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缺氧介导内皮祖细胞中Dll4-Notch-Hey2信号通路的激活及动脉细胞命运的形成。

Hypoxia-mediated activation of Dll4-Notch-Hey2 signaling in endothelial progenitor cells and adoption of arterial cell fate.

作者信息

Diez Holger, Fischer Andreas, Winkler Anja, Hu Cheng-Jun, Hatzopoulos Antonis K, Breier Georg, Gessler Manfred

机构信息

Theodor-Boveri-Institute, Physiological Chemistry I, Biocenter of the University of Wurzburg, Am Hubland, 97074 Wuerzburg, Germany.

出版信息

Exp Cell Res. 2007 Jan 1;313(1):1-9. doi: 10.1016/j.yexcr.2006.09.009. Epub 2006 Sep 19.

Abstract

Adequate response to low oxygen levels (hypoxia) by hypoxia inducible factor (HIF) is essential for normal development and physiology, but this pathway may also contribute to pathological processes like tumor angiogenesis. Here we show that hypoxia is an inducer of Notch signaling. Hypoxic conditions lead to induction of the Notch ligand Dll4 and the Notch target genes Hey1 and Hey2 in various cell lines. Promoter analysis revealed that Hey1, Hey2 and Dll4 are induced by HIF-1alpha and Notch activation. Hypoxia-induced Notch signaling may also determine endothelial identity. Endothelial progenitor cells (EPCs) contain high amounts of COUP-TFII, a regulator of vein identity, while levels of the arterial regulators Dll4 and Hey2 are low. Hypoxia-mediated upregulation of Dll4 and Hey2 leads to repression of COUP-TFII in eEPCs. Finally, we show that Hey factors are capable of repressing HIF-1alpha-induced gene expression, suggesting a negative feedback loop to prevent excessive hypoxic gene induction. Thus, reduced oxygen levels lead to activation of the Dll4-Notch-Hey2 signaling cascade and subsequent repression of COUP-TFII in endothelial progenitor cells. We propose that this is an important step in the developmental regulation of arterial cell fate decision.

摘要

缺氧诱导因子(HIF)对低氧水平(缺氧)作出充分反应对于正常发育和生理功能至关重要,但该信号通路也可能促进肿瘤血管生成等病理过程。在此我们表明,缺氧是Notch信号通路的诱导因素。缺氧条件可导致多种细胞系中Notch配体Dll4以及Notch靶基因Hey1和Hey2的表达上调。启动子分析显示,Hey1、Hey2和Dll4是由HIF-1α及Notch激活诱导产生的。缺氧诱导的Notch信号通路也可能决定内皮细胞特性。内皮祖细胞(EPCs)含有大量COUP-TFII(一种静脉特性调节因子),而动脉调节因子Dll4和Hey2的水平较低。缺氧介导的Dll4和Hey2上调导致eEPCs中COUP-TFII表达受到抑制。最后,我们表明Hey因子能够抑制HIF-1α诱导的基因表达,提示存在一个负反馈回路以防止过度的缺氧基因诱导。因此,氧水平降低会导致内皮祖细胞中Dll4-Notch-Hey2信号级联的激活以及随后COUP-TFII的表达受到抑制。我们认为这是动脉细胞命运决定发育调控中的一个重要步骤。

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