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Molecular mechanism of DNA replication-coupled inactivation of the initiator protein in Escherichia coli: interaction of DnaA with the sliding clamp-loaded DNA and the sliding clamp-Hda complex.

机译:DNA复制耦合的大肠埃希氏菌蛋白失活的分子机制:DnaA与滑动夹加载的DNA和滑动夹Hda复杂的相互作用。

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摘要

In Escherichia coli, the ATP-DnaA protein initiates chromosomal replication. After the DNA polymerase III holoenzyme is loaded on to DNA, DnaA-bound ATP is hydrolysed in a manner depending on Hda protein and the DNA-loaded form of the DNA polymerase III sliding clamp subunit, which yields ADP-DnaA, an inactivated form for initiation. This regulatory DnaA-inactivation represses extra initiation events. In this study, in vitro replication intermediates and structured DNA mimicking replicational intermediates were first used to identify structural prerequisites in the process of DnaA-ATP hydrolysis. Unlike duplex DNA loaded with sliding clamps, primer RNA-DNA heteroduplexes loaded with clamps were not associated with DnaA-ATP hydrolysis, and duplex DNA provided in trans did not rescue this defect. At least 40-bp duplex DNA is competent for the DnaA-ATP hydrolysis when a single clamp was loaded. The DnaA-ATP hydrolysis was inhibited when ATP-DnaA was tightly bound to a DnaA box-bearing oligonucleotide. These results imply that the DnaA-ATP hydrolysis involves the direct interaction of ATP-DnaA with duplex DNA flanking the sliding clamp. Furthermore, Hda protein formed a stable complex with the sliding clamp. Based on these, we suggest a mechanical basis in the DnaA-inactivation that ATP-DnaA interacts with the Hda-clamp complex with the aid of DNA binding.
机译:在大肠杆菌中,ATP-DnaA蛋白启动染色体复制。将DNA聚合酶III完整酶加载到DNA上之后,结合DnaA的ATP以Hda蛋白和DNA聚合酶III滑动钳亚基的DNA加载形式水解,产生ADP-DnaA(ADP-DnaA的灭活形式)引发。这种调节性的DnaA失活抑制了额外的启动事件。在这项研究中,体外复制中间体和模拟复制中间体的结构化DNA首先用于鉴定DnaA-ATP水解过程中的结构先决条件。与带有滑动夹具的双链DNA不同,带有夹具的引物RNA-DNA异源双链体与DnaA-ATP水解无关,并且反式提供的双链DNA不能挽救该缺陷。当加载单个夹具时,至少40 bp的双链DNA能够胜任DnaA-ATP的水解。当ATP-DnaA与DnaA含盒寡核苷酸紧密结合时,DnaA-ATP水解受到抑制。这些结果暗示,DnaA-ATP水解涉及ATP-DnaA与滑动夹具侧翼的双链DNA的直接相互作用。此外,Hda蛋白与滑动夹具形成了稳定的复合物。基于这些,我们提出了DnaA失活的机械基础,即ATP-DnaA借助DNA结合与Hda-clamp复合物相互作用。

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