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大鼠肝微粒体中的细胞色素P450IIIA酶:参与地西泮和去甲地西泮的C3-羟基化反应,但不参与地西泮和替马西泮的N-脱烷基反应。

Cytochrome P450IIIA enzymes in rat liver microsomes: involvement in C3-hydroxylation of diazepam and nordazepam but not N-dealkylation of diazepam and temazepam.

作者信息

Reilly P E, Thompson D A, Mason S R, Hooper W D

机构信息

Department of Biochemistry, University of Queensland, St. Lucia, Brisbane, Australia.

出版信息

Mol Pharmacol. 1990 May;37(5):767-74.

PMID:1971091
Abstract

Microsomes prepared from livers of male and female rats of nine inbred and outbred strains and of male Sprague-Dawley rats pretreated with monooxygenase-inducing agents were used to study N-dealkylation of diazepam and temazepam and C3-hydroxylation of diazepam and nordazepam. Both C3-hydroxylation reactions were more rapid in male than in female liver preparations, but this gender-dependent pattern was not seen with the N-dealkylation reactions. These results indicate the lack of identity of the monooxygenases responsible for the two kinds of reaction and suggest that male-specific enzyme(s) are responsible for the C3-hydroxylations. Induction studies were undertaken to further define these enzymes. To do this, liver microsomes prepared from male Sprague-Dawley rats pretreated with a variety of agents known to have different monooxygenase induction effects were used. With triacetyloleandomycin, dexamethasone, and phenobarbital pretreatment, the specific activities of the C3-hydroxylation reactions were selectively elevated over corresponding control values. These particular xenobiotics are known to enhance the abundance of cytochrome P450IIIA family enzymes, and our results strongly suggest the involvement of these enzymes in the benzodiazepine B ring monooxygenations. Formation of temazepam was also shown to be inhibited by triacetyloleandomycin. This effect was demonstrated to be equal in both saline-treated and dexamethasone-treated male Sprague-Dawley rat liver microsomes, with the antibiotic present either with diazepam throughout the entire incubation period or initially with NADPH in a preincubation mix for 15 min, following which C3-hydroxylation was initiated by the addition of diazepam. These results confirm the uniformity of the involvement of cytochrome P450IIIA family enzymes in diazepam C3-hydroxylation in untreated and inducer-treated rat liver microsomes. Recent studies with human and rabbit liver microsomal preparations have shown that orthologues of these enzymes also catalyze an equivalent hydroxylation in the B ring of midazolam. These findings, considered with the present results showing that the adjacent methyl N-substituent (absent in nordazepam but present in diazepam) did not affect the selectivity of these enzymes for the C3-hydroxylation reaction, suggest that neither steric nor electronic factors markedly influence catalysis of this monooxygenation by these enzymes.

摘要

从9个近交系和远交系的雄性和雌性大鼠以及用单加氧酶诱导剂预处理的雄性Sprague-Dawley大鼠的肝脏中制备微粒体,用于研究地西泮和替马西泮的N-脱烷基反应以及地西泮和去甲地西泮的C3-羟基化反应。在雄性肝脏制剂中,两种C3-羟基化反应都比雌性更快,但N-脱烷基反应未观察到这种性别依赖性模式。这些结果表明负责这两种反应的单加氧酶不同,提示雄性特异性酶负责C3-羟基化反应。进行诱导研究以进一步确定这些酶。为此,使用从用已知具有不同单加氧酶诱导作用的多种试剂预处理的雄性Sprague-Dawley大鼠制备的肝脏微粒体。用三乙酰竹桃霉素、地塞米松和苯巴比妥预处理后,C3-羟基化反应的比活性相对于相应的对照值有选择性地升高。已知这些特定的外源性物质可增加细胞色素P450IIIA家族酶的丰度,我们的结果强烈提示这些酶参与苯二氮䓬B环单加氧反应。还显示三乙酰竹桃霉素可抑制替马西泮的形成。在生理盐水处理和地塞米松处理的雄性Sprague-Dawley大鼠肝脏微粒体中均证明了这种作用,在整个孵育期抗生素与地西泮一起存在,或者最初在预孵育混合物中与NADPH一起存在15分钟,之后通过加入地西泮启动C3-羟基化反应。这些结果证实了细胞色素P450IIIA家族酶在未处理和诱导剂处理的大鼠肝脏微粒体中参与地西泮C3-羟基化反应的一致性。最近对人和兔肝脏微粒体制剂的研究表明,这些酶的直系同源物也催化咪达唑仑B环中的等效羟基化反应。这些发现,结合目前的结果表明相邻的甲基N取代基(去甲地西泮中不存在但地西泮中存在)不影响这些酶对C3-羟基化反应的选择性,提示空间因素和电子因素均未明显影响这些酶对这种单加氧反应的催化作用。

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