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Biophysical Journal, ISSN 0006-3495, 02/2017, Volume 112, Issue 3, pp. 56a - 57a
Journal Article
New BIOTECHNOLOGY, ISSN 1871-6784, 07/2016, Volume 33, pp. S110 - S110
Journal Article
1985, ISBN 9780849358692, 285
Book
2004, Methods in Enzymology, ISBN 0121827860, Volume 382, xxxviii, 572
Quinones are members of a class of aromatic compounds with two oxygen atoms bonded to the ring as carbonyl groups. This volume covers more clinical aspects of... 
Book
Cancer Research, ISSN 0008-5472, 07/2010, Volume 70, Issue 13, pp. 5213 - 5219
Journal Article
Phytochemistry, ISSN 0031-9422, 01/2010, Volume 71, Issue 1
Merosesquiterpenids, craterellins A-C (1-3), were isolated from cultures of the basidiomycete Craterellus odoratus together with the previously known... 
Oxidoreductases
Journal Article
2013, 2nd ed., Springer handbook of enzymes, ISBN 3642362648, Volume v. Suppl. 8
Web Resource
Biochemistry, ISSN 0006-2960, 02/2018, Volume 57, Issue 6, pp. 963 - 977
Journal Article
BBA - Bioenergetics, ISSN 0005-2728, 11/2013, Volume 1827, Issue 11-12, pp. 1407 - 1427
This review traces the evolution of the cytochrome complexes from their early spread among prokaryotic lineages and up to the mitochondrial cytochrome complex... 
ubiquinone | Bioenergetics, molecular evolution, ubiquinol:cytochrome c oxidoreductase | cytochrome c | plastoquinone | cardiolipin, cell death, photosynthesis, apoptosome | Bioenergetics, molecular evolution, ubiquinol | cardiolipin, cell death, photosynthesis | apoptosome | cytochrome c oxidoreductase | IRON-SULFUR PROTEIN | INNER MITOCHONDRIAL-MEMBRANE | PURPLE PHOTOSYNTHETIC BACTERIA | BIOCHEMISTRY & MOLECULAR BIOLOGY | OXYGEN SPECIES GENERATION | X-RAY-STRUCTURE | ACTIVATED Q-CYCLE | TARGETED PLASTOQUINONE DERIVATIVES | TRANSMEMBRANE PROTON-TRANSFER | BIOPHYSICS | ANAEROBIC AMMONIUM OXIDATION | Bioenergetics, molecular evolution, ubiquinol: cytochrome c oxidoreductase | UNIVERSAL COMMON ANCESTOR | Electron Transport Complex III - chemistry | Cytochrome b6f Complex - metabolism | Electron Transport Complex III - genetics | Electron Transport Complex III - metabolism | Oxidoreductases - metabolism | Vertebrates - genetics | Membrane Proteins - genetics | Oxidoreductases - genetics | Humans | Bacterial Proteins - chemistry | Bacterial Proteins - genetics | Models, Molecular | Apoptosis - genetics | Oxidoreductases - chemistry | Cytochrome b6f Complex - genetics | Animals | Membrane Proteins - chemistry | Cytochrome b6f Complex - chemistry | Bacterial Proteins - metabolism | Protein Conformation | Membrane Proteins - metabolism | Evolution, Molecular | Membrane lipids | Cytochrome b | Analysis | Bacteria | Mitochondrial DNA | Cardiolipin | Oxidoreductases | Apoptosis
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 06/2009, Volume 106, Issue 26, pp. 10603 - 10608
Journal Article
Journal Article
Planta, ISSN 0032-0935, 2/2010, Volume 231, Issue 3, pp. 609 - 621
Aluminum (Al) inhibits plant growth partly by causing oxidative damage that is promoted by reactive oxygen species and can be prevented by improving... 
Oxidative stress | Aluminum | Root growth | DNA damage | Plant roots | Lipids | Cell membranes | Plants | Root tips | Transgenic plants | Life Sciences | Dehydroascorbate reductase | Reactive oxygen species | Ascorbic acid | Forestry | Ecology | Agriculture | Plant Sciences | Monodehydroascorbate reductase | Al tolerance | PLASMA-MEMBRANES | OXIDATIVE STRESS | ARABIDOPSIS-THALIANA | DNA-DAMAGE | ENHANCED TOLERANCE | ASCORBIC-ACID | ROOT-TIPS | PLANT SCIENCES | SPINACH-CHLOROPLASTS | PLANTS | HYDROGEN-PEROXIDE | Oxidative Stress | Plants, Genetically Modified - growth & development | Glutathione - metabolism | Plant Roots - genetics | Oxidoreductases - physiology | Ascorbic Acid - metabolism | Plant Roots - drug effects | NADH, NADPH Oxidoreductases - physiology | Lipid Peroxidation - drug effects | Plant Proteins - metabolism | NADH, NADPH Oxidoreductases - metabolism | Plant Roots - growth & development | NADH, NADPH Oxidoreductases - genetics | Plant Roots - metabolism | Oxidoreductases - metabolism | Oxidoreductases - genetics | Plant Proteins - physiology | Plants, Genetically Modified - drug effects | Plants, Genetically Modified - enzymology | Tobacco - drug effects | Aluminum - toxicity | Hydrogen Peroxide - metabolism | Arabidopsis - genetics | Plant Proteins - genetics | Tobacco - genetics | DNA Damage | Tobacco - enzymology | Antioxidants | Hydrogen peroxide | Tobacco industry | DNA | Plant biochemical genetics | Genetic engineering | Universities and colleges
Journal Article
Journal Article
BMC Microbiology, ISSN 1471-2180, 05/2017, Volume 17, Issue 1, pp. 126 - 10
Background: Nitroreductases, NAD(P)H dependent flavoenzymes, are found in most of bacterial species. Even if Enterococcus faecalis strains seems to present... 
Enterococcus faecalis | Azoreductases | Nitroreductases | ACTIVATION | SPECIFICITY | MECHANISM | OXIDOREDUCTASE | MICROBIOLOGY | NITROFURAZONE | VIBRIO-FISCHERI | ESCHERICHIA-COLI NITROREDUCTASE | REDUCTION