Kim R A, Wang J C
Department of Biochemistry and Molecular Biology, Harvard University, Cambridge, Massachusetts 02138-2092.
J Biol Chem. 1992 Aug 25;267(24):17178-85.
The TOP3 gene of the yeast Saccharomyces cerevisiae was postulated to encode a DNA topoisomerase, based on its sequence homology to Escherichia coli DNA topoisomerase I and the suppression of the poor growth phenotype of top3 mutants by the expression of the E. coli enzyme (Wallis, J.W., Chrebet, G., Brodsky, G., Golfe, M., and Rothstein, R. (1989) Cell 58, 409-419). We have purified the yeast TOP3 gene product to near homogeneity as a 74-kDA protein from yeast cells lacking DNA topoisomerase I and overexpressing a plasmid-borne TOP3 gene linked to a phosphate-regulated yeast PHO5 gene promoter. The purified protein possesses a distinct DNA topoisomerase activity: similar to E. coli DNA topoisomerases I and III, it partially relaxes negatively but not positively supercoiled DNA. Several experiments, including the use of a negatively supercoiled heteroduplex DNA containing a 29-nucleotide single-stranded loop, indicate that the activity has a strong preference for single-stranded DNA. A protein-DNA covalent complex in which the 74-kDa protein is linked to a 5' DNA phosphoryl group has been identified, and the nucleotide sequences of 30 sites of DNA-protein covalent complex formation have been determined. These sequences differ from those recognized by E. coli DNA topoisomerase I but resemble those recognized by E. coli DNA topoisomerase III. Based on these results, the yeast TOP3 gene product can formally be termed S. cerevisiae DNA topoisomerase III. Analysis of supercoiling of intracellular yeast plasmids in various DNA topoisomerase mutants indicates that yeast DNA topoisomerase III has at most a weak activity in relaxing negatively supercoiled double-stranded DNA in vivo, in accordance with the characteristics of the purified enzyme.
基于酿酒酵母TOP3基因与大肠杆菌DNA拓扑异构酶I的序列同源性,以及大肠杆菌酶的表达对top3突变体生长不良表型的抑制作用(Wallis, J.W., Chrebet, G., Brodsky, G., Golfe, M., and Rothstein, R. (1989) Cell 58, 409 - 419),推测该基因编码一种DNA拓扑异构酶。我们已从缺乏DNA拓扑异构酶I且过表达与磷酸调节的酵母PHO5基因启动子相连的质粒携带的TOP3基因的酵母细胞中,将酵母TOP3基因产物纯化为一种74-kDa的蛋白质,纯度接近均一。纯化后的蛋白质具有独特的DNA拓扑异构酶活性:与大肠杆菌DNA拓扑异构酶I和III相似,它能部分松弛负超螺旋DNA,但不能松弛正超螺旋DNA。包括使用含有29个核苷酸单链环的负超螺旋异源双链DNA在内的多项实验表明,该活性对单链DNA有强烈偏好。已鉴定出一种蛋白质-DNA共价复合物,其中74-kDa蛋白质与5' DNA磷酸基团相连,并确定了30个DNA-蛋白质共价复合物形成位点的核苷酸序列。这些序列与大肠杆菌DNA拓扑异构酶I识别的序列不同,但与大肠杆菌DNA拓扑异构酶III识别的序列相似。基于这些结果,酵母TOP3基因产物可正式称为酿酒酵母DNA拓扑异构酶III。对各种DNA拓扑异构酶突变体中细胞内酵母质粒超螺旋的分析表明,酵母DNA拓扑异构酶III在体内松弛负超螺旋双链DNA的活性至多较弱,这与纯化酶特性相符。