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大鼠睾丸间质细胞中11β-羟基类固醇脱氢酶动力学特性不同的活性鉴定。

Identification of a kinetically distinct activity of 11beta-hydroxysteroid dehydrogenase in rat Leydig cells.

作者信息

Ge R S, Gao H B, Nacharaju V L, Gunsalus G L, Hardy M P

机构信息

The Population Council, New York, New York 10021, USA.

出版信息

Endocrinology. 1997 Jun;138(6):2435-42. doi: 10.1210/endo.138.6.5165.

Abstract

Leydig cells are susceptible to direct glucocorticoid-mediated inhibition of testosterone biosynthesis but can counteract the inhibition through 11beta-hydroxysteroid dehydrogenase (11beta-HSD), which oxidatively inactivates glucocorticoids. Of the two isoforms of 11beta-HSD that have been identified, type I is an NADP(H)-dependent oxidoreductase that is relatively insensitive to inhibition by end product and carbenoxolone (CBX). The type I form has been shown to be predominantly reductive in liver parenchymal cells and other tissues. In contrast, type II, which is postulated to confer specificity in mineralocorticoid receptor (MR)-mediated responses, acts as an NAD-dependent oxidase that is potently inhibited by both end product and CBX. The identity of the 11beta-HSD isoform in Leydig cells is uncertain, because the protein in this cell is recognized by an anti-type I 11beta-HSD antibody, but the activity is primarily oxidative, more closely resembling type II. The goal of the present study was to determine whether the kinetic properties of 11beta-HSD in Leydig cells are consistent with type I, type II, or neither. Leydig cells were purified from male Sprague-Dawley rats (250 g), and 11beta-HSD was evaluated in Leydig cells by measuring rates of oxidation and reduction, cofactor preference, and inhibition by end product and CBX. Leydig cells were assayed for type I and II 11beta-HSD and MR messenger RNAs (mRNAs), and for type I 11beta-HSD protein. Leydig cell 11beta-HSD had bidirectional catalytic activity that was NADP(H)-dependent. This is consistent with the hypothesis that type I 11beta-HSD is present in rat Leydig cells. However, unlike the type I 11beta-HSD in liver parenchymal cells, the Leydig cell 11beta-HSD was predominantly oxidative. Moreover, analysis of kinetics revealed two components, the first being low a Michaelis-Menten constant (Km) NADP-dependent oxidative activity with a Km of 41.5 +/- 9.3 nM and maximum velocity (Vmax) of 7.1 +/- 1.2 pmol x min x 10(6) cells. The second component consisted of high Km activities that were consistent with type I:NADP-dependent oxidative activity with Km of 5.87 +/- 0.46 microM and Vmax of 419 +/- 17 pmol x min x 10(6) cells, and NADPH-dependent reductive activity with Km of 0.892 +/- 0.051 microM and Vmax of 117 +/- 6 pmol x min x 10(6) cells. The results for end product and CBX inhibition were also inconsistent with a single kinetic activity in Leydig cells. Type I 11beta-HSD mRNA and protein were both present in Leydig cells, whereas type II mRNA was undetectable. We conclude that the low Km NADP-dependent oxidative activity of 11beta-HSD in Leydig cells does not confirm to the established characteristics of type I and may reside in a new form of this protein. We also demonstrated the presence of the mRNA for MR in Leydig cells, and the low Km component could allow for specificity in MR-mediated responses.

摘要

睾丸间质细胞易受糖皮质激素直接介导的睾酮生物合成抑制作用影响,但可通过11β-羟基类固醇脱氢酶(11β-HSD)抵消这种抑制,该酶可氧化使糖皮质激素失活。已鉴定出的11β-HSD两种同工型中,I型是一种NADP(H)依赖性氧化还原酶,对终产物和甘珀酸(CBX)的抑制相对不敏感。I型在肝实质细胞和其他组织中主要表现为还原活性。相比之下,推测在盐皮质激素受体(MR)介导的反应中起特异性作用的II型,作为一种NAD依赖性氧化酶,可被终产物和CBX有效抑制。睾丸间质细胞中11β-HSD同工型的身份尚不确定,因为该细胞中的蛋白可被抗I型11β-HSD抗体识别,但其活性主要为氧化活性,更类似于II型。本研究的目的是确定睾丸间质细胞中11β-HSD的动力学特性是否与I型、II型一致,或两者都不一致。从雄性Sprague-Dawley大鼠(250 g)中纯化睾丸间质细胞,并通过测量氧化和还原速率、辅因子偏好以及终产物和CBX的抑制作用来评估睾丸间质细胞中的11β-HSD。检测睾丸间质细胞中I型和II型11β-HSD以及MR信使核糖核酸(mRNA),以及I型11β-HSD蛋白。睾丸间质细胞11β-HSD具有双向催化活性,且依赖于NADP(H)。这与大鼠睾丸间质细胞中存在I型11β-HSD的假设一致。然而,与肝实质细胞中的I型11β-HSD不同,睾丸间质细胞11β-HSD主要表现为氧化活性。此外,动力学分析显示有两个组分,第一个是低米氏常数(Km)的NADP依赖性氧化活性,Km为41.5±9.3 nM,最大速度(Vmax)为7.1±1.2 pmol·min·10⁶个细胞。第二个组分由高Km活性组成,与I型:NADP依赖性氧化活性一致,Km为5.87±0.46 μM,Vmax为419±17 pmol·min·10⁶个细胞,以及NADPH依赖性还原活性,Km为0.892±0.051 μM,Vmax为117±6 pmol·min·10⁶个细胞。终产物和CBX抑制的结果也与睾丸间质细胞中的单一动力学活性不一致。I型11β-HSD mRNA和蛋白在睾丸间质细胞中均存在,而II型mRNA未检测到。我们得出结论,睾丸间质细胞中11β-HSD的低Km NADP依赖性氧化活性不符合已确定的I型特征,可能存在于该蛋白的一种新形式中。我们还证明了睾丸间质细胞中存在MR的mRNA,低Km组分可能使MR介导的反应具有特异性。

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