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At Short Telomeres Tel1 Directs Early Replication and Phosphorylates Rif1

机译:在简短的端粒Tel1指导早期复制和磷酸化Rif1。

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摘要

The replication time of Saccharomyces cerevisiae telomeres responds to TG1–3 repeat length, with telomeres of normal length replicating late during S phase and short telomeres replicating early. Here we show that Tel1 kinase, which is recruited to short telomeres, specifies their early replication, because we find a tel1Δ mutant has short telomeres that nonetheless replicate late. Consistent with a role for Tel1 in driving early telomere replication, initiation at a replication origin close to an induced short telomere was reduced in tel1Δ cells, in an S phase blocked by hydroxyurea. The telomeric chromatin component Rif1 mediates late replication of normal telomeres and is a potential substrate of Tel1 phosphorylation, so we tested whether Tel1 directs early replication of short telomeres by inactivating Rif1. A strain lacking both Rif1 and Tel1 behaves like a rif1Δ mutant by replicating its telomeres early, implying that Tel1 can counteract the delaying effect of Rif1 to control telomere replication time. Proteomic analyses reveals that in yku70Δ cells that have short telomeres, Rif1 is phosphorylated at Tel1 consensus sequences (S/TQ sites), with phosphorylation of Serine-1308 being completely dependent on Tel1. Replication timing analysis of a strain mutated at these phosphorylation sites, however, suggested that Tel1-mediated phosphorylation of Rif1 is not the sole mechanism of replication timing control at telomeres. Overall, our results reveal two new functions of Tel1 at shortened telomeres: phosphorylation of Rif1, and specification of early replication by counteracting the Rif1-mediated delay in initiation at nearby replication origins.
机译:酿酒酵母端粒的复制时间对TG1–3重复长度有反应,正常长度的端粒在S期晚期复制,而短端粒则早期复制。在这里我们显示,募集到短端粒的Tel1激酶指定了它们的早期复制,因为我们发现tel1Δ突变体具有短端粒,但是它们复制较晚。与Tel1在驱动早期端粒复制中的作用一致,在被羟基脲阻断的S期中,tel1Δ细胞中复制起点附近接近诱导的短端粒的起始减少。端粒染色质成分Rif1介导正常端粒的晚期复制,并且是Tel1磷酸化的潜在底物,因此我们测试了Tel1是否通过灭活Rif1来指导短端粒的早期复制。缺少Rif1和Tel1的菌株表现得像rif1Δ突变体,因为它会尽早复制其端粒,这暗示Tel1可以抵消Rif1的延迟效应来控制端粒的复制时间。蛋白质组学分析表明,在具有短端粒的yku70Δ细胞中,Rif1在Tel1共有序列(S / TQ位点)上被磷酸化,而Serine-1308的磷酸化完全依赖于Tel1。然而,在这些磷酸化位点突变的菌株的复制时序分析表明,Tel1介导的Rif1磷酸化不是端粒复制时序控制的唯一机制。总的来说,我们的结果揭示了Tel1在缩短的端粒中的两个新功能:Rif1的磷酸化,以及通过抵消Rif1介导的附近复制起点起始延迟来指定早期复制。

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