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大鼠肝脏对丝裂霉素C的单电子还原作用:细胞色素P-450和NADPH-细胞色素P-450还原酶的作用

One-electron reduction of mitomycin c by rat liver: role of cytochrome P-450 and NADPH-cytochrome P-450 reductase.

作者信息

Vromans R M, van de Straat R, Groeneveld M, Vermeulen N P

机构信息

Department of Pharmacochemistry (Molecular Toxicology), Free University, Amsterdam, The Netherlands.

出版信息

Xenobiotica. 1990 Sep;20(9):967-78. doi: 10.3109/00498259009046912.

Abstract
  1. The role of cytochrome P-450 in the one-electron reduction of mitomycin c was studied in rat hepatic microsomal systems and in reconstituted systems of purified cytochrome P-450. Formation of H2O2 from redox cycling of the reduced mitomycin c in the presence of O2 and the alkylation of p-nitrobenzylpyridine (NBP) in the absence of O2 were taken as parameters. 2. With liver microsomes from both 3-methylcholanthrene (MC)- and phenobarbital (PB)-pretreated rats, reverse type I difference spectra were observed, indicative of a weak interaction between mitomycin c and the substrate binding site of cytochrome P-450. Mitomycin c inhibited the oxidative dealkylation of aminopyrine and ethoxyresorufin in both microsomal systems. 3. Under aerobic conditions the H2O2 production in the microsomal systems was dependent on NADPH, O2 and mitomycin c, and was inhibited by the cytochrome P-450 inhibitors, metyrapone and SKF-525A. 4. Although purified NADPH-cytochrome P-450 reductase was also effective in reduction of mitomycin c and the concomitant reduction of O2, complete microsomal systems and fully reconstituted systems of cytochrome P-450b or P-450c and the reductase were much more efficient. 5. Under anaerobic conditions in the microsomal systems both reduction of mitomycin c (measured as the rate of substrate disappearance) and the reductive alkylation of NBP were dependent on cytochrome P-450. 6. The relative rate of reduction of mitomycin c by purified NADPH-cytochrome P-450 reductase was lower than that by a complete microsomal system containing both cytochrome P-450 and a similar amount of NADPH-cytochrome P-450 reductase. 7. It is concluded that although NADPH-cytochrome P-450 reductase is active in the one-electron reduction of mitomycin c, the actual metabolic locus for the reduction of this compound in liver microsomes under a relatively low O2 tension is more likely the haem site of cytochrome P-450.
摘要
  1. 在大鼠肝微粒体系统和纯化细胞色素P-450的重组系统中研究了细胞色素P-450在丝裂霉素c单电子还原中的作用。以在O2存在下还原型丝裂霉素c的氧化还原循环形成H2O2以及在无O2时对硝基苄基吡啶(NBP)的烷基化作为参数。2. 用来自3-甲基胆蒽(MC)和苯巴比妥(PB)预处理大鼠的肝微粒体,观察到反向I型差异光谱,表明丝裂霉素c与细胞色素P-450的底物结合位点之间存在弱相互作用。丝裂霉素c在两个微粒体系统中均抑制氨基比林和乙氧芴香豆素的氧化脱烷基作用。3. 在有氧条件下,微粒体系统中H2O2的产生依赖于NADPH、O2和丝裂霉素c,并受到细胞色素P-450抑制剂美替拉酮和SKF-525A的抑制。4. 尽管纯化的NADPH-细胞色素P-450还原酶在还原丝裂霉素c以及同时还原O2方面也有效,但完整的微粒体系统以及细胞色素P-450b或P-450c与还原酶的完全重组系统效率更高。5. 在微粒体系统的厌氧条件下,丝裂霉素c的还原(以底物消失速率衡量)和NBP的还原烷基化均依赖于细胞色素P-450。6. 纯化的NADPH-细胞色素P-450还原酶还原丝裂霉素c的相对速率低于含有细胞色素P-450和等量NADPH-细胞色素P-450还原酶的完整微粒体系统。7. 得出的结论是,尽管NADPH-细胞色素P-450还原酶在丝裂霉素c的单电子还原中具有活性,但在相对低的O2张力下,肝微粒体中该化合物还原的实际代谢位点更可能是细胞色素P-450的血红素位点。

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