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The RdgC protein of Escherichia coli binds DNA and counters a toxic effect of RecFOR in strains lacking the replication restart protein PriA

机译:大肠杆菌的RdgC蛋白结合DNA并抵抗RecFOR在缺乏复制重启蛋白PriA的菌株中的毒性作用

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摘要

PriA protein provides a means to load the DnaB replicative helicase at DNA replication fork and D loop structures, and is therefore a key factor in the rescue of stalled or broken forks and subsequent replication restart. We show that the nucleoid-associated RdgC protein binds non-specifically to single-stranded (ss) DNA and double-stranded DNA. It is also essential for growth of a strain lacking PriA, indicating that it might affect replication fork progression or fork rescue. dnaC suppressors of priA overcome this inviability, especially when RecF, RecO or RecR is inactivated, indicating that RdgC avoids or counters a toxic effect of these proteins. Mutations modifying ssDNA-binding (SSB) protein also negate this toxic effect, suggesting that the toxicity reflects inappropriate loading of RecA on SSB-coated ssDNA, leading to excessive or untimely RecA activity. We suggest that binding of RdgC to DNA limits RecA loading, avoiding problems at replication forks that would otherwise require PriA to promote replication restart. Mutations in RNA polymerase also reduce the toxic effect of RecFOR, providing a further link between DNA replication, transcription and repair.
机译:PriA蛋白提供了一种在DNA复制叉和D环结构上加载DnaB复制解旋酶的方法,因此是挽救停滞或断裂的叉以及随后的复制重启的关键因素。我们显示,与类核苷酸相关的RdgC蛋白非特异性结合到单链(ss)DNA和双链DNA。对于缺乏PriA的菌株的生长来说,这也是必不可少的,这表明它可能影响复制叉的进展或叉的拯救。 priA的dnaC抑制剂克服了这种不可行性,特别是在RecF,RecO或RecR失活时,这表明RdgC避免或抵消了这些蛋白质的毒性作用。修饰ssDNA结合(SSB)蛋白的突变也消除了这种毒性作用,表明该毒性反映了RecA在SSB涂层的ssDNA上的不适当负载,导致RecA活性过高或过时。我们建议将RdgC与DNA结合限制RecA的装载,避免复制叉出现问题,否则这些问题可能需要PriA来促进复制重启。 RNA聚合酶中的突变也会降低RecFOR的毒性,从而在DNA复制,转录和修复之间提供进一步的联系。

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