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喜树碱抗性真核拓扑异构酶I的DNA催化改变的特征分析

Characterization of an altered DNA catalysis of a camptothecin-resistant eukaryotic topoisomerase I.

作者信息

Gromova I I, Kjeldsen E, Svejstrup J Q, Alsner J, Christiansen K, Westergaard O

机构信息

Department of Molecular Biology, University of Aarhus, Denmark.

出版信息

Nucleic Acids Res. 1993 Feb 11;21(3):593-600. doi: 10.1093/nar/21.3.593.

Abstract

We investigated topoisomerase I activity at a specific camptothecin-enhanced cleavage site by use of a partly double-stranded DNA substrate. The cleavage site belongs to a group of DNA topoisomerase I sites which is only efficiently cleaved by wild-type topoisomerase I (topo I-wt) in the presence of camptothecin. With a mutated camptothecin-resistant form of topoisomerase I (topo I-K5) previous attempts to reveal cleavage activity at this site have failed. On this basis it was questioned whether the mutant enzyme has an altered DNA sequence recognition or a changed rate of catalysis at the site. Utilizing a newly developed assay system we demonstrate that topo I-K5 not only recognizes and binds to the strongly camptothecin-enhanced cleavage site but also has considerable cleavage/religation activity at this particular DNA site. Thus, topo I-K5 has a 10-fold higher rate of catalysis and a 10-fold higher affinity for DNA relative to topo I-wt. Our data indicate that the higher cleavage/religation activity of topo I-K5 is a result of improved DNA binding and a concomitant shift in the equilibrium between cleavage and religation towards the religation step. Thus, a recently identified point mutation which characterizes the camptothecin-resistant topo I-K5 has altered the enzymatic catalysis without disturbing the DNA sequence specificity of the enzyme.

摘要

我们使用部分双链DNA底物,研究了在特定喜树碱增强的切割位点处的拓扑异构酶I活性。该切割位点属于一组DNA拓扑异构酶I位点,只有在喜树碱存在的情况下,野生型拓扑异构酶I(topo I-wt)才能有效地切割该位点。对于突变的喜树碱抗性形式的拓扑异构酶I(topo I-K5),此前揭示该位点切割活性的尝试均告失败。在此基础上,有人质疑突变酶在该位点是否具有改变的DNA序列识别能力或催化速率。利用新开发的检测系统,我们证明topo I-K5不仅能识别并结合到喜树碱强烈增强的切割位点,而且在这个特定的DNA位点还具有相当可观的切割/连接活性。因此,相对于topo I-wt,topo I-K5的催化速率高10倍,对DNA的亲和力也高10倍。我们的数据表明,topo I-K5较高的切割/连接活性是DNA结合改善以及切割与连接之间的平衡向连接步骤转移的结果。因此,最近鉴定出的一个表征喜树碱抗性topo I-K5的点突变改变了酶催化作用,而没有干扰酶的DNA序列特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6dd/309157/84515dd8601d/nar00052-0231-a.jpg

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