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Understanding how mismatch repair proteins participate in the repair/anti-recombination decision

机译:了解错配修复蛋白如何参与修复/抗重组决策

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Mismatch repair (MMR) systems correct DNA mismatches that result from DNA polymerase misincorporation errors. Mismatches also appear in heteroduplex DNA intermediates formed during recombination between nearly identical sequences, and can be corrected by MMR or removed through an unwinding mechanism, known as anti-recombination or heteroduplex rejection. We review studies, primarily in baker's yeast, which support how specific factors can regulate the MMR/anti-recombination decision. Based on recent advances, we present models for how DNA structure, relative amounts of key repair proteins, the timely localization of repair proteins to DNA substrates and epigenetic marks can modulate this critical decision.The authors review studies, primarily in baker's yeast, which support how specific factors can regulate the MMR/anti-recombination decision.The authors review studies, primarily in baker's yeast, which support how specific factors can regulate the MMR/anti-recombination decision.
机译:错配修复(MMR)系统可纠正由于DNA聚合酶错掺错误而导致的DNA错配。错配也出现在几乎相同序列之间重组期间形成的异源双链DNA中间产物中,可以通过MMR纠正或通过消除机制(称为抗重组或异源双链体排斥)消除。我们回顾主要在面包酵母中的研究,这些研究支持特定因素如何调节MMR /抗重组决定。基于最近的进展,我们提出了有关DNA结构,关键修复蛋白的相对量,修复蛋白在DNA底物上的及时定位以及表观遗传标记如何调节这一关键决定的模型。作者对研究进行了综述,主要针对面包酵母特定因素如何调节MMR /抗重组决定。作者回顾了主要在面包酵母中的研究,这些研究支持了特定因素如何调节MMR /抗重组决定。

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