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Schizosaccharomyces pombe Rtf2 mediates site-specific replication termination by inhibiting replication restart

机译:粟酒裂殖酵母Rtf2通过抑制复制重启来介导特定于站点的复制终止

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摘要

Here, we identify a phylogenetically conserved Schizosaccharomyces pombe factor, named Rtf2, as a key requirement for efficient replication termination at the site-specific replication barrier RTS1. We show that Rtf2, a proliferating cell nuclear antigen-interacting protein, promotes termination at RTS1 by preventing replication restart; in the absence of Rtf2, we observe the establishment of “slow-moving” Srs2-dependent replication forks. Analysis of the pmt3 (SUMO) and rtf2 mutants establishes that pmt3 causes a reduction in RTS1 barrier activity, that rtf2 and pmt3 are nonadditive, and that pmt3 (SUMO) partly suppresses the rtf2-dependent replication restart. Our results are consistent with a model in which Rtf2 stabilizes the replication fork stalled at RTS1 until completion of DNA synthesis by a converging replication fork initiated at a flanking origin.
机译:在这里,我们确定了一个系统发育上保守的粟酒裂殖酵母因子,称为Rtf2,是在特定位点的复制屏障RTS1处有效复制终止的关键要求。我们显示Rtf2,一种增殖细胞核抗原相互作用蛋白,通过阻止复制重启来促进RTS1终止。在没有Rtf2的情况下,我们观察到了“缓慢移动”的Srs2依赖性复制叉的建立。对pmt3(SUMO)和rtf2突变体的分析表明,pmt3导致RTS1屏障活性降低,rtf2和pmt3是非可加性的,而pmt3(SUMO)部分抑制了rtf2依赖性复制重启。我们的结果与其中Rtf2稳定停滞在RTS1的复制叉直到通过侧翼起点起始的聚合复制叉完成DNA合成的模型相符。

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