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首页> 外文期刊>Molecular and Cellular Biology >Hierarchy of S-Phase-Promoting Factors: Yeast Dbf4-Cdc7 Kinase Requires Prior S-Phase Cyclin-Dependent Kinase Activation
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Hierarchy of S-Phase-Promoting Factors: Yeast Dbf4-Cdc7 Kinase Requires Prior S-Phase Cyclin-Dependent Kinase Activation

机译:S-阶段促进因素的层次结构:酵母Dbf4-Cdc7激酶需要事先S-阶段周期蛋白依赖性激酶激活。

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摘要

In all eukaryotes, the initiation of DNA synthesis requires the formation of prereplicative complexes (pre-RCs) on replication origins, followed by their activation by two S-T protein kinases, an S-phase cyclin-dependent kinase (S-CDK) and a homologue of yeast Dbf4-Cdc7 kinase (Dbf4p-dependent kinase [DDK]). Here, we show that yeast DDK activity is cell cycle regulated, though less tightly than that of the S-CDK Clb5-Cdk1, and peaks during S phase in correlation with Dbf4p levels. Dbf4p is short-lived throughout the cell cycle, but its instability is accentuated during G1 by the anaphase-promoting complex. Downregulating DDK activity is physiologically important, as joint Cdc7p and Dbf4p overexpression is lethal. Because pre-RC formation is a highly ordered process, we asked whether S-CDK and DDK need also to function in a specific order for the firing of origins. We found that both kinases are activated independently, but we show that DDK can perform its function for DNA replication only after S-CDKs have been activated. Cdc45p, a protein needed for initiation, binds tightly to chromatin only after S-CDK activation (L. Zou and B. Stillman, Science 280:593–596, 1998). We show that Cdc45p is phosphorylated by DDK in vitro, suggesting that it might be one of DDK's critical substrates after S-CDK activation. Linking the origin-bound DDK to the tightly regulated S-CDK in a dependent sequence of events may ensure that DNA replication initiates only at the right time and place.
机译:在所有真核生物中,DNA合成的开始都需要在复制起点上形成复制前复合物(pre-RCs),然后通过两个ST蛋白激酶,一个S期细胞周期蛋白依赖性激酶(S-CDK)和一个同源物对其进行激活。 Dbf4-Cdc7激酶(Dbf4p依赖性激酶[DDK])的合成。在这里,我们显示酵母DDK活性受细胞周期调节,尽管不如S-CDK Clb5-Cdk1紧密,并且在S期达到与Dbf4p水平相关的峰值。 Dbf4p在整个细胞周期中都是短暂的,但是在后期的G 1 期间,后期促进复合物会加剧Dbf4p的不稳定性。下调DDK的活性在生理上很重要,因为Cdc7p和Dbf4p联合过度表达具有致命性。由于RC前的形成是一个高度有序的过程,因此我们询问S-CDK和DDK是否也需要按照特定的顺序运行以触发起源。我们发现这两种激酶均被独立激活,但我们证明DDK仅在S-CDK被激活后才能执行其DNA复制功能。 Cdc45p是起始蛋白,仅在S-CDK激活后才能与染色质紧密结合(L. Zou和B. Stillman,Science 280:593-596,1998)。我们显示Cdc45p在体外被DDK磷酸化,表明它可能是S-CDK激活后DDK的关键底物之一。在事件的相关序列中将起源绑定的DDK与严格调控的S-CDK连接起来可以确保DNA复制仅在正确的时间和地点开始。

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