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Regulation of Cdc2/cyclin B activation in Xenopus egg extracts via inhibitory phosphorylation of Cdc25C phosphatase by Ca2+/calmodium-dependent kinase II

机译:爪蟾卵提取物中Cdc2 / cyclin B活化通过Ca2 + /钙调依赖激酶II抑制Cdc25C磷酸酶磷酸化而调节

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Activation of Cdc2/cyclin B kinase and entry into mitosis requires dephosphorylation of inhibitory sites on Cdc2 by Cdc25 phosphatase. In vertebrates, Cdc25C is inhibited by phosphorylation at a single site targeted by the checkpoint kinases Chk1 and Cds1/Chk2 in response to DNA damage or replication arrest. In Xenopus early embryos, the inhibitory site on Cdc25C (S287) is also phosphorylated by a distinct protein kinase that may determine the intrinsic timing of the cell cycle. We show that S287-kinase activity is repressed in extracts of unfertilized Xenopus eggs arrested in M phase but is rapidly stimulated upon release into interphase by addition of Ca2+, which mimics fertilization. S287-kinase activity is not dependent on cyclin B degradation or inactivation of Cdc2/cyclin B kinase, indicating a direct mechanism of activation by Ca2+. Indeed, inhibitor studies identify the predominant S287-kinase as Ca2+/calmodulin-dependent protein kinase II (CaMKII). CaMKII phosphorylates Cdc25C efficiently on S287 in vitro and, like Chk1, is inhibited by 7-hydroxystaurosporine (UCN-01) and debromohymenialdisine, compounds that abrogate G2 arrest in somatic cells. CaMKII delays Cdc2/cyclin B activation via phosphorylation of Cdc25C at S287 in egg extracts, indicating that this pathway regulates the timing of mitosis during the early embryonic cell cycle. [References: 89]
机译:Cdc2 / cyclin B激酶的激活和进入有丝分裂需要Cdc25磷酸酶对Cdc2抑制位点进行去磷酸化。在脊椎动物中,响应于DNA损伤或复制停滞,Cdc25C在受检查点激酶Chk1和Cds1 / Chk2靶向的单个位点被磷酸化抑制。在非洲爪蟾早期胚胎中,Cdc25C(S287)上的抑制位点也被独特的蛋白激酶磷酸化,该蛋白激酶可能决定细胞周期的内在时机。我们显示,S287激酶活性在M期停滞的未受精非洲爪蟾卵提取物中得到抑制,但在通过添加模仿模拟受精的Ca2 +释放入相间时迅速受到刺激。 S287激酶活性不依赖于细胞周期蛋白B降解或Cdc2 /细胞周期蛋白B激酶的失活,表明Ca2 +激活的直接机制。确实,抑制剂研究确定了主要的S287激酶为Ca2 + /钙调蛋白依赖性蛋白激酶II(CaMKII)。 CaMKII在体外可在S287上有效地磷酸化Cdc25C,并且与Chk1一样,被7-羟基星形孢菌素(UCN-01)和去溴膜上的双鸟嘌呤抑制,后者消除了G2在体细胞中的停滞。 CaMKII通过卵提取物中S287处Cdc25C的磷酸化来延迟Cdc2 / cyclin B激活,表明该途径调节了早期胚胎细胞周期中的有丝分裂时间。 [参考:89]

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