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XRCC1 and PCNA are loading platforms with distinct kinetic properties and different capacities to respond to multiple DNA lesions

机译:XRCC1和PCNA是具有不同动力学特性和应对多种DNA损伤的能力的装载平台

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Background: Genome integrity is constantly challenged and requires the coordinated recruitment of multiple enzyme activities to ensure efficient repair of DNA lesions. We investigated the dynamics of XRCC1 and PCNA that act as molecular loading platforms and play a central role in this coordination. Results: Local DNA damage was introduced by laser microirradation and the recruitment of fluorescent XRCC1 and PCNA fusion proteins was monitored by live cell microscopy. We found an immediate and fast recruitment of XRCC1 preceding the slow and continuous recruitment of PCNA. Fluorescence bleaching experiments (FRAP and FLIP) revealed a stable association of PCNA with DNA repair sites, contrasting the high turnover of XRCC1. When cells were repeatedly challenged with multiple DNA lesions we observed a gradual depletion of the nuclear pool of PCNA, while XRCC1 dynamically redistributed even to lesions inflicted last. Conclusion: These results show that PCNA and XRCC1 have distinct kinetic properties with functional consequences for their capacity to respond to successive DNA damage events.
机译:背景:基因组完整性一直受到挑战,需要多种酶活性的协同募集以确保DNA损伤的有效修复。我们研究了XRCC1和PCNA的动力学,它们充当分子加载平台并在这种协调中起着核心作用。结果:通过激光微辐照引入局部DNA损伤,并通过活细胞显微镜监测荧光XRCC1和PCNA融合蛋白的募集。我们发现,在缓慢而持续的PCNA招聘之前,立即且快速地招聘XRCC1。荧光漂白实验(FRAP和FLIP)揭示了PCNA与DNA修复位点之间的稳定联系,这与XRCC1的高周转率形成鲜明对比。当细胞反复受到多个DNA损伤的攻击时,我们观察到PCNA核库逐渐耗尽,而XRCC1甚至可以动态地重新分布到最后造成的损伤。结论:这些结果表明PCNA和XRCC1具有明显的动力学特性,并对它们对连续DNA损伤事件的响应能力具有功能性后果。

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