Superoxide accelerates DNA damage by elevating free-iron levels
Open Access
- 26 November 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (24), 13635-13640
- https://doi.org/10.1073/pnas.93.24.13635
Abstract
Superoxide promotes hydroxyl-radical formation and consequent DNA damage in cells of all types. The long-standing hypothesis that it primarily does so by delivering electrons to adventitious iron on DNA was refuted by recent studies in Escherichia coli. Alternative proposals have suggested that superoxide may accelerate oxidative DNA damage by leaching iron from storage proteins or enzymic [4Fe-4S] clusters. The released iron might then deposit on the surface of the DNA, where it could catalyze the formation of DNA oxidants using other electron donors. The latter model is affirmed by the experiments described here. Whole-cell electron paramagnetic resonance demonstrated that the level of loose iron in superoxide-stressed cells greatly exceeds that of unstressed cells. Bacterial iron storage proteins were not the major source for free iron, since superoxide also increased iron levels in mutants lacking these iron storage proteins. However, overproduction of an enzyme containing a labile [4Fe-4S] cluster dramatically increased the free iron content of cells when they were growing in air. The rates of spontaneous mutagenesis and DNA damage from exogenous H2O2 increased commensurately. It is striking that both growth defects and DNA damage caused by superoxide ensue from its ability to damage a subset of iron-sulfur clusters.Keywords
This publication has 68 references indexed in Scilit:
- Studies on the Synthesis of the Fe-S Cluster of Dihydroxy-acid Dehydratase in Escherichia coli Crude ExtractPublished by Elsevier ,1996
- Iron-induced carcinogenesis: The role of redox regulationFree Radical Biology & Medicine, 1996
- Oxidative damage to mitochondrial DNA shows marked age‐dependent increases in human brainAnnals of Neurology, 1993
- Bacterioferritins and ferritins are distantly related in evolution Conservation of ferroxidase‐centre residuesFEBS Letters, 1991
- DNA Damage and Oxygen Radical ToxicityScience, 1988
- Toxic DNA Damage by Hydrogen Peroxide Through the Fenton Reaction in Vivo and in VitroScience, 1988
- Superoxide dependent iron release from ferritin in inflammatory diseasesFree Radical Biology & Medicine, 1988
- Role of metals in oxygen radical reactionsJournal of Free Radicals in Biology & Medicine, 1985
- Superoxide‐dependent formation of hydroxyl radicals from NADH and NADPH in the presence of iron saltsFEBS Letters, 1982
- Superoxide‐dependent production of hydroxyl radical catalyzed by iron—EDTA complexFEBS Letters, 1978