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细胞色素 b(5)将抗癌药物椭圆屈麻津的细胞色素 P450 1A1 和 1A2 的氧化从解毒转化为激活,从而调节其药理作用。

Cytochrome b(5) shifts oxidation of the anticancer drug ellipticine by cytochromes P450 1A1 and 1A2 from its detoxication to activation, thereby modulating its pharmacological efficacy.

机构信息

Department of Biochemistry, Faculty of Science, Charles University, Albertov 2030, 128 40 Prague 2, Czech Republic.

出版信息

Biochem Pharmacol. 2011 Sep 15;82(6):669-80. doi: 10.1016/j.bcp.2011.06.003. Epub 2011 Jun 13.

Abstract

Ellipticine is a pro-drug, whose activation is dependent on its oxidation by cytochromes P450 (CYP) and peroxidases. Cytochrome b(5) alters the ratio of ellipticine metabolites formed by isolated reconstituted CYP1A1 and 1A2, favoring formation of 12-hydroxy- and 13-hydroxyellipticine metabolites implicated in ellipticine-DNA adduct formation, at the expense of 9-hydroxy- and 7-hydroxyellipticine that are detoxication products. Cytochrome b(5) enhances the production of 12-hydroxy and 13-hydroxyellipticine. The change in metabolite ratio results in an increased formation of covalent ellipticine-DNA adducts, one of the DNA-damaging mechanisms of ellipticine antitumor action. This finding explains previous apparent discrepancies found with isolated enzymes and in vivo, where CYP1A enzymatic activation correlated with ellipticine-DNA-adduct levels while isolated CYP1A1 or 1A2 in reconstituted systems were much less effective than CYP3A4. The effect of cytochrome b(5) might be even more pronounced in vivo, since, as we show here, ellipticine increases levels of cytochrome b(5) in rat liver. Our results demonstrate that both the native 3D structure of cytochrome b(5) and the presence of the heme as an electron transfer agent in this protein enable a shift in ellipticine metabolites formed by CYP1A1/2.

摘要

依利替康是一种前体药物,其激活依赖于细胞色素 P450(CYP)和过氧化物酶的氧化。细胞色素 b(5)改变了由分离的重组 CYP1A1 和 1A2 形成的依利替康代谢物的比例,有利于形成与依利替康-DNA 加合物形成有关的 12-羟基-和 13-羟基依利替康代谢物,而不是解毒产物 9-羟基-和 7-羟基依利替康。细胞色素 b(5)增强了 12-羟基和 13-羟基依利替康的产生。代谢物比例的变化导致共价依利替康-DNA 加合物的形成增加,这是依利替康抗肿瘤作用的一种 DNA 损伤机制。这一发现解释了以前在分离酶和体内实验中发现的明显差异,在体内实验中,CYP1A 酶的激活与依利替康-DNA 加合物水平相关,而在重组系统中分离的 CYP1A1 或 1A2 的效果远不如 CYP3A4。细胞色素 b(5)的作用在体内可能更为明显,因为正如我们在这里所示,依利替康增加了大鼠肝脏中细胞色素 b(5)的水平。我们的结果表明,细胞色素 b(5)的天然 3D 结构和血红素作为电子转移剂的存在都使 CYP1A1/2 形成的依利替康代谢物发生了转变。

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