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首页> 外文期刊>The journal of immunology >Class Switch Recombination Efficiency and Junction Microhomology Patterns in Msh2-, Mlh1-, and Exo1-Deficient Mice Depend on the Presence of μ Switch Region Tandem Repeats
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Class Switch Recombination Efficiency and Junction Microhomology Patterns in Msh2-, Mlh1-, and Exo1-Deficient Mice Depend on the Presence of μ Switch Region Tandem Repeats

机译:Msh2,Mlh1和Exo1缺陷小鼠中的类开关重组效率和连接微同源性模式取决于μ开关区串联重复序列的存在

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The Msh2 mismatch repair (MMR) protein is critical for class switch recombination (CSR) events that occur in mice that lack the Sμ tandem repeat (SμTR) region (SμTR?/? mice). The pattern of microhomology among switch junction sites in Msh2-deficient mice is also dependent on the presence or absence of SμTR sequences. It is not known whether these CSR effects reflect an individual function of Msh2 or the function of Msh2 within the MMR machinery. In the absence of the SμTR sequences, Msh2 deficiency nearly ablates CSR. We now show that Mlh1 or Exo1 deficiencies also eliminate CSR in the absence of the SμTR. Furthermore, in SμTR?/? mice, deficiencies of Mlh1 or Exo1 result in increased switch junction microhomology as has also been seen with Msh2 deficiency. These results are consistent with a CSR model in which the MMR machinery is important in processing DNA nicks to produce double-stranded breaks, particularly in sequences where nicks are infrequent. We propose that double-stranded break paucity in MMR-deficient mice leads to increased use of an alternative joining pathway where microhomologies are important for CSR break ligation. Interestingly, when the SμTR region is present, deficiency of Msh2 does not lead to the increased microhomology seen with Mlh1 or Exo1 deficiencies, suggesting that Msh2 might have an additional function in CSR. It is also possible that the inability to initiate MMR in the absence of Msh2 results in CSR junctions with less microhomology than joinings that occur when MMR is initiated but then proceeds abnormally due to Mlh1 or Exo1 deficiencies.
机译:Msh2错配修复(MMR)蛋白对于在缺乏Sμ串联重复(SμTR)区域的小鼠(SμTRβ/β小鼠)中发生的类别转换重组(CSR)事件至关重要。 Msh2缺陷小鼠的开关连接位点之间的微同源性模式也取决于SμTR序列的存在与否。尚不清楚这些CSR效果是否反映Msh2的个别功能还是MMR机械中Msh2的功能。在没有SμTR序列的情况下,Msh2缺陷几乎消除了CSR。现在我们显示,Mlh1或Exo1缺陷也可以在缺少SμTR的情况下消除CSR。此外,以SμTR?/?为单位。在小鼠中,Mlh1或Exo1的缺乏导致开关连接微观同源性增加,这也与Msh2缺乏有关。这些结果与CSR模型一致,在CSR模型中,MMR机制对于处理DNA缺口以产生双链断裂非常重要,尤其是在缺口很少发生的序列中。我们建议MMR缺陷小鼠中双链断裂的缺乏导致导致使用替代连接途径的增加,其中微同源性对于CSR断裂连接很重要。有趣的是,当存在SμTR区域时,Msh2的缺乏并不会导致Mlh1或Exo1缺乏所导致的微同源性增加,这表明Msh2可能在CSR中具有其他功能。也可能是,没有Msh2时无法启动MMR,导致CSR连接的微观同源性比启动MMR时发生但由于Mlh1或Exo1缺陷而异常进行的连接少。

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