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苯妥英诱导的细胞色素P450同工型可差异性增强大鼠脑中睾酮的代谢。

Testosterone metabolism in rat brain is differentially enhanced by phenytoin-inducible cytochrome P450 isoforms.

作者信息

Rosenbrock H, Hagemeyer C E, Singeç I, Knoth R, Volk B

机构信息

Institute of Pathology, Department of Neuropathology, Neurocentre, University of Freiburg, Freiburg, Germany.

出版信息

J Neuroendocrinol. 1999 Aug;11(8):597-604. doi: 10.1046/j.1365-2826.1999.00371.x.

Abstract

Many cytochrome P450 (P450) isoforms are selectively inducible by xenobiotics, e.g. pharmaceuticals like the anti-epileptic drug phenytoin. Some of these P450 enzymes are involved in the metabolism of gonadal hormones and are of great importance, especially in early brain development. In this study, the hydroxylation of testosterone by rat brain microsomes from control and phenytoin-induced animals was examined by use of high performance liquid chromatography (HPLC) provided with a photodiode array detector (PDA). In control rats, testosterone is converted by cytochrome(s) P450 to 6alpha-hydroxytestosterone (OHT) as the main metabolite and 6beta-OHT as well as androstenedione as minor metabolites. After phenytoin treatment, brain microsomes showed a strong increase of testosterone metabolism to 2alpha-, 6beta-, 16alpha-, 16beta-OHT and androstenedione, whereby 16alpha-OHT was the main degradation product. These metabolites indicated the action of isoforms of the P450 subfamilies CYP2B, CYP2C and CYP3A. Inhibition experiments with antibodies against CYP2B1/2 and with the CYP2B specific inhibitor orphenadrine indicated the occurrence of members of this subfamily which are known to catalyse the oxidation of testosterone to 16alpha-OHT, 16beta-OHT and androstenedione. Western blots revealed the phenytoin-inducible expression of CYP2B1 and the constitutive expression of CYP3A. The latter is involved in the 6beta-hydroxylation of testosterone which was found correspondingly in control microsomes. Distinct CYP2C isoforms involved in the hydroxylation of testosterone in phenytoin-induced microsomes are not yet identified. The highly increased testosterone metabolism by phenytoin-dependent induction of specific cytochrome P450 isoforms in adult rat brain illustrates the potential influence of exogenous substances on internal regulative and metabolic pathways in the brain.

摘要

许多细胞色素P450(P450)同工型可被外源化合物选择性诱导,例如抗癫痫药物苯妥英等药物。其中一些P450酶参与性腺激素的代谢,具有重要意义,尤其是在脑发育早期。在本研究中,使用配备光电二极管阵列检测器(PDA)的高效液相色谱(HPLC)检测了来自对照动物和苯妥英诱导动物的大鼠脑微粒体对睾酮的羟基化作用。在对照大鼠中,睾酮被细胞色素P450转化为主要代谢产物6α-羟基睾酮(OHT)以及次要代谢产物6β-OHT和雄烯二酮。苯妥英处理后,脑微粒体对睾酮的代谢显著增加,生成2α-、6β-、16α-、16β-OHT和雄烯二酮,其中16α-OHT是主要降解产物。这些代谢产物表明了P450亚家族CYP2B、CYP2C和CYP3A同工型的作用。用抗CYP2B1/2抗体以及CYP2B特异性抑制剂邻甲苯海明进行的抑制实验表明,该亚家族成员的存在,已知这些成员可催化睾酮氧化为16α-OHT、16β-OHT和雄烯二酮。蛋白质免疫印迹显示CYP2B1的苯妥英诱导表达和CYP3A的组成型表达。后者参与睾酮的6β-羟基化,在对照微粒体中也相应发现。尚未鉴定出苯妥英诱导的微粒体中参与睾酮羟基化的特定CYP2C同工型。苯妥英依赖性诱导成年大鼠脑中特定细胞色素P450同工型导致睾酮代谢大幅增加,说明了外源物质对脑内调节和代谢途径的潜在影响。

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