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Single-molecule imaging reveals multiple pathways for the recruitment of translesion polymerases after DNA damage

机译:单分子成像揭示了DNA损伤后募集跨病变聚合酶的多种途径

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Unrepaired DNA lesions are a potent block to replication, leading to replication fork collapse, double-strand DNA breaks, and cell death. Error-prone polymerases overcome this blockade by synthesizing past DNA lesions in a process called translesion synthesis (TLS), but how TLS polymerases gain access to the DNA template remains poorly understood. In this study, we use particle-tracking PALM to image live Escherichia coli cells containing a functional fusion of the endogenous copy of Pol IV to the photoactivatable fluorescent protein PAmCherry. We find that Pol IV is strongly enriched near sites of replication only upon DNA damage. Surprisingly, we find that the mechanism of Pol IV recruitment is dependent on the type of DNA lesion, and that interactions with proteins other than the processivity factor β play a role under certain conditions. Collectively, these results suggest that multiple interactions, influenced by lesion identity, recruit Pol IV to sites of DNA damage.
机译:未修复的DNA损伤是复制的有效障碍,导致复制叉塌陷,双链DNA断裂和细胞死亡。容易出错的聚合酶通过在称为跨病变合成(TLS)的过程中合成过去的DNA损伤而克服了这一障碍,但是对TLS聚合酶如何获取DNA模板的了解仍然很少。在这项研究中,我们使用粒子跟踪PALM成像活的大肠杆菌细胞,其中包含功能性融合的内源性Pol IV与可光活化的荧光蛋白PAmCherry融合。我们发现,只有在DNA受损时,Pol IV才会在复制位点附近大量富集。出乎意料的是,我们发现Pol IV募集的机制取决于DNA损伤的类型,并且在某些条件下与除持续合成因子β以外的蛋白质的相互作用也起作用。总的来说,这些结果表明,受病变身份影响的多种相互作用将Pol IV募集到DNA损伤部位。

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