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在感染猿猴病毒40的猴细胞中鉴定DNA拓扑异构酶II为抗肿瘤鬼臼毒素的细胞内靶点。

Identification of DNA topoisomerase II as an intracellular target of antitumor epipodophyllotoxins in simian virus 40-infected monkey cells.

作者信息

Yang L, Rowe T C, Liu L F

出版信息

Cancer Res. 1985 Nov;45(11 Pt 2):5872-6.

PMID:2996763
Abstract

The effect of antitumor epipodophyllotoxins, etoposide (VP-16) and teniposide (VM-26), on chromosomal DNA in mammalian cells was studied using SV40 virus-infected monkey cells as a model system. Treatment of SV40 virus-infected monkey cells with these drugs results in DNA breaks on intracellular SV40 DNA. The broken DNA strands are sensitive to phenol extraction, suggesting that they are associated with tightly linked protein(s). Several pieces of evidence suggest that DNA topoisomerase II is covalently linked to the broken SV40 DNA strands following drug treatment. ovobiocin, an inhibitor of topoisomerase II, blocks the epipodophyllotoxin-induced SV40 DNA breaks in vivo and in vitro. Epipodophyllotoxin-induced cleavage sites on intracellular SV40 DNA are strikingly similar to those produced on purified SV40 DNA by purified calf thymus DNA topoisomerase II. The protein-linked SV40 DNA is specifically immunoprecipitated by antisera against topoisomerase II. We thus conclude that epipodophyllotoxins induce chromosomal DNA breakage via DNA topoisomerase II. The physiological effects of epipodophyllotoxins on cell death, chromosomal DNA breakage, sister chromatid exchanges, and chromosomal aberrations may be the consequence of drug interaction with DNA topoisomerase II. Our present results are also consistent with the proposal that epipodophyllotoxins interfere with the breakage-reunion reaction of DNA topoisomerase II by stabilizing an enzyme-DNA complex in its putative cleavable state.

摘要

以感染SV40病毒的猴细胞为模型系统,研究了抗肿瘤鬼臼毒素——依托泊苷(VP - 16)和替尼泊苷(VM - 26)对哺乳动物细胞染色体DNA的影响。用这些药物处理感染SV40病毒的猴细胞会导致细胞内SV40 DNA出现DNA断裂。断裂的DNA链对酚抽提敏感,这表明它们与紧密相连的蛋白质有关。几条证据表明,药物处理后DNA拓扑异构酶II与断裂的SV40 DNA链共价相连。拓扑异构酶II抑制剂卵清霉素在体内和体外均能阻断鬼臼毒素诱导的SV40 DNA断裂。细胞内SV40 DNA上由鬼臼毒素诱导的切割位点与纯化的小牛胸腺DNA拓扑异构酶II在纯化的SV40 DNA上产生 的切割位点惊人地相似。与蛋白质相连的SV40 DNA被抗拓扑异构酶II的抗血清特异性免疫沉淀。因此,我们得出结论,鬼臼毒素通过DNA拓扑异构酶II诱导染色体DNA断裂。鬼臼毒素对细胞死亡、染色体DNA断裂、姐妹染色单体交换和染色体畸变的生理作用可能是药物与DNA拓扑异构酶II相互作用的结果。我们目前的结果也与以下观点一致,即鬼臼毒素通过稳定处于假定可切割状态的酶 - DNA复合物来干扰DNA拓扑异构酶II的断裂 - 重连反应。

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