Department of Endocrinology, Dr. ALM Post Graduate Institute of Basic Medical Sciences, University of Madras, Taramani, Chennai 600 113, Tamil Nadu, India.
Mol Cell Endocrinol. 2009 Nov 13;311(1-2):18-23. doi: 10.1016/j.mce.2009.06.014. Epub 2009 Jul 5.
Emerging evidence suggests that the glucocorticoid and estradiol are important for Leydig cell steroidogenesis and are regulated via aromatase for estradiol production and 11beta-HSD for oxidatively inactivating glucocorticoid. Although it is known that corticosterone deficiency impaired Leydig cell steroidogenesis, its effect on the expression of Leydig cell 11beta-HSD type I and aromatase are yet to be recognized. Following metyrapone-induced corticosterone deficiency, serum corticosterone and testosterone levels decrease, whereas serum estradiol remains unaltered. 11beta-HSD type I mRNA and its activity was decreased by corticosterone deficiency, whereas the activity and mRNA of aromatase remains unaltered. Simultaneous administration of corticosterone prevented its deficiency-induced changes of 11beta-HSD type I in Leydig cells. Our results show that metyrapone-induced corticosterone deficiency impairs Leydig cell 11beta-HSD enzyme activity and 11beta-HSD type I mRNA expression, and the Leydig cells need to maintain their intracellular concentration of corticosterone for a normal function.
新出现的证据表明,糖皮质激素和雌二醇对睾丸间质细胞类固醇生成很重要,并且通过芳香化酶来调节雌二醇的产生,通过 11β-HSD 来氧化失活糖皮质激素。虽然已知皮质酮缺乏会损害睾丸间质细胞类固醇生成,但它对睾丸间质细胞 11β-HSD 型 I 和芳香酶表达的影响尚未得到认识。米托坦诱导的皮质酮缺乏后,血清皮质酮和睾酮水平下降,而雌二醇水平保持不变。11β-HSD 型 I mRNA 及其活性因皮质酮缺乏而降低,而芳香酶的活性和 mRNA 保持不变。同时给予皮质酮可预防其缺乏诱导的睾丸间质细胞 11β-HSD 型 I 的变化。我们的结果表明,米托坦诱导的皮质酮缺乏会损害睾丸间质细胞 11β-HSD 酶活性和 11β-HSD 型 I mRNA 表达,而睾丸间质细胞需要维持其细胞内皮质酮浓度以维持正常功能。