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首页> 外文期刊>Nucleic Acids Research >Recycling of single-stranded DNA-binding protein by the bacterial replisome
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Recycling of single-stranded DNA-binding protein by the bacterial replisome

机译:通过细菌局部再循环单链DNA结合蛋白

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摘要

Single-stranded DNA-binding proteins (SSBs) support DNA replication by protecting single-stranded DNA from nucleolytic attack, preventing intra-strand pairing events and playing many other regulatory roles within the replisome. Recent developments in single-molecule approaches have led to a revised picture of the replisome that is much more complex in how it retains or recycles protein components. Here, we visualize how an in vitro reconstituted Escherichia coli replisome recruits SSB by relying on two different molecular mechanisms. Not only does it recruit new SSB molecules from solution to coat newly formed single-stranded DNA on the lagging strand, but it also internally recycles SSB from one Okazaki fragment to the next. We show that this internal transfer mechanism is balanced against recruitment from solution in a manner that is concentration dependent. By visualizing SSB dynamics in live cells, we show that both internal transfer and external exchange mechanisms are physiologically relevant.
机译:单链DNA结合蛋白(SSBS)通过保护来自核泻药攻击的单链DNA,预防链内配对事件并在替换物中扮演许多其他调节作用来支持DNA复制。单分子方法的最新发展导致了重新替换的图像,这在其如何保留或再循环蛋白质组分中更复杂。在这里,我们通过依赖于两种不同的分子机制来依赖于体外重构的大肠杆菌重新招募SSB的程度。它不仅招募来自溶液的新型SSB分子在滞后链上以新形成的单链DNA涂覆,而且还在内部将SSB从一个Okazaki片段中重新回收到下一个。我们表明,这种内部转移机制与浓度依赖的方式均衡互补。通过在直播电池中可视化SSB动态,我们表明内部传输和外部交换机制都是生理相关的。

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