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引发体蛋白PriC通过绕过DnaB解旋酶加载时DnaA-DnaB相互作用步骤来挽救复制起始应激。

Primosomal protein PriC rescues replication initiation stress by bypassing the DnaA-DnaB interaction step for DnaB helicase loading at .

作者信息

Yoshida Ryusei, Korogi Kazuma, Wu Qinfei, Ozaki Shogo, Katayama Tsutomu

机构信息

Department of Molecular Biology, Kyushu University Graduate School of Pharmaceutical Sciences, Fukuoka, Japan.

出版信息

Elife. 2025 May 29;13:RP103340. doi: 10.7554/eLife.103340.

Abstract

In , replisome and replication fork assembly is initiated by DnaB helicase loading at the chromosomal origin via its interactions with the DnaA initiator and the DnaC helicase loader. Upon replication fork arrest, the replisome including DnaB dissociates from the stalled fork. Replication fork progression is rescued by primosomal protein PriA- or PriC-dependent pathway in which PriA and PriC promote reloading of DnaB in different mechanisms. However, the mechanism responsible for rescue of blocked replication initiation at remains unclear. Here, we found that PriC rescued blocked replication initiation in cells expressing an initiation-specific DnaC mutant, in mutant cells defective in DnaA-DnaB interactions, and in cells containing truncated sequence variants. PriC rescued DnaB loading at even in the absence of Rep helicase, a stimulator of the PriC-dependent replication fork restart pathway. These results of in vitro reconstituted assays concordantly suggest that this initiation-specific rescue mechanism provides a bypass of the DnaA-DnaB interaction for DnaB loading by PriC-promoted loading of DnaB to the unwound region. These findings expand understanding of mechanisms sustaining the robustness of replication initiation and specific roles for PriC in the genome maintenance.

摘要

在大肠杆菌中,复制体和复制叉组装由DnaB解旋酶通过其与DnaA起始蛋白和DnaC解旋酶装载蛋白的相互作用在染色体原点处加载而启动。复制叉停滞时,包括DnaB在内的复制体从停滞的复制叉上解离。复制叉的进展通过引发体蛋白PriA或PriC依赖性途径得以挽救,其中PriA和PriC以不同机制促进DnaB的重新加载。然而,负责挽救在大肠杆菌中受阻的复制起始的机制仍不清楚。在这里,我们发现PriC在表达起始特异性DnaC突变体的细胞、DnaA-DnaB相互作用有缺陷的突变细胞以及含有截短的大肠杆菌序列变体的细胞中挽救了受阻的复制起始。即使在没有Rep解旋酶(PriC依赖性复制叉重新启动途径的刺激物)的情况下,PriC也能在大肠杆菌处挽救DnaB的加载。体外重建试验的这些结果一致表明,这种起始特异性挽救机制通过PriC促进DnaB加载到解开的大肠杆菌区域,为DnaB加载提供了一条绕过DnaA-DnaB相互作用的途径。这些发现扩展了对维持复制起始稳健性机制的理解以及PriC在基因组维持中的特定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/672c/12122000/35c57e7015c3/elife-103340-fig1.jpg

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