首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Role for Mismatch Repair Proteins Msh2 Mlh1 and Pms2 in Immunoglobulin Class Switching Shown by Sequence Analysis of Recombination Junctions
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Role for Mismatch Repair Proteins Msh2 Mlh1 and Pms2 in Immunoglobulin Class Switching Shown by Sequence Analysis of Recombination Junctions

机译:错配修复蛋白Msh2Mlh1和Pms2在重组球蛋白序列分析显示的免疫球蛋白类别转换中的作用

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摘要

B cells from mice deficient in mismatch repair (MMR) proteins show decreased ability to undergo class switch recombination in vitro and in vivo. The deficit is not accompanied by any reduction in cell viability or alterations in the cell cycle in B cells cultured in vitro. To assess the role of MMR in switching we examined the nucleotide sequences of Sμ-Sγ3 recombination junctions in splenic B cells induced in culture to switch to IgG3. The data demonstrate clear differences in the sequences of switch junctions in wild-type B cells in comparison with Msh2-, Mlh1-, and Pms2-deficient B cells. Sequences of switch junctions from Msh2-deficient cells showed decreased lengths of microhomology between Sμ and Sγ3 relative to junctions from wild-type cells and an increase in insertions, i.e., nucleotides which do not appear to be derived from either the Sμ or Sγ3 parental sequence. By contrast, 23% of junctions from Mlh1- and Pms2-deficient cells occurred at unusually long stretches of microhomology. The data indicate that MMR proteins are directly involved in class switching and that the role of Msh2 differs from that of Mlh1 and Pms2.
机译:缺乏错配修复(MMR)蛋白的小鼠的B细胞显示出在体内和体外进行类转换重组的能力降低。该缺陷不伴有体外培养的B细胞中细胞活力的任何降低或细胞周期的改变。为了评估MMR在转换中的作用,我们检查了培养中诱导的脾脏B细胞中转换为IgG3的Sμ-Sγ3重组连接的核苷酸序列。数据证明与Msh2,Mlh1和Pms2缺陷的B细胞相比,野生型B细胞的开关连接序列有明显差异。 Msh2缺陷细胞的开关连接序列显示,相对于野生型细胞的连接,Sμ和Sγ3之间的微同源性长度减少,插入增加,即,核苷酸似乎既不来自Sμ也不来自Sγ3亲本序列。相比之下,来自Mlh1和Pms2缺陷细胞的23%的连接发生在异常长的微观同源性上。数据表明MMR蛋白直接参与类转换,并且Msh2的作用不同于Mlh1和Pms2。

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