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Conditional expression of wild-type topoisomerase II complements a mutant enzyme in mammalian cells
J P Eder1, V T Chan, E Niemierko
1Department of Medicine, Beth Israel Hospital, Boston, Massachusetts 02215.
Abstract:
Alterations in the amino acid composition, phosphorylation pattern, or intracellular levels of topoisomerase II have been associated with resistance to antineoplastic agents whose effects are mediated through interactions with this enzyme. To develop a model system with which to investigate the determinants of topoisomerase II sensitivity or resistance to antineoplastic agents that target this enzyme, a cDNA encoding the wild-type Drosophila melanogaster topoisomerase II was ligated into a mammalian expression vector containing a glucocorticoid-inducible mouse mammary tumor virus promoter and transfected into an epipodophyllotoxin-resistant Chinese hamster ovary cell line (VPM(r)-5). In two transfectants carrying an intact, full-length Drosophila topoisomerase II cDNA, exposure to the inducing agent, dexamethasone (10 microM), resulted in complementation of the endogenous mutant topoisomerase II and phenotypic reversion to etoposide sensitivity. In the presence of glucocorticoid, etoposide-induced cytotoxicity increased 20-fold, despite the fact that Drosophila topoisomerase II mRNA expression was only 0.1% of that of the endogenous mammalian topoisomerase II. Induced cells demonstrated a marked increase in DNA single strand breaks compared with uninduced resistant cells, thereby providing biochemical evidence supporting increased DNA strand cleavage due to activation of the Drosophila enzyme. These observations demonstrate the ability of a wild-type Drosophila topoisomerase II to complement a mutant mammalian enzyme and suggest that transfectants capable of conditional topoisomerase II expression represent a useful model for studies of the biochemical pharmacology and structure-function relationships of normal and mutant enzymes.
Insights
A novel model system using Drosophila topoisomerase II (Topo II) was developed. This system successfully reverted drug-resistant cells to drug sensitivity, aiding studies on Topo II function and drug resistance.
Area of Science:
- Molecular Biology
- Biochemistry
- Genetics
Background:
- Topoisomerase II (Topo II) alterations are linked to antineoplastic agent resistance.
- Understanding Topo II's role in drug sensitivity is crucial for cancer therapy.
Purpose of the Study:
- To create a model system for investigating Topo II sensitivity and resistance mechanisms.
- To explore the functional complementation of mutant mammalian Topo II with Drosophila Topo II.
Main Methods:
- Cloning Drosophila Topo II cDNA into a mammalian expression vector.
- Transfecting the vector into an epipodophyllotoxin-resistant Chinese hamster ovary cell line.
- Inducing Drosophila Topo II expression using dexamethasone and assessing etoposide sensitivity.
Main Results:
- Drosophila Topo II expression restored etoposide sensitivity in resistant cells.
- Etoposide-induced cytotoxicity increased 20-fold upon induction.
- Biochemical evidence showed increased DNA single-strand breaks, indicating enhanced DNA cleavage.
Conclusions:
- Wild-type Drosophila Topo II can functionally complement a mutant mammalian enzyme.
- Conditional Topo II expression transfectants are valuable for studying enzyme pharmacology and structure-function relationships.
- This model aids in understanding antineoplastic agent resistance and developing new therapies.