17β-羟基类固醇氧化还原酶活性:大鼠肝脏的年龄依赖性和肝微粒体酶的动力学特性与细胞色素p450依赖性类固醇羟基化有关

Michael Murray, Brian P. Horsfield
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引用次数: 17

摘要

研究了大鼠肝脏微粒体细胞色素P450与参与类固醇代谢的17β-羟基类固醇氧化还原酶(HSOR)的功能关系。在雄性和雌性大鼠肝微粒体中,nadph依赖性雄烯二酮(AD)向睾酮(T)的转化接近。6周龄比1周龄大4倍。在15周龄大鼠的肝微粒体中,雄性的HSOR通路活性高于雌性(1.51比0.80 nmol T形成/min/mg蛋白)。然而,雌二醇对完整成年雄性大鼠没有降低HSOR活性。因此,雄激素对于维持HSOR酶并不是必需的。相反,HSOR酶的不可逆雄激素印记可能发生在青春期前。并评估了HSOR活性的体外特征。nadh依赖的AD还原为T的Km为9.2 μM, Vmax为3.0 nmol/min/mg蛋白,但nadh介导的T形成AD不符合Michaelis-Menton动力学。pH显著影响hor介导的AD/T相互转化,在低pH下17-酮类固醇还原更容易,在pH 8.0下17- β-羟基类固醇脱氢的效率是pH 5.5下的2倍。产物类固醇激活了HSOR活性。17β-羟基类固醇(包括T和雌二醇)激活AD转化为T的速率,17-酮类固醇(如雌酮和AD)激活AD依赖于T的脱氢,在低类固醇底物浓度下没有观察到激活,因此不可能通过传统的动力学方法分析这一现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
17β-Hydroxysteroid oxidoreductase activity: Age-dependent profile in rat liver and kinetic properties of the hepatic microsomal enzyme in relation to cytochrome P450-dependent steroid hydroxylation

The functional relationship between the microsomal cytochrome P450 and 17β-hydroxysteroid oxidoreductase (HSOR) enzymes involved in steroid metabolism was investigated in rat liver. In male and female rat hepatic microsomes the NADPH-dependent conversion of androstenedione (AD) to testosterone (T) was approx. 4-fold greater at 6 weeks of age than in 1 week old animals. In hepatic microsomes from 15 week old rats the activity of the HSOR pathway was greater in males than in females (1.51 compared to 0.80 nmol T formed/min/mg protein). However, oestradiol administration to intact adult male rats did not decrease HSOR activity. Thus, androgen is not essential for maintenance of HSOR enzymes. Instead, it is likely that irreversible androgen imprinting of the HSOR enzyme occurs during the prepubertal period.

The in vitro characteristics of HSOR activity were also assessed. The Km for NADH-dependent reduction of AD to T was 9.2 μM and the Vmax was 3.0 nmol/min/mg protein but the NAD-mediated formation of AD from T did not follow Michaelis-Menton kinetics. pH markedly influenced HSOR-mediated AD/T interconversion with 17-ketosteroid reduction facilitated at low pH, and 17β-hydroxysteroid dehydrogenation about 2-fold more efficient at pH 8.0 than at pH 5.5. Product steroid activation of HSOR activity was noted. 17β-Hydroxy-steroids, including T and oestradiol, activated the rate of conversion of AD to T and 17-ketosteroids such as oestrone and AD activated the NAD-dependent dehydrogenation of T. Activation was not observed at low steroid substrate concentrations so that it was not possible to analyse this phenomenon by a conventional kinetic approach.

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