A Comparison of DNA Damages Produced under Conditions of Direct and Indirect Action of Radiation
- 1 January 1994
- journal article
- research article
- Published by Taylor & Francis in International Journal of Radiation Biology
- Vol. 66 (5) , 441-445
- https://doi.org/10.1080/09553009414551431
Abstract
Studies using a 32P-postlabelling assay reveal that at both low and high concentrations of hydroxyl radical scavenger, DNA damage from α-irradiation is similar to that from γ-irradiation. At low concentrations of scavenger the identified damages are predominantly thymine glycol (Tg) and phosphoglycolate (pg) lesions, indicative of indirect hydroxyl radical (·OH) action. However, at high concentrations of scavenger (i.e. where direct effects are expected to dominate) a somewhat different pattern of damage is observed after α- and γ-irradiation, with several novel lesions detected. Further experiments, in which the results of DMSO scavenging of irradiated DNA solutions are compared with glycerol scavenging and irradiation of ‘dry’ solid DNA, demonstrate that both direct effects and scavenger-derived secondary radicals contribute to the different spectra of lesions observed upon irradiation of highly scavenged DNA systems. Generally, irradiation under conditions that favour direct damage result in a lower relative yield of pg, whilst for the highly scavenged systems Tg damages persist. To account for this we propose that Tg are efficiently produced by direct action in these systems. Differences seen upon irradiation of the ‘dry’ system, compared with those of dilute aqueous solution, suggest that direct action yields a distinct spectrum of lesions.Keywords
This publication has 9 references indexed in Scilit:
- AldoseHealth Physics, 1991
- Phosphorus-32-postlabeling detection of radiation-induced DNA damage: identification and estimation of thymine glycols and phosphoglycolate terminiBiochemistry, 1991
- The Initial Physical Damage Produced by Ionizing RadiationsInternational Journal of Radiation Biology, 1989
- DNA Damage in Frozen Aqueous Solution: Sequence Dependence and end GroupsFree Radical Research Communications, 1989
- DNA Damage Produced by Ionizing Radiation in Mammalian Cells: Identities, Mechanisms of Formation, and ReparabilityProgress in Nucleic Acid Research and Molecular Biology, 1988
- Cell Survival and DNA Double-strand Break Repair Following X-ray or Neutron Irradiation of V79 CellsInternational Journal of Radiation Biology, 1988
- Dose-rate effects and the repair of radiation damageRadiotherapy and Oncology, 1986
- Heavy-Ion Radiobiology: Cellular StudiesPublished by Elsevier ,1984
- High-LET radiations induce a large proportion of non-rejoining DNA breaksNature, 1977