Unigruppe am Max-Planck-Institut für Züchtungsforschung, Max-Delbrück-Laboratorium, Lehrstuhl für Botanik III, Universität zu Köln, Köln, Germany.
Plant Cell. 2009 Nov;21(11):3641-54. doi: 10.1105/tpc.109.070417. Epub 2009 Nov 30.
Entry into mitosis is universally controlled by cyclin-dependent kinases (CDKs). A key regulatory event in metazoans and fission yeast is CDK activation by the removal of inhibitory phosphate groups in the ATP binding pocket catalyzed by Cdc25 phosphatases. In contrast with other multicellular organisms, we show here that in the flowering plant Arabidopsis thaliana, cell cycle control does not depend on sudden changes in the phosphorylation pattern of the PSTAIRE-containing Cdk1 homolog CDKA;1. Consistently, we found that neither mutants in a previously identified CDC25 candidate gene nor plants in which it is overexpressed display cell cycle defects. Inhibitory phosphorylation of CDKs is also the key event in metazoans to arrest cell cycle progression upon DNA damage. However, we show here that the DNA damage checkpoint in Arabidopsis can also operate independently of the phosphorylation of CDKA;1. These observations reveal a surprising degree of divergence in the circuitry of highly conserved core cell cycle regulators in multicellular organisms. Based on biomathematical simulations, we propose a plant-specific model of how progression through the cell cycle could be wired in Arabidopsis.
有丝分裂的进入普遍受到细胞周期蛋白依赖性激酶(CDK)的控制。在后生动物和裂殖酵母中,一个关键的调节事件是 Cdc25 磷酸酶催化的 ATP 结合口袋中抑制性磷酸基团的去除,从而激活 CDK。与其他多细胞生物不同,我们在这里表明,在开花植物拟南芥中,细胞周期控制不依赖于 PSTAIRE 包含的 Cdk1 同源物 CDKA;1 的磷酸化模式的突然变化。一致地,我们发现,以前鉴定的 CDC25 候选基因中的突变体,以及其过表达的植物都没有表现出细胞周期缺陷。在真核生物中,CDK 的抑制性磷酸化也是在 DNA 损伤时阻止细胞周期进程的关键事件。然而,我们在这里表明,拟南芥中的 DNA 损伤检查点也可以独立于 CDKA;1 的磷酸化来运作。这些观察结果揭示了多细胞生物中高度保守的核心细胞周期调控因子的电路在很大程度上的分歧。基于生物数学模拟,我们提出了一个植物特有的模型,说明在拟南芥中如何通过细胞周期。