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抗肿瘤药物对真核生物拓扑异构酶II的DNA切割/连接反应的影响:依托泊苷对DNA连接的抑制作用。

Effect of antineoplastic agents on the DNA cleavage/religation reaction of eukaryotic topoisomerase II: inhibition of DNA religation by etoposide.

作者信息

Osheroff N

机构信息

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

出版信息

Biochemistry. 1989 Jul 25;28(15):6157-60. doi: 10.1021/bi00441a005.

Abstract

Beyond its essential physiological functions, topoisomerase II is the primary cellular target for a number of clinically relevant antineoplastic drugs. Although the chemotherapeutic efficacies of these drugs correlate with their abilities to stabilize the covalent topoisomerase II-DNA cleavage complex, their molecular mechanism of action has yet to be described. In order to characterize the drug-induced stabilization of this enzyme-DNA complex, the effect of etoposide on the DNA cleavage/religation reaction of Drosophila melanogaster topoisomerase II was studied. Under the conditions employed, etoposide increased levels of enzyme-mediated double-stranded DNA cleavage 5-6-fold and single-stranded cleavage approximately 4-fold. Maximal stimulation was observed at 80-100 microM etoposide with 50% of the maximal effect at approximately 15 microM drug. By employing a topoisomerase II mediated DNA religation assay [Osheroff, N. & Zechiedrich, E.L. (1987) Biochemistry 26, 4303-4309], etoposide was found to stabilize the enzyme-DNA cleavage complex (at least in part) by inhibiting the enzyme's ability to religate cleaved DNA. Moreover, in order for the drug to affect religation, it has to be present at the time of DNA cleavage.

摘要

除了其基本的生理功能外,拓扑异构酶II是多种临床相关抗肿瘤药物的主要细胞靶点。尽管这些药物的化疗效果与其稳定共价拓扑异构酶II-DNA裂解复合物的能力相关,但其分子作用机制尚未阐明。为了表征药物诱导的这种酶-DNA复合物的稳定性,研究了依托泊苷对黑腹果蝇拓扑异构酶II的DNA裂解/连接反应的影响。在所采用的条件下,依托泊苷使酶介导的双链DNA裂解水平增加了5-6倍,单链裂解增加了约4倍。在80-100微摩尔依托泊苷时观察到最大刺激,在约15微摩尔药物时达到最大效应的50%。通过使用拓扑异构酶II介导的DNA连接测定法[Osheroff, N. & Zechiedrich, E.L. (1987) Biochemistry 26, 4303-4309],发现依托泊苷通过抑制酶重新连接裂解DNA的能力来稳定酶-DNA裂解复合物(至少部分如此)。此外,为了使药物影响连接,它必须在DNA裂解时存在。

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