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Brd4 Is Required for Recovery from Antimicrotubule Drug-induced Mitotic Arrest: Preservation of Acetylated Chromatin

机译:从抗微管药物引起的有丝分裂逮捕中恢复需要Brd4:乙酰化染色质的保存

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The mammalian bromodomain protein Brd4 interacts with mitotic chromosomes by binding to acetylated histone H3 and H4 and is thought to play a role in epigenetic memory. Mitotic cells are susceptible to antimicrotubule drugs. These drugs activate multiple response pathways and arrest cells at mitosis. We found that Brd4 was rapidly released from chromosomes upon treatment with antimicrotubule drugs, including the reversible agent nocodazole. Yet, when nocodazole was withdrawn, Brd4 was reloaded onto chromosomes, and cells proceeded to complete cell division. However, cells in which a Brd4 allele was disrupted (Brd4+/-), and expressing only half of the normal Brd4 levels, were defective in reloading Brd4 onto chromosomes. Consequently, Brd4+/- cells were impaired in their ability to recover from nocodazole-induced mitotic arrest: a large fraction of +/- cells failed to reach anaphase after drug withdrawal, and those that entered anaphase showed an increased frequency of abnormal chromosomal segregation. The reloading defect observed in Brd4+/- cells coincided with selective hypoacetylation of lysine residues on H3 and H4. The histone deacetylase inhibitor trichostatin A increased global histone acetylation and perturbed nocodazole-induced Brd4 unloading. Brd4 plays an integral part in a cellular response to drug-induced mitotic stress by preserving a properly acetylated chromatin status.
机译:哺乳动物的溴结构域蛋白Brd4通过与乙酰化的组蛋白H3和H4结合而与有丝分裂染色体相互作用,并被认为在表观遗传记忆中起作用。有丝分裂细胞对抗微管药物敏感。这些药物激活多种反应途径,并在有丝分裂时阻止细胞。我们发现,在使用抗微管药物(包括可逆剂诺考达唑)进行治疗后,Brd4迅速从染色体上释放出来。然而,当撤出诺考达唑时,Brd4重新加载到染色体上,细胞继续完成细胞分裂。但是,其中Brd4等位基因被破坏的细胞(Brd4 +/-),仅表达正常Brd4水平的一半,在将Brd4重新加载到染色体上时存在缺陷。因此,Brd4 +/-细胞从诺考达唑诱导的有丝分裂停滞中恢复的能力受损:撤药后,大部分+/-细胞未能到达后期,进入后期的细胞显示异常染色体分离的频率增加。在Brd4 +/-细胞中观察到的重载缺陷与H3和H4上赖氨酸残基的选择性低乙酰化相吻合。组蛋白脱乙酰基酶抑制剂曲古抑菌素A增加了整体组蛋白的乙酰化作用,并干扰了诺考达唑诱导的Brd4卸载。通过保持适当的乙酰化染色质状态,Brd4在细胞对药物诱导的有丝分裂应激的反应中起着不可或缺的作用。

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