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依布硒啉对大鼠肝微粒体酶催化的脂肪酸链延长、去饱和及药物生物转化的作用。

Action of Ebselen on rat hepatic microsomal enzyme-catalyzed fatty acid chain elongation, desaturation, and drug biotransformation.

作者信息

Laguna J C, Nagi M N, Cook L, Cinti D L

机构信息

Department of Pharmacology, University of Connecticut Health Center, Farmington 06032.

出版信息

Arch Biochem Biophys. 1989 Feb 15;269(1):272-83. doi: 10.1016/0003-9861(89)90109-4.

Abstract

In the previous study, the organoselenium-containing anti-inflammatory agent, Ebselen, was found to disrupt both hepatic microsomal NADH- and NADPH-dependent electron transport chains. In the current investigation, we focus on the action of Ebselen on three separate metabolic reactions, namely, fatty acid chain elongation, desaturation, and drug biotransformation, which utilize reducing equivalents via these microsomal electron transport pathways. Both NADH-dependent and NADPH-dependent chain elongation reactions showed (i) that the condensation step was inhibited by Ebselen; all three substrates, palmitoyl CoA (16:0), palmitoleoyl CoA (16:1), and gamma-linolenyl CoA (18:3), were differentially affected by Ebselen; for example, the apparent Ki's of Ebselen for the condensation of 16:0, 16:1, and 18:3 in the absence of bovine serum albumin (BSA) preincubation were 7, 14, and 34 microM, and those in the presence of BSA preincubation were 35, 62, and 150 microM, respectively, supporting earlier data for multiple condensing enzymes; (ii) that the beta-ketoacyl CoA reductase-catalyzed reaction step which appears to receive electrons, at least in part, from the cytochrome b5 system, was also markedly inhibited by varying Ebselen concentrations; and (iii) that similar results were obtained with the dehydrase and the enoyl CoA reductase. Hence, each of the four component steps was significantly inhibited by Ebselen. Another important fatty acid biotransformation reaction, delta 9 desaturation of stearoyl CoA to oleoyl CoA, was significantly inhibited (90%) by 30 microM Ebselen. This effect appeared to be directly related to the NADH-dependent electron transport chain rather than to a direct action on the desaturase enzyme. Last, Ebselen also inhibited both aminopyrine and benzphetamine N-demethylations, two cytochrome P450-catalyzed reactions, in untreated rats, in rats on a high carbohydrate diet, and in phenobarbital-treated rats.

摘要

在先前的研究中,发现含有机硒的抗炎剂依布硒仑会破坏肝微粒体中依赖NADH和NADPH的电子传递链。在当前的研究中,我们聚焦于依布硒仑对三个独立代谢反应的作用,即脂肪酸链延长、去饱和以及药物生物转化,这些反应通过这些微粒体电子传递途径利用还原当量。依赖NADH和依赖NADPH的链延长反应均显示:(i)缩合步骤受到依布硒仑的抑制;所有三种底物,棕榈酰辅酶A(16:0)、棕榈油酰辅酶A(16:1)和γ-亚麻酸辅酶A(18:3),受依布硒仑的影响各不相同;例如,在未进行牛血清白蛋白(BSA)预孵育的情况下,依布硒仑对16:0、16:1和18:3缩合反应的表观抑制常数(Ki)分别为7、14和34微摩尔,而在进行BSA预孵育的情况下,分别为35、62和150微摩尔,这支持了早期关于多种缩合酶的数据;(ii)β-酮脂酰辅酶A还原酶催化的反应步骤,该步骤似乎至少部分从细胞色素b5系统接收电子,也受到不同浓度依布硒仑的显著抑制;(iii)脱水酶和烯酰辅酶A还原酶也得到了类似结果。因此,四个组成步骤均受到依布硒仑的显著抑制。另一个重要的脂肪酸生物转化反应,硬脂酰辅酶A向油酰辅酶A的δ9去饱和反应,受到30微摩尔依布硒仑的显著抑制(90%)。这种效应似乎与依赖NADH的电子传递链直接相关,而非对去饱和酶的直接作用。最后,依布硒仑还抑制了未处理大鼠、高碳水化合物饮食大鼠以及苯巴比妥处理大鼠体内的氨基比林和苄非他明N-脱甲基反应,这两个反应均由细胞色素P450催化。

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