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Journal of Biological Chemistry, ISSN 0021-9258, 12/2005, Volume 280, Issue 51, pp. 42188 - 42197
Journal Article
Protein science, ISSN 0961-8368, 2017, Volume 26, Issue 10, pp. 1984 - 1993
... dependent transfer of electrons to the MoFe‐protein. Although it is clear that reduction of dinitrogen to ammonia requires the delivery of multiple electrons... 
electrochemistry | flavodoxin | X‐ray crystallography | nitrogenase | X-ray crystallography | SUBSTRATE REDUCTION | FERREDOXIN-I | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | FE PROTEIN | NITROGENASE CATALYSIS | ELECTRON-TRANSPORT SYSTEM | IRON PROTEIN | OXIDATION-REDUCTION POTENTIALS | FERROUS REDOX STATE | RATE-LIMITING STEP | Azotobacter vinelandii - physiology | Flavodoxin - metabolism | Iron - chemistry | Bacterial Proteins - chemistry | Flavodoxin - chemistry | Models, Molecular | Crystallography, X-Ray | Azotobacter vinelandii - chemistry | Iron - metabolism | Nitrogenase | Electrochemistry | Bacterial Proteins - metabolism | Protein Conformation | Azotobacter vinelandii - metabolism | Hydrogen-Ion Concentration | Phosphates | Electrochemical reactions | Enzymes | Crystals | Nitrogen | Ammonia | Fixation | Surface active agents | Analysis | Graphite | Physiological aspects | Structure | Electric properties | Protein binding | Electrochemical analysis | Complex formation | Electron transfer | Iron | pH effects | Crystallography | Electrodes | Proteins | Azotobacter | Nitrogen fixation | Docking | Redox properties | Crystal structure | Quinone | Basal plane | Surfactants | Sodium chloride | Molybdenum | Hydroquinone | Potassium phosphate | Flavodoxin | Ferredoxin | Potassium | Protein structure | Binding sites | Structural analysis
Journal Article
European Journal of Biochemistry, ISSN 0014-2956, 01/2003, Volume 270, Issue 2, pp. 253 - 260
Journal Article
Journal of physical organic chemistry, ISSN 1099-1395, 2019, Volume 32, Issue 7, pp. e3952 - n/a
Journal Article
FEBS Letters, ISSN 0014-5793, 1986, Volume 194, Issue 1, pp. 1 - 5
.... These results can be simulated on the basis of a model which requires that the intramolecular electron transfer from cytochrome a and cu a to cytochrome a 3-Cu b is a two-electron process... 
Cytochrome | c oxidase | Steady state Nonhyperbolic kinetics Rate-limiting step Proton pump | Electron Transport | Animals | Oxidation-Reduction | Cattle | Catalysis | Kinetics | Cytochrome c Group - metabolism | Cytochrome b Group - metabolism | Electron Transport Complex IV - metabolism
Journal Article
Micro and nano systems letters, ISSN 2213-9621, 2017, Volume 5, Issue 1, pp. 1 - 7
Journal Article
Journal of computational chemistry, ISSN 1096-987X, 2002, Volume 23, Issue 1, pp. 48 - 58
Journal Article