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Differential effect of the overexpression of Rad2/XPG family endonucleases on genome integrity in yeast and human cells

机译:rad2 / XPG家族内切酶过表达对酵母和人细胞基因组完整性的差异效果

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摘要

Eukaryotic cells possess several DNA endonucleases that are necessary to complete different steps in DNA metabolism. Rad2/XPG and Rad27/FEN1 belong to a group of evolutionary conserved proteins that constitute the Rad2 family. Given the important roles carried out by these nucleases in DNA repair and their capacity to create DNA breaks, we have investigated the effect that in vivo imbalance of these nucleases and others of the family have on genome integrity and cell proliferation. We show that overexpression of these nucleases causes genetic instability in both yeast and human cells. Interestingly, the type of recombination event and DNA damage induced suggest specific modes and timing of action of each nuclease that are beyond their known DNA repair function and are critical to preserve genome integrity. In addition to identifying new sources of genome instability, a hallmark of cancer cells, this study provides new genetic tools for studies of genome dynamics.
机译:真核细胞具有几种DNA内切核酸酶,这是在DNA代谢中完成不同步骤的必要条件。 RAD2 / XPG和RAD27 / FEN1属于一组构成RAD2家族的进化保守蛋白。 鉴于DNA修复中这些核酸酶的重要作用及其创造DNA突破的能力,我们研究了这些核酸酶的体内失衡的效果,并且家庭对基因组完整性和细胞增殖的影响。 我们表明这些核酸酶的过度表达导致酵母和人细胞中的遗传不稳定。 有趣的是,重组事件和DNA损伤的类型诱导了每个核酸酶的特异性模式和时序,其超出其已知的DNA修复功能并对保持基因组完整性至关重要。 除了鉴定新的基因组不稳定来源,该研究还为基因组动力学进行了新的基因工具。

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