首页> 外文期刊>The Journal of biological chemistry >PriC-mediated DNA Replication Restart Requires PriC Complex Formation with the Single-stranded DNA-binding Protein
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PriC-mediated DNA Replication Restart Requires PriC Complex Formation with the Single-stranded DNA-binding Protein

机译:验证介导的DNA复制重启需要具有单链DNA结合蛋白的序列复杂形成

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Frequent collisions between cellular DNA replication complexes (replisomes) and obstacles such as damaged DNA or frozen protein complexes make DNA replication fork progression surprisingly sporadic. These collisions can lead to the ejection of replisomes prior to completion of replication, which, if left unrepaired, results in bacterial cell death. As such, bacteria have evolved DNA replication restart mechanisms that function to reload replisomes onto abandoned DNA replication forks. Here, we define a direct interaction between PriC, a key Escherichia coli DNA replication restart protein, and the single-stranded DNA-binding protein (SSB), a protein that is ubiquitously associated with DNA replication forks. PriC/SSB complex formation requires evolutionarily conserved residues from both proteins, including a pair of Arg residues from PriC and the C terminus of SSB. In vitro, disruption of the PriC/SSB interface by sequence changes in either protein blocks the first step of DNA replication restart, reloading of the replicative DnaB helicase onto an abandoned replication fork. Consistent with the critical role of PriC/SSB complex formation in DNA replication restart, PriC variants that cannot bind SSB are non-functional in vivo. Single-molecule experiments demonstrate that PriC binding to SSB alters SSB/DNA complexes, exposing single-stranded DNA and creating a platform for other proteins to bind. These data lead to a model in which PriC interaction with SSB remodels SSB/DNA structures at abandoned DNA replication forks to create a DNA structure that is competent for DnaB loading.
机译:蜂窝DNA复合复合物(重复血液)和诸如受损的DNA或冷冻蛋白质复合物等障碍物之间的频繁碰撞使DNA复制叉进展令人惊讶地散发。这些碰撞可以在完成复制之前导致重新血液的射精,如果未堆放,导致细菌细胞死亡。因此,细菌已经进化了DNA复制重启机制,该机制可以将重新涂层重新涂覆到废弃的DNA复制叉上。这里,我们定义普定,钥匙大肠杆菌DNA复制重启蛋白和单链DNA结合蛋白(SSB)的直接相互作用,一种与DNA复制叉相关的蛋白质。 PRIC / SSB复合体形成需要来自两种蛋白质的进化保守的残留物,包括来自SSB的PRIC和C末端的一对arg残留物。在体外,通过序列在任一蛋白质中的序列变化破坏序列变化,其DNA复制重启的第一步,重复的DNAB螺旋酶重新加载到废弃的复制叉上。符合PRIC / SSB复合物形成在DNA复制重启中的关键作用重启,不能将SSB结合的估算变体在体内是非功能性的。单分子实验表明,与SSB的源性结合改变了SSB / DNA复合物,暴露单链DNA并为其他蛋白质产生粘合的平台。这些数据导致了一种模型,其中在废弃的DNA复制叉子下与SSB的汇率与SSB / DNA结构进行重组,以产生具有DNAB负载的DNA结构。

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