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- All Enzymes in BRENDA™ the Comprehensive Enzyme Information System
- Applications to Bio-Inorganic Chemistry of Iron-Sulfur Active Sites in Enzymes and Model Systems + # #+ + Abhishek Dey , Britt Hedman , Keith O
- Enzymatic Antioxidant Signatures in Hyperthermophilic Archaea
- Impact of Copper, Zinc Superoxide Dismutase Knockout on Lipid Metabolism in Mice
- Metabolic Shift at the Class Level Sheds Light on Adaptation of Methanogens to Oxidative Environments
- Reductive Scavenging of Reactive Oxygen Species in Prokaryotes Rubrerythrin and Superoxide Reductase
- Metalloproteins in the Biology of Heterocysts
- Springer Handbook of Enzymes
- WO 2009/076331 Al
- (12) Patent Application Publication (10) Pub. No.: US 2009/0053736A1 Mattingly Et Al
- List of Transferred and Deleted Enzymes
- (19) United States (12) Patent Application Publication (10) Pub
- Superoxide Reduction by a Superoxide Reductase Lacking the Highly 2 Conserved Lysine Residue
- Kovacs CV 03 13
- 317. Henson, M.J.; Solomon, E. I., Review of Crystal Structure of a Plant Catechol Oxidase Containing a Dicopper Center, by Klabunde, T.; Eicken, C
- 3288 Oxidative Stress in Neurodegeneration and Available
- Redox Proteomics in Selected Neurodegenerative Disorders: from Its Infancy to Future Applications
- Discovery of Superoxide Reductase: an Historical Perspective Vincent
- Desulfoarculus Baarsii
- Detoxification of Superoxide Without Production of H2O2: Antioxidant Activity of Superoxide Reductase Complexed with Ferrocyanide
- Desulfoferrodoxin of Clostridium Acetobutylicum Functions As a Superoxide Reductase
- The Kinetics and Mechanism of Superoxide Reduction by Two
- Broad Specificity Ahpc-Like Peroxiredoxin and Its Thioredoxin Reductant in the Sparse Antioxidant Defense System of Treponema Pallidum
- (12) United States Patent (10) Patent No.: US 7,906,293 B2 Mattingly Et Al
- Activation of Superoxide Dismutases: Putting the Metal to the Pedal ⁎ ⁎ Valeria Cizewski Culotta A, , Mei Yang A, Thomas V
- Alternative Pathways As Mechanism for the Negative Effects Associated with Overexpression of Superoxide Dismutase
- Review Article
- How Does Cyanide Inhibit Superoxide Reductase? SPECIAL FEATURE III Insight from Synthetic Fe N4S Model Complexes Jason Shearer†, Sarah B
- Effects of Quercetin on Antioxidant Potential in the Experimental Periodontitis Development
- An NADH-Dependent Bacterial Thioredoxin Reductase-Like Protein
- Understanding the Mechanism of Superoxide Reductase Promoted Reduction of Superoxide
- Intermolecular Electron Transfer in Two-Iron Superoxide Reductase: a Putative Role for the Desulforedoxin Center As an Electron Donor to the Iron Active Site