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细胞周期蛋白 E 的失调通过过早激活 Cdc25C 来损害有丝分裂的进程。

Cyclin E deregulation impairs mitotic progression through premature activation of Cdc25C.

机构信息

Department of Experimental Radiation Oncology, University of Texas M.D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Cancer Res. 2010 Jun 15;70(12):5085-95. doi: 10.1158/0008-5472.CAN-09-4095. Epub 2010 Jun 8.

Abstract

The cyclin E-cyclin-dependent kinase 2 (CDK2) complex accelerates entry into the S phase of the cell cycle and promotes polyploidy, which may contribute to genomic instability in cancer cells. The effect of low molecular weight isoforms of cyclin E (LMW-E) overexpression on mitotic progression and its link to genomic instability were the focus of this study. Here, we show that full-length cyclin E (EL) and LMW-E overexpression impairs the G(2)-M transition differently by targeting dual-specificity phosphatase Cdc25C activity. We identify Cdc25C as an interaction partner and substrate for cyclin E/CDK2 kinase. Specifically, the cyclin E/CDK2 complex phosphorylates Cdc25C on Ser(214), leading to its premature activation, which coincides with higher cyclin B/CDK1 and Polo-like kinase 1 (PLK1) activities in an S-phase-enriched population that result in faster mitotic entry. Whereas EL overexpression leads to hyperactivation of Cdc25C, cyclin B/CDK1, and PLK1 in a G(2)-M-enriched population, LMW-E overexpression causes premature inactivation of Cdc25C and PLK1, leading to faster mitotic exit. In addition, LMW-E-overexpressing cells showed a reduction in the mitotic index in the presence of a spindle poison and faster degradation of cyclin B, suggesting an increased rate of mitotic slippage and adaptation to the spindle checkpoint. Lastly, downregulation of Cdc25C inhibits LMW-E-mediated chromosome missegregation, anaphase bridges, and centrosome amplification. These results suggest that the high levels of LMW-E isoforms found in breast cancer may contribute to cellular transformation and genomic instability by impairing mitotic progression involving Cdc25C.

摘要

细胞周期蛋白 E-细胞周期蛋白依赖性激酶 2(CDK2)复合物加速细胞周期进入 S 期,并促进多倍体形成,这可能导致癌细胞的基因组不稳定。本研究的重点是低分子量细胞周期蛋白 E 同工型(LMW-E)过表达对有丝分裂进程的影响及其与基因组不稳定性的关系。在这里,我们表明全长细胞周期蛋白 E(EL)和 LMW-E 过表达通过靶向双特异性磷酸酶 Cdc25C 活性,以不同的方式损害 G2-M 过渡。我们确定 Cdc25C 是细胞周期蛋白 E/CDK2 激酶的相互作用伙伴和底物。具体而言,细胞周期蛋白 E/CDK2 复合物在丝氨酸 214 上磷酸化 Cdc25C,导致其过早激活,这与更高的细胞周期蛋白 B/CDK1 和 Polo 样激酶 1(PLK1)活性在富含 S 期的群体中同时发生,导致更快的有丝分裂进入。虽然 EL 过表达导致富含 G2-M 的群体中 Cdc25C、细胞周期蛋白 B/CDK1 和 PLK1 的过度激活,但 LMW-E 过表达导致 Cdc25C 和 PLK1 的过早失活,导致更快的有丝分裂退出。此外,LMW-E 过表达的细胞在纺锤体毒素存在下有丝分裂指数降低,细胞周期蛋白 B 降解更快,表明有丝分裂滑溜和对纺锤体检查点的适应速度加快。最后,下调 Cdc25C 抑制 LMW-E 介导的染色体错分、后期桥和中心体扩增。这些结果表明,乳腺癌中发现的高水平 LMW-E 同工型可能通过损害涉及 Cdc25C 的有丝分裂进程,导致细胞转化和基因组不稳定。

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