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白色念珠菌TOP2基因的分子克隆与表达使得在酵母中研究真菌DNA拓扑异构酶II抑制剂成为可能。

Molecular cloning and expression of the Candida albicans TOP2 gene allows study of fungal DNA topoisomerase II inhibitors in yeast.

作者信息

Keller B A, Patel S, Fisher L M

机构信息

Molecular Genetics Group, Department of Cellular and Molecular Sciences, St. George's Hospital Medical School, University of London, Cranmer Terrace, London SW17 0RE, U.K.

出版信息

Biochem J. 1997 May 15;324 ( Pt 1)(Pt 1):329-39. doi: 10.1042/bj3240329.

Abstract

Candida albicans topoisomerase II, encoded by the TOP2 gene, mediates chromosome segregation by a double-strand DNA break mechanism and is a potential target for anti-fungal therapy. In this paper, we report the characterization of the C. albicans TOP2 gene and its use to develop a yeast system that allows the identification and study of anti-fungal topoisomerase II inhibitors in vivo. The gene, specifying a 1461-residue polypeptide with only 40% identity with human topoisomerase IIalpha and beta isoforms, was isolated from C. albicans on a 6.3 kb EcoRI fragment that mapped to chromosome 4. It was used to construct a plasmid in which TOP2 expresses a recombinant enzyme (residues 57-1461 of C. albicans topoisomerase II fused to the first five residues of Saccharomyces cerevisiae topoisomerase II) under the control of a galactose-inducible promoter. The plasmid rescued the lethal phenotype of a temperature-sensitive S. cerevisiae DNA topoisomerase II mutant allowing growth at 35 degrees C. Yeast cells, bearing ISE2 permeability and rad52 double-strand-break-repair mutations the growth of which at 35 degrees C was dependent on C. albicans topoisomerase II, were killed by the known topoisomerase II inhibitors amsacrine and doxorubicin. Parallel experiments in yeast expressing human topoisomerase IIalpha allowed the relative sensitivities of the fungal and host topoisomerases to be examined in the same genetic background. To compare the killing in vivo with drug inhibition in vitro, the recombinant C. albicans topoisomerase II protein was expressed and purified to near-homogeneity from S. cerevisiae yielding a 160 kDa polypeptide that displayed the expected ATP-dependent DNA-relaxation and DNA-decatenation activities. The enzyme, whether examined in vitro or complementing in S. cerevisiae, was comparably sensitive to amsacrine and doxorubicin. Our results suggest that potential topoisomerase II-targeting anti-fungal inhibitors can be identified and studied in S. cerevisiae.

摘要

由TOP2基因编码的白色念珠菌拓扑异构酶II通过双链DNA断裂机制介导染色体分离,是抗真菌治疗的潜在靶点。在本文中,我们报道了白色念珠菌TOP2基因的特征及其在开发酵母系统中的应用,该系统可在体内鉴定和研究抗真菌拓扑异构酶II抑制剂。该基因编码一个1461个氨基酸的多肽,与人类拓扑异构酶IIα和β亚型仅有40%的同源性,从白色念珠菌中分离得到一个6.3 kb的EcoRI片段,该片段定位于4号染色体。它被用于构建一个质粒,其中TOP2在半乳糖诱导型启动子的控制下表达一种重组酶(白色念珠菌拓扑异构酶II的57-1461位氨基酸与酿酒酵母拓扑异构酶II的前五个氨基酸融合)。该质粒挽救了温度敏感型酿酒酵母DNA拓扑异构酶II突变体的致死表型,使其能够在35℃下生长。携带ISE2通透性和rad52双链断裂修复突变的酵母细胞,其在35℃下的生长依赖于白色念珠菌拓扑异构酶II,被已知的拓扑异构酶II抑制剂安吖啶和阿霉素杀死。在表达人类拓扑异构酶IIα的酵母中进行的平行实验,使得能够在相同的遗传背景下检测真菌和宿主拓扑异构酶的相对敏感性。为了比较体内杀伤与体外药物抑制情况,从酿酒酵母中表达并纯化了重组白色念珠菌拓扑异构酶II蛋白,使其接近均一性,得到一个160 kDa的多肽,该多肽表现出预期的ATP依赖性DNA松弛和DNA解连环活性。无论在体外检测还是在酿酒酵母中进行互补实验,该酶对安吖啶和阿霉素的敏感性相当。我们的结果表明,潜在的靶向拓扑异构酶II的抗真菌抑制剂可以在酿酒酵母中进行鉴定和研究。

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