Kuzin Igor I, Bagaeva Ludmila, Young Faith M, Bottaro Andrea
Department of Medicine, J.P Wilmot Cancer Center, University of Rochester School of Medicine and Dentistry, Rochester, NY 14642, USA.
J Immunol. 2008 Jun 1;180(11):7443-50. doi: 10.4049/jimmunol.180.11.7443.
The intronic Emicro enhancer has been implicated in IgH locus transcription, VDJ recombination, class switch recombination, and somatic hypermutation. How Emicro controls these diverse mechanisms is still largely unclear, but transcriptional enhancer activity is thought to play a central role. In this study we compare the phenotype of mice lacking the Emicro element (DeltaEmicro) with that of mice in which Emu was replaced with the ubiquitous SV40 transcriptional enhancer (SV40eR mutation) and show that SV40e cannot functionally complement Emu loss in pro-B cells. Surprisingly, in fact, the SV40eR mutation yields a more profound defect than DeltaEmicro, with an almost complete block in micro0 germline transcription in pro-B cells. This active transcriptional suppression caused by enhancer replacement appears to be specific to the early stages of B cell development, as mature SV40eR B cells express micro0 transcripts at higher levels than DeltaEmicro mice and undergo complete DNA demethylation at the IgH locus. These results indicate an unexpectedly stringent, developmentally restricted requirement for enhancer specificity in regulating IgH function during the early phases of B cell differentiation, consistent with the view that coordination of multiple independent regulatory mechanisms and elements is essential for locus activation and VDJ recombination.
内含子Eμ增强子与免疫球蛋白重链(IgH)基因座转录、V(D)J重组、类别转换重组及体细胞高频突变有关。Eμ如何控制这些不同机制在很大程度上仍不清楚,但转录增强子活性被认为起着核心作用。在本研究中,我们比较了缺乏Eμ元件的小鼠(ΔEμ)与将Eμ替换为普遍存在的猴病毒40(SV40)转录增强子的小鼠(SV40eR突变)的表型,结果显示SV40e在原B细胞中不能在功能上补偿Eμ的缺失。令人惊讶的是,实际上,SV40eR突变产生的缺陷比ΔEμ更严重,原B细胞中μ0种系转录几乎完全受阻。增强子替换引起的这种活性转录抑制似乎对B细胞发育的早期阶段具有特异性,因为成熟的SV40eR B细胞比ΔEμ小鼠表达更高水平的μ0转录本,并且在IgH基因座经历完全的DNA去甲基化。这些结果表明,在B细胞分化早期调节IgH功能时,对增强子特异性存在出乎意料的严格的、发育受限的需求,这与多种独立调节机制和元件的协调对基因座激活和V(D)J重组至关重要的观点一致。