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过氧化物酶催化低密度脂蛋白氧化过程中抗氧化剂的矛盾作用。

Paradoxical actions of antioxidants in the oxidation of low density lipoprotein by peroxidases.

作者信息

Santanam N, Parthasarathy S

机构信息

Department of Gynecology and Obstetrics, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

J Clin Invest. 1995 Jun;95(6):2594-600. doi: 10.1172/JCI117961.

Abstract

Oxidation of LDL by peroxidases has been suggested to be a model for in vivo oxidation. The mechanism might involve the generation of an intermediate radical such as a phenoxy radical. We show that, in contrast to the oxidation of LDL by copper, oxidation by peroxidase system (H2O2/horse radish peroxidase) showed less resistance. This suggested that either the antioxidants were consumed more rapidly or might have actually participated in the oxidation. Accordingly, addition of vitamin E increased the rate of oxidation of LDL. In contrast, probucol inhibited the oxidation even at low concentrations suggesting ineffective formation of probucol radical or the sterically hindered probucol radical was inefficient in catalyzing subsequent oxidation. The oxidation of LDL by horse radish peroxidase was also enhanced in the presence of diphenylphenylenediamine, an antioxidant that does not have a phenolic -OH group. Myeloperoxidase was able to oxidize LDL even in the absence of added tyrosine suggesting that it was able to utilize the LDL-associated vitamin E. Addition of free tyrosine inhibited the formation of conjugated dienes. We suggest that if peroxidases are involved in the initiation of LDL oxidation in vivo, higher concentrations of antioxidants may be indicated to inhibit propagation of oxidation.

摘要

过氧化物酶对低密度脂蛋白(LDL)的氧化作用被认为是体内氧化的一种模型。其机制可能涉及生成一种中间自由基,如苯氧自由基。我们发现,与铜对LDL的氧化作用不同,过氧化物酶系统(过氧化氢/辣根过氧化物酶)对LDL的氧化作用显示出较小的抗性。这表明抗氧化剂要么被更快地消耗,要么实际上可能参与了氧化过程。因此,添加维生素E会增加LDL的氧化速率。相反,普罗布考即使在低浓度下也能抑制氧化,这表明普罗布考自由基的形成无效,或者空间位阻的普罗布考自由基在催化后续氧化方面效率低下。在没有酚羟基的抗氧化剂二苯基苯二胺存在的情况下,辣根过氧化物酶对LDL的氧化作用也会增强。髓过氧化物酶即使在没有添加酪氨酸的情况下也能够氧化LDL,这表明它能够利用与LDL相关的维生素E。添加游离酪氨酸会抑制共轭二烯的形成。我们认为,如果过氧化物酶参与体内LDL氧化的起始过程,可能需要更高浓度的抗氧化剂来抑制氧化的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1f6/295942/4d39964678fd/jcinvest00027-0178-a.jpg

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