首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Abundance of Prereplicative Complexes (Pre-RCs) Facilitates Recombinational Repair under Replication Stress in Fission Yeast
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Abundance of Prereplicative Complexes (Pre-RCs) Facilitates Recombinational Repair under Replication Stress in Fission Yeast

机译:在裂殖酵母的复制压力下大量复制前复合物(Pre-RCs)促进了重组修复。

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摘要

Mcm2–7 complexes are loaded onto chromatin with the aid of Cdt1 and Cdc18/Cdc6 and form prereplicative complexes (pre-RCs) at multiple sites on each chromosome. Pre-RCs are essential for DNA replication and surviving replication stress. However, the mechanism by which pre-RCs contribute to surviving replication stress is largely unknown. Here, we isolated the fission yeast mcm6-S1 mutant that was hypersensitive to methyl methanesulfonate (MMS) and camptothecin (CPT), both of which cause forks to collapse. The mcm6-S1 mutation impaired the interaction with Cdt1 and decreased the binding of minichromosome maintenance (MCM) proteins to replication origins. Overexpression of Cdt1 restored MCM binding and suppressed the sensitivity to MMS and CPT, suggesting that the Cdt1-Mcm6 interaction is important for the assembly of pre-RCs and the repair of collapsed forks. MMS-induced Chk1 phosphorylation and Rad22/Rad52 focus formation occurred normally, whereas cells containing Rhp54/Rad54 foci, which are involved in DNA strand exchange and dissociation of the joint molecules, were increased. Remarkably, G1 phase extension through deletion of an S phase cyclin, Cig2, as well as Cdt1 overexpression restored pre-RC assembly and suppressed Rhp54 accumulation. A cdc18 mutation also caused hypersensitivity to MMS and CPT and accumulation of Rhp54 foci. These data suggest that an abundance of pre-RCs facilitates a late step in the recombinational repair of collapsed forks in the following S phase.
机译:Mcm2–7复合物借助Cdt1和Cdc18 / Cdc6加载到染色质上,并在每个染色体上的多个位点形成复制前复合物(pre-RCs)。 Pre-RC对DNA复制和抵抗复制压力至关重要。但是,pre-RCs有助于抵抗复制压力的机制在很大程度上尚不清楚。在这里,我们分离出了裂变酵母mcm6-S1突变体,该突变体对甲磺酸甲酯(MMS)和喜树碱(CPT)高度敏感,这两种突变都会导致叉子塌陷。 mcm6-S1突变削弱了与Cdt1的相互作用,并降低了微染色体维持(MCM)蛋白与复制起点的结合。 Cdt1的过表达恢复了MCM的结合并抑制了对MMS和CPT的敏感性,这表明Cdt1-Mcm6的相互作用对于前RC的组装和塌陷叉的修复非常重要。 MMS诱导的Chk1磷酸化和Rad22 / Rad52焦点形成正常发生,而含有Rhp54 / Rad54病灶的细胞增多,这些细胞参与DNA链交换和关节分子的解离。值得注意的是,通过缺失S期细胞周期蛋白Cig2和Cdt1的过量表达,G1期延伸恢复了前RC装配并抑制了Rhp54积累。 cdc18突变还引起对MMS和CPT的超敏反应以及Rhp54病灶的积累。这些数据表明,大量的前RC有助于在随后的S阶段对塌陷的叉进行重组维修的后期步骤。

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