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在C反应蛋白启动子的C/EBP结合位点上,一种新型的依赖RBP-Jκ的开关,从C/EBPβ转换为C/EBPζ 。

A novel RBP-J kappa-dependent switch from C/EBP beta to C/EBP zeta at the C/EBP binding site on the C-reactive protein promoter.

作者信息

Singh Prem Prakash, Voleti Bhavya, Agrawal Alok

机构信息

Department of Pharmacology, James H. Quillen College of Medicine, East Tennessee State University, Johnson City, TN 37614, USA.

出版信息

J Immunol. 2007 Jun 1;178(11):7302-9. doi: 10.4049/jimmunol.178.11.7302.

Abstract

Regulation of basal and cytokine (IL-6 and IL-1beta)-induced expression of C-reactive protein (CRP) in human hepatoma Hep3B cells occurs during transcription. A critical transcriptional regulatory element on the CRP promoter is a C/EBP binding site overlapping a NF-kappaB p50 binding site. In response to IL-6, C/EBPbeta and p50 occupy the C/EBP-p50 site on the CRP promoter. The aim of this study was to identify the transcription factors occupying the C/EBP-p50 site in the absence of C/EBPbeta. Accordingly, we treated Hep3B nuclear extract with a C/EBP-binding consensus oligonucleotide to generate an extract lacking active C/EBPbeta. Such treated nuclei contain only C/EBPzeta (also known as CHOP10 and GADD153) because the C/EBP-binding consensus oligonucleotide binds to all C/EBP family proteins except C/EBPzeta. EMSA using this extract revealed formation of a C/EBPzeta-containing complex at the C/EBP-p50 site on the CRP promoter. This complex also contained RBP-Jkappa, a transcription factor known to interact with kappaB sites. RBP-Jkappa was required for the formation of C/EBPzeta-containing complex. The RBP-Jkappa-dependent C/EBPzeta-containing complexes were formed at the C/EBP-p50 site on the CRP promoter in the nuclei of primary human hepatocytes also. In luciferase transactivation assays, overexpressed C/EBPzeta abolished both C/EBPbeta-induced and (IL-6 + IL-1beta)-induced CRP promoter-driven luciferase expression. These results indicate that under basal conditions, C/EBPzeta occupies the C/EBP site, an action that requires RBP-Jkappa. Under induced conditions, C/EBPzeta is replaced by C/EBPbeta and p50. We conclude that the switch between C/EBPbeta and C/EBPzeta participates in regulating CRP transcription. This process uses a novel phenomenon, that is, the incorporation of RBP-Jkappa into C/EBPzeta complexes solely to support the binding of C/EBPzeta to the C/EBP site.

摘要

人肝癌Hep3B细胞中基础状态及细胞因子(IL-6和IL-1β)诱导的C反应蛋白(CRP)表达调控发生在转录过程中。CRP启动子上一个关键的转录调控元件是一个与NF-κB p50结合位点重叠的C/EBP结合位点。响应IL-6时,C/EBPβ和p50占据CRP启动子上的C/EBP-p50位点。本研究的目的是鉴定在不存在C/EBPβ的情况下占据C/EBP-p50位点的转录因子。因此,我们用C/EBP结合共有寡核苷酸处理Hep3B核提取物,以产生缺乏活性C/EBPβ的提取物。这种处理过的细胞核仅含有C/EBPζ(也称为CHOP10和GADD153),因为C/EBP结合共有寡核苷酸与除C/EBPζ之外的所有C/EBP家族蛋白结合。使用该提取物进行的电泳迁移率变动分析(EMSA)显示在CRP启动子的C/EBP-p50位点形成了一个含C/EBPζ的复合物。该复合物还含有RBP-Jκ,一种已知与κB位点相互作用的转录因子。RBP-Jκ是含C/EBPζ复合物形成所必需的。在原代人肝细胞的细胞核中,依赖RBP-Jκ的含C/EBPζ复合物也在CRP启动子的C/EBP-p50位点形成。在荧光素酶反式激活分析中,过表达的C/EBPζ消除了C/EBPβ诱导的以及(IL-6 + IL-1β)诱导的CRP启动子驱动的荧光素酶表达。这些结果表明,在基础条件下,C/EBPζ占据C/EBP位点,这一作用需要RBP-Jκ。在诱导条件下,C/EBPζ被C/EBPβ和p50取代。我们得出结论,C/EBPβ和C/EBPζ之间的转换参与调节CRP转录。这一过程利用了一种新现象,即仅为支持C/EBPζ与C/EBP位点的结合而将RBP-Jκ纳入C/EBPζ复合物中。

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