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通过NADH-细胞色素b5还原酶和细胞色素P450 2B4评估抗癌药物伊达比星和丝裂霉素C的生物还原激活作用。

Evaluation of bioreductive activation of anticancer drugs idarubicin and mitomycin C by NADH-cytochrome b5 reductase and cytochrome P450 2B4.

作者信息

Celik Haydar, Arinç Emel

机构信息

Biochemistry Graduate Programme and Department of Biological Sciences, Middle East Technical University, Ankara, Turkey.

出版信息

Xenobiotica. 2013 Mar;43(3):263-75. doi: 10.3109/00498254.2012.715212. Epub 2012 Aug 28.

DOI:10.3109/00498254.2012.715212
PMID:22928801
Abstract

This study attempted to investigate the ability of microsomal NADH-cytochrome b5 reductase and cytochrome P450 2B4 to reductively activate idarubicin and mitomycin C. In vitro plasmid DNA damage experiments and assays using purified hepatic enzymes were employed to examine their respective roles in the metabolic activation of anticancer drugs. Mitomycin C was found to be not a good substrate for microsomal b5 reductase unlike P450 reductase. It produced low amounts of strand breaks in DNA when incubated with b5 reductase and its one-electron reduction by purified enzyme was found as negligible. Our findings revealed that P450 reductase-mediated metabolism of idarubicin resulted in a large increase in single-strand DNA breaks, whereas, b5 reductase neither catalyzed the reduction of idarubicin nor mediated the formation of DNA damage in the presence of idarubicin. The reconstitution studies, on the other hand, have identified rabbit liver CYP2B4 isozyme as being a potential candidate enzyme for reductive bioactivation of idarubicin and mitomycin C. Thus, the present novel findings strongly suggest that while b5 reductase could not play a key role in the cytotoxic and/or antitumor effects of idarubicin and mitomycin C, CYP2B4 could potentiate their activity in combination with P450 reductase.

摘要

本研究试图探究微粒体NADH-细胞色素b5还原酶和细胞色素P450 2B4对伊达比星和丝裂霉素C进行还原激活的能力。采用体外质粒DNA损伤实验和使用纯化肝酶的检测方法,以检验它们在抗癌药物代谢激活中的各自作用。与P450还原酶不同,发现丝裂霉素C不是微粒体b5还原酶的良好底物。当与b5还原酶一起孵育时,它在DNA中产生少量链断裂,并且发现纯化酶对其单电子还原可忽略不计。我们的研究结果表明,P450还原酶介导的伊达比星代谢导致单链DNA断裂大幅增加,而b5还原酶既不催化伊达比星的还原,也不在存在伊达比星的情况下介导DNA损伤的形成。另一方面,重组研究已确定兔肝CYP2B4同工酶是伊达比星和丝裂霉素C还原生物激活的潜在候选酶。因此,目前的新发现强烈表明,虽然b5还原酶在伊达比星和丝裂霉素C的细胞毒性和/或抗肿瘤作用中不能发挥关键作用,但CYP2B4可与P450还原酶联合增强它们的活性。

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