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ATG5 is induced by DNA-damaging agents and promotes mitotic catastrophe independent of autophagy

机译:ATG5由DNA破坏剂诱导并促进有丝分裂灾难,而与自噬无关

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Anticancer drug therapy activates both molecular cell death and autophagy pathways. Here we show that even sublethal concentrations of DNA-damaging drugs, such as etoposide and cisplatin, induce the expression of autophagy-related protein 5 (ATG5), which is both necessary and sufficient for the subsequent induction of mitotic catastrophe. We demonstrate that ATG5 translocates to the nucleus, where it physically interacts with survivin in response to DNA-damaging agents both in vitro and in carcinoma tissues obtained from patients who had undergone radiotherapy and/or chemotherapy. As a consequence, elements of the chromosomal passenger complex are displaced during mitosis, resulting in chromosome misalignment and segregation defects. Pharmacological inhibition of autophagy does not prevent ATG5-dependent mitotic catastrophe, but shifts the balance to an early caspase-dependent cell death. Our data suggest a dual role for ATG5 in response to drug-induced DNA damage, where it acts in two signalling pathways in two distinct cellular compartments, the cytosol and the nucleus.
机译:抗癌药物疗法可激活分子细胞死亡和自噬途径。在这里,我们显示,甚至致死浓度的DNA破坏性药物(如依托泊苷和顺铂)也能诱导自噬相关蛋白5(ATG5)的表达,这对于随后的有丝分裂灾难的诱导既是必要的又是足够的。我们证明,ATG5易位至细胞核,在体内与Survivin相互作用,对DNA损伤剂产生反应,这在体外以及在从放疗和/或化疗患者体内获得的癌组织中均如此。结果,在有丝分裂过程中染色体乘客复合体的元素被置换,导致染色体错位和分离缺陷。自噬的药理学抑制作用不能阻止ATG5依赖的有丝分裂灾难,但可以将平衡转移到早期依赖caspase的细胞死亡。我们的数据表明ATG5在药物诱导的DNA损伤中起双重作用,它在两个不同的细胞区室(细胞质和细胞核)中的两个信号传导途径中起作用。

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