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Single molecule tracking reveals spatio-temporal dynamics of bacterial DNA repair centres

机译:单分子跟踪揭示了细菌DNA修复中心的时空动态

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摘要

Single-particle (molecule) tracking (SPT/SMT) is a powerful method to study dynamic processes in living bacterial cells at high spatial and temporal resolution. We have performed single-molecule imaging of early DNA double-strand break (DSB) repair events during homologous recombination in the model bacterium Bacillus subtilis. Our findings reveal that DNA repair centres arise at all sites on the chromosome and that RecN, RecO and RecJ perform fast, enzyme-like functions during detection and procession of DNA double strand breaks, respectively. Interestingly, RecN changes its diffusion behavior upon induction of DNA damage, from a largely diffusive to a DNA-scanning mode, which increases efficiency of finding all sites of DNA breaks within a frame of few seconds. RecJ continues being bound to replication forks, but also assembles at many sites on the nucleoid upon DNA damage induction. RecO shows a similar change in its mobility as RecN, and also remains bound to sites of damage for few hundred milliseconds. Like RecN, it enters the nucleoid in damaged cells. Our data show that presynaptic preparation of DSBs including loading of RecA onto ssDNA is highly rapid and dynamic, and occurs throughout the chromosome, and not only at replication forks or only at distinct sites where many breaks are processes in analogy to eukaryotic DNA repair centres.
机译:单粒子(分子)跟踪(SPT / SMT)是一种以高时空分辨率研究活细菌细胞中动态过程的有效方法。我们已在模型细菌枯草芽孢杆菌的同源重组过程中进行了早期DNA双链断裂(DSB)修复事件的单分子成像。我们的发现揭示了DNA修复中心出现在染色体的所有位点,并且RecN,RecO和RecJ在DNA双链断裂的检测和加工过程中分别执行了快速的酶样功能。有趣的是,RecN在诱导DNA损伤后将其扩散行为从大部分扩散模式改变为DNA扫描模式,从而提高了在几秒钟的时间内发现所有DNA断裂位点的效率。 RecJ继续与复制叉结合,但在DNA损伤诱导后也可在核苷酸的许多位点组装。 RecO显示出与RecN类似的移动性变化,并且在损坏的位置上也保持了几百毫秒的时间。像RecN一样,它会进入受损细胞中的核苷。我们的数据表明,DSB的突触前制备(包括将RecA加载到ssDNA上)非常快速且动态,并且遍及整个染色体,不仅发生在复制叉处,或者仅发生在与真核DNA修复中心类似的多个断裂过程的不同部位。

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