Blok L J, Hoogerbrugge J W, Themmen A P, Baarends W M, Post M, Grootegoed J A
Department of Endocrinology and Reproduction, Medical Faculty, Erasmus University, Rotterdam, The Netherlands.
Endocrinology. 1992 Sep;131(3):1343-9. doi: 10.1210/endo.131.3.1324158.
Cooperative actions of FSH and androgens on initiation, maintenance, and restoration of spermatogenesis have been described. In the present experiments the regulatory effects of FSH on androgen receptor (AR) gene expression in Sertoli cells were studied. In immature rats injection of FSH (1 microgram/g BW, ip) resulted in a rapid down-regulation of testicular AR mRNA expression (4 h), followed by recovery to the control level (10 h). Using cultured immature Sertoli cells, a similar transient effect on AR mRNA expression was observed after the addition of FSH (500 ng/ml) or (Bu)2cAMP (0.5 mM). Cycloheximide treatment of the cells did not prevent the rapid FSH-induced down-regulation of AR mRNA expression, indicating that de novo protein synthesis is not required for this effect. Furthermore, using a transcriptional run-on assay, no marked decrease in the rate of AR gene transcription was found upon treatment of the cultured Sertoli cells with FSH for 2 or 4 h. This demonstrates that the short term effect of FSH or AR mRNA expression reflects a change in mRNA stability. The AR protein level was not markedly affected by the transient decrease in AR mRNA expression. When immature Sertoli cells were incubated with FSH for longer time periods (24-72 h), both AR mRNA and protein expression were increased. In Sertoli cells isolated from 15-day-old rats, this increase was higher (mRNA, 2- to 3-fold; protein, 2-fold) than in Sertoli cells isolated from 25-day-old animals. The results indicate that FSH plays a complex role in the regulation of AR expression in immature rat Sertoli cells.
促卵泡激素(FSH)和雄激素在精子发生的起始、维持和恢复过程中的协同作用已被描述。在本实验中,研究了FSH对支持细胞中雄激素受体(AR)基因表达的调节作用。在未成熟大鼠中,注射FSH(1微克/克体重,腹腔注射)导致睾丸AR mRNA表达迅速下调(4小时),随后恢复到对照水平(10小时)。使用培养的未成熟支持细胞,添加FSH(500纳克/毫升)或(Bu)2cAMP(0.5毫摩尔)后,观察到对AR mRNA表达有类似的短暂影响。用放线菌酮处理细胞并不能阻止FSH诱导的AR mRNA表达迅速下调,这表明这种作用不需要从头合成蛋白质。此外,使用转录延伸分析,在用FSH处理培养的支持细胞2或4小时后,未发现AR基因转录速率有明显下降。这表明FSH对AR mRNA表达的短期影响反映了mRNA稳定性的变化。AR mRNA表达的短暂下降对AR蛋白水平没有明显影响。当未成熟支持细胞与FSH孵育较长时间(24 - 72小时)时,AR mRNA和蛋白表达均增加。在从15日龄大鼠分离的支持细胞中,这种增加(mRNA,2至3倍;蛋白,2倍)比从25日龄动物分离的支持细胞中更高。结果表明,FSH在未成熟大鼠支持细胞中AR表达的调节中起复杂作用。