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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Uncoupling between Ig somatic hypermutation and oncogene mutation in mouse lymphoma.
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Uncoupling between Ig somatic hypermutation and oncogene mutation in mouse lymphoma.

机译:小鼠淋巴瘤中Ig体细胞超突变与癌基因突变之间的解偶联。

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Burkitt lymphoma (BL) features translocations linking c-myc to the immunoglobulin heavy chain (IgH) locus. By inserting a c-myc gene under the control of the 3'IgH locus control region (LCR) into the mouse genome, we generated c-myc-3'LCR mice that develop clonal BL or diffuse anaplastic lymphoma. We show in the present study that while BL from c-myc-3'LCR mice would be classified as pre-germinal center (GC) cells due to the absence of both BCL-6 expression and somatic hypermutation (SHM) in V(H) sequences, they show a high level of SHM focused on the c-myc oncogene itself. This observation suggests that the c-myc-3'IgH LCR tandem association drives development of lymphoma from naive B cells by specifically recruiting AID activity on c-myc in a process that early becomes independent from antigen selection and where the successive rounds of SHM rather rely on the selection of the most efficient mutations for oncogene deregulation. Similar to the translocated c-myc gene in human BL, mutations were found in first exon and 5' flanking sequences of transgenic c-myc and specially focused on negative regulatory elements, thus leading to high and constitutive oncogene expression. In conclusion while 3'IgH transcriptional enhancers in c-myc-3'LCR mice first simply act in cis to slightly stimulate c-myc transcription in untransformed B cells, the occurrence of lymphoma appears to result from an additional mechanism necessitating AID-driven mutations within the first exon and 5' flanking sequences which does not occur in parallel but rather circumvents antigen-driven selection.
机译:Burkitt淋巴瘤(BL)具有易位,将c-myc连接到免疫球蛋白重链(IgH)基因座。通过在3'IgH基因座控制区(LCR)的控制下将c-myc基因插入小鼠基因组,我们生成了c-myc-3'LCR小鼠,该小鼠发展出克隆性BL或弥漫性间变性淋巴瘤。我们在本研究中表明,由于c(myc-3'LCR)小鼠的BL既不存在BCL-6表达也不存在V(H)中的体细胞超突变(SHM),因此归为发芽前中心(GC)细胞)序列,它们显示出针对c-myc癌基因本身的高水平SHM。该观察结果表明,c-myc-3'IgH LCR串联关联通过在早期变得独立于抗原选择的过程中特异性招募c-myc上的AID活性,从而从幼稚B细胞驱动淋巴瘤的发展,在此过程中连续几轮SHM依靠最有效的突变选择癌基因去调节。与人BL中易位的c-myc基因相似,在转基因c-myc的第一个外显子和5'侧翼序列中发现了突变,并特别着眼于负调控元件,从而导致高组成型癌基因表达。总而言之,虽然c-myc-3'LCR小鼠中的3'IgH转录增强子首先简单地以顺式作用来轻微刺激未转​​化B细胞中的c-myc转录,但淋巴瘤的发生似乎是由需要AID驱动的突变的其他机制导致的在第一个外显子和5'侧翼序列中不是平行发生的,而是绕开了抗原驱动的选择。

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