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CDK-dependent phosphorylation of Sld2 and Sld3 initiates DNA replication in budding yeast

机译:Sld2和Sld3的CDK依赖性磷酸化可启动发芽酵母中的DNA复制

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In eukaryotic cells, cyclin-dependent kinases (CDKs) have an important involvement at various points in the cell cycle. At the onset of S phase, active CDK is essential for chromosomal DNA replication, although its precise role is unknown. In budding yeast (Saccharomyces cerevisiae), the replication protein Sld2 (ref. 2) is an essential CDK substrate, but its phospho-mimetic form (Sld2-11D) alone neither affects cell growth nor promotes DNA replication in the absence of CDK activity, suggesting that other essential CDK substrates promote DNA replication. Here we show that both an allele of CDC45 (JET1) and high-copy DPB11, in combination with Sld2-11D, separately confer CDK-independent DNA replication. Although Cdc45 is not an essential CDK substrate, CDK-dependent phosphorylation of Sld3, which associates with Cdc45 (ref. 5), is essential and generates a binding site for Dpbll. Both the JET1 mutation and high-copy DPB11 by-pass the requirement for Sld3 phosphorylation in DNA replication. Because phosphorylated Sld2 binds to the carboxy-terminal pair of BRCT domains in Dpbll (ref. 4), we propose that Dpbll connects phosphorylated Sld2 and Sld3 to facilitate interactions between replication proteins, such as Cdc45 and GINS. Our results demonstrate that CDKs regulate interactions between BRCT-domain-containing replication proteins and other phosphorylated proteins for the initiation of chromosomal DNA replication; similar regulation may take place in higher eukaryotes.
机译:在真核细胞中,细胞周期蛋白依赖性激酶(CDKs)在细胞周期的各个阶段都有重要的参与。在S期开始时,活性CDK对于染色体DNA复制至关重要,尽管其确切作用尚不清楚。在发芽酵母(Saccharomyces cerevisiae)中,复制蛋白Sld2(参考文献2)是CDK的必需底物,但单独的磷酸化形式(Sld2-11D)既不会影响细胞生长,也不会在没有CDK活性的情况下促进DNA复制。提示其他重要的CDK底物可促进DNA复制。在这里,我们显示CDC45(JET1)和高拷贝DPB11的等位基因与Sld2-11D结合,分别赋予CDK独立的DNA复制。尽管Cdc45不是必需的CDK底物,但与Cdc45相关的Sld3依赖CDK的磷酸化是必不可少的(参考文献5),并产生DpbII的结合位点。 JET1突变和高拷贝DPB11都绕过了DNA复制中Sld3磷酸化的要求。因为磷酸化的Sld2与Dpbll中的BRCT域的羧基末端对结合(参考文献4),所以我们建议Dpbll连接磷酸化的Sld2和Sld3,以促进复制蛋白(例如Cdc45和GINS)之间的相互作用。我们的结果表明CDK调节BRCT结构域的复制蛋白与其他磷酸化蛋白之间的相互作用,从而启动染色体DNA复制。高等真核生物可能会发生类似的规定。

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