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首页> 外文期刊>Biological & pharmaceutical bulletin >Contribution of flavin-containing monooxygenase and cytochrome P450 to imipramine N-oxidation in rat hepatic microsomes.
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Contribution of flavin-containing monooxygenase and cytochrome P450 to imipramine N-oxidation in rat hepatic microsomes.

机译:含黄素的单加氧酶和细胞色素P450对大鼠肝微粒体中丙咪嗪N氧化的贡献。

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Enzymatic formation of desipramine (DMI) and imipramine N-oxide (IMINO) was kinetically characterized in rat liver microsomes at pH 8.5 and 7.5. The formation of IMINO was quickly suppressed by the preincubation of microsomes at 37 degrees C at pH 8.5, but the suppression was comparatively gentle at pH 7.5. In kinetic studies, the formation of DMI was monophasic at the two pH points, and a substrate inhibition was observed at pH 8.5, but not at pH 7.5. In contrast, the formation of IMINO was biphasic at both pH points, Le., the summation of a low-Km phase and a high-Km phase. Methimazole (MZ), an inhibitor of flavin-containing monooxygenase (FMO), markedly suppressed the low-Km phase of IMINO formation at both pH points. MZ also suppressed DMI formation at pH 8.5, but it elevated DMI formation at pH 7.5. SKF 525-A, an inhibitor of cytochrome P450 (CYP), markedly suppressed DMI formation at both pH points. The inhibitor suppressed IMINO formation in the high-Km phase of the biphasic kinetics at both pH points, whereas it stimulated the activity of the low-Km phase at pH 7.5. These results suggest that CYP enzyme(s) are mainly responsible for DMI formation at pH 8.5 and 7.5, and FMO enzyme(s) also are involved in IMI N-demethylation at a higher pH range in rat liver microsomes, at least in part. In the formation of IMINO, FMO is a major enzyme at both pH points, and CYP may also contribute to the N-oxide formation to some extent at pH 8.5.
机译:在大鼠肝微粒体中,pH 8.5和7.5动力学表征了地昔帕明(DMI)和丙咪嗪N-氧化物(IMINO)的酶促形成。通过在37摄氏度,pH 8.5下预孵育微粒体,可以快速抑制IMINO的形成,但在pH 7.5下,抑制作用相对较弱。在动力学研究中,DMI的形成在两个pH点是单相的,在pH 8.5观察到底物抑制,但在pH 7.5观察不到。相反,IMINO的形成在两个pH点(即低Km相和高Km相的总和)都是双相的。含有黄素的单加氧酶(FMO)的抑制剂Methimazole(MZ)在两个pH点均显着抑制了IMINO形成的低Km相。 MZ在pH 8.5时也抑制了DMI的形成,但在pH 7.5时却增加了DMI的形成。 SKF 525-A是细胞色素P450(CYP)的抑制剂,在两个pH点上均显着抑制DMI的形成。该抑制剂在两个pH点都抑制了双相动力学的高Km相中IMINO的形成,而在pH 7.5时它刺激了低Km相的活性。这些结果表明,CYP酶主要负责在pH 8.5和7.5时DMI的形成,FMO酶也至少部分地参与了大鼠肝脏微粒体中较高pH范围内的IMI N-去甲基化。在IMINO的形成中,FMO在两个pH点都是主要酶,而CYP在pH 8.5时也可能在一定程度上促进N-氧化物的形成。

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