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The RAD6 DNA Damage Tolerance Pathway Operates Uncoupled from the Replication Fork and Is Functional Beyond S Phase

机译:RAD6 DNA损伤耐受途径与复制叉脱钩运行,功能超出S期

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摘要

Damaged DNA templates provide an obstacle to the replication fork and can cause genome instability.In eukaryotes, tolerance to damaged DNA is mediated largely by the RAD6 pathway involving ubiquitylation of the DNA polymerase processivity factor PCNA. Whereas monoubiquitylation of PCNA mediates error-prone translesion synthesis (TLS), polyubiquitylation triggers an error-free pathway. Both branches of this pathway are believed to occur in S phase in order to ensure replication completion. However, we found that limiting TLS or the errorfree pathway to the G2/M phase of the cell-cycle efficiently promote lesion tolerance. Thus, our findings indicate that both branches of the DNA damage tolerance pathway operate effectively after chromosomal replication, outside S phase. We therefore propose that the RAD6 pathway acts on single-stranded gaps left behind newly restarted replication forks.
机译:受损的DNA模板为复制叉提供了障碍,并可能导致基因组不稳定。在真核生物中,对受损DNA的耐受性主要是由RAD6途径介导的,该途径涉及DNA聚合酶持续性因子PCNA的泛素化。 PCNA的单泛素化介导易错的跨病变合成(TLS),而多泛素化​​则触发无错途径。为了确保复制完成,认为该途径的两个分支都发生在S期。但是,我们发现将TLS或无错误途径限制到细胞周期的G2 / M期可以有效地促进病灶耐受性。因此,我们的研究结果表明,DNA损伤耐受途径的两个分支在染色体复制后在S期之外均有效运行。因此,我们建议RAD6途径作用于新近重启的复制叉所留下的单链缺口。

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