The highly robust control of cell cycles in eukaryotes enables cells to undergo strictly ordered G1/S/G2/M phases and respond adaptively to regulatory signals; however the nature of the robustness remains obscure. Specifically, it is unclear whether events of signaling should be strictly ordered and whether some events are more robust than others. To quantitatively address the two questions, we have developed a novel cell cycle model upon experimental observations. It contains positive and negative E2F proteins and two Cdk inhibitors, and is parameterized, for the first time, to generate not only oscillating protein concentrations but also periodic signaling events. Events and their orders reconstructed under varied conditions indicate that proteolysis of cyclins and Cdk complexes by APC and Skp2 occurs highly robustly in a strict order, but many other events are either dispensable or can occur in flexible orders. These results suggest that strictly ordered proteolytic events are essential for irreversible cell cycle progression and the robustness of cell cycles copes with flexible orders of signaling events, and unveil a new and important dimension to the robustness of cell cycle control in particular and to biological signaling in general.
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机译:对真核生物中细胞周期的高度鲁棒控制使细胞能够经历严格有序的G1 / S / G2 / M期并适应调节信号。但是,健壮性的性质仍然晦涩难懂。具体而言,尚不清楚是否应该严格地对信令事件进行排序,以及某些事件是否比其他事件更健壮。为了定量解决这两个问题,我们根据实验观察结果开发了一种新型的细胞周期模型。它包含阳性和阴性E2F蛋白和两种Cdk抑制剂,并且首次被参数化,不仅产生振荡蛋白浓度,而且还产生周期性的信号事件。在各种条件下重建的事件及其顺序表明,APC和Skp2对细胞周期蛋白和Cdk复合物的蛋白水解作用严格按照严格顺序发生,但许多其他事件不是必需的,也可以灵活顺序发生。这些结果表明严格有序的蛋白水解事件对于不可逆的细胞周期进程是必不可少的,细胞周期的稳健性可以应对信号事件的灵活顺序,并且揭示了细胞周期控制的稳健性尤其是生物信号传导的新的重要维度。一般。
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