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首页> 外文期刊>DNA repair >Separable roles for Exonuclease I in meiotic DNA double-strand break repair.
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Separable roles for Exonuclease I in meiotic DNA double-strand break repair.

机译:核酸外切酶I在减数分裂DNA双链断裂修复中的独立作用。

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摘要

Exo1 is a member of the Rad2 protein family and possesses both 5'-3' exonuclease and 5' flap endonuclease activities. In addition to performing a variety of functions during mitotic growth, Exo1 is also important for the production of crossovers during meiosis. However, its precise molecular role has remained ambiguous and several models have been proposed to account for the crossover deficit observed in its absence. Here, we present physical evidence that the nuclease activity of Exo1 is essential for normal 5'-3' resection at the Spo11-dependent HIS4 hotspot in otherwise wild-type cells. This same activity was also required for normal levels of gene conversion at the locus. However, gene conversions were frequently observed at a distance beyond that at which resection was readily detectable arguing that it is not the extent of the initial DNA end resection that limits heteroduplex formation. In addition to these nuclease-dependent functions, we found that an exo1-D173A mutant defective in nuclease activity is able to maintain crossing-over at wild-type levels in a number of genetic intervals, suggesting that Exo1 also plays a nuclease-independent role in crossover promotion.
机译:Exo1是Rad2蛋白家族的成员,同时具有5'-3'核酸外切酶和5'襟翼内切核酸酶活性。除了在有丝分裂的生长过程中执行多种功能外,Exo1对减数分裂过程中交叉的产生也很重要。然而,其精确的分子作用仍然是模棱两可的,并且已经提出了几种模型来解释在不存在交联缺陷的情况。在这里,我们提供了物理证据,证明Exo1的核酸酶活性对于Spo11依赖的HIS4热点中正常5'-3'切除至关重要,而在其他野生型细胞中。该基因位点的正常水平转化也需要相同的活性。但是,经常在远距离处观察到基因转换,因为在远距离处可以轻易检测到切除,这是因为最初的DNA末端切除的范围并不限制异源双链体的形成。除了这些依赖于核酸酶的功能外,我们发现核酸酶活性有缺陷的exo1-D173A突变体能够在许多遗传间隔内保持野生型水平的交叉,这表明Exo1也起着核酸酶非依赖性的作用。在跨界推广中。

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