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Coupling of T161 and T14 phosphorylations protects cyclin B–CDK1 from premature activation

机译:T161和T14磷酸化的结合可保护细胞周期蛋白B–CDK1免受过早激活

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Mitosis is triggered by the abrupt dephosphorylation of inhibitory Y15 and T14 residues of cyclin B1–bound cyclin-dependent kinase (CDK)1 that is also phosphorylated at T161 in its activation loop. The sequence of events leading to the accumulation of fully phosphorylated cyclin B1–CDK1 complexes remains unclear. Two-dimensional gel electrophoresis allowed us to determine whether T14, Y15, and T161 phosphorylations occur on same CDK1 molecules and to characterize the physiological occurrence of their seven phosphorylation combinations. Intriguingly, in cyclin B1–CDK1, the activating T161 phosphorylation never occurred without the T14 phosphorylation. This strict association could not be uncoupled by a substantial reduction of T14 phosphorylation in response to Myt1 knockdown, suggesting some causal relationship. However, T14 phosphorylation was not directly required for T161 phosphorylation, because Myt1 knockdown did uncouple these phosphorylations when leptomycin B prevented cyclin B1–CDK1 complexes from accumulating in cytoplasm. The coupling mechanism therefore depended on unperturbed cyclin B1–CDK1 traffic. The unexpected observation that the activating phosphorylation of cyclin B1–CDK1 was tightly coupled to its T14 phosphorylation, but not Y15 phosphorylation, suggests a mechanism that prevents premature activation by constitutively active CDK-activating kinase. This explained the opposite effects of reduced expression of Myt1 and Wee1, with only the latter inducing catastrophic mitoses.
机译:有丝分裂是由细胞周期蛋白B1结合的细胞周期蛋白依赖性激酶(CDK)1的抑制性Y15和T14残基突然去磷酸化而触发的,在激活环的T161处也被磷酸化。导致完全磷酸化细胞周期蛋白B1-CDK1复合物积累的事件顺序尚不清楚。二维凝胶电泳使我们能够确定在相同的CDK1分子上是否发生T14,Y15和T161磷酸化,并表征了其七个磷酸化组合的生理发生。有趣的是,在细胞周期蛋白B1-CDK1中,没有T14磷酸化就不会发生活化的T161磷酸化。严格的关联不能通过响应Myt1敲低的T14磷酸化的大幅降低而解除,这表明存在某种因果关系。但是,T161磷酸化并不直接需要T14磷酸化,因为当瘦霉素B阻止细胞周期蛋白B1-CDK1复合物在细胞质中积累时,Myt1敲除确实使这些磷酸化解偶联。因此,耦合机制取决于不受干扰的细胞周期蛋白B1-CDK1流量。出乎意料的观察发现,细胞周期蛋白B1-CDK1的活化磷酸化与其T14磷酸化紧密相关,而与Y15磷酸化紧密相关,这提示了一种机制,可以通过组成型活性CDK活化激酶阻止过早活化。这解释了Myt1和Wee1表达减少的相反效果,仅后者诱导了灾难性有丝分裂。

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