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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Mismatch repair proteins MSH2, MLH1, and EXO1 are important for class-switch recombination events occurring in B cells that lack nonhomologous end joining.
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Mismatch repair proteins MSH2, MLH1, and EXO1 are important for class-switch recombination events occurring in B cells that lack nonhomologous end joining.

机译:错配修复蛋白MSH2,MLH1和EXO1对于在缺乏非同源末端连接的B细胞中发生的类开关重组事件很重要。

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摘要

In the absence of core nonhomologous end-joining (NHEJ) factors, Ab gene class-switch recombination (CSR) uses an alternative end-joining (A-EJ) pathway to recombine switch (S) region DNA breaks. Previous reports showing decreased S-junction microhomologies in MSH2-deficient mice and an exonuclease 1 (EXO1) role in yeast microhomology-mediated end joining suggest that mismatch repair (MMR) proteins might influence A-EJ-mediated CSR. We have directly investigated whether MMR proteins collectively or differentially influence the A-EJ mechanism of CSR by analyzing CSR in mice deficient in both XRCC4 and individual MMR proteins. We find CSR is reduced and that Igh locus chromosome breaks are reduced in the MMR/XRCC4 double-deficient B cells compared with B cells deficient in XRCC4 alone, suggesting MMR proteins function upstream of double-strand break formation to influence CSR efficiency in these cells. Our results show that MLH1, EXO1, and MSH2 are all important for efficient A-EJ-mediated CSR, and we propose that MMR proteins convert DNA nicks and point mutations into dsDNA breaks for both C-NHEJ and A-EJ pathways of CSR. We also find Mlh1-XRCC4(-) B cells have an increased frequency of direct S junctions, suggesting that MLH1 proteins may have additional functions that influence A-EJ-mediated CSR.
机译:在没有核心非同源末端连接(NHEJ)因子的情况下,Ab基因类别开关重组(CSR)使用另一种末端连接(A-EJ)途径重组开关(S)区DNA断裂。以前的报道显示,MSH2缺陷型小鼠的S结微观同源性降低,而核酸微酶介导的末端连接中的核酸外切酶1(EXO1)作用提示错配修复(MMR)蛋白可能影响A-EJ介导的CSR。我们已经通过分析缺乏XRCC4和单个MMR蛋白的小鼠中的CSR,直接研究了MMR蛋白是否集体或差异地影响CSR的A-EJ机制。我们发现MMR / XRCC4双缺陷B细胞的CSR降低并且Igh基因座染色体断裂减少,而XMRC4缺陷单独的B细胞相比,提示MMR蛋白在双链断裂形成的上游起作用,从而影响这些细胞的CSR效率。我们的结果表明MLH1,EXO1和MSH2对有效的A-EJ介导的CSR都是重要的,并且我们建议MMR蛋白将C-NHEJ和C-NHEJ途径的DNA缺口和点突变转变为dsDNA断裂。我们还发现Mlh1-XRCC4(-)B细胞的直接S连接频率增加,这表明MLH1蛋白可能具有影响A-EJ介导的CSR的其他功能。

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