Instituto de Biología Funcional y Genómica (CSIC/USAL), Campus Miguel de Unamuno, Salamanca 37007, Spain.
Departamento de Microbiología y Genética (USAL), Campus Miguel de Unamuno, Salamanca 37007, Spain.
Nucleic Acids Res. 2024 May 22;52(9):5121-5137. doi: 10.1093/nar/gkae192.
The S-phase checkpoint is involved in coupling DNA unwinding with nascent strand synthesis and is critical to maintain replication fork stability in conditions of replicative stress. However, its role in the specific regulation of leading and lagging strands at stalled forks is unclear. By conditionally depleting RNaseH2 and analyzing polymerase usage genome-wide, we examine the enzymology of DNA replication during a single S-phase in the presence of replicative stress and show that there is a differential regulation of lagging and leading strands. In checkpoint proficient cells, lagging strand replication is down-regulated through an Elg1-dependent mechanism. Nevertheless, when checkpoint function is impaired we observe a defect specifically at the leading strand, which was partially dependent on Exo1 activity. Further, our genome-wide mapping of DNA single-strand breaks reveals that strand discontinuities highly accumulate at the leading strand in HU-treated cells, whose dynamics are affected by checkpoint function and Exo1 activity. Our data reveal an unexpected role of Exo1 at the leading strand and support a model of fork stabilization through prevention of unrestrained Exo1-dependent resection of leading strand-associated nicks after fork stalling.
S 期检查点参与将 DNA 解旋与新生链合成偶联,对于在复制应激条件下维持复制叉稳定性至关重要。然而,其在停滞叉上对前导链和滞后链的特定调节中的作用尚不清楚。通过条件性耗尽 RNaseH2 并在存在复制应激的情况下对聚合酶使用进行全基因组分析,我们研究了单一 S 期内 DNA 复制的酶学特性,并表明滞后链和前导链的调控存在差异。在有检查点功能的细胞中,滞后链复制通过依赖于 Elg1 的机制下调。然而,当检查点功能受损时,我们观察到在前导链上出现缺陷,这部分依赖于 Exo1 活性。此外,我们对 DNA 单链断裂的全基因组作图显示,在 HU 处理的细胞中,链不连续性在前导链上高度积累,其动力学受检查点功能和 Exo1 活性的影响。我们的数据揭示了 Exo1 在前导链上的意外作用,并支持了一种通过防止叉停滞后不受限制的 Exo1 依赖性前导链相关切口切除来稳定叉的模型。