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Chromatin Dynamics during DNA Repair Revealed by Pair Correlation Analysis of Molecular Flow in the Nucleus

机译:DNA修复过程中的染色质动力学通过核中分子流的配对相关分析揭示

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摘要

Chromatin dynamics modulate DNA repair factor accessibility throughout the DNA damage response. The spatiotemporal scale upon which these dynamics occur render them invisible to live cell imaging. Here we present a believed novel assay to monitor the in vivo structural rearrangements of chromatin during DNA repair. By pair correlation analysis of EGFP molecular flow into chromatin before and after damage, this assay measures millisecond variations in chromatin compaction with submicron resolution. Combined with laser microirradiation we employ this assay to monitor the real-time accessibility of DNA at the damage site. We find from comparison of EGFP molecular flow with a molecule that has an affinity toward double-strand breaks (Ku-EGFP) that DNA damage induces a transient decrease in chromatin compaction at the damage site and an increase in compaction to adjacent regions, which together facilitate DNA repair factor recruitment to the lesion with high spatiotemporal control.
机译:染色质动力学调节整个DNA损伤反应中的DNA修复因子可及性。这些动态发生的时空尺度使它们对活细胞成像不可见。在这里,我们提出了一种新颖的检测方法来监测DNA修复过程中染色质的体内结构重排。通过对损害前后的EGFP分子流入染色质的配对相关分析,该测定法可测量亚微米分辨率的染色质压实度的毫秒变化。结合激光微辐照,我们采用这种测定法来监测损伤部位DNA的实时可及性。通过将EGFP分子流与对双链断裂具有亲和力的分子(Ku-EGFP)进行比较,我们发现DNA损伤在损伤部位诱导了染色质紧缩的瞬时减少,并且向邻近区域的紧缩增加,这一起以高时空控制促进DNA修复因子募集至病变。

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