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从人拓扑异构酶II cDNA中分离出诱导对拓扑异构酶II相互作用细胞毒性药物产生抗性的遗传抑制元件。

Isolation of genetic suppressor elements, inducing resistance to topoisomerase II-interactive cytotoxic drugs, from human topoisomerase II cDNA.

作者信息

Gudkov A V, Zelnick C R, Kazarov A R, Thimmapaya R, Suttle D P, Beck W T, Roninson I B

机构信息

Department of Genetics, University of Illinois, Chicago 60612-7309.

出版信息

Proc Natl Acad Sci U S A. 1993 Apr 15;90(8):3231-5. doi: 10.1073/pnas.90.8.3231.

Abstract

Many cytotoxic anticancer drugs act at topoisomerase II (topo II) by stabilizing cleavable complexes with DNA formed by this enzyme. Several cell lines, selected for resistance to topo II-interactive drugs, show decreased expression or activity of topo II, suggesting that such a decrease may be responsible for drug resistance. In the present study, etoposide resistance was used as the selection strategy to isolate genetic suppressor elements (GSEs) from a retroviral library expressing random fragments of human topo II (alpha form) cDNA. Twelve GSEs were isolated, encoding either peptides corresponding to short segments of the topo II alpha molecule (2.4-6.5% of the protein) or 163- to 220-bp-long antisense RNA sequences. Expression of a GSE encoding antisense RNA led to decreased cellular expression of the topo II alpha protein. Both types of GSE induced resistance to several topo II poisons but not to drugs that do not act at topo II. These results provide direct evidence that inhibition of topo II results in resistance to topo II-interactive drugs, indicate structural domains of topo II capable of independent functional interactions, and demonstrate that expression selection of random fragments constitutes an efficient approach to the generation of GSEs in mammalian cells.

摘要

许多细胞毒性抗癌药物通过稳定由该酶与DNA形成的可裂解复合物来作用于拓扑异构酶II(topo II)。几种对topo II相互作用药物具有抗性的细胞系显示topo II的表达或活性降低,这表明这种降低可能是耐药性的原因。在本研究中,依托泊苷抗性被用作选择策略,从表达人topo II(α形式)cDNA随机片段的逆转录病毒文库中分离遗传抑制元件(GSEs)。分离出12个GSEs,它们编码的要么是与topo IIα分子短片段相对应的肽(占蛋白质的2.4 - 6.5%),要么是163至220个碱基对长的反义RNA序列。编码反义RNA的GSE的表达导致topo IIα蛋白的细胞表达降低。这两种类型的GSE都诱导了对几种topo II毒物的抗性,但对不作用于topo II的药物没有抗性。这些结果提供了直接证据,即topo II的抑制导致对topo II相互作用药物的抗性,表明topo II能够进行独立功能相互作用的结构域,并证明随机片段的表达选择构成了在哺乳动物细胞中产生GSEs的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b008/46273/131194d267c3/pnas01467-0125-a.jpg

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