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Periodic Cyclin-Cdk Activity Entrains an Autonomous Cdc14 Release Oscillator

机译:周期性Cyclin-Cdk活动带动自主Cdc14释放振荡器

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One oscillation of Cyclin-dependent kinase (Cdk) activity, largely driven by periodic synthesis and destruction of cyclins, is tightly coupled to a singlecomplete eukaryotic cell division cycle. Tight linkage of different steps in diverse cell-cycle processes to Cdk activity has been proposed to explain this coupling. Here, we demonstrate an intrinsically oscillatory module controlling nucleolar release and resequestration of the Cdc14 phosphatase, which is essential for mitotic exit in budding yeast. We find that this Cdc14 release oscillator functions at constant and physiological cyclin-Cdk levels, and is therefore independent of the Cdk oscillator. However, the frequency of the release oscillator is regulated by cyclin-Cdk activity. This observation together with its mechanism suggests that the intrinsically autonomous Cdc14 release cycles are locked at once-per-cell-cycle through entrainment by the Cdk oscillator in wild-type cells. This concept may have broad implications for the structure and evolution of eukaryotic cell-cycle control.
机译:细胞周期蛋白依赖性激酶(Cdk)活性的一次振荡主要由周期蛋白的周期性合成和破坏驱动,与单个完整的真核细胞分裂周期紧密相关。已经提出了不同细胞周期过程中不同步骤与Cdk活性的紧密联系来解释这种偶联。在这里,我们证明了固有的振荡模块控制核仁释放和Cdc14磷酸酶的重新隔离,这对于发芽酵母中的有丝分裂退出至关重要。我们发现,此Cdc14释放振荡器在恒定和生理周期素Cdk水平上起作用,因此与Cdk振荡器无关。但是,释放振荡器的频率由细胞周期蛋白Cdk活性调节。该观察结果及其机制表明,通过野生型细胞中Cdk振荡器的夹带,固有的自主Cdc14释放周期被锁定在每个细胞周期一次。这个概念可能对真核细胞周期调控的结构和演化具有广泛的意义。

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