Herman B Wells Center for Pediatric Research, Department of Pediatrics, School of Medicine, Indiana University, Indianapolis, IN 46202.
Department of Microbiology and Immunology, School of Medicine, Indiana University, Indianapolis, IN 46202.
J Immunol. 2019 Oct 1;203(7):1989-1998. doi: 10.4049/jimmunol.1900128. Epub 2019 Aug 26.
The basic leucine zipper (bZIP) transcription factor BATF is expressed in multiple Th subsets and cooperates with other factors to regulate gene transcription. BATF activates lineage-specific cytokines in Th subsets, activating IL-9 in Th9 cells and IL-17 in Th17 cells, but not IL-9 or IL-17 in the reciprocal subset. The mechanism for this restricted activity is unclear. In this report, we define BATF binding partners that contribute to Th subset-specific functions. Although BATF and IRF4 are expressed in greater amounts in Th9 than Th17, increased expression of both factors is not sufficient to induce IL-9 in Th17 cells. BATF also requires heterodimer formation with Jun family members to bind DNA and induce gene expression. Using primary mouse T cell culture, we observed that JunB and c-Jun, but not JunD, promote IL-9 production in Th9 cells. Ectopic expression of BATF with either JunB or c-Jun generates modest, but significant, increases in IL-9 production in Th17 cells, suggesting that the low expression of Jun family members is one factor limiting the ability of BATF to induce IL-9 in Th17 cells. We further identified that Bach2 positively regulates IL-9 production by directly binding to the gene and by increasing transcription factor expression in Th9 cells. Strikingly, cotransduction of Bach2 and BATF significantly induces IL-9 production in both Th9 and Th17 cells. Taken together, our results reveal that JunB, c-Jun, and Bach2 cooperate with BATF to contribute to the specificity of BATF-dependent cytokine induction in Th subsets.
碱性亮氨酸拉链 (bZIP) 转录因子 BATF 在多种 Th 亚群中表达,并与其他因子合作调节基因转录。BATF 在 Th 亚群中激活谱系特异性细胞因子,在 Th9 细胞中激活 IL-9,在 Th17 细胞中激活 IL-17,但在相应的亚群中不激活 IL-9 或 IL-17。这种限制活性的机制尚不清楚。在本报告中,我们定义了有助于 Th 亚群特异性功能的 BATF 结合伙伴。尽管 BATF 和 IRF4 在 Th9 中的表达量高于 Th17,但这两种因子的表达增加不足以诱导 Th17 细胞中的 IL-9。BATF 还需要与 Jun 家族成员形成异二聚体以结合 DNA 并诱导基因表达。使用原代小鼠 T 细胞培养,我们观察到 JunB 和 c-Jun,但不是 JunD,促进 Th9 细胞中 IL-9 的产生。在 Th17 细胞中,BATF 与 JunB 或 c-Jun 的异位表达会导致 IL-9 产生适度但显著增加,这表明 Jun 家族成员的低表达是限制 BATF 在 Th17 细胞中诱导 IL-9 的能力的一个因素。我们进一步确定 Bach2 通过直接结合基因和增加 Th9 细胞中的转录因子表达来正向调节 IL-9 的产生。引人注目的是,Bach2 和 BATF 的共转导显著诱导了 Th9 和 Th17 细胞中 IL-9 的产生。总之,我们的结果表明 JunB、c-Jun 和 Bach2 与 BATF 合作,有助于 Th 亚群中 BATF 依赖性细胞因子诱导的特异性。