首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Template disruptions and failure of double Holliday junction dissolution during double-strand break repair in Drosophila BLM mutants
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Template disruptions and failure of double Holliday junction dissolution during double-strand break repair in Drosophila BLM mutants

机译:果蝇BLM突变体双链断裂修复过程中模板破坏和双霍利迪结溶解失败。

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摘要

Previous biochemical studies of the BLM gene product have shown its ability in conjunction with topoisomerase III alpha to resolve double Holliday structures through a process called "dissolution." This process could prevent crossing over during repair of double-strand breaks. We report an analysis of the Drosophila BLM gene, DmBlm, in the repair of double-strand breaks in the premeiotic germ line of Drosophila males. With a repair reporter construct, Rr3, and other genetic tools, we show that DmBlm mutants are defective for homologous repair but show a compensating increase in single-strand annealing. Increases of 40- to 50-fold in crossing over and flanking deletions also were seen. Perhaps most significantly, the template used for homologous repair in DmBlm mutants is itself subject to deletions and complex rearrangements. These template disruptions are indicative of failure to resolve double Holliday junctions. These findings, along with the demonstration that a weak allele of topoisomerase III alpha has some of the same defects as DmBlm, support the dissolution model. Finally, an analysis of DmBlm mutants in conjunction with mus81 or spnA (Rad51) reveals a second function of BLM distinct from the repair of induced double-strand breaks and possibly related to maintenance of replication forks.
机译:以前对BLM基因产物的生化研究表明,它与拓扑异构酶IIIα结合可以通过称为“溶解”的过程分辨双霍利迪结构。此过程可以防止在修复双链断裂时发生交叉。我们报告果蝇BLM基因DmBlm,在果蝇雄性减数分裂生殖系中双链断裂的修复分析。使用修复报告基因构建体,Rr3和其他遗传工具,我们显示DmBlm突变体在同源修复方面存在缺陷,但在单链退火中显示出补偿性增加。还发现交叉缺失和侧翼缺失增加了40至50倍。也许最重要的是,用于DmBlm突变体中的同源修复的模板本身容易遭受缺失和复杂的重排。这些模板破坏表明无法解决霍利迪双连接。这些发现以及对拓扑异构酶IIIα的弱等位基因具有与DmBlm相同的缺陷的证明,支持了溶出模型。最后,结合mus81或spnA(Rad51)对DmBlm突变体的分析揭示了BLM的第二种功能,不同于修复的诱导双链断裂,并可能与复制叉的维持有关。

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