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Glucocorticoids exert potent anti-inflammatory effects by repressing proinflammatory genes. We previously demonstrated that estrogens repress numerous proinflammatory genes in U2OS cells. The objective of this study was to determine if cross talk occurs between the glucocorticoid receptor (GR) and estrogen receptor (ER)α. The effects of dexamethasone (Dex) and estradiol on 23 proinflammatory genes were examined in human U2OS cells stably transfected with ERα or GR. Three classes of genes were regulated by ERα and/or GR. Thirteen genes were repressed by both estradiol and Dex (ER/GR-repressed genes). Five genes were repressed by ER (ER-only repressed genes), and another five genes were repressed by GR (GR-only repressed genes). To examine if cross talk occurs between ER and GR at ER/GR-repressed genes, U2OS-GR cells were infected with an adenovirus that expresses ERα. The ER antagonist, ICI 182780 (ICI), blocked Dex repression of ER/GR-repressed genes. ICI did not have any effect on the GR-only repressed genes or genes activated by Dex. These results demonstrate that ICI acts on subset of proinflammatory genes in the presence of ERα but not on GR-activated genes. ICI recruited ERα to the IL-8 promoter but did not prevent Dex recruitment of GR. ICI antagonized Dex repression of the TNF response element by blocking the recruitment of nuclear coactivator 2. These findings indicate that the ICI-ERα complex blocks Dex-mediated repression by interfering with nuclear coactivator 2 recruitment to GR. Our results suggest that it might be possible to exploit ER and GR cross talk for glucocorticoid therapies using drugs that interact with ERs.  相似文献   

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为克隆人类抵抗素样分子β(resistin-like molecule beta, RELMβ)基因的上游启动子序列,并观察其不同截短片段的启动子活性,以人类基因组DNA为模板,通过PCR扩增方法获得-871~+50 bp、-729~+50 bp、-471~+50 bp、-438~+50 bp、-371~+50 bp大小的RELMβ启动子片段,将其定向克隆入pGL3-Basic载体,构建荧光素酶报告基因载体,并制备转录因子CDX-2结合位点的突变或缺失体.在阳离子脂质体的介导下,报告基因载体分别瞬时转染人胚肾293细胞、结肠癌HCT116和SW480细胞、宫颈癌HeLa细胞.结果发现,各RELMβ启动子片段在293、HCT116、SW480细胞中均有活性,但在HeLa细胞中活性缺失;-471~-438 bp区存在RELMβ启动子的核心调控元件.针对该区域CDX-2转录因子结合位点进行突变,能导致RELMβ启动子活性显著降低;凝胶电泳迁移率实验表明,该区段能结合CDX-2.结果提示,成功克隆了具有活性的RELMβ启动子序列,CDX-2为其重要的转录因子,为研究RELMβ基因的转录调控机制奠定了实验基础.  相似文献   

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