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3-苯甲酰吡啶和甲吡酮对大鼠肝脏中CYP3A和CYP2B的诱导作用比较

Comparative induction of CYP3A and CYP2B in rat liver by 3-benzoylpyridine and metyrapone.

作者信息

Murray M, Sefton R M, Martini R, Butler A M

机构信息

Storr Liver Unit, Department of Medicine, University of Sydney, Westmead Hospital, NSW, Australia.

出版信息

Chem Biol Interact. 1998 Jun 5;113(3):161-73. doi: 10.1016/s0009-2797(98)00017-9.

Abstract

3-Benzoylpyridine (3BP) is a major metabolite of HGG-12, and oxime that has been synthesized as a potential antidote to the toxic effects of soman and other anticholinesterases. Structural similarities exist between 3BP, the cytochrome P450 (CYP)-inducer metyrapone (MET) and other 3-substituted pyridines that interact with CYPs. The present study evaluated the regulatory effects of 3BP on CYP expression in rat liver. Both 3BP and MET (100 mg/kg) increased total hepatic microsomal holo-CYP content significantly 24 h after administration to male rats. Pronounced increases in activities mediated by CYP2B (androstenedione 16 beta-hydroxylation and 7-pentylresorufin O-depentylation) were produced by 3BP and MET, which correlated with respective 9- and 14-fold increases in CYP2B immunoreactive protein. In addition, both agents slightly increased rates of microsomal CYP3A-dependent steroid 6 beta-hydroxylation, troleandomycin metabolite complex formation and total CYP3A immunoreactive protein. Induction of the dexamethasone-inducible CYP3A23 mRNA to 4.5- and 2.5-fold of control was detected in liver of MET- and 3BP-induced rats; CYP3A2 mRNA levels were unchanged. Analogous in vitro studies revealed that MET was a preferential inhibitor of CYP3A-mediated steroid 6 beta-hydroxylation activity, but 3BP was inactive against constitutive steroid hydroxylase CYPs. These findings indicate that the structurally related 3BP and MET elicit similar induction effects on CYPs 2B and 3A23 in rat liver after in vivo administration, but differential inhibitory effects of the chemicals on CYP activity in vitro. Recent reports have implicated a microsomal binding site in the induction of CYP3A1/3A23 in rat liver. In light of the present findings, substituted pyridines like 3BP may be useful tools in structure-activity studies to evaluate the physicochemical requirements for binding to this protein.

摘要

3-苯甲酰吡啶(3BP)是HGG-12的主要代谢产物,是一种肟类化合物,已被合成作为对抗梭曼和其他抗胆碱酯酶毒性作用的潜在解毒剂。3BP、细胞色素P450(CYP)诱导剂美替拉酮(MET)以及其他与CYPs相互作用的3-取代吡啶之间存在结构相似性。本研究评估了3BP对大鼠肝脏中CYP表达的调节作用。给雄性大鼠腹腔注射3BP和MET(100 mg/kg)后24小时,二者均显著增加了肝脏微粒体全酶形式CYP的总含量。3BP和MET使CYP2B介导的活性(雄烯二酮16β-羟基化和7-戊基试卤灵O-去戊基化)显著增加,这与CYP2B免疫反应性蛋白分别增加9倍和14倍相关。此外,两种药物均轻微增加了微粒体CYP3A依赖性类固醇6β-羟基化速率、三乙酰竹桃霉素代谢物复合物形成以及CYP3A免疫反应性蛋白总量。在MET和3BP诱导的大鼠肝脏中,地塞米松诱导的CYP3A23 mRNA分别被诱导至对照水平的4.5倍和2.5倍;CYP3A2 mRNA水平未发生变化。类似的体外研究表明,MET是CYP3A介导的类固醇6β-羟基化活性的优先抑制剂,但3BP对组成型类固醇羟化酶CYPs无活性。这些发现表明,结构相关的3BP和MET在体内给药后对大鼠肝脏中的CYPs 2B和3A23产生相似的诱导作用,但两种化合物在体外对CYP活性具有不同的抑制作用。最近的报道表明,大鼠肝脏中CYP3A1/3A23的诱导涉及一个微粒体结合位点。鉴于目前的研究结果,像3BP这样的取代吡啶可能是结构活性研究中评估与该蛋白结合的物理化学要求的有用工具。

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