Wang Linghong, Mitsui Tetsuo, Ishida Maho, Izawa Michi, Arita Jun
Department of Physiology, Graduate School of Medicine, University of Yamanashi, Chuo 409-3898, Japan.
Endocr J. 2017 Nov 29;64(11):1063-1071. doi: 10.1507/endocrj.EJ17-0148. Epub 2017 Aug 23.
Dexamethasone-induced Ras-related protein 1 (Rasd1) is a member of the Ras superfamily of monomeric G proteins that have a regulatory function in signal transduction. Here we investigated the role of Rasd1 in regulating estrogen-induced gene expression in primary cultures of rat anterior pituitary cells. Rasd1 mRNA expression in anterior pituitary cells decreased after treatment with forskolin or serum and increased after treatment with 17β-estradiol (E2). Increases in Rasd1 mRNA expression occurred as early as 0.5 h after E2 treatment, peaked at 1 h and were sustained for as long as 96 h. This rapid and profound increase in Rasd1 mRNA expression induced by E2 was also seen in GH4C1 cells, an estrogen receptor-positive somatolactotroph cell line. Among pituitary estrogen-responsive late genes studied, basal mRNA expression of Pim3 and Igf1 genes was decreased by RNA interference-mediated knockdown of Rasd1 expression, whereas basal expression of the Giot1 gene was increased. Moreover, Rasd1 knockdown enhanced stimulation of Pim3 mRNA expression and attenuated inhibition of Fosl1 mRNA expression 24 h after E2 treatment. These changes in mRNA expression were accompanied by enhanced activity of promoters containing CRE, AP-1 and SRE binding sequences. These results suggest that Rasd1 is an estrogen-responsive immediate early gene and modulates E2 induction of at least several late genes in anterior pituitary cells.
地塞米松诱导的Ras相关蛋白1(Rasd1)是单体G蛋白Ras超家族的成员,在信号转导中具有调节功能。在此,我们研究了Rasd1在大鼠垂体前叶细胞原代培养物中调节雌激素诱导的基因表达的作用。用福斯高林或血清处理后,垂体前叶细胞中Rasd1 mRNA表达降低,而用17β-雌二醇(E2)处理后则升高。E2处理后0.5小时,Rasd1 mRNA表达开始增加,1小时达到峰值,并持续长达96小时。在雌激素受体阳性的生长激素催乳素细胞系GH4C1细胞中也观察到E2诱导的Rasd1 mRNA表达的这种快速而显著的增加。在所研究的垂体雌激素反应性晚期基因中,RNA干扰介导的Rasd1表达敲低降低了Pim3和Igf1基因的基础mRNA表达,而Giot1基因的基础表达则增加。此外,Rasd1敲低增强了E2处理24小时后对Pim3 mRNA表达的刺激,并减弱了对Fosl1 mRNA表达的抑制。这些mRNA表达的变化伴随着含有CRE、AP-1和SRE结合序列的启动子活性的增强。这些结果表明,Rasd1是一种雌激素反应性即时早期基因,并调节E2对垂体前叶细胞中至少几种晚期基因的诱导。