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Interplay between S-cyclin-dependent kinase and Dbf4-dependent kinase in controlling DNA replication through phosphorylation of yeast Mcm4 N-terminal domain

机译:S细胞周期蛋白依赖性激酶和Dbf4依赖性激酶之间的相互作用,通过酵母Mcm4 N末端结构域的磷酸化控制DNA复制

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Cyclin-dependent (CDK) and Dbf4-dependent (DDK) kinases trigger DNA replication in all eukaryotes, but how these kinases cooperate to regulate DNA synthesis is largely unknown. Here, we show that budding yeast Mcm4 is phosphorylated in vivo during S phase in a manner dependent on the presence of five CDK phosphoacceptor residues within the N-terminal domain of Mcm4. Mutation to alanine of these five sites (mcm4-5A) abolishes phosphorylation and decreases replication origin firing efficiency at 22 degrees C. Surprisingly, the loss of function mcm4-5A mutation confers cold and hydroxyurea sensitivity to DDK gain of function conditions (mcm5/bob1 mutation or DDK overexpression), implying that phosphorylation of Mcm4 by CDK somehow counteracts negative effects produced by ectopic DDK activation. Deletion of the S phase cyclins Clb5,6 is synthetic lethal with mcm4-5A and mimics its effects on DDK up mutants. Furthermore, we find that Clb5 expressed late in the cell cycle can still suppress the lethality of clb5,6 Delta bob1 cells, whereas mitotic cyclins Clb2, 3, or 4 expressed early cannot. We propose that the N-terminal extension of eukaryotic Mcm4 integrates regulatory inputs from S-CDK and DDK, which may play an important role for the proper assembly or stabilization of replisome-progression complexes.
机译:细胞周期蛋白依赖性(CDK)和Dbf4依赖性(DDK)激酶可触发所有真核生物中的DNA复制,但是这些激酶如何协同调节DNA合成尚不清楚。在这里,我们显示出萌芽期的酵母Mcm4在S期以一种依赖于Mcm4 N末端域内五个CDK磷酸受体残基的存在的方式在体内被磷酸化。这五个位点(mcm4-5A)向丙氨酸的突变消除了磷酸化,并降低了22°C时复制起点的激发效率。令人惊讶的是,功能性mcm4-5A突变的丧失使寒冷和羟基脲对功能条件DDK获得的敏感性(mcm5 / bob1突变或DDK过度表达),暗示CDK对Mcm4的磷酸化以某种方式抵消了异位DDK激活所产生的负面影响。 S期细胞周期蛋白Clb5,6的缺失具有mcm4-5A的合成致死性,并模拟了其对DDK up突变体的影响。此外,我们发现在细胞周期晚期表达的Clb5仍能抑制clb5,6 Delta bob1细胞的致死性,而有丝分裂细胞周期蛋白Clb2、3或4早期表达却不能。我们建议真核细胞Mcm4的N端延伸整合了来自S-CDK和DDK的调控输入,这可能对正确组装或稳定复制体-复合体起重要作用。

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