Singh Prem Prakash, Voleti Bhavya, Agrawal Alok
Department of Pharmacology, James H. Quillen College of Medicine, East Tennessee State University, Johnson City, TN 37614, USA.
J Immunol. 2007 Jun 1;178(11):7302-9. doi: 10.4049/jimmunol.178.11.7302.
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.
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。