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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Role of Blm Helicase in Homologous Recombination, Gene Conversion Tract Length, and Recombination Between Diverged Sequences in Drosophila melanogaster
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The Role of Blm Helicase in Homologous Recombination, Gene Conversion Tract Length, and Recombination Between Diverged Sequences in Drosophila melanogaster

机译:Blm解旋酶在果蝇同源重组,基因转换域长度和不同序列之间的重组中的作用。

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DNA double-strand breaks (DSBs) are a particularly deleterious class of DNA damage that threatens genome integrity. DSBs are repaired by three pathways: nonhomologous-end joining (NHEJ), homologous recombination (HR), and single-strand annealing (SSA). Drosophila melanogaster Blm ( DmBlm ) is the ortholog of Saccharomyces cerevisiae SGS1 and human BLM , and has been shown to suppress crossovers in mitotic cells and repair mitotic DNA gaps via HR. To further elucidate the role of DmBlm in repair of a simple DSB, and in particular recombination mechanisms, we utilized the Direct Repeat of white (DR- white ) and Direct Repeat of white with mutations (DR- white.mu ) repair assays in multiple mutant allele backgrounds. DmBlm null and helicase-dead mutants both demonstrated a decrease in repair by noncrossover HR, and a concurrent increase in non-HR events, possibly including SSA, crossovers, deletions, and NHEJ, although detectable processing of the ends was not significantly impacted. Interestingly, gene conversion tract lengths of HR repair events were substantially shorter in DmBlm null but not helicase-dead mutants, compared to heterozygote controls. Using DR- white.mu , we found that, in contrast to Sgs1, DmBlm is not required for suppression of recombination between diverged sequences. Taken together, our data suggest that DmBlm helicase function plays a role in HR, and the steps that contribute to determining gene conversion tract length are helicase-independent.
机译:DNA双链断裂(DSB)是一类特别有害的DNA损伤,威胁着基因组的完整性。 DSB通过三种途径修复:非同源末端连接(NHEJ),同源重组(HR)和单链退火(SSA)。果蝇(DmBlm)是酿酒酵母(Saccharomyces cerevisiae)SGS1和人类BLM的直系同源物,并已被证明可抑制有丝分裂细胞中的交叉并通过HR修复有丝分裂DNA缺口。为了进一步阐明DmBlm在简单DSB修复中的作用,特别是在重组机制中,我们在多个实验中使用了白色的直接重复(DR-white)和白色的直接突变(DR-white.mu)修复检测方法。突变等位基因背景。 DmBlm null和解旋酶死亡突变体均显示非交叉HR修复的减少,以及非HR事件的同时增加,可能包括SSA,交叉,缺失和NHEJ,尽管末端的可检测过程未受到明显影响。有趣的是,与杂合子对照相比,DmBlm null缺失但解旋酶死亡的突变体中HR修复事件的基因转化道长度明显较短。使用DR-white.mu,我们发现与Sgs1相比,DmBlm不需要抑制发散序列之间的重组。两者合计,我们的数据表明DmBlm解旋酶功能在HR中起作用,并且有助于确定基因转换管道长度的步骤是独立于解旋酶的。

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