Li-Weber M, Salgame P, Hu C, Davydov I V, Laur O, Klevenz S, Krammer P H
Tumor Immunology Program, German Cancer Research Center, Heidelberg.
J Immunol. 1998 Aug 1;161(3):1380-9.
IL-4 is a pleiotropic immunoregulatory cytokine secreted by activated Th2, but not Th1, cells. The proximal IL-4 promoter contains MARE, C/EBP, P0, octamer-like, P1, and activating protein-1 elements. The half c-Maf binding site (MARE), P0, and P1 sites were previously shown to be involved in Th2-specific transcriptional activity. Except the MARE and P1 site, the molecular basis for Th2 specificity of the P0 site has not been analyzed. Here, we provide the first detailed analysis of the P0 binding factors and show that in Th2, but not in Th1, cells, NF-AT and proteins of the activating protein-1 family are involved in cooperative binding to the P0 and the adjacent octamer-like site. In the mouse Th2 D10 cells, Oct-1/Oct-2 are also found to participate in formation of the P0-binding complexes. Mutation, deletion, and methylation interference analysis demonstrate that both the P0 and the octamer-like sequence are required for inducible binding. Furthermore, we provide the first report of the functional relevance of each site in the human IL-4 promoter by mutagenesis/transfection analysis and demonstrate that the octamer-like, P0 and P1 sites are important for the biologic function of the IL-4 promoter. The MARE site, although it was shown to be critical for the function of the murine IL-4 promoter, does not appear essential for human IL-4 promoter activity in Jurkat T cells. These findings suggest that besides c-Maf, another Th2-specific factor(s) may be involved in tissue-specific expression of the IL-4 gene.
白细胞介素-4(IL-4)是一种由活化的Th2细胞而非Th1细胞分泌的多效性免疫调节细胞因子。IL-4近端启动子包含MARE、C/EBP、P0、八聚体样、P1和活化蛋白-1元件。先前已证明半c-Maf结合位点(MARE)、P0和P1位点参与Th2特异性转录活性。除MARE和P1位点外,P0位点Th2特异性的分子基础尚未分析。在此,我们首次对P0结合因子进行了详细分析,并表明在Th2细胞而非Th1细胞中,活化T细胞核因子(NF-AT)和活化蛋白-1家族的蛋白质参与了与P0及相邻八聚体样位点的协同结合。在小鼠Th2 D10细胞中,还发现Oct-1/Oct-2参与P0结合复合物的形成。突变、缺失和甲基化干扰分析表明,诱导性结合需要P0和八聚体样序列。此外,我们通过诱变/转染分析首次报道了人IL-4启动子中每个位点的功能相关性,并证明八聚体样、P0和P1位点对IL-4启动子的生物学功能很重要。MARE位点虽然对小鼠IL-4启动子的功能至关重要,但在Jurkat T细胞中对人IL-4启动子活性似乎并非必不可少。这些发现表明,除了c-Maf之外,可能还有另一种Th2特异性因子参与IL-4基因的组织特异性表达。