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The absence of the yeast chromatin assembly factor Asf1 increases genomic instability and sister chromatid exchange

机译:酵母染色质装配因子Asf1的缺乏会增加基因组不稳定性和姐妹染色单体交换

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摘要

Histone chaperone Asf1 participates in heterochromatin silencing, DNA repair and regulation of gene expression, and promotes the assembly of DNA into chromatin in vitro. To determine the influence of Asf1 on genetic stability, we have analysed the effect of asf1Δ on homologous recombination. In accordance with a defect in nucleosome assembly, asf1Δ leads to a loss of negative supercoiling in plasmids. Importantly, asf1Δ increases spontaneous recombination between inverted DNA sequences. This increase correlates with an accumulation of double-strand breaks (DSBs) as determined by immunodetection of phosphorylated histone H2A and fluorescent detection of Rad52–YFP foci during S and G2/M phases. In addition, asf1Δ shows high levels of sister chromatid exchange (SCE) and is proficient in DSB-induced SCE as determined by physical analysis. Our results suggest that defective chromatin assembly caused by asf1Δ leads to DSBs that can be repaired by SCE, affecting genetic stability.
机译:组蛋白伴侣Asf1参与异染色质沉默,DNA修复和基因表达调控,并在体外促进DNA组装成染色质。为了确定Asf1对遗传稳定性的影响,我们分析了asf1Δ对同源重组的影响。根据核小体装配中的缺陷,asf1Δ导致质粒中负超螺旋的丢失。重要的是,asf1Δ增加了反向DNA序列之间的自发重组。这种增加与双链断裂(DSB)的积累有关,这通过在S和G2 / M期免疫检测磷酸化的组蛋白H2A和荧光检测Rad52–YFP病灶来确定。此外,asf1Δ显示出高水平的姐妹染色单体交换(SCE),并且通过物理分析确定,它擅长DSB诱导的SCE。我们的结果表明,由asf1Δ引起的染色质组装缺陷会导致DSB可以被SCE修复,从而影响遗传稳定性。

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