Identification of a specific pattern of "immediate-early" gene activation induced by estrogen during mitogenic stimulation of rat uterine cells.

Receptor Pub Date : 1993-01-01
L Cicatiello, V Sica, F Bresciani, A Weisz
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引用次数: 0

Abstract

Estrogen hormones are potent mitogens for certain target tissues, where they stimulate cell growth by inducing recruitment of quiescent cells in cycle and by fostering cell cycle progression. To define the molecular bases of the mitogenic action of these steroid hormones, the pattern of "immediate-early" gene expression was monitored during the early phases of estrogen stimulation of rat uterine cells in vivo. Nuclear run-on transcription and/or Northern blot RNA analysis indicate that c-jun, junB, jun-D, c-fos, TIS 1 (also called NGFI-B or nur/77) and TIS 8 (zif-268, krox24, egr-1, or NGFI-A) genes are all transiently activated in the uterus (up to 20-fold) within 30-120 min after treatment of adult ovariectomized rats with a mitogenic dose of 17b-estradiol. Conversely, JE gene mRNA accumulates progressively in estrogen-stimulated uterine cells, whereas TIS 11 and 21 genes are only slightly responsive to the hormone (less than twofold induction) and fos B,fra-1,fra-2,krox20 (egr-2), TIS 7 and 10, KC, and c-rel mRNAs are undetectable in rat uterus either before or after estrogen treatment. Stimulation in the presence of cycloheximide shows that only c-jun, jun-D, c-fos, and JE gene activations are primary responses to the hormone in rat uterine cells. These findings establish the direct mitogenic role of estrogen and identify for the first time a specific genetic program activated by these steroid hormones during stimulation of target cell proliferation. Furthermore, since most of the activated genes encode for transcription factors, these results enable us to envision how the mitogenic signal transmitted by the hormone can be elaborated and amplified within target cells by the products of estrogen-responsive genes, leading to a cascade of growth-dependent gene regulation, cell cycle progression, and, ultimately, cell division.

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在有丝分裂刺激大鼠子宫细胞过程中,雌激素诱导的“立即-早期”基因激活的特定模式的鉴定。
雌性激素是某些靶组织的强力丝裂原,它们通过诱导周期内静止细胞的募集和促进细胞周期的进展来刺激细胞生长。为了明确这些类固醇激素促有丝分裂作用的分子基础,我们在体内监测了雌激素刺激大鼠子宫细胞早期的“即刻-早期”基因表达模式。核运行转录和/或Northern blot RNA分析表明,c-jun, junB, jun-D, c-fos, TIS 1(也称为NGFI-B或nur/77)和TIS 8 (zif-268, krox24, egr-1或NGFI-A)基因在成年卵巢切除大鼠用17b-雌二醇治疗后30-120分钟内在子宫内瞬间激活(高达20倍)。相反,乙脑基因mRNA在雌激素刺激的子宫细胞中逐渐积累,而TIS 11和21基因仅对激素有轻微反应(小于两倍诱导),而fos B、fra-1、fra-2、krox20 (egr-2)、TIS 7和10、KC和c-rel mRNA在雌激素治疗前后的大鼠子宫中均检测不到。在环己亚胺的刺激下,只有c-jun、jun-D、c-fos和乙脑基因激活是大鼠子宫细胞对激素的主要反应。这些发现确立了雌激素在有丝分裂中的直接作用,并首次确定了在刺激靶细胞增殖过程中由这些类固醇激素激活的特定遗传程序。此外,由于大多数被激活的基因编码转录因子,这些结果使我们能够设想激素传递的有丝分裂信号如何在靶细胞内通过雌激素应答基因的产物被细化和放大,从而导致生长依赖性基因调控的级联,细胞周期进展,并最终导致细胞分裂。
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