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首页> 外文期刊>PLoS Genetics >mlh3 mutations in baker’s yeast alter meiotic recombination outcomes by increasing noncrossover events genome-wide
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mlh3 mutations in baker’s yeast alter meiotic recombination outcomes by increasing noncrossover events genome-wide

机译:面包酵母中的mlh3突变通过增加全基因组的非交叉事件来改变减数分裂重组结果

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Mlh1-Mlh3 is an endonuclease hypothesized to act in meiosis to resolve double Holliday junctions into crossovers. It also plays a minor role in eukaryotic DNA mismatch repair (MMR). To understand how Mlh1-Mlh3 functions in both meiosis and MMR, we analyzed in baker’s yeast 60 new mlh3 alleles. Five alleles specifically disrupted MMR, whereas one (mlh3-32) specifically disrupted meiotic crossing over. Mlh1-mlh3 representatives for each class were purified and characterized. Both Mlh1-mlh3-32 (MMR+, crossover-) and Mlh1-mlh3-45 (MMR-, crossover+) displayed wild-type endonuclease activities in vitro. Msh2-Msh3, an MSH complex that acts with Mlh1-Mlh3 in MMR, stimulated the endonuclease activity of Mlh1-mlh3-32 but not Mlh1-mlh3-45, suggesting that Mlh1-mlh3-45 is defective in MSH interactions. Whole genome recombination maps were constructed for wild-type and MMR+ crossover-, MMR- crossover+, endonuclease defective and null mlh3 mutants in an S288c/YJM789 hybrid background. Compared to wild-type, all of the mlh3 mutants showed increases in the number of noncrossover events, consistent with recombination intermediates being resolved through alternative recombination pathways. Our observations provide a structure-function map for Mlh3 that reveals the importance of protein-protein interactions in regulating Mlh1-Mlh3’s enzymatic activity. They also illustrate how defective meiotic components can alter the fate of meiotic recombination intermediates, providing new insights for how meiotic recombination pathways are regulated.
机译:Mlh1-Mlh3是一种内切核酸酶,被认为可在减数分裂中起作用,以将霍利迪双联结解析为交叉。它在真核DNA错配修复(MMR)中也起着较小的作用。为了了解Mlh1-Mlh3在减数分裂和MMR中的功能,我们在面包酵母中分析了60个新的mlh3等位基因。五个等位基因特异性破坏MMR,而一个等位基因(mlh3-32)特异性破坏减数分裂穿越。每个类别的Mlh1-mlh3代表物均经过纯化和表征。 Mlh1-mlh3-32(MMR +,crossover-)和Mlh1-mlh3-45(MMR-,crossover +)在体外均表现出野生型核酸内切酶活性。 Msh2-Msh3是与MMR中的Mlh1-Mlh3相互作用的MSH复合物,它刺激了Mlh1-mlh3-32的核酸内切酶活性,但未刺激Mlh1-mlh3-45,这提示Mlh1-mlh3-45在MSH相互作用中存在缺陷。针对S288c / YJM789杂种背景下的野生型和MMR +交叉,MMR-交叉+,核酸内切酶缺陷和无效的mlh3突变体,构建了全基因组重组图。与野生型相比,所有的mlh3突变体均显示出非交叉事件数量的增加,这与通过替代重组途径分解的重组中间体一致。我们的观察结果提供了Mlh3的结构功能图,揭示了蛋白质-蛋白质相互作用在调节Mlh1-Mlh3的酶促活性中的重要性。他们还说明了有缺陷的减数分裂成分如何改变减数分裂重组中间体的命运,为减数分裂重组途径的调控提供了新的见解。

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