Evaluation of the mechanisms involved in leucine-induced oxidative damage in cerebral cortex of young rats

被引:45
作者
Bridi, R
Latini, A
Braum, CA
Zorzi, GK
Wajner, M
Lissi, E
Dutra, CS
机构
[1] Univ Fed Rio Grande do Sul, Inst Ciencias Basicas SAude, Dept Bioquim, BR-90035003 Porto Alegre, RS, Brazil
[2] Hosp Clin Porto Alegre, Serv Genet Med, Porto Alegre, RS, Brazil
[3] Univ Santiago Chile, Fac Quim & Biol, Dept Ciencias Quim, Santiago, Chile
关键词
L-leucine; gluthathione peroxidase; superoxide dismutase; branched-chain keto aciduria; maple syrup urine disease;
D O I
10.1080/10715760400022350
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
Maple syrup urine disease (MSUD) is a metabolic disorder caused by the deficiency of the activity of the mitochondrial enzyme complex branched-chain L-2-keto acid dehydrogenase. The metabolic block results in tissues and body fluid accumulation of the branched-chain amino acids leucine (Leu), isoleucine and valine, as well as of their respective alpha-keto acids. Neurological sequelae are usually present in MSUD, but the pathophysiologic mechanisms of neurotoxicity are still poorly known. It was previously demonstrated that Leu elicits oxidative stress in rat brain. In the present study we investigated the possible mechanisms involved in Leu-induced oxidative damage. We observed a significant attenuation of Leu-elicited increase of thiobarbituric acid-reactive substances (TBA-RS) measurement when cortical homogenates were incubated in the presence of the free radical scavengers ascorbic acid plus trolox, dithiothreitol, glutathione, and superoxide dismutase, suggesting a probable involvement of superoxide and hydroxyl radicals in this effect. In contrast, the use of N-omega-nitro-L-arginine methyl ester or catalase (CAT) did not affect TBA-RS values. We also demonstrated an inhibitory effect of Leu on the activities of the antioxidant enzymes CAT and gluthathione peroxidase, as well as a significant reduction in the membrane-protein thiol content from mitochondrial enriched preparations. Furthermore, dichlorofluorescein levels were increased although not significantly by Leu. Taken together, our present data indicate that an unbalance between free radical formation and inhibition of critical enzyme activities may explain the mechanisms involved in the Leu-induced oxidative damage.
引用
收藏
页码:71 / 79
页数:9
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