Biochemistry · 2008 · 44 citations · 9 references
High Superoxide FluxesEngineeringBiochemistryReactive Nitrogen SpecieBioenergeticsRadical (Chemistry)BiotechnologySpecialized EnzymeHigh Superoxide ConcentrationsEnvironmental MicrobiologyMicrobiologyReactive Oxygen SpecieUv-c IrradiationMedicineHigh RadioactivityRedox BiologyManganese-containing Superoxide DismutaseOxidative Stress
Deinococcus radiodurans (Drad), a bacterium with an extraordinary capacity to tolerate high levels of ionizing radiation, produces only a manganese-containing superoxide dismutase (MnSOD). As MnSOD has been shown to remove superoxide radical with varying efficiency depending upon its cellular origin, a comparison of the Drad MnSOD efficiency with that of both human and Escherichia coli MnSODs was undertaken. Pulse radiolysis studies demonstrate that, under identical ratios of enzyme to superoxide radical, the dismutation efficiencies scaled as Drad MnSOD > E. coli MnSOD > human MnSOD. Further, Drad MnSOD is most effective at high superoxide fluxes found under conditions of high radioactivity. A mechanism is postulated to account for the differences in the activities of the MnSODs that considers the release of peroxide as not always an optimal process.
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Genome Sequence of the Radioresistant Bacterium <i>Deinococcus radiodurans</i> R1
Owen White, Jonathan A. Eisen, John F. Heidelberg et al. · Science · 1999 · 963 citations
Lye Meng Markillie, Susan M. Varnum, Preston Hradecky et al. · Journal of Bacteriology · 1999 · 128 citations · Full text
Biochemistry, Deinococcus Radiodurans R1, Natural Sciences +15