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对耐抗肿瘤药物安吖啶的酵母DNA拓扑异构酶II突变体的分析。

Analysis of yeast DNA topoisomerase II mutants resistant to the antitumor drug amsacrine.

作者信息

Wasserman R A, Wang J C

机构信息

Department of Biochemistry and Molecular Biology, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Cancer Res. 1994 Apr 1;54(7):1795-800.

PMID:8137294
Abstract

Site-directed mutagenesis of regions within a plasmid-borne yeast TOP2 gene encoding DNA topoisomerase II and hydroxylamine mutagenesis of the entire plasmid were carried out, and the mutagenized plasmid DNA pools were used separately to transform yeast with a temperature-sensitive top2-4 mutation in the chromosomal TOP2 locus. By selecting transformants that grow in the presence of the antitumor drug amsacrine at 35 degrees C, a nonpermissive temperature for the top2-4 allele, plasmid-borne top2 mutants expressing amsacrine-resistant and physiologically functional DNA topoisomerase II were readily obtained. The causality between amsacrine resistance and the presence of these mutations in yeast DNA topoisomerase II has been firmly established, and this causality in turn shows that, in yeast at least, DNA topoisomerase II is the only significant cellular target of amsacrine. Three classes of such mutants have been identified: one involves single or multiple changes in a sequence PLRGK-MLN located at positions 474-481 of yeast DNA topoisomerase II, a highly conserved motif in all type II DNA topoisomerases; a second involving a single mutation changing Ala642 to threonine or glycine; and a third involving deletions of portions of the carboxy-terminal domain of the yeast enzyme. The nature of drug resistance of these different classes of mutants is discussed. The approaches used in this work should be readily applicable to yeast cells expressing heterologous DNA topoisomerases such as human DNA topoisomerase II alpha. Other DNA topoisomerase II-targeting drugs can also be studied in such a system.

摘要

对编码DNA拓扑异构酶II的质粒携带的酵母TOP2基因内的区域进行定点诱变,并对整个质粒进行羟胺诱变,然后分别使用诱变后的质粒DNA库转化在染色体TOP2位点带有温度敏感型top2-4突变的酵母。通过选择在35℃(top2-4等位基因的非允许温度)下在抗肿瘤药物安吖啶存在时生长的转化体,很容易获得表达抗安吖啶且具有生理功能的DNA拓扑异构酶II的质粒携带的top2突变体。安吖啶抗性与酵母DNA拓扑异构酶II中这些突变的存在之间的因果关系已得到确证,而这种因果关系反过来表明,至少在酵母中,DNA拓扑异构酶II是安吖啶唯一重要的细胞靶点。已鉴定出三类此类突变体:一类涉及酵母DNA拓扑异构酶II第474-481位的序列PLRGK-MLN中的单个或多个变化,这是所有II型DNA拓扑异构酶中的一个高度保守基序;第二类涉及单个突变,将Ala642变为苏氨酸或甘氨酸;第三类涉及酵母酶羧基末端结构域部分的缺失。讨论了这些不同类突变体的耐药性性质。这项工作中使用的方法应该很容易应用于表达异源DNA拓扑异构酶如人DNA拓扑异构酶IIα的酵母细胞。其他靶向DNA拓扑异构酶II的药物也可以在这样的系统中进行研究。

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