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雌激素受体α中功能性丝氨酸118磷酸化位点是17β-雌二醇和4-羟基他莫昔芬下调基因表达所必需的。

A functional serine 118 phosphorylation site in estrogen receptor-alpha is required for down-regulation of gene expression by 17beta-estradiol and 4-hydroxytamoxifen.

作者信息

Cheng Jingwei, Zhang Chen, Shapiro David J

机构信息

Department of Biochemistry, University of Illinois, 600 South Mathews, Urbana, IL 61801, USA.

出版信息

Endocrinology. 2007 Oct;148(10):4634-41. doi: 10.1210/en.2007-0148. Epub 2007 Jul 5.

Abstract

To evaluate the contribution of ERK1/2 phosphorylation of estrogen receptor (ER)-alpha to activation and repression of endogenous genes, we produced stably transfected lines of HeLa cells with functional ERK1/2 pathways that express similar levels of wild-type human ERalpha and ERalpha mutated to inactivate the well-known MAPK site at serine 118 (ERalphaS118A). We compared effects of the S118A mutation on 17beta-estradiol (E(2))-mediated transactivation, which is heavily dependent on activation function (AF) 2 of ERalpha and on 4-hydroxytamoxifen (OHT)-mediated transactivation, which is heavily dependent on AF1, which includes S118. To examine whether S118 was the key ERK/MAPK phosphorylation site in ERalpha action, we compared the effects of the S118A mutant and the ERK inhibitor U0126 on expression of endogenous genes. In several estrogen response element-containing genes, the S118A mutation strongly reduced induction by E(2), and U0126 did not further reduce expression. Expression of another group of estrogen response element-containing genes was largely unaffected by the S118A mutation. The S118A mutation had variable effects on genes induced by ER tethering or binding near specificity protein-1 and activator protein-1 sites. For five mRNAs whose expression is strongly down-regulated by E(2) and partially or completely down-regulated by OHT, the S118A mutation reduced or abolished down-regulation by E(2) and nearly abolished down-regulation by OHT. In contrast, for Sma and mothers against decapentaplegic-3-related, which is down-regulated by E(2) and not OHT, the S118A mutation had little effect. These data suggest that there may be distinct groups of genes down-regulated by ERalpha and suggest a novel role for ERK phosphorylation at serine 118 in AF1 in regulating expression of the set of genes down-regulated by OHT.

摘要

为了评估雌激素受体(ER)α的ERK1/2磷酸化对内源基因激活和抑制的作用,我们构建了稳定转染的HeLa细胞系,其具有功能性ERK1/2信号通路,能表达相似水平的野生型人ERα和在丝氨酸118处使著名的MAPK位点失活的突变型ERα(ERαS118A)。我们比较了S118A突变对17β-雌二醇(E₂)介导的反式激活的影响,该过程严重依赖于ERα的激活功能(AF)2,以及对4-羟基他莫昔芬(OHT)介导的反式激活的影响,该过程严重依赖于包括S118的AF1。为了研究S118是否是ERα作用中关键的ERK/MAPK磷酸化位点,我们比较了S118A突变体和ERK抑制剂U0126对内源基因表达的影响。在几个含有雌激素反应元件的基因中,S118A突变强烈降低了E₂诱导的表达,而U0126并未进一步降低其表达。另一组含有雌激素反应元件的基因的表达在很大程度上不受S118A突变的影响。S118A突变对由ER在特异性蛋白-1和激活蛋白-1位点附近拴系或结合所诱导的基因有不同的影响。对于五个其表达被E₂强烈下调且被OHT部分或完全下调的mRNA,S118A突变降低或消除了E₂介导的下调,并几乎消除了OHT介导的下调。相反,对于被E₂而非OHT下调的Sma和抗五聚体瘫痪蛋白-3相关蛋白,S118A突变几乎没有影响。这些数据表明,可能存在由ERα下调的不同基因群,并提示AF1中丝氨酸118处的ERK磷酸化在调节被OHT下调的基因集的表达中具有新作用。

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