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首页> 外文期刊>The Plant Cell >Replication Stress Leads to Genome Instabilities in Arabidopsis DNA Polymerase t Mutants.
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Replication Stress Leads to Genome Instabilities in Arabidopsis DNA Polymerase t Mutants.

机译:复制应力导致拟南芥DNA聚合酶t突变体中的基因组不稳定。

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Impeded DNA replication or a deficiency of its control may critically threaten the genetic information of cells, possibly resulting in genome alterations, such as gross chromosomal translocations, microsatellite instabilities, or increased rates of homologous recombination (HR). We examined an Arabidopsis thaliana line derived from a forward genetic screen, which exhibits an elevated frequency of somatic HR. These HR events originate from replication stress in endoreduplicating cells caused by reduced expression of the gene coding for the catalytic subunit of the DNA polymerase t (POLt1). The analysis of recombination types induced by diverse alleles of polt1 and by replication inhibitors allows the conclusion that two not mutually exclusive mechanisms lead to the generation of recombinogenic breaks at replication forks. In plants with weak polt1 alleles, we observe genome instabilities predominantly at sites with inverted repeats, suggesting the formation and processing of aberrant secondary DNA structures as a result of the accumulation of unreplicated DNA. Stalled and collapsed replication forks account for the more drastic enhancement of HR in plants with strong polt1 mutant alleles. Our data suggest that efficient progression of DNA replication, foremost on the lagging strand, relies on the physiological level of the polymerase t complex and that even a minor disturbance of the replication process critically threatens genomic integrity of Arabidopsis cells.
机译:DNA复制受阻或缺乏控制可能会严重威胁细胞的遗传信息,可能导致基因组改变,例如总体染色体易位,微卫星不稳定或同源重组(HR)速率增加。我们检查了从正向遗传筛选中获得的拟南芥品系,该品系显示出较高的体细胞HR频率。这些HR事件起因于核内复制细胞中的复制压力,该复制压力是由编码DNA聚合酶t(POLt1)催化亚基的基因表达降低引起的。对由polt1的多个等位基因和复制抑制剂诱导的重组类型的分析得出的结论是,两个不互斥的机制导致在复制叉处产生重组断裂。在具有弱polt1等位基因的植物中,我们观察到基因组不稳定性主要存在于具有反向重复序列的位点,这表明由于未复制DNA的积累,异常二级DNA结构的形成和加工。停滞和折叠的复制叉使具有强polt1突变等位基因的植物中的HR大大增强。我们的数据表明,DNA复制的有效进程(主要是在滞后链上)依赖于聚合酶t复合物的生理水平,即使复制过程受到轻微干扰,也严重威胁拟南芥细胞的基因组完整性。

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