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Mitotic crossing-over by anticancer drugs in Saccharomyces cerevisiae strain D5
1Cancer Research Laboratory, University of Auckland Medical School, New Zealand.
Abstract:
Treatment with an anticancer drug causing mitotic crossing-over could lead to expression of recessive genes, previously masked in a heterozygote. Used clinically, such drugs might cause an increased risk of cancer in cases of familial tumours, such as Wilm's tumour or retinoblastoma. Potentially, novel forms of drug resistance could also be unmasked by such a recombinogenic event. We have estimated the extent of this potential problem in current clinical drugs by comparing a range of antitumour agents for ability to cause mitotic crossing-over in Saccharomyces cerevisiae strain D5. We have compared these data with ability to cause an increase in total aberrant colonies in the same experiments. Although many of the agents known to cause point mutation also have some ability for mitotic crossing-over, there are also point mutagens which have little recombinogenic potential. Conversely, some effective recombinogens appear to be either very specific or rather ineffective point mutagens. Although the most generally effective agents in the present experiments were alkylating agents, several other types of drug including DNA-cutting agents, topoisomerase inhibitors, other DNA-binding drugs and antimetabolites may stimulate mitotic crossing-over. None of the mitotic inhibitors or the DNA minor groove binding drugs tested caused recombinogenic events. It would seem that the ability to induce mitotic crossing-over is an important endpoint in its own right. Assays for this event might provide an important complement to other assays commonly required for registration of new pharmaceuticals.
Insights
Certain anticancer drugs can cause genetic recombination, potentially increasing cancer risk and drug resistance. This study evaluated various anticancer agents for their ability to induce mitotic crossing-over in yeast, highlighting the importance of this endpoint in pharmaceutical safety assessments.
Area of Science:
- Genetics
- Cancer Biology
- Pharmacology
Background:
- Anticancer drugs can induce mitotic crossing-over, potentially unmasking recessive genes.
- This process may increase cancer risk in individuals with familial tumor predispositions (e.g., Wilms' tumor, retinoblastoma).
- Novel drug resistance mechanisms could also be revealed by recombinogenic events.
Purpose of the Study:
- To assess the potential of current clinical anticancer drugs to induce mitotic crossing-over.
- To compare the recombinogenic potential of various antitumour agents.
- To evaluate the correlation between mitotic crossing-over induction and increased aberrant colonies.
Main Methods:
- Utilized Saccharomyces cerevisiae strain D5 to test a range of antitumour agents.
- Assessed the ability of drugs to induce mitotic crossing-over.
- Quantified the increase in total aberrant colonies for each drug.
Main Results:
- Many point mutagens showed some capacity for mitotic crossing-over, but not all.
- Some effective recombinogens were weak point mutagens.
- Alkylating agents were generally most effective, but DNA-cutting agents, topoisomerase inhibitors, DNA-binding drugs, and antimetabolites also stimulated mitotic crossing-over.
- Mitotic inhibitors and DNA minor groove binders did not induce recombinogenic events.
Conclusions:
- The ability to induce mitotic crossing-over is a significant biological endpoint.
- Assays for mitotic crossing-over could complement standard pharmaceutical registration tests.
- Understanding drug-induced recombination is crucial for assessing cancer risk and drug resistance.