首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Kinetics of p53 Activation Versus Cyclin E Accumulation Underlies the Relationship between the Spindle-assembly Checkpoint and the Postmitotic Checkpoint
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The Kinetics of p53 Activation Versus Cyclin E Accumulation Underlies the Relationship between the Spindle-assembly Checkpoint and the Postmitotic Checkpoint

机译:p53激活与细胞周期蛋白E积累的动力学 成为主轴组件检查点和主轴之间的关系的基础 后有丝分裂 检查站

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摘要

Although cells can exit mitotic block aberrantly by mitotic slippage, they are prevented from becoming tetraploids by a p53-dependent postmitotic checkpoint. Intriguingly, disruption of the spindle-assembly checkpoint also compromises the postmitotic checkpoint. The precise mechanism of the interplay between these two pivotal checkpoints is not known. We found that after prolonged nocodazole exposure, the postmitotic checkpoint was facilitated by p53. We demonstrated that although disruption of the mitotic block by a MAD2-binding protein promoted slippage, it did not influence the activation of p53. Both p53 and its downstream target p21CIP1/WAF1 were activated at the same rate irrespective of whether the spindle-assembly checkpoint was enforced or not. The accelerated S phase entry, as reflected by the premature accumulation of cyclin E relative to the activation of p21CIP1/WAF1, is the reason for the uncoupling of the postmitotic checkpoint. In support of this hypothesis, forced premature mitotic exit with a specific CDK1 inhibitor triggered DNA replication without affecting the kinetics of p53 activation. Finally, replication after checkpoint bypass was boosted by elevating the level of cyclin E. These observations indicate that disruption of the spindle-assembly checkpoint does not directly influence p53 activation, but the shortening of the mitotic arrest allows cyclin E-CDK2 to be activated before the accumulation of p21CIP1/WAF1. These data underscore the critical relationship between the spindle-assembly checkpoint and the postmitotic checkpoint in safeguarding chromosomal stability.
机译:尽管细胞可以通过有丝分裂滑移异常地退出有丝分裂区,但是通过p53依赖的有丝分裂后检查点可以防止它们变成四倍体。有趣的是,主轴组件检查点的破坏也损害了有丝分裂后检查点。这两个关键检查点之间相互作用的精确机制尚不清楚。我们发现,延长诺考达唑暴露后,p53促进了有丝分裂后检查点。我们证明,尽管通过MAD2结合蛋白破坏有丝分裂阻滞促进了滑移,但它并不影响p53的激活。无论是否强制执行主轴组件检查点,p53及其下游目标p21 CIP1 / WAF1 均以相同的速率激活。周期蛋白E相对于p21 CIP1 / WAF1 激活的过早积累反映出加速的S期进入是有丝分裂后检查点解偶联的原因。为支持这一假设,用特定的CDK1抑制剂强迫过早有丝分裂退出可触发DNA复制,而不会影响p53激活的动力学。最终,通过提高细胞周期蛋白E的水平来促进检查点旁路后的复制。 观察表明,主轴组件检查点的破坏确实 不是直接影响p53激活,而是有丝分裂的缩短 阻滞使细胞周期蛋白E-CDK2在积累之前被激活 p21 CIP1 / WAF1 。这些数据强调了关键 主轴装配检查点与有丝分裂后的关系 维护染色体稳定性的检查点。

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