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睾丸间质细胞上的抗苗勒管激素受体负责其对类固醇生成和细胞分化的作用。

Receptors for anti-müllerian hormone on Leydig cells are responsible for its effects on steroidogenesis and cell differentiation.

作者信息

Racine C, Rey R, Forest M G, Louis F, Ferré A, Huhtaniemi I, Josso N, di Clemente N

机构信息

Institut National de la Santé et de la Recherche Médicale, Ecole Normale Supérieure, Département de Biologie, Montrouge, France.

出版信息

Proc Natl Acad Sci U S A. 1998 Jan 20;95(2):594-9. doi: 10.1073/pnas.95.2.594.

Abstract

Strong overexpression of anti-Müllerian hormone (AMH) in transgenic mice leads to incomplete fetal virilization and decreased serum testosterone in the adult. Conversely, AMH-deficient mice exhibit Leydig cell hyperplasia. To probe the mechanism of action of AMH on Leydig cell steroidogenesis, we have studied the expression of mRNA for steroidogenic proteins in vivo and in vitro and performed a morphometric analysis of testicular tissue in mice overexpressing the hormone. We show that overexpression of AMH in male transgenic mice blocks the differentiation of Leydig cell precursors. Expression of steroidogenic protein mRNAs, mainly cytochrome P450 17 alpha-hydroxylase/C17-20 lyase (P450c17), is decreased in transgenic mice overexpressing AMH and in AMH-treated purified Leydig cells. In contrast, transgenic mice in whom the AMH locus has been disrupted show increase expression of P450c17. In vitro, but not in vivo, AMH also decreases the expression of the luteinizing hormone receptor. The effect of AMH is explained by the presence of its receptor on Leydig cells. Our results provide insight into the action of AMH as a negative modulator of Leydig cell differentiation and function.

摘要

抗苗勒管激素(AMH)在转基因小鼠中的强烈过表达会导致胎儿男性化不完全,并使成年小鼠血清睾酮水平降低。相反,AMH缺陷型小鼠表现出睾丸间质细胞增生。为了探究AMH对睾丸间质细胞类固醇生成的作用机制,我们研究了体内和体外类固醇生成蛋白的mRNA表达,并对过表达该激素的小鼠睾丸组织进行了形态计量分析。我们发现,雄性转基因小鼠中AMH的过表达会阻断睾丸间质细胞前体的分化。在过表达AMH的转基因小鼠和经AMH处理的纯化睾丸间质细胞中,类固醇生成蛋白mRNA的表达,主要是细胞色素P450 17α-羟化酶/C17-20裂解酶(P450c17)的表达降低。相反,AMH基因座被破坏的转基因小鼠显示P450c17的表达增加。在体外而非体内,AMH也会降低促黄体生成素受体的表达。AMH的作用可通过其在睾丸间质细胞上存在受体来解释。我们的研究结果为AMH作为睾丸间质细胞分化和功能的负调节因子的作用提供了深入了解。

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本文引用的文献

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