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Imbalance of the spindle-assembly checkpoint promotes spindle poison-mediated cytotoxicity with distinct kinetics

机译:主轴组件检查点的不平衡促进了与不同动力学的纺织毒药介导的细胞毒性

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Disrupting microtubule dynamics with spindle poisons activates the spindle-assembly checkpoint (SAC) and induces mitotic cell death. However, mitotic exit can occur prematurely without proper chromosomal segregation or cytokinesis by a process termed mitotic slippage. It remains controversial whether mitotic slippage increases the cytotoxicity of spindle poisons or the converse. Altering the SAC induces either mitotic cell death or mitotic slippage. While knockout of MAD2-binding protein p31comet strengthened the SAC and promoted mitotic cell death, knockout of TRIP13 had the opposite effect of triggering mitotic slippage. We demonstrated that mitotic slippage prevented mitotic cell death caused by spindle poisons, but reduced subsequent long-term survival. Weakening of the SAC also reduced cell survival in response to spindle perturbation insufficient for triggering mitotic slippage, of which mitotic exit was characterized by displaced chromosomes during metaphase. In either mitotic slippage or mitotic exit with missegregated chromosomes, cell death occurred only after one cell cycle following mitotic exit and increased progressively during subsequent cell cycles. Consistent with these results, transient inhibition of the SAC using an MPS1 inhibitor acted synergistically with spindle perturbation in inducing chromosome missegregation and cytotoxicity. The specific temporal patterns of cell death after mitotic exit with weakened SAC may reconcile the contradictory results from many previous studies.
机译:用主轴毒株破坏微管动态,激活主轴组件检查点(SAC)并诱导有丝分裂细胞死亡。然而,有丝分裂出口可以过早发生,而没有适当的染色体隔离或细胞因子通过涉及有丝分裂的滑移。无论有丝分裂是否增加主轴毒液或交谈的细胞毒性仍然存在争议。改变囊诱导有丝分裂细胞死亡或有丝分裂的滑动。虽然MAD2结合蛋白P31COMET的敲除加强了囊和促进有丝分裂性细胞死亡,但TRP13的敲除具有触发有丝分裂滑动的相反效果。我们展示了有丝分裂的滑动阻止了主轴毒药引起的有丝分裂细胞死亡,但随后的长期存活率降低。囊的弱化也减少了响应于触发有丝分裂不足的主轴扰动的细胞存活,其中包含在中期期间的染色体的染色体的特征在于这种染色体。在任何有丝分裂的滑动或有丝分裂出口的染色体中,只有在丝分裂后的一个细胞周期后发生细胞死亡并且在后续细胞周期逐渐增加。与这些结果一致,使用MPS1抑制剂对囊的瞬时抑制在诱导染色体错误和细胞毒性方面用主轴扰动协同作用。细胞死亡后的细胞死亡的特定时间模式可以与弱化囊进行有丝分裂,可以调和来自以前的许多研究的矛盾结果。

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