首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Checkpoint functions are required for normal S-phase progression in Saccharomyces cerevisiae RCAF- and CAF-I-defective mutants
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Checkpoint functions are required for normal S-phase progression in Saccharomyces cerevisiae RCAF- and CAF-I-defective mutants

机译:酿酒酵母RCAF和CAF-1缺陷型突变体正常S期进程需要检查点功能

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摘要

The chromatin-assembly factor I (CAF-I) and the replication-coupling assembly factor (RCAF) complexes function in chromatin assembly during DNA replication and repair and play a role in the maintenance of genome stability. Here, we have investigated their role in checkpoints and S-phase progression. FACS analysis of mutants lacking Asf1 or Cac1 as well as various checkpoint proteins indicated that normal rates of S-phase progression in asf1 mutants have a strong requirement for replication checkpoint proteins, whereas normal S-phase progression in cac1 mutants has only a weak requirement for either replication or DNA-damage checkpoint proteins. Furthermore, asf1 mutants had high levels of Ddc2.GFP foci that were further increased in asf1 dun1 double mutants consistent with a requirement for checkpoint proteins in S-phase progression in asf1 mutants, whereas cac1 mutants had much lower levels of Ddc2.GFP foci that were not increased by a dun1 mutation. Our data suggest that RCAF defects lead to unstable replication forks that are then stabilized by replication checkpoint proteins, whereas CAF-I defects likely cause different types of DNA damage.
机译:染色质装配因子I(CAF-1)和复制耦合装配因子(RCAF)复合物在DNA复制和修复过程中的染色质装配中起作用,并在维持基因组稳定性中起作用。在这里,我们研究了它们在检查站和S期进展中的作用。缺少Asf1或Cac1以及各种检查点蛋白的突变体的FACS分析表明,asf1突变体中正常的S期进程对复制检查点蛋白有很强的要求,而cac1突变体中正常的S期进程对复制或DNA损伤检查点蛋白。此外,asf1突变体的Ddc2.GFP焦点水平较高,而asf1 dun1双重突变体中进一步增加,这与asf1突变体S期进程中检查点蛋白的要求一致,而cac1突变体的Ddc2.GFP焦点水平则低得多。不会由于dun1突变而增加。我们的数据表明RCAF缺陷导致不稳定的复制叉,然后由复制检查点蛋白稳定,而CAF-1缺陷可能导致不同类型的DNA损伤。

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