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Myc stimulates cell cycle progression through the activation of Cdk1 and phosphorylation of p27

机译:Myc通过激活CDK1和P27的磷酸化刺激细胞周期进展

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摘要

Cell cycle stimulation is a major transforming mechanism of Myc oncoprotein. This is achieved through at least three concomitant mechanisms: upregulation of cyclins and Cdks, downregulation of the Cdk inhibitors p15 and p21 and the degradation of p27. The Myc-p27 antagonism has been shown to be relevant in human cancer. To be degraded, p27 must be phosphorylated at Thr-187 to be recognized by Skp2, a component of the ubiquitination complex. We previously described that Myc induces Skp2 expression. Here we show that not only Cdk2 but Cdk1 phosphorylates p27 at the Thr-187. Moreover, Myc induced p27 degradation in murine fibroblasts through Cdk1 activation, which was achieved by Myc-dependent cyclin A and B induction. In the absence of Cdk2, p27 phosphorylation at Thr-187 was mainly carried out by cyclin A2-Cdk1 and cyclin B1-Cdk1. We also show that Cdk1 inhibition was enough for the synthetic lethal interaction with Myc. This result is relevant because Cdk1 is the only Cdk strictly required for cell cycle and the reported synthetic lethal interaction between Cdk1 and Myc.
机译:细胞周期刺激是Myc癌蛋白的主要转化机制。这是通过至少三种伴随机制实现的:关节胰蛋白酶和CDK的上调,CDK抑制剂P15和P21的下调以及P27的降解。 MYC-P27拮抗作用已被证明是在人体癌症中相关的。要降解,P27必须在THR-187处磷酸化,以通过SKP2来识别,遍在普里宁络合物的组分。我们之前描述了Myc引起skp2表达。在这里,我们不仅表明CDK2但CDK1在THR-187处磷酸化P27。此外,Myc通过CDK1活化诱导小鼠成纤维细胞的P27降解,其通过Myc依赖性细胞周期蛋白A和B诱导来实现。在没有CDK2的情况下,THR-187的P27磷酸化主要由Cyclin A2-CDK1和Cyclin B1-CDK1进行。我们还表明CDK1抑制足以让合成致死与MYC相互作用。该结果是相关的,因为CDK1是细胞周期严格所需的唯一CDK,以及CDK1和MYC之间报道的合成致死相互作用。

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