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Studying DNA Double-Strand Break Repair: An Ever-Growing Toolbox

机译:学习DNA双链休息修复:不断增长的工具箱

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To ward off against the catastrophic consequences of persistent DNA double-strand breaks (DSBs), eukaryotic cells have developed a set of complex signaling networks that detect these DNA lesions, orchestrate cell cycle checkpoints and ultimately lead to their repair. Collectively, these signaling networks comprise the DNA damage response (DDR). The current knowledge of the molecular determinants and mechanistic details of the DDR owes greatly to the continuous development of ground-breaking experimental tools that couple the controlled induction of DSBs at distinct genomic positions with assays and reporters to investigate DNA repair pathways, their impact on other DNA-templated processes and the specific contribution of the chromatin environment. In this review, we present these tools, discuss their pros and cons and illustrate their contribution to our current understanding of the DDR.
机译:为了抵御持续性DNA双链(DSB)的灾难性后果,真核细胞已开发出一组检测这些DNA病变的复杂信号网络,协调细胞周期检查点并最终导致其修复。统称,这些信令网络包括DNA损伤响应(DDR)。目前对DDR的分子决定因素和机械细节的了解大大归功于接地实验工具的连续发展,这些工具耦合在不同的基因组位置对测定和记者进行测定的不同基因组位置,以调查DNA修复途径,它们对其他影响DNA模板化工艺和染色质环境的具体贡献。在这篇综述中,我们介绍了这些工具,讨论了他们的利弊,并说明了他们对我们目前对DDR的理解的贡献。

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