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Changes in Regulatory Phosphorylation of Cdc25C Ser287 and Wee1 Ser549 during Normal Cell Cycle Progression and Checkpoint Arrests

机译:Cdc25C Ser287和Wee1 Ser549正常细胞周期进程和检查点逮捕期间的规管磷酸化的变化。

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摘要

Entry into mitosis is catalyzed by cdc2 kinase. Previous work identified the cdc2-activating phosphatase cdc25C and the cdc2-inhibitory kinase wee1 as targets of the incomplete replication-induced kinase Chk1. Further work led to the model that checkpoint kinases block mitotic entry by inhibiting cdc25C through phosphorylation on Ser287 and activating wee1 through phosphorylation on Ser549. However, almost all conclusions underlying this idea were drawn from work using recombinant proteins. Here, we report that in the early Xenopus egg cell cycles, phosphorylation of endogenous cdc25C Ser287 is normally high during interphase and shows no obvious increase after checkpoint activation. By contrast, endogenous wee1 Ser549 phosphorylation is low during interphase and increases after activation of either the DNA damage or replication checkpoints; this is accompanied by a slight increase in wee1 kinase activity. Blocking mitotic entry by adding the catalytic subunit of PKA also results in increased wee1 Ser549 phosphorylation and maintenance of cdc25C Ser287 phosphorylation. These results argue that in response to checkpoint activation, endogenous wee1 is indeed a critical responder that functions by repressing the cdc2-cdc25C positive feedback loop. Surprisingly, endogenous wee1 Ser549 phosphorylation is highest during mitosis just after the peak of cdc2 activity. Treatments that block inactivation of cdc2 result in further increases in wee1 Ser549 phosphorylation, suggesting a previously unsuspected role for wee1 in mitosis.
机译:cdc2激酶催化进入有丝分裂。先前的工作将cdc2激活磷酸酶cdc25C和cdc2抑制激酶wee1确定为不完全复制诱导的激酶Chk1的靶标。进一步的工作导致了该模型,即检查点激酶通过在Ser287上的磷酸化抑制cdc25C并通过在Ser549上的磷酸化激活wee1来阻止有丝分裂进入。但是,几乎所有基于该想法的结论均来自使用重组蛋白的工作。在这里,我们报道在爪蟾卵细胞的早期周期中,内源性cdc25C Ser287的磷酸化在中间相期间通常很高,并且在检查点激活后没有明显增加。相比之下,内源性wee1 Ser549磷酸化在相间低,在DNA损伤或复制检查点激活后增加。这伴随着wee1激酶活性的轻微增加。通过添加PKA的催化亚基来阻止有丝分裂进入,还会导致wee1 Ser549磷酸化增加,并维持cdc25C Ser287磷酸化。这些结果表明,响应检查点激活,内源性wee1实际上是通过抑制cdc2-cdc25C正反馈回路起作用的关键响应者。出乎意料的是,刚好在cdc2活性峰值之后,有丝分裂期间内源性wee1 Ser549磷酸化最高。阻止cdc2失活的治疗会导致wee1 Ser549磷酸化进一步增加,这表明wee1在有丝分裂中的作用从未被怀疑。

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