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大鼠肝脏内质网中环氧水解酶和苯并芘单加氧酶的拓扑结构。

The topology of epoxide hydratase and benzpyrene monooxygenase in the endoplasmic reticulum of rat liver.

作者信息

Seidegård J, Moron M S, Eriksson L C, DePierre J W

出版信息

Biochim Biophys Acta. 1978 Sep 21;543(1):29-40. doi: 10.1016/0304-4165(78)90451-8.

Abstract

The distributions of benzpyrene monooxygenase and epoxide hydratase in subfractions of liver microsomes from control and from phenobarbital- and methylcholanthrene-treated rats have been investigated. The specific activities of these enzymes in rough and smooth microsomes from control and phenobarbital-treated animals are approximately the same, whereas after methylcholanthrene treatment benzpyrene monooxygenase is four times higher and epoxide hydratase twice as high in the rough vesicles. Further subfractionation of rough and smooth microsomes by rate differential centrifugation revealed the distributions of both enzymes among microsomal vesicles to be highly heterogeneous. Comparison of these distributions leads to the conclusion that the benzpyrene monooxygenase system and epoxide hydratase may form a complex of unique stoichiometry in the membrane of microsomes from control rats, but that such a complex is not consistent with the distributions obtained after methylcholanthrene induction. Studies with proteases and the nonpenetrating chemical reagent diazobenzene sulfonate suggest that epoxide hydratase may be buried deeply in the hydrophobic phase of the membrane of the hepatic endoplasmic reticulum.

摘要

研究了苯并芘单加氧酶和环氧化物水合酶在对照组以及经苯巴比妥和甲基胆蒽处理的大鼠肝脏微粒体亚组分中的分布情况。对照组和经苯巴比妥处理的动物的粗面和滑面微粒体中这些酶的比活性大致相同,而在甲基胆蒽处理后,粗面小泡中的苯并芘单加氧酶活性高四倍,环氧化物水合酶活性高两倍。通过速率差离心对粗面和滑面微粒体进行进一步亚分级分离,结果显示这两种酶在微粒体小泡中的分布高度不均一。对这些分布的比较得出结论,在对照组大鼠的微粒体膜中,苯并芘单加氧酶系统和环氧化物水合酶可能形成具有独特化学计量比的复合物,但这种复合物与甲基胆蒽诱导后获得的分布不一致。用蛋白酶和非穿透性化学试剂重氮苯磺酸盐进行的研究表明,环氧化物水合酶可能深埋在肝内质网膜的疏水相中。

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