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The Fcp1-Wee1-Cdk1 axis affects spindle assembly checkpoint robustness and sensitivity to antimicrotubule cancer drugs

机译:Fcp1-Wee1-Cdk1轴会影响主轴组件检查点的鲁棒性和对抗微管癌药物的敏感性

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To grant faithful chromosome segregation, the spindle assembly checkpoint (SAC) delays mitosis exit until mitotic spindle assembly. An exceedingly prolonged mitosis, however, promotes cell death and by this means antimicrotubule cancer drugs (AMCDs), that impair spindle assembly, are believed to kill cancer cells. Despite malformed spindles, cancer cells can, however, slip through SAC, exit mitosis prematurely and resist killing. We show here that the Fcp1 phosphatase and Wee1, the cyclin B-dependent kinase (cdk) 1 inhibitory kinase, play a role for this slippage/resistance mechanism. During AMCD-induced prolonged mitosis, Fcp1-dependent Wee1 reactivation lowered cdk1 activity, weakening SAC-dependent mitotic arrest and leading to mitosis exit and survival. Conversely, genetic or chemical Wee1 inhibition strengthened the SAC, further extended mitosis, reduced antiapoptotic protein Mcl-1 to a minimum and potentiated killing in several, AMCD-treated cancer cell lines and primary human adult lymphoblastic leukemia cells. Thus, the Fcp1-Wee1-Cdk1 (FWC) axis affects SAC robustness and AMCDs sensitivity.
机译:为了实现忠实的染色体分离,纺锤体装配检查点(SAC)将有丝分裂延迟到有丝分裂纺锤体装配之前。但是,过度延长的有丝分裂会促进细胞死亡,因此,有损纺锤体组装的抗微管癌药物(AMCD)被认为可以杀死癌细胞。尽管纺锤体畸形,但是癌细胞仍可以滑过SAC,过早退出有丝分裂并抵抗杀伤。我们在这里显示Fcp1磷酸酶和Wee1,细胞周期蛋白B依赖性激酶(cdk)1抑制激酶,对此滑动/抗性机制起作用。在AMCD诱导的长时间有丝分裂过程中,依赖Fcp1的Wee1重新激活降低了cdk1活性,削弱了SAC依赖的有丝分裂阻滞并导致有丝分裂退出和存活。相反,遗传或化学Wee1抑制作用增强了SAC,进一步扩大了有丝分裂,将抗凋亡蛋白Mcl-1降至最低,并增强了几种经AMCD处理的癌细胞系和原代人成年淋巴细胞白血病细胞的杀伤力。因此,Fcp1-Wee1-Cdk1(FWC)轴会影响SAC鲁棒性和AMCD灵敏度。

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