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JAG2 induction in hypoxic tumor cells alters Notch signaling and enhances endothelial cell tube formation.

机译:缺氧肿瘤细胞中的JAG2诱导可改变Notch信号传导并增强内皮细胞管的形成。

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Several studies have revealed links between hypoxia and activation of Notch in solid tumors. While most reports have focused on intracellular domain of the Notch1 receptor (icN1) stabilization by direct interaction with HIF proteins, little attention has been given to Notch ligand regulation during hypoxia. Here we show that the Notch ligand JAG2 is transcriptionally activated by hypoxia in a HIF-1alpha dependent manner. Hypoxic JAG2 induction resulted in elevated Notch activity in tumor cells, as was measured by increased icN1 levels and induction of the Notch target gene HEY1. In primary tumor material, JAG2 expression correlated with vascular development and angiogenesis gene signatures. In line with this, coculture experiments of endothelial cells with hypoxic breast cancer cells displayed a reduction in number of capillary-like tubes formed upon JAG2 siRNA treatment of the breast cancer cells. Together these results suggest that a hypoxic induction of JAG2 in tumor cells mediates a hypoxia-regulated cross-talk between tumor and endothelial cells.
机译:几项研究揭示了缺氧与实体瘤中Notch激活之间的联系。尽管大多数报道都集中于通过与HIF蛋白直接相互作用来稳定Notch1受体(icN1)的细胞内结构域,但在缺氧期间对Notch配体调节的关注却很少。在这里,我们显示Notch配体JAG2通过缺氧以HIF-1alpha依赖性方式被转录激活。缺氧JAG2诱导导致肿瘤细胞中Notch活性升高,这可以通过增加icN1水平和诱导Notch目标基因HEY1来测量。在原发性肿瘤材料中,JAG2表达与血管发育和血管生成基因特征相关。与此相一致,内皮细胞与低氧乳腺癌细胞的共培养实验表明,JAG2 siRNA处理乳腺癌细胞后形成的毛细管样管的数量减少了。这些结果共同表明,肿瘤细胞中JAG2的低氧诱导介导了肿瘤细胞与内皮细胞之间低氧调节的串扰。

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