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PPARα对IkappaBα基因转录的非DNA结合依赖性诱导

DNA binding-independent induction of IkappaBalpha gene transcription by PPARalpha.

作者信息

Delerive Philippe, De Bosscher Karolien, Vanden Berghe Wim, Fruchart Jean-Charles, Haegeman Guy, Staels Bart

机构信息

Institut National de la Santé et de la Recherche Médicale U.545, Département d'Athérosclérose, Institut Pasteur de Lille, 59019 Lille, France.

出版信息

Mol Endocrinol. 2002 May;16(5):1029-39. doi: 10.1210/mend.16.5.0826.

Abstract

PPARs are ligand-activated transcription factors that regulate energy homeostasis. In addition, PPARs furthermore control the inflammatory response by antagonizing the nuclear factor-kappaB (NF-kappaB) signaling pathway. We recently demonstrated that PPARalpha activators increase IkappaBalpha mRNA and protein levels in human aortic smooth muscle cells. Here, we studied the molecular mechanisms by which PPARalpha controls IkappaBalpha expression. Using transient transfection assays, it is demonstrated that PPARalpha potentiates p65-stimulated IkappaBalpha transcription in a ligand-dependent manner. Site-directed mutagenesis experiments revealed that PPARalpha activation of IkappaBalpha transcription requires the NF-kappaB and Sp1 sites within IkappaBalpha promoter. Chromatin immunoprecipitation assays demonstrate that PPARalpha activation enhances the occupancy of the NF-kappaB response element in IkappaBalpha promoter in vivo. Overexpression of the oncoprotein E1A failed to inhibit PPARalpha-mediated IkappaBalpha promoter induction, suggesting that cAMP response element binding protein-binding protein/p300 is not involved in this mechanism. By contrast, a dominant-negative form of VDR-interacting protein 205 (DRIP205) comprising its two LXXLL motifs completely abolished PPARalpha ligand-mediated activation. Furthermore, cotransfection of increasing amounts of DRIP205 relieved this inhibition, suggesting that PPARalpha requires DRIP205 to regulate IkappaBalpha promoter activity. By contrast, DRIP205 is not involved in PPARalpha-mediated NF-kappaB transcriptional repression. Taken together, these data provide a molecular basis for PPARalpha-mediated induction of IkappaBalpha and demonstrate, for the first time, that PPARalpha may positively regulate gene transcription in the absence of functional PPAR response elements.

摘要

过氧化物酶体增殖物激活受体(PPARs)是配体激活的转录因子,可调节能量稳态。此外,PPARs还通过拮抗核因子-κB(NF-κB)信号通路来控制炎症反应。我们最近证明,PPARα激活剂可增加人主动脉平滑肌细胞中IκBα的mRNA和蛋白水平。在此,我们研究了PPARα控制IκBα表达的分子机制。通过瞬时转染实验表明,PPARα以配体依赖的方式增强p65刺激的IκBα转录。定点诱变实验表明,PPARα对IκBα转录的激活需要IκBα启动子内的NF-κB和Sp1位点。染色质免疫沉淀实验表明,PPARα激活在体内增强了IκBα启动子中NF-κB反应元件的占据。癌蛋白E1A的过表达未能抑制PPARα介导的IκBα启动子诱导,这表明环磷酸腺苷反应元件结合蛋白结合蛋白/p300不参与此机制。相比之下,包含其两个LXXLL基序的VDR相互作用蛋白205(DRIP205)的显性负性形式完全消除了PPARα配体介导的激活。此外,共转染越来越多的DRIP205可缓解这种抑制作用,这表明PPARα需要DRIP205来调节IκBα启动子活性。相比之下,DRIP205不参与PPARα介导的NF-κB转录抑制。综上所述,这些数据为PPARα介导的IκBα诱导提供了分子基础,并首次证明PPARα在缺乏功能性PPAR反应元件的情况下可能正向调节基因转录。

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