Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, Scotland, UK.
Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford OX1 3RE, UK.
Nucleic Acids Res. 2018 May 4;46(8):3993-4003. doi: 10.1093/nar/gky132.
The Rif1 protein negatively regulates telomeric TG repeat length in the budding yeast Saccharomyces cerevisiae, but how it prevents telomere over-extension is unknown. Rif1 was recently shown to control DNA replication by acting as a Protein Phosphatase 1 (PP1)-targeting subunit. Therefore, we investigated whether Rif1 controls telomere length by targeting PP1 activity. We find that a Rif1 mutant defective for PP1 interaction causes a long-telomere phenotype, similar to that of rif1Δ cells. Tethering PP1 at a specific telomere partially substitutes for Rif1 in limiting TG repeat length, confirming the importance of PP1 in telomere length control. Ablating Rif1-PP1 interaction is known to cause precocious activation of telomere-proximal replication origins and aberrantly early telomere replication. However, we find that Rif1 still limits telomere length even if late replication is forced through deletion of nearby replication origins, indicating that Rif1 can control telomere length independent of replication timing. Moreover we find that, even at a de novo telomere created after DNA synthesis during a mitotic block, Rif1-PP1 interaction is required to suppress telomere lengthening and prevent inappropriate recruitment of Tel1 kinase. Overall, our results show that Rif1 controls telomere length by recruiting PP1 to directly suppress telomerase-mediated TG repeat lengthening.
Rif1 蛋白负调控酿酒酵母( budding yeast Saccharomyces cerevisiae)端粒 TG 重复序列长度,但它如何防止端粒过度延伸尚不清楚。 Rif1 最近被证明通过作为蛋白磷酸酶 1(PP1)的靶向亚基来控制 DNA 复制。因此,我们研究了 Rif1 是否通过靶向 PP1 活性来控制端粒长度。我们发现,一个与 PP1 相互作用缺陷的 Rif1 突变体会导致长端粒表型,类似于 rif1Δ 细胞。将 PP1 固定在特定的端粒上可以部分替代 Rif1 来限制 TG 重复序列长度,这证实了 PP1 在端粒长度控制中的重要性。众所周知,消除 Rif1-PP1 相互作用会导致端粒近端复制起点过早激活和异常早的端粒复制。然而,我们发现,即使通过删除附近的复制起点强制进行晚期复制, Rif1 仍然限制端粒长度,这表明 Rif1 可以独立于复制时间来控制端粒长度。此外,我们发现,即使在有丝分裂阻断期间 DNA 合成后新形成的端粒上,Rif1-PP1 相互作用也需要抑制端粒延长并防止 Tel1 激酶的不当募集。总的来说,我们的结果表明,Rif1 通过招募 PP1 来直接抑制端粒酶介导的 TG 重复序列延长,从而控制端粒长度。