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Top3 Processes Recombination Intermediates and Modulates Checkpoint Activity after DNA Damage

机译:DNA损伤后,Top3处理重组介导并调节检查点活性

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摘要

Mutation of TOP3 in Saccharomyces cerevisiae causes poor growth, hyperrecombination, and a failure to fully activate DNA damage checkpoints in S phase. Here, we report that overexpression of a dominant-negative allele of TOP3 , TOP3Y356F , which lacks the catalytic (decatenation) activity of Top3, causes impaired S-phase progression and the persistence of abnormal DNA structures (X-shaped DNA molecules) after exposure to methylmethanesulfonate. The impaired S-phase progression is due to a persistent checkpoint-mediated cell cycle delay and can be overridden by addition of caffeine. Hence, the catalytic activity of Top3 is not required for DNA damage checkpoint activation, but it is required for normal S-phase progression after DNA damage. We also present evidence that the checkpoint-mediated cell cycle delay and persistence of X-shaped DNA molecules resulting from overexpression of TOP3Y356F are downstream of Rad51 function. We propose that Top3 functions in S phase to both process homologous recombination intermediates and modulate checkpoint activity.
机译:酿酒酵母中TOP3的突变会导致生长不良,重组过度,以及无法完全激活S期DNA损伤检查点。在这里,我们报告说,TOP3的显性负等位基因TOP3 Y356F 的过表达缺乏Top3的催化(脱级)活性,导致S期进程受损和DNA结构异常的持久性( X形DNA分子)暴露于甲磺酸甲酯后。 S期进程受损是由于持续存在的检查点介导的细胞周期延迟,可以通过添加咖啡因来克服。因此,Top3的催化活性不是DNA损伤检查点激活所必需的,而是DNA损伤后正常S期进程所需要的。我们还提供证据表明,TOP3 Y356F 过表达导致的检查点介导的细胞周期延迟和X形DNA分子的持久性是Rad51功能的下游。我们建议Top3 S阶段功能来处理同源重组中间体和调节检查点活动。

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