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均一环氧水解酶对苯并(a)芘致突变性的预防作用

Prevention of benzo(a)pyrene-induced mutagenicity by homogeneous epoxide hydratase.

作者信息

Oesch F, Bentley P, Glatt H R

出版信息

Int J Cancer. 1976 Oct 15;18(4):448-52. doi: 10.1002/ijc.2910180408.

Abstract

Benzo(a)pyrene and benz(a) anthrancene which, in contrast to the K-region epoxides benzo(a)pyrene 4,5-oxide and benz(a)anthracene 5,6-oxide, are not mutagenic to Salmonella typhimurium TA 1537 in the absence of mammalian enzyme preparations, were activated by liver microsomes from C3H mice, which had not received any pretreatment, to mutagens reverting this tester strain to histidine prototrophy. Addition of epoxide hydratase inhibitors greatly increased this mutagenicity and addition of pure epoxide hydratase reduced it by more than 95% down to the range of spontaneous mutations as observed in absence of any added mutagen. This demonstrates than the metabolic pathway responsible for the mutagenicity of both polycyclic hydrocarbons observed in this system proceeds entirely via an epoxidation pathway and that the responsible metabolites are epoxides or species arising from them. Moreover, further metabolism by epoxide hydratase does not lead to produce contributing to the mutagenicity observed with the tester strain used. Finally, the epoxides relevant for the observed mutagenicity are substrates for epoxide hydratase; indeed, modest amounts of the pure enzyme can prevent the mutagenic effect.

摘要

苯并(a)芘和苯并(a)蒽与K区域环氧化物苯并(a)芘4,5-氧化物和苯并(a)蒽5,6-氧化物不同,在没有哺乳动物酶制剂的情况下,它们对鼠伤寒沙门氏菌TA 1537没有致突变性。未接受任何预处理的C3H小鼠的肝微粒体将它们激活为致突变剂,使该测试菌株回复为组氨酸原养型。加入环氧化物水合酶抑制剂可大大增加这种致突变性,而加入纯环氧化物水合酶则可将其降低95%以上,降至在未添加任何诱变剂时观察到的自发突变范围内。这表明在该系统中观察到的两种多环烃致突变性的代谢途径完全通过环氧化途径进行,并且相关代谢物是环氧化物或由它们产生的物质。此外,环氧化物水合酶的进一步代谢不会导致产生对所用测试菌株观察到的致突变性有贡献的物质。最后,与观察到的致突变性相关的环氧化物是环氧化物水合酶的底物;事实上,适量的纯酶可以防止诱变作用。

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