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10.1152/ajpcell.00022.2015

http://scihub22266oqcxt.onion/10.1152/ajpcell.00022.2015
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C4556895!4556895!26108661
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suck abstract from ncbi

pmid26108661      Am+J+Physiol+Cell+Physiol 2015 ; 309 (5): C296-307
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  • Endothelial cell tumor growth is Ape/ref-1 dependent #MMPMID26108661
  • Biswas A; Khanna S; Roy S; Pan X; Sen CK; Gordillo GM
  • Am J Physiol Cell Physiol 2015[Sep]; 309 (5): C296-307 PMID26108661show ga
  • Tumor-forming endothelial cells have highly elevated levels of Nox-4 that release H2O2 into the nucleus, which is generally not compatible with cell survival. We sought to identify compensatory mechanisms that enable tumor-forming endothelial cells to survive and proliferate under these conditions. Ape-1/ref-1 (Apex-1) is a multifunctional protein that promotes DNA binding of redox-sensitive transcription factors, such as AP-1, and repairs oxidative DNA damage. A validated mouse endothelial cell (EOMA) tumor model was used to demonstrate that Nox-4-derived H2O2 causes DNA oxidation that induces Apex-1 expression. Apex-1 functions as a chaperone to keep transcription factors in a reduced state. In EOMA cells Apex-1 enables AP-1 binding to the monocyte chemoattractant protein-1 (mcp-1) promoter and expression of that protein is required for endothelial cell tumor formation. Intraperitoneal injection of the small molecule inhibitor E3330, which specifically targets Apex-1 redox-sensitive functions, resulted in a 50% decrease in tumor volume compared with mice injected with vehicle control (n = 6 per group), indicating that endothelial cell tumor proliferation is dependent on Apex-1 expression. These are the first reported results to establish Nox-4 induction of Apex-1 as a mechanism promoting endothelial cell tumor formation.
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