4.7 Article

Oxidation of HRas cysteine thiols by metabolic stress prevents palmitoylation in vivo and contributes to endothelial cell apoptosis

期刊

FASEB JOURNAL
卷 26, 期 2, 页码 832-841

出版社

FEDERATION AMER SOC EXP BIOL
DOI: 10.1096/fj.11-189415

关键词

growth factor signaling; high-fat high-glucose diet; oxidative post-translational modifications; reactive oxygen species; reactive nitrogen species

资金

  1. U.S. National Institutes of Health (NIH) [PO1-HL-068758, R37-HL-04017]
  2. NIH [HL-007969-06A1]
  3. National Heart, Lung, and Blood Institute, NIH, Department of Health and Human Services [HHSN268201000031C]
  4. Wellcome Trust [085483/Z/08/Z]
  5. Wellcome Trust [085483/Z/08/Z] Funding Source: Wellcome Trust

向作者/读者索取更多资源

Here we demonstrate a new paradigm in redox signaling, whereby oxidants resulting from metabolic stress directly alter protein palmitoylation by oxidizing reactive cysteine thiolates. In mice fed a high-fat, high-sucrose diet and in cultured endothelial cells (ECs) treated with high palmitate and high glucose (HPHG), there was decreased HRas palmitoylation on Cys181/184 (61 +/- 24% decrease for cardiac tissue and 38 +/- 7.0% in ECs). This was due to oxidation of Cys181/184, detected using matrix-assisted laser desorption/ionization time of flight (MALDI TOF)-TOF. Decrease in HRas palmitoylation affected its compartmentalization and Ras binding domain binding activity, with a shift from plasma membrane tethering to Golgi localization. Loss of plasma membrane-bound HRas decreased growth factor-stimulated ERK phosphorylation (84 +/- 8.6% decrease) and increased apoptotic signaling (24 +/- 6.5-fold increase) after HPHG treatment that was prevented by overexpressing wild-type but not C181/184S HRas. The essential role of HRas in metabolic stress was made evident by the similar effects of expressing an inactive dominant negative N17-HRas or a MEK inhibitor. Furthermore, the relevance of thiol oxidation was demonstrated by overexpressing manganese superoxide dismutase, which improved HRas palmitoylation and ERK phosphorylation, while lessening apoptosis in HPHG treated ECs.-Burgoyne, J. R., Haeussler, D. J., Kumar, V., Ji, Y., Pimental, D. R., Zee, R. S., Costello, C. E., Lin, C., McComb, M. E., Cohen, R. A., Bachschmid, M. M. Oxidation of HRas cysteine thiols by metabolic stress prevents palmitoylation in vivo and contributes to endothelial cell apoptosis. FASEB J. 26, 832-841 (2012). www.fasebj.org

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