Homologous recombination is a highly conserved determinant of the synergistic cytotoxicity between cisplatin and DNA topoisomerase I poisons
Autor: | Robert C.A.M. van Waardenburg, Laurina A. de Jong, Foke van Delft, Maria A.J. van Eijndhoven, Melanie Bohlander, Mary-Ann Bjornsti, Jaap Brouwer, Jan H.M. Schellens |
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Rok vydání: | 2004 |
Předmět: | |
Zdroj: | Molecular Cancer Therapeutics. 3:393-402 |
ISSN: | 1538-8514 1535-7163 |
Popis: | Phase I and II clinical trails are currently investigating the antitumor activity of cisplatin and camptothecins (CPTs; DNA topoisomerase I poisons), based on the dramatic synergistic cytotoxicity of these agents in some preclinical models. However, the mechanistic basis for this synergism is poorly understood. By exploiting the evolutionary conservation of DNA repair pathways from genetically tractable organisms such as budding and fission yeasts to mammalian cells, we demonstrate that the synergism of CPT and cisplatin requires homologous recombination. In yeast and mammalian cell lines defective for RAD52 and XRCC2/3, respectively, the combination of these agents proved antagonistic, while greater than additive activity was evident in isogenic wild-type cells. Homologous recombination appears to mediate a similar interaction of X-rays and CPT, but antagonizes the synergism of cytarabine (Ara-C) with CPT. These findings suggest that homologous recombination comprises an evolutionarily conserved determinant of cellular sensitivity when CPTs are used in combination with other therapeutics. |
Databáze: | OpenAIRE |
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