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铁催化脂质过氧化过程中维生素E的氧化:生育酚自由基电子转移反应的证据。

Oxidation of vitamin E during iron-catalyzed lipid peroxidation: evidence for electron-transfer reactions of the tocopheroxyl radical.

作者信息

Liebler D C, Burr J A

机构信息

Department of Pharmacology and Toxicology, College of Pharmacy, University of Arizona, Tucson 85721.

出版信息

Biochemistry. 1992 Sep 8;31(35):8278-84. doi: 10.1021/bi00150a022.

Abstract

Incubation of phosphatidylcholine liposomes containing the biological antioxidant alpha-tocopherol (alpha-TH) with xanthine, xanthine oxidase, and FeCl2 caused alpha-TH oxidation to alpha-tocopherol quinone (alpha-TQ) and 8a-hydroperoxytocopherone (2). In addition, 4a,5-epoxy-8a-hydroperoxytocopherone (3), 7,8-epoxy-8a-hydroperoxytocopherone (4), and their respective hydrolysis products 2,3-epoxy-alpha-tocopherol quinone (6) and 5,6-epoxy-alpha-tocopherol quinone (7) also were formed. alpha-TQ was the major product at less than 20% alpha-TH oxidation, whereas epoxides were the predominant products when alpha-TH was more extensively oxidized. 8a-(Alkyldioxy)tocopherones 1, which are formed when peroxyl radicals oxidize alpha-TH in other systems and which are precursors to alpha-TQ, were not found. 8a-Hydroxytocopherone (5), rather than 8a-(alkyldioxy)tocopherones 1, appeared to be the precursor to alpha-TQ. Approximately 30% of the alpha-TH consumed was regenerated by treatment of samples with ascorbic acid or nordehydroguaiaretic acid (NDGA) at pH 3, but not at pH 7. The stability of the ascorbic acid- and NDGA-reducible species and pH dependence for regeneration matched those of 8a-hydroxytocopherone (5) and contrasted with the properties of the tocopheroxyl radical (alpha-T.). Incubation of liposomes containing alpha-TH with the diphenylpicrylhydrazyl (DPPH) radical, which oxidizes alpha-TH to alpha-T. in high yield, formed an ascorbic acid-reducible species with properties identical to those of compound 5. The results indicate that phospholipid peroxyl radicals oxidize alpha-T. to epoxides, 8a-hydroperoxytocopherone (2), and the tocopherone cation (alpha-T+), which hydrolyzes to 5, the immediate precursor to alpha-TQ.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

将含有生物抗氧化剂α-生育酚(α-TH)的磷脂酰胆碱脂质体与黄嘌呤、黄嘌呤氧化酶和氯化亚铁一起孵育,会使α-TH氧化为α-生育醌(α-TQ)和8a-氢过氧化生育酚酮(2)。此外,还形成了4a,5-环氧-8a-氢过氧化生育酚酮(3)、7,8-环氧-8a-氢过氧化生育酚酮(4)及其各自的水解产物2,3-环氧-α-生育醌(6)和5,6-环氧-α-生育醌(7)。在α-TH氧化程度低于20%时,α-TQ是主要产物,而当α-TH被更广泛氧化时,环氧化物是主要产物。未发现8a-(烷基二氧基)生育酚酮1,该物质在其他体系中由过氧自由基氧化α-TH形成,是α-TQ的前体。8a-羟基生育酚酮(5)而非8a-(烷基二氧基)生育酚酮1似乎是α-TQ的前体。在pH 3时,用抗坏血酸或去甲二氢愈创木酸(NDGA)处理样品可使约30%被消耗的α-TH再生,但在pH 7时则不能。抗坏血酸和NDGA可还原物质的稳定性以及再生的pH依赖性与8a-羟基生育酚酮(5)的相符,与生育酚自由基(α-T.)的性质形成对比。将含有α-TH的脂质体与二苯基苦味酰基自由基(DPPH)一起孵育,DPPH可将α-TH高效氧化为α-T.,形成了一种抗坏血酸可还原的物质,其性质与化合物5相同。结果表明,磷脂过氧自由基将α-T.氧化为环氧化物、8a-氢过氧化生育酚酮(2)和生育酚酮阳离子(α-T+),α-T+水解为5,5是α-TQ的直接前体。(摘要截短于250字)

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