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Branch migrating sister chromatid junctions form at replication origins through Rad51/Rad52-independent mechanisms

机译:通过Rad51 / Rad52独立机制在复制起点形成分支迁移姐妹染色单体连接

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摘要

Cells overcome intra-S DNA damage and replication impediments by coupling chromosome replication to sister chromatid-mediated recombination and replication-bypass processes. Further, molecular junctions between replicated molecules have been suggested to assist sister chromatid cohesion until anaphase. Using two-dimensional gel electrophoresis, we have identified, in yeast cells, replication-dependent X-shaped molecules that appear during origin activation, branch migrate, and distribute along the replicon through a mechanism influenced by the rate of fork progression. Their formation is independent of Rad51- and Rad52-mediated homologous recombination events and is not affected by DNA damage or replication blocks. Further, in hydroxyurea-treated rad53 mutants, altered in the replication checkpoint, the branched molecules progressively degenerate and likely contribute to generate pathological structures. We suggest that cells couple sister chromatid tethering with replication initiation by generating specialized joint molecules resembling hemicatenanes: this process might prime cohesion and assist sister chromatid-mediated recombination and replication events.
机译:细胞通过将染色体复制与姐妹染色单体介导的重组和复制旁路过程相结合,克服了S内DNA损伤和复制障碍。此外,已提出复制分子之间的分子连接有助于姐妹染色单体的内聚直至后期。使用二维凝胶电泳,我们已经在酵母细胞中确定了复制依赖性X形分子,它们在起源激活过程中出现,分支迁移,并通过受叉进展速率影响的机制沿着复制子分布。它们的形成与Rad51和Rad52介导的同源重组事件无关,并且不受DNA损伤或复制阻滞的影响。此外,在羟基脲处理过的rad53突变体中,复制检查点发生了变化,支链分子逐渐退化,并可能有助于产生病理结构。我们建议细胞通过产生类似于半胱氨酸的专门联合分子,将姐妹染色单体束缚与复制启动结合起来:此过程可能引发内聚并协助姐妹染色单体介导的重组和复制事件。

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