Schmalix W A, Lang D, Schneider A, Bocker R, Greim H, Doehmer J
Technische Universität München, Institute für Toxikologie und Umwelthygiene, Germany.
Drug Metab Dispos. 1996 Dec;24(12):1314-9.
V79 Chinese hamster cell lines were genetically engineered for the stable expression of human NADPH-cytochrome P450 oxidoreductase (CYPOR) alone or for the combined expression of CYPOR and human cytochrome P450 1A2 (CYP1A2). As determined by immunoblotting, the expression level of CYP1A2 in the latter cell line was found to be the same as in a previously constructed V79 cell line expressing CYP1A2 only. The heterologous expression of CYPOR in V79 cells resulted in increased sensitivity to quinone-type cytotoxins, e.g. duroquinone and menadione, that exert their toxicity primarily through the production of reactive oxygen species during redox cycling. The metabolic properties of the cell line expressing both CYPOR and CYP1A2 were characterized regarding dealkylation and deethylation of 7-alkoxyresorufins and sulfoxidation of the triazine derivatives ametryne and terbutryne, in comparison with the cell line expressing only CYP1A2. Increased CYPOR activity impaired the CYP1A2-dependent fluorometric resorufin assay, presumably by conversion of the 7-alkoxyresorufins and resorufin to their one-electron-reduced semiquinoneimine forms. The CYP1A2-dependent metabolism of the triazine derivatives ametryne and terbutryne was moderately enhanced by increased CYPOR activity. Interestingly, with CYPOR overexpression sulfoxidation was increased 2-3-fold, compared with N-deethylation, with a 1.3-1.9-fold increase. Thus, the level of CYPOR not only had an influence on CYP1A2 activity rates but also affected the relative proportions of metabolites in CYP1A2-specific metabolite profiles.
V79中国仓鼠细胞系经过基因工程改造,用于单独稳定表达人NADPH-细胞色素P450氧化还原酶(CYPOR),或用于联合表达CYPOR和人细胞色素P450 1A2(CYP1A2)。通过免疫印迹法测定,发现后一种细胞系中CYP1A2的表达水平与先前构建的仅表达CYP1A2的V79细胞系中的表达水平相同。V79细胞中CYPOR的异源表达导致对醌型细胞毒素(如杜醌和甲萘醌)的敏感性增加,这些毒素主要通过氧化还原循环过程中产生活性氧来发挥毒性。与仅表达CYP1A2的细胞系相比,对同时表达CYPOR和CYP1A2的细胞系的代谢特性进行了7-烷氧基试卤灵的脱烷基化和脱乙基化以及三嗪衍生物莠灭净和特丁净的硫氧化的表征。CYPOR活性增加会损害依赖CYP1A2的荧光试卤灵测定,可能是由于7-烷氧基试卤灵和试卤灵转化为其一电子还原的半醌亚胺形式。CYPOR活性增加适度增强了三嗪衍生物莠灭净和特丁净的CYP1A2依赖性代谢。有趣的是,与N-脱乙基化相比,CYPOR过表达使硫氧化增加了2-3倍,增加了1.3-1.9倍。因此,CYPOR的水平不仅影响CYP1A2的活性速率,还影响CYP1A2特异性代谢物谱中代谢物的相对比例。