Weiner K X, Pentecost B T, Dias J A
Department of Biochemistry, Albany Medical College, New York 12208.
Mol Endocrinol. 1990 Aug;4(8):1249-56. doi: 10.1210/mend-4-8-1249.
We have previously reported that testosterone decreased ornithine decarboxylase (ODC) activity in primary cultures of rat Sertoli cells. In this report we examined the mechanism of this reduction. In cells pretreated with testosterone (5 x 10(-7) M) for 48 h before the start of the experiment ODC activity was decreased, on the average, 43% at all time points examined. ODC mRNA levels were also decreased an overall 33%. The testosterone-mediated decrease in ODC activity was first seen 8 h after the addition of testosterone to the cells. Testosterone had no significant affect on the levels of actin or transferrin mRNA. The effect of testosterone was androgen specific. Neither ODC activity nor mRNA was affected by the nonandrogenic steroids progesterone or cortisol. These results suggest that testosterone decreases ODC mRNA in Sertoli cells either through an inhibition of transcription or through a decrease in message stability. Testosterone does not appear to affect ODC mRNA translation, since the percent decreases in ODC activity and mRNA in response to testosterone were essentially equivalent. Regulation of Sertoli cell ODC expression by testosterone may reflect one mechanism by which Sertoli cell function is integrated with surrounding cell types. The Sertoli cell, unlike any other cell, secretes putrescine, the product of ODC catalysis of ornithine. We suggest that the modulation of ODC by testosterone and, hence, the amount of putrescine secreted by the Sertoli cell may be significant in the process of spermatogenesis.
我们之前曾报道,睾酮可降低大鼠支持细胞原代培养物中的鸟氨酸脱羧酶(ODC)活性。在本报告中,我们研究了这种降低的机制。在实验开始前用睾酮(5×10⁻⁷ M)预处理细胞48小时,在所有检测的时间点,ODC活性平均降低了43%。ODC mRNA水平也整体下降了33%。在向细胞中添加睾酮后8小时首次观察到睾酮介导的ODC活性降低。睾酮对肌动蛋白或转铁蛋白mRNA水平没有显著影响。睾酮的作用具有雄激素特异性。非雄激素类固醇孕酮或皮质醇对ODC活性和mRNA均无影响。这些结果表明,睾酮通过抑制转录或降低信息稳定性来降低支持细胞中的ODC mRNA。睾酮似乎不影响ODC mRNA的翻译,因为ODC活性和mRNA对睾酮反应的降低百分比基本相当。睾酮对支持细胞ODC表达的调节可能反映了一种将支持细胞功能与周围细胞类型整合的机制。与其他任何细胞不同,支持细胞分泌腐胺,腐胺是ODC催化鸟氨酸的产物。我们认为,睾酮对ODC的调节以及因此支持细胞分泌的腐胺量在精子发生过程中可能具有重要意义。