Gonadotropin induces expression of c-fos and c-jun genes in rat ovaries.

H Shibata, N Suganuma, N Miyamoto, Y Murata, I Kondo, K Nakamura, Y Tomoda, N Matsui, H Seo
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引用次数: 3

Abstract

It has been shown that the expression of protooncogenes, c-fos and c-jun, induced by growth factors and hormones plays important roles in cellular proliferation, tissue differentiation and transcription of certain genes. Since gonadotropin stimulates ovarian steroidogenesis and cellular proliferation, we investigated whether gonadotropin affects the expression of c-fos and c-jun genes in rat ovaries. The expression of mRNA coding side chain cleavage enzyme (P450scc), the rate limiting enzyme in ovarian steroidogenesis was also studied. The effect of gonadotropin was examined in female rats whose gonadotrophs were medically ablated by GnRH agonist (TAP-144-SR). After intravenous administration of pregnant mare's serum gonadotropin (PMSG:30 IU/rat), their ovaries were dissected out at various time intervals and total RNA was extracted. Changes in the levels of c-fos, c-jun and P450scc mRNAs were determined by Northern blot analysis. The levels of c-fos and c-jun mRNAs increased rapidly and transiently with the peak levels at 15 min after PMSG administration. The levels of both mRNAs were decreased by 30 to 60 min. On the other hand, the levels of P450scc mRNA started to increase 60 min after PMSG. These results indicate that gonadotropin-induced increase in the expression of c-fos and c-jun genes may play important roles in mediating the action of gonadotropin on the ovaries.

促性腺激素诱导大鼠卵巢c-fos和c-jun基因的表达。
研究表明,生长因子和激素诱导原癌基因c-fos和c-jun的表达在细胞增殖、组织分化和某些基因的转录中起着重要作用。由于促性腺激素刺激卵巢类固醇生成和细胞增殖,我们研究了促性腺激素是否影响大鼠卵巢中c-fos和c-jun基因的表达。研究了卵巢甾体生成限速酶P450scc的mRNA表达。用GnRH激动剂(TAP-144-SR)消融雌性大鼠的促性腺激素,观察促性腺激素的作用。经静脉注射妊娠母马血清促性腺激素(PMSG:30 IU/大鼠)后,按不同时间间隔剖开卵巢,提取总RNA。通过Northern blot分析检测c-fos、c-jun和P450scc mrna水平的变化。c-fos和c-jun mrna水平在PMSG给药后15min迅速而短暂地升高,达到峰值。P450scc mRNA水平在PMSG后60min开始升高,而P450scc mRNA水平在PMSG后60min开始升高。这些结果提示促性腺激素诱导的c-fos和c-jun基因表达的增加可能在促性腺激素对卵巢的作用中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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