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Journal ArticleDOI

Toxic DNA damage by hydrogen peroxide through the Fenton reaction in vivo and in vitro.

James A. Imlay, +2 more
- 29 Apr 1988 - 
- Vol. 240, Iss: 4852, pp 640-642
TLDR
An in vitro Fenton system was established that generates DNA strand breaks and inactivates bacteriophage and that also reproduces the suppression of DNA damage by high concentrations of peroxide.
Abstract
Exposure of Escherichia coli to low concentrations of hydrogen peroxide results in DNA damage that causes mutagenesis and kills the bacteria, whereas higher concentrations of peroxide reduce the amount of such damage. Earlier studies indicated that the direct DNA oxidant is a derivative of hydrogen peroxide whose formation is dependent on cell metabolism. The generation of this oxidant depends on the availability of both reducing equivalents and an iron species, which together mediate a Fenton reaction in which ferrous iron reduces hydrogen peroxide to a reactive radical. An in vitro Fenton system was established that generates DNA strand breaks and inactivates bacteriophage and that also reproduces the suppression of DNA damage by high concentrations of peroxide. The direct DNA oxidant both in vivo and in this in vitro system exhibits reactivity unlike that of a free hydroxyl radical and may instead be a ferryl radical.

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Citations
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Journal ArticleDOI

Factors affecting DNA damage caused by lipid hydroperoxides and aldehydes.

TL;DR: Lipophilic antioxidants BHA, BHT, and alpha-tocopherol were about 20 times more effective than hydrophilic free radical scavengers sodium benzoate, inositol, DMSO, and mannitol in preventing LOOH-induced strand breaks, supporting lipid phase localization of the damage.
Journal ArticleDOI

Inactivation of Dehydratase [4Fe-4S] Clusters and Disruption of Iron Homeostasis upon Cell Exposure to Peroxynitrite

TL;DR: It is demonstrated here that peroxynitrite at 1% of its lethal dose almost fully inactivated the labile dehydratases in Escherichia coli.
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Antioxidant activity of a Rhus verniciflua Stokes ethanol extract.

TL;DR: The findings show that the ethanol fraction derived from RVS contained significant antioxidant activity in both polar and non-polar mediums.
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The roles of reactive oxygen species and antioxidants in cryopreservation.

TL;DR: A review aims to discuss the potential sources of cryopreservation-induced ROS and the effectiveness of antioxidant administration when used individually or in combination.
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Base excision repair by hNTH1 and hOGG1: a two edged sword in the processing of DNA damage in gamma-irradiated human cells.

TL;DR: The results indicate that hNTH1 plays two roles in the processing of radiation damages: repair of potentially lethal single lesions and generation of lethal DSBs at clustered damage sites in hydrogen peroxide-treated cells where the majority of free radical DNA damages are single lesions.
References
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Journal ArticleDOI

The biology of oxygen radicals

TL;DR: The reactive superoxide radical, O2-, formerly of concern only to radiation chemists and radiobiologists, is now understood to be a normal product of the biological reduction of molecular oxygen.
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Fenton's reagent revisited

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The catalytic decomposition of hydrogen peroxide by iron salts

TL;DR: Wansbrough-Jones as discussed by the authors gave the manuscript of this paper to Professor Sir William Pope, but the final revision for the press had not been made and in its original from the paper was not suitable for publication in an English journal; but since, Professor Haber had considered carefully how he wished to present the results embodied in it, the form and sequence of the paper remain unmodified.
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