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依托泊苷作用于人类拓扑异构酶IIα的双药模型。

A two-drug model for etoposide action against human topoisomerase IIalpha.

作者信息

Bromberg Kenneth D, Burgin Alex B, Osheroff Neil

机构信息

Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.

出版信息

J Biol Chem. 2003 Feb 28;278(9):7406-12. doi: 10.1074/jbc.M212056200. Epub 2002 Dec 8.

Abstract

The widely used anticancer drug etoposide kills cells by increasing levels of topoisomerase II-mediated DNA breaks. While it is known that the drug acts by inhibiting the ability of topoisomerase II to ligate cleaved DNA molecules, the precise mechanism by which it accomplishes this action is not well understood. Because there are two scissile bonds per enzyme-mediated double-stranded DNA break, it has been assumed that there are two sites for etoposide in every cleavage complex. However, it is not known whether the action of etoposide at only one scissile bond is sufficient to stabilize a double-stranded DNA break or whether both drug sites need to be occupied. An oligonucleotide system was utilized to address this important issue. Results of DNA cleavage and ligation assays support a two-drug model for the action of etoposide against human topoisomerase IIalpha. This model postulates that drug interactions at both scissile bonds are required in order to increase enzyme-mediated double-stranded DNA breaks. Etoposide actions at either of the two scissile bonds appear to be independent of one another, with each individual drug molecule stabilizing a strand-specific nick rather than a double-stranded DNA break. This finding suggests (at least in the presence of drug) that there is little or no communication between the two promoter active sites of topoisomerase II. The two-drug model has implications for cancer chemotherapy, the cellular processing of etoposide-stabilized enzyme-DNA cleavage complexes, and the catalytic mechanism of eukaryotic topoisomerase II.

摘要

广泛使用的抗癌药物依托泊苷通过增加拓扑异构酶II介导的DNA断裂水平来杀死细胞。虽然已知该药物通过抑制拓扑异构酶II连接切割后的DNA分子的能力起作用,但其实现这一作用的精确机制尚不清楚。由于每个酶介导的双链DNA断裂有两个可切割键,因此人们认为在每个切割复合物中存在两个依托泊苷结合位点。然而,尚不清楚依托泊苷仅作用于一个可切割键是否足以稳定双链DNA断裂,或者两个药物结合位点是否都需要被占据。利用一个寡核苷酸系统来解决这个重要问题。DNA切割和连接试验的结果支持了依托泊苷作用于人类拓扑异构酶IIα的双药物模型。该模型假设两个可切割键处的药物相互作用都是增加酶介导的双链DNA断裂所必需的。依托泊苷在两个可切割键中任何一个处的作用似乎是相互独立的,每个单独的药物分子稳定一个链特异性切口而非双链DNA断裂。这一发现表明(至少在有药物存在的情况下)拓扑异构酶II的两个启动子活性位点之间几乎没有或不存在相互作用。双药物模型对癌症化疗、依托泊苷稳定的酶-DNA切割复合物的细胞处理以及真核拓扑异构酶II的催化机制具有重要意义。

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