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Functional cooperation between Stat-1 and ets-1 to optimize icam-1 gene transcription.

机译:Stat-1和ets-1之间的功能合作以优化icam-1基因转录。

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摘要

Intercellular adhesion molecule-1 (ICAM-1) plays an important role in the immune system, enabling the interactions between effector cells and target cells. It is also known to be involved in tumor growth and metastasis. Its expression is transcriptionally regulated by several proinflammatory cytokines including IFN-gamma, which induces ICAM-1 transcription via the JAK-STAT signaling pathway in a Stat1-dependent fashion. The ICAM-1 promoter contains several cis-active regulatory elements including 2 Ets binding sites (EBSs) located at positions -158 and -138 relatively to the AUG, which were previously shown to play a role in the constitutive activity of the ICAM-1 promoter. In the present study, we have determined whether the EBSs are also involved in the regulation of ICAM-1 gene transcription by pro-inflammatory cytokines. Transient transfection assays were performed with reporter genes containing ICAM-1 promoter constructions cloned upstream from the firefly luciferase gene. Site-specific mutations of the EBS diminished the promoter activity stimulated by IFN-gamma, although the IFN-gamma responsive element (pIgammaRE), which binds Stat1, was intact. Stimulation of the transcriptional activity following IFN-gamma treatment was significantly reduced when both EBSs were inactivated. Co-immunoprecipitation experiments provided evidence of a physical interaction involving Ets1 and Stat1. In COS-1 and HEK 293 cells cotransfected with CFP-Stat1 and YFP-Ets fusion protein, fluorescence resonance energy transfer experiments confirmed the close proximity of these 2 proteins in living cells following treatment with IFN-gamma.
机译:细胞间粘附分子1(ICAM-1)在免疫系统中起重要作用,使效应细胞与靶细胞之间发生相互作用。还已知其与肿瘤生长和转移有关。它的表达受包括IFN-γ在内的几种促炎细胞因子的转录调控,它们以Stat1依赖的方式通过JAK-STAT信号传导途径诱导ICAM-1转录。 ICAM-1启动子包含几个顺式活性调控元件,包括相对于AUG位于-158和-138位置的2个Ets结合位点(EBS),先前已证明它们在ICAM-1的组成活性中起作用启动子。在本研究中,我们已经确定EBS是否也参与促炎性细胞因子对ICAM-1基因转录的调节。用含有从萤火虫荧光素酶基因上游克隆的ICAM-1启动子构建体的报告基因进行瞬时转染测定。尽管结合Stat1的IFN-γ响应元件(pIgammaRE)完好无损,但EBS的位点特异性突变减弱了IFN-γ刺激的启动子活性。当两个EBS均被灭活时,IFN-γ处理后转录活性的刺激显着降低。免疫共沉淀实验提供了涉及Ets1和Stat1的物理相互作用的证据。在用CFP-Stat1和YFP-Ets融合蛋白共转染的COS-1和HEK 293细胞中,荧光共振能量转移实验证实了这两种蛋白在IFN-γ处理后在活细胞中非常接近。

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