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Switch recombination and somatic hypermutation are controlled by the heavy chain 3′ enhancer region

机译:开关重组和体细胞超突变由重链3'增强子区域控制

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摘要

Both class switch recombination (CSR) and somatic hypermutation (SHM) require transcription and the trans-acting factor activation-induced cytidine deaminase (AID), and must be up-regulated during antigen-dependent differentiation of B lymphocytes. To test the role of the heavy chain 3′ enhancers in both CSR and SHM, we used a BAC transgene of the entire heavy chain constant region locus. Using Cre-loxP recombination to delete a 28-kb region that contains the four known 3′ heavy chain enhancers, we isolated lines of BAC transgenic mice with an intact heavy chain locus and paired lines in the same chromosomal insertion site lacking the 3′ enhancers. Intact heavy chain transgenes undergo CSR to all heavy chain genes and mutate their transgenic VDJ exon. In paired transgenes lacking the 3′ enhancer region, CSR to most heavy chain genes is reduced to ∼1% of the levels for intact heavy chain loci; SHM is also reduced. Finally, we find that in B cells with a transgene lacking the 3′ enhancers, interchromosomal recombination between the transgenic VDJ exon and the endogenous heavy chain C genes is more easily detected than CSR within the transgene.
机译:类开关重组(CSR)和体细胞超突变(SHM)都需要转录和反式作用因子激活诱导的胞苷脱氨酶(AID),并且在B淋巴细胞的抗原依赖性分化过程中必须上调。为了测试重链3'增强子在CSR和SHM中的作用,我们使用了整个重链恒定区基因座的BAC转基因。使用Cre-loxP重组删除一个包含四个已知3'重链增强子的28kb区域,我们分离了具有完整重链基因座的BAC转基因小鼠品系,并在同一染色体插入位点缺少3'增强子的配对品系。完整的重链转基因接受所有重链基因的CSR突变,并使它们的转基因VDJ外显子突变。在缺少3'增强子区域的成对转基因中,大多数重链基因的CSR降低至完整重链基因座水平的〜1%; SHM也减少了。最后,我们发现在转基因缺乏3'增强子的B细胞中,转基因VDJ外显子与内源重链C基因之间的染色体间重组比转基因中的CSR更容易检测到。

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