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Poetry in motion: Increased chromosomal mobility after DNA damage

机译:运动中的诗歌:DNA损伤后增加的染色体移动性

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摘要

Double-strand breaks (DSBs) are among the most lethal DNA lesions, and a variety of pathways have evolved to manage their repair in a timely fashion. One such pathway is homologous recombination (HR), in which information from an undamaged donor site is used as a template for repair. Although many of the biochemical steps of HR are known, the physical movements of chromosomes that must underlie the pairing of homologous sequence during mitotic DSB repair have remained mysterious. Recently, several groups have begun to use a variety of genetic and cell biological tools to study this important question. These studies reveal that both damaged and undamaged loci increase the volume of the nuclear space that they explore after the formation of DSBs. This DSB-induced increase in chromosomal mobility is regulated by many of the same factors that are important during HR, such as ATR-dependent checkpoint activation and the recombinase Rad51, suggesting that this phenomenon may facilitate the search for homology. In this perspective, we review current research into the mobility of chromosomal loci during HR, as well as possible underlying mechanisms, and discuss the critical questions that remain to be answered. Although we focus primarily on recent studies in the budding yeast, Saccharomyces cerevisiae, examples of experiments performed in higher eukaryotes are also included, which reveal that increased mobility of damaged loci is a process conserved throughout evolution.
机译:双链断裂(DSB)是最致命的DNA损伤之一,并且已经开发出多种途径来及时处理其修复。一种这样的途径是同源重组(HR),其中来自未受损供体位点的信息被用作修复模板。尽管已知HR的许多生化步骤,但在有丝分裂DSB修复过程中必须作为同源序列配对基础的染色体的物理运动仍然是个谜。最近,几个小组已经开始使用各种遗传和细胞生物学工具来研究这个重要问题。这些研究表明,受损和未受损的基因座均会增加DSB形成后探索的核空间体积。 DSB诱导的染色体移动性增加受HR期间许多重要因素的调节,例如ATR依赖的检查点激活和重组酶Rad51,表明这种现象可能有助于同源性的搜索。从这个角度出发,我们回顾了目前有关HR染色体基因座移动性的研究以及可能的潜在机制,并讨论了有待解决的关键问题。尽管我们主要关注于芽孢酵母酿酒酵母的最新研究,但也包括在高等真核生物中进行的实验示例,这表明受损基因座的活动性增加是整个进化过程中保守的过程。

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