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An APC/C-Cdh1 Biosensor Reveals the Dynamics of Cdh1 Inactivation at the G1/S Transition

机译:APC / C-Cdh1生物传感器揭示了G1 / S过渡时Cdh1失活的动力学

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摘要

B-type cyclin-dependent kinase activity must be turned off for mitotic exit and G1 stabilization. B-type cyclin degradation is mediated by the anaphase-promoting complex/cyclosome (APC/C); during and after mitotic exit, APC/C is dependent on Cdh1. Cdh1 is in turn phosphorylated and inactivated by cyclin-CDK at the Start transition of the new cell cycle. We developed a biosensor to assess the cell cycle dynamics of APC/C-Cdh1. Nuclear exit of the G1 transcriptional repressor Whi5 is a known marker of Start; APC/C-Cdh1 is inactivated 12 min after Whi5 nuclear exit with little measurable cell-to-cell timing variability. Multiple phosphorylation sites on Cdh1 act in a redundant manner to repress its activity. Reducing the number of phosphorylation sites on Cdh1 can to some extent be tolerated for cell viability, but it increases variability in timing of APC/C-Cdh1 inactivation. Mutants with minimal subsets of phosphorylation sites required for viability exhibit striking stochasticity in multiple responses including budding, nuclear division, and APC/C-Cdh1 activity itself. Multiple cyclin-CDK complexes, as well as the stoichiometric inhibitor Acm1, contribute to APC/C-Cdh1 inactivation; this redundant control is likely to promote rapid and reliable APC/C-Cdh1 inactivation immediately following the Start transition.
机译:B型细胞周期蛋白依赖性激酶活性必须关闭,以实现有丝分裂退出和G1稳定。 B型细胞周期蛋白降解是由促进后期的复合物/环体(APC / C)介导的。有丝分裂退出期间和之后,APC / C依赖于Cdh1。在新细胞周期的开始过渡期,Cdh1被细胞周期蛋白-CDK磷酸化和灭活。我们开发了一种生物传感器来评估APC / C-Cdh1的细胞周期动力学。 G1转录阻遏物Whi5的核出口是Start的已知标记; Whi5核退出后12分钟,APC / C-Cdh1被灭活,几乎没有可测量的细胞间时序差异。 Cdh1上的多个磷酸化位点以多余的方式起作用以抑制其活性。可以容忍Cdh1上磷酸化位点数量的减少,以提高细胞活力,但会增加APC / C-Cdh1失活时间的可变性。具有活力所需的磷酸化位点的子集最少的突变体在包括萌芽,核分裂和APC / C-Cdh1活性本身在内的多种反应中表现出惊人的随机性。多种细胞周期蛋白-CDK复合物以及化学计量抑制剂Acm1导致APC / C-Cdh1失活。在开始转换后,这种冗余控制可能会促进APC / C-Cdh1快速可靠的灭活。

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