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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The mismatch repair pathway functions normally at a non-AID target in germinal center B cells.
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The mismatch repair pathway functions normally at a non-AID target in germinal center B cells.

机译:错配修复途径在生发中心B细胞中的非AID靶标处正常起作用。

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Deficiency in Msh2, a component of the mismatch repair (MMR) system, leads to an approximately 10-fold increase in the mutation frequency in most tissues. By contrast, Msh2 deficiency in germinal center (GC) B cells decreases the mutation frequency at the IgH V region as a dU:dG mismatch produced by AID initiates modifications by MMR, resulting in mutations at nearby A:T base pairs. This raises the possibility that GC B cells express a factor that converts MMR into a globally mutagenic pathway. To test this notion, we investigated whether MMR corrects mutations in GC B cells at a gene that is not mutated by AID. Strikingly, we found that GC B cells accumulate 5 times more mutations at a reporter gene than during the development of the mouse. Notably, the mutation frequency at this reporter gene was approximately 10 times greater in Msh2(-/-) compared with wild-type GC B cells cells. In contrast to the V region, the increased level of mutations at A:T base pairs in GC B cells was not caused by MMR. These results show that in GC B cells, (1) MMR functions normally at an AID-insensitive gene and (2) the frequency of background mutagenesis is greater in GC B cells than in their precursor follicular B cells.
机译:Msh2是失配修复(MMR)系统的组成部分,其缺陷导致大多数组织中的突变频率增加大约10倍。相比之下,生发中心(GC)B细胞中的Msh2缺乏会降低IgH V区的突变频率,因为AID产生的dU:dG不匹配会引发MMR的修饰,从而导致附近的A:T碱基对发生突变。这增加了GC B细胞表达将MMR转化为全球诱变途径的因子的可能性。为了验证这一概念,我们调查了MMR是否纠正了AID不会突变的基因在GC B细胞中的突变。令人惊讶地,我们发现,GC B细胞在报告基因上积累的突变是小鼠发育过程中突变的5倍。值得注意的是,与野生型GC B细胞相比,Msh2(-/-)中此报告基因的突变频率大约高10倍。与V区相反,GC B细胞中A:T碱基对处突变的增加不是由MMR引起的。这些结果表明,在GC B细胞中,(1)MMR在不对AID敏感的基因上正常发挥作用,并且(2)GC B细胞中背景诱变的频率大于其前卵泡B细胞。

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