Institute for Immunology, School of Medicine, University of California, Irvine, Irvine, CA 92697, USA.
J Immunol. 2013 Aug 15;191(4):1895-906. doi: 10.4049/jimmunol.1300922. Epub 2013 Jul 12.
Class switch DNA recombination (CSR) crucially diversifies Ab biologic effector functions. 14-3-3γ specifically binds to the 5'-AGCT-3' repeats in the IgH locus switch (S) regions. By interacting directly with the C-terminal region of activation-induced cytidine deaminase (AID), 14-3-3γ targets this enzyme to S regions to mediate CSR. In this study, we showed that 14-3-3γ was expressed in germinal center B cells in vivo and induced in B cells by T-dependent and T-independent primary CSR-inducing stimuli in vitro in humans and mice. Induction of 14-3-3γ was rapid, peaking within 3 h of stimulation by LPSs, and sustained over the course of AID and CSR induction. It was dependent on recruitment of NF-κB to the 14-3-3γ gene promoter. The NF-κB recruitment enhanced the occupancy of the CpG island within the 14-3-3γ promoter by CFP1, a component of the COMPASS histone methyltransferase complex, and promoter-specific enrichment of histone 3 lysine 4 trimethylation (H3K4me3), which is indicative of open chromatin state and marks transcription-competent promoters. NF-κB also potentiated the binding of B cell lineage-specific factor E2A to an E-box motif located immediately downstream of the two closely-spaced transcription start sites for sustained 14-3-3γ expression and CSR induction. Thus, 14-3-3γ induction in CSR is enabled by the CFP1-mediated H3K4me3 enrichment in the promoter, dependent on NF-κB and sustained by E2A.
类别转换 DNA 重组 (CSR) 对抗体生物学效应功能的多样化至关重要。14-3-3γ 特异性结合 IgH 基因座开关 (S) 区域中的 5'-AGCT-3' 重复序列。通过直接与激活诱导的胞嘧啶脱氨酶 (AID) 的 C 端区域相互作用,14-3-3γ 将该酶靶向 S 区域以介导 CSR。在这项研究中,我们表明 14-3-3γ 在体内生发中心 B 细胞中表达,并在人类和小鼠中由 T 依赖性和 T 非依赖性原发性 CSR 诱导刺激在体外诱导 B 细胞表达。14-3-3γ 的诱导迅速,在 LPS 刺激后 3 小时内达到峰值,并在 AID 和 CSR 诱导过程中持续存在。它依赖于 NF-κB 募集到 14-3-3γ 基因启动子。NF-κB 募集增强了 COMPASS 组蛋白甲基转移酶复合物的组成部分 CFP1 对 14-3-3γ 启动子内 CpG 岛的占据,以及启动子特异性富集组蛋白 3 赖氨酸 4 三甲基化 (H3K4me3),这表明开放染色质状态并标记转录活性启动子。NF-κB 还增强了 B 细胞谱系特异性因子 E2A 与位于两个紧密间隔的转录起始位点下游的 E 盒基序的结合,从而维持 14-3-3γ 的表达和 CSR 诱导。因此,CSR 中 14-3-3γ 的诱导是由 CFP1 介导的启动子中 H3K4me3 富集所允许的,依赖于 NF-κB 并由 E2A 维持。