Interaction of 1-hydroxyethyl radical with antioxidant enzymes

被引:17
作者
Puntarulo, S
Stoyanovsky, DA
Cederbaum, AI
机构
[1] CUNY Mt Sinai Sch Med, Dept Biochem, New York, NY 10029 USA
[2] Univ Buenos Aires, Sch Pharm & Biochem, RA-1053 Buenos Aires, DF, Argentina
关键词
ethanol; 1-hydroxyethyl radical; catalase; superoxide dismutase; glutathione reductase; glutathione peroxidase;
D O I
10.1006/abbi.1999.1500
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
There is considerable interest in the role of the 1-hydroxyethyl radical (HER) in the toxic effects of ethanol, The goal of this study was to evaluate the effects of HER on classical antioxidant enzymes. The interaction of acetaldehyde with hydroxylamine-o-sulfonic acid has been shown to produce 1,1'-dihydroxyazoethane (DHAE); this compound appears to be highly unstable, and its decomposition leads to the generation of HER. Addition of DHAE into a solution of PBN led to the appearance of the typical EPR spectra of PBN/HER adduct. No PBN/HER spin adduct was detected when DHAE was incubated with 0.1 M PBN in the presence of GSH. In the absence of PBN, DHAE: oxidized ascorbic acid to semi-dehydroascorbyl radical, presumably via an ascorbate-dependent one-electron reduction of HER back to ethanol, Catalase was progressively inactivated by exposure to DHAE-generated HER in a time and HER concentration-dependent manner. Ascorbic acid and PBN gave full protection to catalase against HER-dependent inactivation. The antioxidants 2-tert-butyl-4-methylphenol, propylgallate, and alpha-tocopherol-protected catalase against inactivation by 84, 88, and 39%, respectively. Other antioxidant enzymes were also sensitive to exposure to HER. Glutathione reductase, glutathione peroxidase, and superoxide dismutase were inactivated by 46, 36, and 39%, respectively, by HER. The results reported here plus previous results showing HER interacts with GSH, ascorbate, and alpha-tocopherol suggest that prolonged generation of HER in cells from animals chronically exposed to ethanol may lower the antioxidant defense status, thereby contributing to mechanisms by which ethanol produces a state of oxidative stress and produces toxicity. (C) 1999 Academic Press.
引用
收藏
页码:355 / 359
页数:5
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