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亚甲二氧基苯基及相关化合物与纯化的细胞色素P-450同工酶的光谱和抑制相互作用

Spectral and inhibitory interactions of methylenedioxyphenyl and related compounds with purified isozymes of cytochrome P-450.

作者信息

Marcus C B, Murray M, Wilkinson C F

出版信息

Xenobiotica. 1985 Apr;15(4):351-62. doi: 10.3109/00498258509045370.

Abstract

Spectral and inhibitory interactions of two methylenedioxyphenyl (MDP) compounds (dihydrosafrole (DHS) and 4,5-dichloro-1,2-methylenedioxybenzene (DCMB] and 4-n-butyl dioxolane (BD) were studied in vitro in reconstituted systems incorporating cytochromes P-450b and P-450c, purified respectively from hepatic microsomes of phenobarbital (PB)- and beta-naphthoflavone (beta NF)-treated rats. In NADPH-fortified reconstituted systems containing P-450b, DHS yielded a stable type III spectral complex with peaks at 428 and 458 nm; a complex with a single 456 nm peak was formed in systems containing cytochrome P-450c. DCMB formed unstable 456-458 nm spectral complexes with both isozymes, and BD generated an unstable complex with a single Soret peak near 428 nm with cytochrome P-450b; no spectral interaction occurred between BD and cytochrome P-450c. Carbon monoxide was formed in incubations of DCMB with both isozymes but was not observed with either DHS or BD. Marked selectivity was observed in the ability of the test compounds to inhibit selected mono-oxygenase reactions in the reconstituted systems. Thus, while DHS was an effective inhibitor of cytochrome P-450b-mediated ethoxycoumarin O-deethylase (ECD), it failed to inhibit aldrin epoxidase (AE) in the same system; DCMB and BD inhibited both of these reactions. In reconstituted systems incorporating cytochrome P-450c, DHS and DCMB, but not BD, were effective inhibitors of ethoxyresorufin O-deethylase (ERD) activity but none of the compounds showed any inhibitory activity towards aryl hydrocarbon (benzo[alpha]pyrene)hydrolase (AHH) activity. The results indicate that metabolite complex formation with cytochrome P-450 is not the sole criterion for inhibition of mono-oxygenase activity by MDP and related compounds, and that in some cases type I competitive interactions at the substrate binding sites may be the primary contributing factor.

摘要

在体外重建系统中研究了两种亚甲二氧基苯基(MDP)化合物(二氢黄樟素(DHS)和4,5 - 二氯 - 1,2 - 亚甲二氧基苯(DCMB))以及4 - 正丁基二氧戊环(BD)的光谱和抑制相互作用。该重建系统分别包含从苯巴比妥(PB)和β - 萘黄酮(βNF)处理的大鼠肝脏微粒体中纯化得到的细胞色素P - 450b和P - 450c。在含有P - 450b的NADPH强化重建系统中,DHS产生了一个稳定的III型光谱复合物,其峰值在428和458nm处;在含有细胞色素P - 450c的系统中形成了一个具有单个456nm峰值的复合物。DCMB与两种同工酶都形成了不稳定的456 - 458nm光谱复合物,并且BD与细胞色素P - 450b产生了一个在428nm附近具有单个Soret峰的不稳定复合物;BD与细胞色素P - 450c之间未发生光谱相互作用。在DCMB与两种同工酶的孵育中都形成了一氧化碳,但在DHS或BD的孵育中均未观察到。在测试化合物抑制重建系统中选定的单加氧酶反应的能力方面观察到了明显的选择性。因此,虽然DHS是细胞色素P - 450b介导的乙氧基香豆素O - 脱乙基酶(ECD)的有效抑制剂,但它未能在同一系统中抑制艾氏剂环氧化酶(AE);DCMB和BD抑制了这两种反应。在含有细胞色素P - 450c的重建系统中,DHS和DCMB是乙氧基试卤灵O - 脱乙基酶(ERD)活性的有效抑制剂,但BD不是,并且这些化合物均未对芳烃(苯并[α]芘)水解酶(AHH)活性表现出任何抑制活性。结果表明,与细胞色素P - 450形成代谢物复合物并非MDP及相关化合物抑制单加氧酶活性的唯一标准,并且在某些情况下,底物结合位点处的I型竞争相互作用可能是主要的促成因素。

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