Acute hypoxia enhances proteins' S-nitrosylation in endothelial cells

被引:40
作者
Chen, Shih Chung [2 ,4 ]
Huang, Bin [3 ]
Liu, Yu Chi [3 ]
Shyu, Kou Gi [2 ]
Lin, Pen Y. [1 ]
Wang, Danny Ling [3 ]
机构
[1] Taipei Med Univ, Sch Pharm, Taipei, Taiwan
[2] Taipei Med Univ, Coll Med, Grad Inst Clin Med, Taipei, Taiwan
[3] Acad Sinica, Inst Biomed Sci, Taipei 11529, Taiwan
[4] Taipei Med Univ, Wan Fang Hosp, Div Cardiol, Taipei, Taiwan
关键词
Hypoxia; S-nitrosylation; Biotin-switch; Nitric oxide; Endothelial cell; Proteomics;
D O I
10.1016/j.bbrc.2008.10.144
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Hypoxia-induced responses are frequently encountered during cardiovascular injuries. Hypoxia triggers intracellular reactive oxygen species/nitric oxide (NO) imbalance. Recent studies indicate that NO-mediated S-nitrosylation (S-NO) of cysteine residue is a key posttranslational modification of proteins. We demonstrated that acute hypoxia to endothelial cells (ECs) transiently increased the NO levels via endothelial NO synthase (eNOS) activation. A modified biotin-switch method coupled with Western blot on 2-dimentional electrophoresis (2-DE) demonstrated that at least I I major proteins have significant increase in S-NO after acute hypoxia. Mass analysis by CapLC/Q-TOF identified those as Ras-GTPase-activating protein, protein disulfide-isomerase, human elongation factor-1-delta, tyrosine 3/tryptophan 5-monooxygenase activating protein, and several cytoskeleton proteins. The S-nitrosylated cysteine residue on tropomyosin (Cys 170) and beta-actin (Cys 285) was further verified with the trypsic peptides analyzed by MASCOT search program. Further understanding of the functional relevance of these S-nitrosylated proteins may provide a molecular basis for treating ischemia-induced vascular disorders. (C) 2008 Published by Elsevier Inc.
引用
收藏
页码:1274 / 1278
页数:5
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