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大鼠肝细胞溶胶对膜脂中泛醌的还原作用及其在细胞抗脂质过氧化防御系统中的作用。

Reduction of ubiquinone in membrane lipids by rat liver cytosol and its involvement in the cellular defence system against lipid peroxidation.

作者信息

Takahashi T, Yamaguchi T, Shitashige M, Okamoto T, Kishi T

机构信息

Faculty of Pharmaceutical Sciences, Kobe Gakuin University, Japan.

出版信息

Biochem J. 1995 Aug 1;309 ( Pt 3)(Pt 3):883-90. doi: 10.1042/bj3090883.

Abstract

Rat liver homogenates reduced ubiquinone (UQ)-10 to ubiquinol (UQH2)-10 in the presence of NADPH rather than NADH. This NADPH-dependent UQ reductase (NADPH-UQ reductase) activity that was not inhibited by antimycin A and rotenone, was located mainly in the cytosol fraction and its activity accounted for 68% of that of the homogenates. Furthermore, the NADPH-UQ reductase from rat liver cytosol efficiently reduced both UQ-10 incorporated into egg yolk lecithin liposomes, and native UQ-9 residing in rat microsomes, to the respective UQH2 form in the presence of NADPH. The gross redox ratios of UQH2-9/(UQ-9 + UQH2-9) in individual tissues of rat correlated positively with the log of their respective cytosolic NADPH-UQ reductase activities, while the redox ratios in every intracellular fraction from liver were at about the same level, irrespective of NADPH-UQ reductase activities in the respective fractions. The combined addition of rat liver cytosol and NADPH inhibited to a great extent 2,2'-azobis(2,4-dimethyl-valeronitrile)-induced lipid peroxidation of UQ-10-fortified lecithin liposomes and completely inhibited such peroxidation in the liposomes in which UQH2-10 replaced UQ-10. The NADPH-UQ reductase activity was clearly separated from DT-diaphorase (EC 1.6.99.2) activity by means of Cibacron Blue-immobilized Bio-Gel A-5m chromatography. In conclusion, the NADPH-UQ reductase in cytosol, which is a novel enzyme to our knowledge, was presumed to be responsible for maintaining the steady-state redox levels of intracellular UQ and thereby to act as an endogenous antioxidant in protecting intracellular membranes from lipid peroxidation that is inevitably induced in aerobic metabolism.

摘要

在存在烟酰胺腺嘌呤二核苷酸磷酸(NADPH)而非烟酰胺腺嘌呤二核苷酸(NADH)的情况下,大鼠肝脏匀浆可将泛醌(UQ)-10还原为泛醇(UQH2)-10。这种不被抗霉素A和鱼藤酮抑制的依赖NADPH的泛醌还原酶(NADPH-UQ还原酶)活性主要位于胞质溶胶部分,其活性占匀浆活性的68%。此外,来自大鼠肝脏胞质溶胶的NADPH-UQ还原酶在存在NADPH的情况下,能有效地将掺入蛋黄卵磷脂脂质体中的UQ-10以及存在于大鼠微粒体中的天然UQ-9还原为各自的UQH2形式。大鼠各组织中UQH2-9/(UQ-9 + UQH2-9)的总氧化还原比与各自胞质溶胶NADPH-UQ还原酶活性的对数呈正相关,而肝脏每个细胞内部分的氧化还原比处于大致相同水平,与各部分中NADPH-UQ还原酶活性无关。大鼠肝脏胞质溶胶和NADPH的联合添加在很大程度上抑制了2,2'-偶氮二(2,4-二甲基戊腈)诱导的UQ-10强化卵磷脂脂质体的脂质过氧化,并完全抑制了用UQH2-10替代UQ-10的脂质体中的这种过氧化。通过固定化Cibacron Blue的Bio-Gel A-5m色谱法,NADPH-UQ还原酶活性与DT-黄递酶(EC 1.6.99.2)活性明显分离。总之,据我们所知,胞质溶胶中的NADPH-UQ还原酶是一种新型酶,推测它负责维持细胞内泛醌的稳态氧化还原水平,从而作为一种内源性抗氧化剂,保护细胞内膜免受有氧代谢中不可避免诱导的脂质过氧化的影响。

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