The Chemistry of Free-Radical-Mediated DNA Damage
- 1 January 1991
- book chapter
- Published by Springer Nature
- Vol. 58, 287-321
- https://doi.org/10.1007/978-1-4684-7627-9_10
Abstract
In the living cell, ionizing radiation can cause DNA damage by the direct effect (ionization of DNA) and the indirect effect (reaction of radicals formed in the neighborhood of DNA with DNA, e.g., OH, e aq − , H, protein- and glutathione-derived radicals). Properties of the base radical cations have been studied in model systems using SO 4 − radical to oxidize the nucleobases in aqueous solution. The pKa values of some nucleobase radical cations are reported, so are the ensuing reactions of the thymidine radical cation with water. The products of reactions are compared with those formed by OH radical attack. The reaction of e aq − with the nucleobases yields radical anions. Protonation at heteroatom sites and at carbon are discussed, and some recent results regarding the electron transfer to adjacent nucleobases as well as to 5-bromouracil are reported. A brief account is given on the reaction of carbon-centered radicals with the nucleobases. These reactions may mimic the reactions of protein-derived radicals with DNA. Glutathione is present in cells at rather high concentrations and is expected to act as an H- or electron-donor in repairing radiation-induced DNA damage (chemical repair). As thiyl radicals are known to also undergo the reverse reaction, i.e., H-abstraction from suitable solutes, some experiments are reported which probe this type of reaction with dilute DNA solutions. In some polynucleotides radical transfer from the base radical to the sugar moiety occurs with the consequence of strand breakage and base release. Some currently held mechanistic concepts are discussed. Attention is drawn to some important open questions which should be addressed in the near future.Keywords
This publication has 110 references indexed in Scilit:
- Quantum yields for the generation of hydrated electrons and single-strand breaks in poly(C), poly(A) and single-stranded DNA in aqueous solution on 20 ns laser excitation at 248 nmJournal of Photochemistry and Photobiology A: Chemistry, 1990
- Radiolysis of DNA in aqueous solution in the presence of a scavenger: A kinetic model based on a nonhomogeneous reaction of OH radicals with DNA molecules of spherical or cylindrical shapeRadiation and Environmental Biophysics, 1989
- Thiyl radical attack on polyunsaturated fatty acids: A possible route to lipid peroxidationBiochemical and Biophysical Research Communications, 1989
- Free radicals from single crystals of deoxyguanosine 5?-monophosphate (Na Salt) irradiated at low temperaturesRadiation and Environmental Biophysics, 1987
- Radiation-induced Decomposition of the Purine Bases within DNA and Related Model CompoundsInternational Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine, 1985
- Oxygen Uptake in the Radiolysis of Aqueous Solutions of Nucleic Acids and Their ConstituentsInternational Journal of Radiation Biology, 1982
- The Reactions of the 2′-deoxyadenosine Electron Adduct in Aqueous Solution. The Effects of the Radiosensitizerp-nitroacetophenone. A Pulse Spectroscopic and Pulse Conductometric StudyInternational Journal of Radiation Biology, 1981
- Isolation of 2-deoxy-d-erythro-pentonic Acid from an Alkali-labile Site in γ-irradiated DNAInternational Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine, 1977
- On the Mechanism of BUdR Sensitization: A Pulse Radiolysis Study of One Electron Transfe in Nucleic-acid DerivativesInternational Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine, 1972
- Photochemical and .gamma.-ray-induced reactions of purines and purine nucleosides with 2-propanolJournal of the American Chemical Society, 1969