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Fine Tuning the Cell Cycle: Activation of the Cdk1 Inhibitory Phosphorylation Pathway during Mitotic Exit

机译:微调细胞周期:有丝分裂退出过程中的Cdk1抑制性磷酸化途径的激活。

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Inactivation of cyclin-dependent kinase (Cdk) 1 promotes exit from mitosis and establishes G1. Proteolysis of cyclin B is the major known mechanism that turns off Cdk1 during mitotic exit. Here, we show that mitotic exit also activates pathways that catalyze inhibitory phosphorylation of Cdk1, a mechanism previously known to repress Cdk1 only during S and G2 phases of the cell cycle. We present evidence that down-regulation of Cdk1 activates Wee1 and Myt1 kinases and inhibits Cdc25 phosphatase during the M to G1 transition. If cyclin B/Cdk1 complex is present in G1, the inhibitory sites on Cdk1 become phosphorylated. Exit from mitosis induced by chemical Cdk inhibition can be reversed if cyclin B is preserved. However, this reversibility decreases with time after mitotic exit despite the continued presence of the cyclin. We show that this G1 block is due to phosphorylation of Cdk1 on inhibitory residues T14 and Y15. Chemical inhibition of Wee1 and Myt1 or expression of Cdk1 phosphorylation site mutants allows reversal to M phase even from late G1. This late Cdk1 reactivation often results in caspase-dependent cell death. Thus, in G1, the Cdk inhibitory phosphorylation pathway is functional and can lock Cdk1 in the inactive state.
机译:细胞周期蛋白依赖性激酶(Cdk)1的失活促进有丝分裂的退出并建立G1。细胞周期蛋白B的蛋白水解是有丝分裂退出过程中关闭Cdk1的主要已知机制。在这里,我们显示有丝分裂退出也激活催化Cdk1的抑制性磷酸化的途径,该机制以前仅在细胞周期的S和G2期抑制Cdk1。我们目前的证据表明,下调Cdk1激活Wee1和Myt1激酶,并在M到G1过渡期间抑制Cdc25磷酸酶。如果G1中存在细胞周期蛋白B / Cdk1复合物,则Cdk1上的抑制位点会被磷酸化。如果保留了细胞周期蛋白B,则可以逆转化学Cdk抑制诱导的有丝分裂退出。但是,尽管细胞周期蛋白持续存在,但有丝分裂退出后,这种可逆性会随着时间而降低。我们显示此G1块是由于抑制残基T14和Y15上Cdk1的磷酸化所致。化学抑制Wee1和Myt1或Cdk1磷酸化位点突变体的表达,甚至可以从G1晚期逆转至M期。后期的Cdk1重新激活通常会导致caspase依赖性细胞死亡。因此,在G1中,Cdk抑制磷酸化途径是有功能的,可以将Cdk1锁定在非活性状态。

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