Loose D S, Kan P B, Hirst M A, Marcus R A, Feldman D
J Clin Invest. 1983 May;71(5):1495-9. doi: 10.1172/jci110903.
Ketoconazole has recently been shown to interfere with steroidogenesis in patients and rat in vitro systems. In this study we attempted to elucidate the site of inhibition in the adrenal gland. Although ketoconazole impaired adrenocorticotropic hormone stimulated cyclic (c)AMP production, dibutyrl cAMP addition did not bypass the steroidogenic blockade indicating that the critical ketoconazole-inhibited step was distal to cAMP. Addition of radiolabeled substrates to isolated adrenal cells and analysis of products by high performance liquid chromatography demonstrated a ketoconazole block between deoxycorticosterone (DOC) and corticosterone. This 11-hydroxylase step is carried out by a P450-dependent mitochondrial enzyme. No restriction of progesterone or pregnenolone conversion to DOC was detected, steps carried out by non-P450-dependent microsomal enzymes. Inhibition of cholesterol conversion to pregnenolone by mitochondrial fractions indicated a second block at the side chain cleavage step, another mitochondrial P450-dependent enzyme. Adrenal malate dehydrogenase, a non-P450-dependent mitochondrial enzyme was not inhibited while renal 24-hydroxylase, a P450-dependent mitochondrial enzyme in another organ, was blocked by ketoconazole. We conclude that ketoconazole may be a general inhibitor of mitochondrial P450 enzymes. This finding suggests that patients receiving ketoconazole be monitored for side effects relevant to P450 enzyme inhibition. Further, we raise the possibility that this drug action may be beneficially exploited in situations where inhibition of steroidogenesis is a therapeutic goal.
酮康唑最近已被证明可在患者及大鼠体外系统中干扰类固醇生成。在本研究中,我们试图阐明其在肾上腺中的抑制位点。尽管酮康唑会损害促肾上腺皮质激素刺激的环磷酸腺苷(cAMP)生成,但添加二丁酰cAMP并不能绕过类固醇生成的阻滞,这表明酮康唑抑制的关键步骤位于cAMP的下游。向分离的肾上腺细胞中添加放射性标记底物,并通过高效液相色谱分析产物,结果表明酮康唑在脱氧皮质酮(DOC)和皮质酮之间存在阻滞作用。这一11β-羟化酶步骤是由一种依赖细胞色素P450的线粒体酶进行的。未检测到孕酮或孕烯醇酮向DOC转化受到限制,这些步骤是由非依赖细胞色素P450的微粒体酶进行的。线粒体组分对胆固醇向孕烯醇酮转化的抑制表明在侧链裂解步骤存在第二个阻滞点,这也是一种依赖细胞色素P450的线粒体酶。肾上腺苹果酸脱氢酶,一种非依赖细胞色素P450的线粒体酶未受到抑制,而肾脏24-羟化酶,另一个器官中的一种依赖细胞色素P450的线粒体酶,被酮康唑所阻滞。我们得出结论,酮康唑可能是线粒体细胞色素P450酶的一种通用抑制剂。这一发现提示,对于接受酮康唑治疗的患者,应监测与细胞色素P450酶抑制相关的副作用。此外,我们提出在类固醇生成抑制是治疗目标的情况下,这种药物作用可能会得到有益应用的可能性。