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Nek2A的降解标志着在从前期到前中期的转变过程中,纺锤体检查点限制的Cdc20激活了后期促进复合物/细胞周期体(APC/C)。

Nek2A destruction marks APC/C activation at the prophase-to-prometaphase transition by spindle-checkpoint-restricted Cdc20.

作者信息

Boekhout Michiel, Wolthuis Rob

机构信息

Division of Cell Biology I (B5) and Division of Molecular Carcinogenesis (B7), The Netherlands Cancer Institute (NKI-AvL), 1066 CX Amsterdam, The Netherlands.

Division of Cell Biology I (B5) and Division of Molecular Carcinogenesis (B7), The Netherlands Cancer Institute (NKI-AvL), 1066 CX Amsterdam, The Netherlands Department of Clinical Genetics (Division of Oncogenetics), VUmc and VUmc Cancer Center Amsterdam, CCA/V-ICI Research Program Oncogenesis, VUmc Medical Faculty, 1081 HV Amsterdam, The Netherlands

出版信息

J Cell Sci. 2015 Apr 15;128(8):1639-53. doi: 10.1242/jcs.163279. Epub 2015 Feb 11.

Abstract

Nek2 isoform A (Nek2A) is a presumed substrate of the anaphase-promoting complex/cyclosome containing Cdc20 (APC/C(Cdc20)). Nek2A, like cyclin A, is degraded in mitosis while the spindle checkpoint is active. Cyclin A prevents spindle checkpoint proteins from binding to Cdc20 and is recruited to the APC/C in prometaphase. We found that Nek2A and cyclin A avoid being stabilized by the spindle checkpoint in different ways. First, enhancing mitotic checkpoint complex (MCC) formation by nocodazole treatment inhibited the degradation of geminin and cyclin A, whereas Nek2A disappeared at a normal rate. Second, depleting Cdc20 effectively stabilized cyclin A but not Nek2A. Nevertheless, Nek2A destruction crucially depended on Cdc20 binding to the APC/C. Third, in contrast to cyclin A, Nek2A was recruited to the APC/C before the start of mitosis. Interestingly, the spindle checkpoint very effectively stabilized an APC/C-binding mutant of Nek2A, which required the Nek2A KEN box. Apparently, in cells, the spindle checkpoint primarily prevents Cdc20 from binding destruction motifs. Nek2A disappearance marks the prophase-to-prometaphase transition, when Cdc20, regardless of the spindle checkpoint, activates the APC/C. However, Mad2 depletion accelerated Nek2A destruction, showing that spindle checkpoint release further increases APC/C(Cdc20) catalytic activity.

摘要

Nek2同工型A(Nek2A)被认为是包含Cdc20的后期促进复合物/细胞周期体(APC/C(Cdc20))的底物。与细胞周期蛋白A一样,Nek2A在有丝分裂且纺锤体检查点活跃时会被降解。细胞周期蛋白A可阻止纺锤体检查点蛋白与Cdc20结合,并在前中期被招募至APC/C。我们发现,Nek2A和细胞周期蛋白A以不同方式避免被纺锤体检查点稳定。首先,用诺考达唑处理增强有丝分裂检查点复合物(MCC)的形成会抑制geminin和细胞周期蛋白A的降解,而Nek2A则以正常速率消失。其次,耗尽Cdc20可有效稳定细胞周期蛋白A,但不能稳定Nek2A。然而,Nek2A的降解关键取决于Cdc20与APC/C的结合。第三,与细胞周期蛋白A不同,Nek2A在有丝分裂开始前就被招募至APC/C。有趣的是,纺锤体检查点能非常有效地稳定Nek2A的一种APC/C结合突变体,该突变体需要Nek2A的KEN框。显然,在细胞中,纺锤体检查点主要阻止Cdc20与破坏基序结合。Nek2A的消失标志着前期到前中期的转变,此时无论纺锤体检查点如何,Cdc20都会激活APC/C。然而,Mad2的耗尽加速了Nek2A的降解,表明纺锤体检查点的释放进一步增加了APC/C(Cdc20)的催化活性。

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