【2h】

Active DNA unwinding dynamics during processive DNA replication

机译:进行性DNA复制过程中的主动DNA释放动力学

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摘要

Duplication of double-stranded DNA (dsDNA) requires a fine-tuned coordination between the DNA replication and unwinding reactions. Using optical tweezers, we probed the coupling dynamics between these two activities when they are simultaneously carried out by individual Phi29 DNA polymerase molecules replicating a dsDNA hairpin. We used the wild-type and an unwinding deficient polymerase variant and found that mechanical tension applied on the DNA and the DNA sequence modulate in different ways the replication, unwinding rates, and pause kinetics of each polymerase. However, incorporation of pause kinetics in a model to quantify the unwinding reaction reveals that both polymerases destabilize the fork with the same active mechanism and offers insights into the topological strategies that could be used by the Phi29 DNA polymerase and other DNA replication systems to couple unwinding and replication reactions.
机译:双链DNA(dsDNA)的复制需要在DNA复制和展开反应之间进行精细调整的协调。使用光镊,当这两个活动同时由复制dsDNA发夹的单个Phi29 DNA聚合酶分子同时进行时,我们研究了这两个活动之间的耦合动力学。我们使用了野生型和解链缺陷型聚合酶变体,发现施加在DNA和DNA序列上的机械张力以不同方式调节每种聚合酶的复制,解链速率和暂停动力学。然而,将暂停动力学纳入模型以量化解开反应表明,两种聚合酶均以相同的活性机制破坏了叉子的稳定性,并提供了对Phi29 DNA聚合酶和其他DNA复制系统可用于解开偶联的拓扑策略的见解。和复制反应。

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