Isolation and characterization of a gene encoding DNA topoisomerase I inDrosophila melanogaster
Open Access
- 11 December 1992
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 20 (23), 6177-6182
- https://doi.org/10.1093/nar/20.23.6177
Abstract
We synthesized a DNA probe specific for the gene encoding eucaryotic DNA topoisomerase I by the polymerase chain reaction. The sequences of the primers for this reaction were deduced from the regions with extensive homology among the enzymes from the fission and budding yeasts, and the human. From the clones isolated by screening a Drosophila cDNA library with this DNA probe, two cDNA clones of 3.8 and 5.2 kb were characterized and completely sequenced. Both cDNA sequences contain an identical open reading frame for 972 amino acid residues, The 3.8 kb messenger RNA is likely generated by using a polyadenylation site 5′ upstream to that used in generating the 5.2 kb mRNA. The predicted amino acid sequence shows that a segment of 420 amino acid residues at the amino terminus is hydrophilic, similar to the amino terminal 200 residues in the yeast and human enzymes. Furthermore, the Drosophila enzyme is unique in that the amino terminal 200 residues are enriched in serine and histidine residues; most of them are present in clusters. The rest of the Drosophila sequence is highly homologous to those from yeast and human enzymes. The evoiutionarily conserved residues are identified and are likely the critical elements for the structure and function of this enzyme. A plasmid vector containing the cloned cDNA was constructed for the expression of Drosophila protein in Escherichia coli. The enzymatic and immunochemical analysis of the polypeptide produced in this heterologous expression system demonstrated that the expressed protein shares similar enzymatic properties and antigenic epitopes with DNA topoisomerase I purified from Drosophila embryos or tissue culture cells, thus establishing the bacterial expression system being useful for the future structure/function analysis of the Drosophila enzyme.Keywords
This publication has 28 references indexed in Scilit:
- DNA topoisomerases: why so many?Journal of Biological Chemistry, 1991
- [6] Use of T7 RNA polymerase to direct expression of cloned genesMethods in Enzymology, 1990
- A hyper-recombination mutation in S. cerevisiae identifies a novel eukaryotic topoisomeraseCell, 1989
- Peptide sequencing and site-directed mutagenesis identify tyrosine-727 as the active site tyrosine of Saccharomyces cerevisiae DNA topoisomerase I.Proceedings of the National Academy of Sciences, 1989
- A high molecular weight topoisomerase I from Xenopus laevis ovariesJournal of Biological Chemistry, 1989
- Mitotic recombination in the rDNA of S. cerevisiae is suppressed by the combined action of DNA topoisomerases I and IICell, 1988
- cDNA cloning of human DNA topoisomerase I: catalytic activity of a 67.7-kDa carboxyl-terminal fragment.Proceedings of the National Academy of Sciences, 1988
- Cloning and sequencing ofSchizosaccharomyces pombeDNA topoisomerase I gene, and effect of gene disruptionNucleic Acids Research, 1987
- Double strand DNA cleavage by type II DNA topoisomerase from Drosophila melanogaster.Journal of Biological Chemistry, 1983
- Screening λgt Recombinant Clones by Hybridization to Single Plaques in SituScience, 1977