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去泛素化酶Doa4p可保护细胞免受DNA拓扑异构酶I毒物的侵害。

The deubiquitinating enzyme Doa4p protects cells from DNA topoisomerase I poisons.

作者信息

Fiorani Paola, Reid Robert J D, Schepis Antonino, Jacquiau Hervé R, Guo Hong, Thimmaiah Padma, Benedetti Piero, Bjornsti Mary-Ann

机构信息

Department of Molecular Pharmacology, St. Jude Children's Research Hospital, 332 N. Lauderdale, Memphis, TN 38105, USA.

出版信息

J Biol Chem. 2004 May 14;279(20):21271-81. doi: 10.1074/jbc.M312338200. Epub 2004 Feb 26.

Abstract

DNA topoisomerase I (Top1p) catalyzes changes in DNA topology via the formation of an enzyme-DNA covalent complex that is reversibly stabilized by the antitumor drug, camptothecin (CPT). During S-phase, collisions with replication forks convert these complexes into cytotoxic DNA lesions that trigger cell cycle arrest and cell death. To investigate cellular responses to CPT-induced DNA damage, a yeast genetic screen identified conditional tah mutants with enhanced sensitivity to self-poisoning DNA topoisomerase I mutant (Top1T722Ap), which mimics the action of CPT. Mutant alleles of three genes, DOA4, SLA1 and SLA2, were recovered. A nonsense mutation in DOA4 eliminated the catalytic residues of the Doa4p deubiquitinating enzyme, yet retained the rhodanase domain. At 36 degrees C, this doa4-10 mutant exhibited increased sensitivity to CPT, osmotic stress, and hydroxyurea, and a reversible petite phenotype. However, the accumulation of pre-vacuolar class E vesicles that was observed in doa4Delta cells was not detected in the doa4-10 mutant. Mutations in SLA1 or SLA2, which alter actin cytoskeleton architecture, induced a conditional synthetic lethal phenotype in combination with doa4-10 in the absence of DNA damage. Here actin cytoskeleton defects coincided with the enhanced fragility of large-budded cells. In contrast, the enhanced sensitivity of doa4-10 mutant cells to Top1T722Ap was unrelated to alterations in endocytosis and was selectively suppressed by increased dosage of the ribonucleotide reductase inhibitor Sml1p. Additional studies suggest a role for Doa4p in the Rad9p checkpoint response to Top1p poisons. These findings indicate a functional link between ubiquitin-mediated proteolysis and cellular resistance to CPT-induced DNA damage.

摘要

DNA拓扑异构酶I(Top1p)通过形成一种酶-DNA共价复合物来催化DNA拓扑结构的变化,这种复合物可被抗肿瘤药物喜树碱(CPT)可逆性稳定。在S期,与复制叉的碰撞会将这些复合物转化为细胞毒性DNA损伤,从而引发细胞周期停滞和细胞死亡。为了研究细胞对CPT诱导的DNA损伤的反应,一项酵母基因筛选鉴定出了对模拟CPT作用的自中毒DNA拓扑异构酶I突变体(Top1T722Ap)具有增强敏感性的条件性tah突变体。回收了三个基因DOA4、SLA1和SLA2的突变等位基因。DOA4中的一个无义突变消除了Doa4p去泛素化酶的催化残基,但保留了硫氰酸酶结构域。在36摄氏度时,这个doa4-10突变体对CPT、渗透胁迫和羟基脲表现出增强的敏感性,以及一种可逆的小菌落表型。然而,在doa4Delta细胞中观察到的前液泡E类囊泡的积累在doa4-10突变体中未被检测到。改变肌动蛋白细胞骨架结构的SLA1或SLA2中的突变,在无DNA损伤的情况下,与doa4-10组合诱导出一种条件性合成致死表型。在这里,肌动蛋白细胞骨架缺陷与大芽细胞的增强脆性相吻合。相比之下,doa4-10突变体细胞对Top1T722Ap的增强敏感性与内吞作用的改变无关,并被核糖核苷酸还原酶抑制剂Sml1p剂量的增加选择性抑制。进一步的研究表明Doa4p在Rad9p对Top1p毒物的检查点反应中起作用。这些发现表明泛素介导的蛋白水解与细胞对CPT诱导的DNA损伤的抗性之间存在功能联系。

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