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Depletion of the bloom syndrome helicase stimulates homology-dependent repair at double-strand breaks in human chromosomes.

机译:布卢姆综合症解旋酶的耗竭在人类染色体的双链断裂处刺激依赖同源性的修复。

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摘要

Mutation of BLM helicase causes Blooms syndrome, a disorder associated with genome instability, high levels of sister chromatid exchanges, and cancer predisposition. To study the influence of BLM on double-strand break (DSB) repair in human chromosomes, we stably transfected a normal human cell line with a DNA substrate that contained a thymidine kinase (tk)-neo fusion gene disrupted by the recognition site for endonuclease I-SceI. The substrate also contained a closely linked functional tk gene to serve as a recombination partner for the tk-neo fusion gene. We derived two cell lines each containing a single integrated copy of the DNA substrate. In these cell lines, a DSB was introduced within the tk-neo fusion gene by expression of I-SceI. DSB repair events that occurred via homologous recombination (HR) or nonhomologous end-joining (NHEJ) were recovered by selection for G418-resistant clones. DSB repair was examined under conditions of either normal BLM expression or reduced BLM expression brought about by RNA interference. We report that BLM knockdown in both cell lines specifically increased the frequency of HR events that produced deletions by crossovers or single-strand annealing while leaving the frequency of gene conversions unchanged or reduced. We observed no change in the accuracy of individual HR events and no substantial alteration of the nature of individual NHEJ events when BLM expression was reduced. Our work provides the first direct evidence that BLM influences DSB repair pathway choice in human chromosomes and suggests that BLM deficiency can engender genomic instability by provoking an increased frequency of HR events of a potentially deleterious nature.
机译:BLM解旋酶的突变会引起Blooms综合征,这是一种与基因组不稳定,姐妹染色单体交换水平高和癌症易感性有关的疾病。为了研究BLM对人类染色体中双链断裂(DSB)修复的影响,我们用DNA底物稳定转染了正常人类细胞系,该DNA底物含有被内切核酸酶识别位点破坏的胸苷激酶(tk)-neo融合基因I-SceI。底物还包含紧密连接的功能性tk基因,以用作tk-neo融合基因的重组伴侣。我们获得了两个细胞系,每个细胞系包含一个完整的DNA底物副本。在这些细胞系中,通过表达I-SceI将DSB引入tk-neo融合基因内。通过选择G418抗性克隆,可以恢复通过同源重组(HR)或非同源末端连接(NHEJ)发生的DSB修复事件。在正常BLM表达或RNA干扰引起的BLM表达降低的条件下检查DSB修复。我们报告说,这两种细胞系中的BLM敲除都特别增加了HR事件的发生频率,该事件通过交叉或单链退火产生缺失,而基因转化的频率保持不变或降低。我们观察到,当BLM表达降低时,单个HR事件的准确性没有变化,单个NHEJ事件的本质也没有实质性改变。我们的工作提供了第一个直接证据,表明BLM影响人类染色体中DSB修复途径的选择,并表明BLM缺乏会引起潜在有害性质的HR事件增加频率,从而导致基因组不稳定。

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