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Vascular characterization of mice with endothelial expression of cytochrome P450 4F2.

Publication ,  Journal Article
Cheng, J; Edin, ML; Hoopes, SL; Li, H; Bradbury, JA; Graves, JP; DeGraff, LM; Lih, FB; Garcia, V; Shaik, JSB; Tomer, KB; Flake, GP; Falck, JR ...
Published in: FASEB J
July 2014

Cytochrome P450 (CYP) 4A and 4F enzymes metabolize arachidonic acid to 20-hydroxyeicosatetraenoic acid (20-HETE). Although CYP4A-derived 20-HETE is known to have prohypertensive and proangiogenic properties, the effects of CYP4F-derived metabolites are not well characterized. To investigate the role of CYP4F2 in vascular disease, we generated mice with endothelial expression of human CYP4F2 (Tie2-CYP4F2-Tr). LC/MS/MS analysis revealed 2-foldincreases in 20-HETE levels in tissues and endothelial cells (ECs), relative to wild-type (WT) controls. Tie2-CYP4F2-Tr ECs demonstrated increases in growth (267.1 ± 33.4 vs. 205.0 ± 13% at 48 h) and tube formation (7.7 ± 1.1 vs. 1.6 ± 0.5 tubes/field) that were 20-HETE dependent and associated with up-regulation of prooxidant NADPH oxidase and proangiogenic VEGF. Increases in VEGF and NADPH oxidase levels were abrogated by inhibitors of NADPH oxidase and MAPK, respectively, suggesting the possibility of crosstalk between pathways. Interestingly, IL-6 levels in Tie2-CYP4F2-Tr mice (18.6 ± 2.7 vs. 7.9 ± 2.7 pg/ml) were up-regulated via NADPH oxidase- and 20-HETE-dependent mechanisms. Although Tie2-CYP4F2-Tr aortas displayed increased vasoconstriction, vasorelaxation and blood pressure were unchanged. Our findings indicate that human CYP4F2 significantly increases 20-HETE production, CYP4F2-derived 20-HETE mediates EC proliferation and angiogenesis via VEGF- and NADPH oxidase-dependent manners, and the Tie2-CYP4F2-Tr mouse is a novel model for examining the pathophysiological effects of CYP4F2-derived 20-HETE in the vasculature.-Cheng, J., Edin, M. L., Hoopes, S. L., Li, H., Bradbury, J. A., Graves, J. P., DeGraff, L. M., Lih, F. B., Garcia, V., Shaik, J. S. B., Tomer, K. B., Flake, G. P., Falck, J. R., Lee, C. R., Poloyac, S. M., Schwartzman, M. L., Zeldin, D. C. Vascular characterization of mice with endothelial expression of cytochrome P450 4F2.

Duke Scholars

Published In

FASEB J

DOI

EISSN

1530-6860

Publication Date

July 2014

Volume

28

Issue

7

Start / End Page

2915 / 2931

Location

United States

Related Subject Headings

  • Vascular Endothelial Growth Factor A
  • Up-Regulation
  • Receptors, Vascular Endothelial Growth Factor
  • Oxidative Stress
  • Neovascularization, Pathologic
  • NADPH Oxidases
  • Mitogen-Activated Protein Kinases
  • Mice
  • Male
  • Inflammation
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Cheng, J., Edin, M. L., Hoopes, S. L., Li, H., Bradbury, J. A., Graves, J. P., … Zeldin, D. C. (2014). Vascular characterization of mice with endothelial expression of cytochrome P450 4F2. FASEB J, 28(7), 2915–2931. https://doi.org/10.1096/fj.13-241927
Cheng, Jennifer, Matthew L. Edin, Samantha L. Hoopes, Hong Li, J Alyce Bradbury, Joan P. Graves, Laura M. DeGraff, et al. “Vascular characterization of mice with endothelial expression of cytochrome P450 4F2.FASEB J 28, no. 7 (July 2014): 2915–31. https://doi.org/10.1096/fj.13-241927.
Cheng J, Edin ML, Hoopes SL, Li H, Bradbury JA, Graves JP, et al. Vascular characterization of mice with endothelial expression of cytochrome P450 4F2. FASEB J. 2014 Jul;28(7):2915–31.
Cheng, Jennifer, et al. “Vascular characterization of mice with endothelial expression of cytochrome P450 4F2.FASEB J, vol. 28, no. 7, July 2014, pp. 2915–31. Pubmed, doi:10.1096/fj.13-241927.
Cheng J, Edin ML, Hoopes SL, Li H, Bradbury JA, Graves JP, DeGraff LM, Lih FB, Garcia V, Shaik JSB, Tomer KB, Flake GP, Falck JR, Lee CR, Poloyac SM, Schwartzman ML, Zeldin DC. Vascular characterization of mice with endothelial expression of cytochrome P450 4F2. FASEB J. 2014 Jul;28(7):2915–2931.

Published In

FASEB J

DOI

EISSN

1530-6860

Publication Date

July 2014

Volume

28

Issue

7

Start / End Page

2915 / 2931

Location

United States

Related Subject Headings

  • Vascular Endothelial Growth Factor A
  • Up-Regulation
  • Receptors, Vascular Endothelial Growth Factor
  • Oxidative Stress
  • Neovascularization, Pathologic
  • NADPH Oxidases
  • Mitogen-Activated Protein Kinases
  • Mice
  • Male
  • Inflammation