell surface receptors and its ligands are highly conserved proteins that regulate cell fate determination, including those involved in mammalian vascular development. We report that Notch induces VEGFR-3 expression in vitro in human endothelial cells and in vivo in mice. In vitro, Notch in complex with the DNA-binding protein CBF-1/suppressor of hairless/Lag1 (CSL) bound the VEGFR-3 promoter and transactivated VEGFR-3 specifically in endothelial cells. Through induction of VEGFR-3, Notch increased endothelial cell responsiveness to VEGF-C, promoting endothelial cell survival and morphological changes. In vivo, VEGFR-3 was upregulated in endothelial cells with active Notch signaling. Mice heterozygous for null alleles of both Notch1 and VEGFR-3 had significantly reduced viability and displayed midgestational vascular patterning defects analogous to Notch1 nullizygous embryos. We found that Notch1 and Notch4 were expressed in normal and tumor lymphatic endothelial cells and that Notch1 was activated in lymphatic endothelium of invasive mammary micropapillary carcinomas. These results demonstrate that Notch1 and VEGFR-3 interact genetically, that Notch directly induces VEGFR-3 in blood endothelial cells to regulate vascular development, and that Notch may function in tumor lymphangiogenesis.
机译:细胞表面受体的Notch家族及其配体是高度保守的蛋白,可调节细胞命运的确定,包括那些参与哺乳动物血管发育的蛋白。我们报告Notch诱导人类内皮细胞体外和小鼠体内的VEGFR-3表达。在体外,Notch与DNA结合蛋白CBF-1 /无毛/ Lag1抑制因子(CSL)形成复合物,可在内皮细胞中结合VEGFR-3启动子并特异性激活VEGFR-3。通过诱导VEGFR-3,Notch可增加内皮细胞对VEGF-C的反应性,从而促进内皮细胞存活和形态变化。在体内,VEGFR-3在Notch信号传导活跃的内皮细胞中被上调。 Notch1和VEGFR-3无效等位基因杂合的小鼠的活力显着降低,并且显示出类似于Notch1 nullizygous胚胎的中期妊娠血管纹样缺陷。我们发现Notch1和Notch4在正常和肿瘤的淋巴内皮细胞中表达,并且Notch1在浸润性乳头微乳头癌的淋巴内皮中被激活。这些结果表明Notch1和VEGFR-3发生遗传相互作用,Notch直接诱导血液内皮细胞中的VEGFR-3调节血管发育,并且Notch可能在肿瘤淋巴管生成中起作用。

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