Modeling the Action of an Antitumor Drug: A Density Functional Theory Study of the Mechanism of Tirapazamine
Density functional theory methods are employed to investigate experimentally proposed mechanisms by which the antitumor drug tirapazamine may react with a DNA sugar-C1‘ radical to give the sugar derivative deoxyribonolactone, with concomitant DNA strand breakage. For the previously proposed minor pa...
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Veröffentlicht in: | Journal of the American Chemical Society 2001-08, Vol.123 (30), p.7320-7325 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Density functional theory methods are employed to investigate experimentally proposed mechanisms by which the antitumor drug tirapazamine may react with a DNA sugar-C1‘ radical to give the sugar derivative deoxyribonolactone, with concomitant DNA strand breakage. For the previously proposed minor pathway, ionization of the sugar-C1‘ radical by tirapazamine, the calculated ionization energy, and the electron affinity of the models of the sugar-C1‘ radical of DNA and tirapazamine suggest that tirapazamine must be protonated to be able to oxidize the sugar-C1‘ radical. The preferred mechanism for reaction of tirapazamine with a sugar-C1‘ radical, in agreement with experimental observations, is found to proceed by direct attack of an N-oxide oxygen of tirapazamine at the sugar-C1‘ position, followed by homolytic cleavage of the N−O bond of the drug moiety. Possible alternative mechanisms are also investigated. |
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ISSN: | 0002-7863 1520-5126 |
DOI: | 10.1021/ja010772a |