Chemical Physics of Redox Metalloenzyme Catalysis |
Contents
General Information on Metalloenzymes and Metal | 3 |
1 | 10 |
2 | 18 |
Copyright | |
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absorption acceptor active site active sites binuclear Biochem Biol biological Biophys carriers catalyze centres Chem chemical reactions cluster complex compounds coordination sphere copper atoms Cu2+ cytochrome a3 cytochrome c oxidase cytochrome P-450 dehydrogenase dependence distance donor dynamic effect electron transfer energy enzymatic enzyme EPR signal EPR spectra EXAFS exchange experimental factor Fe2+ ferredoxin fluorescence formation frequency function heme heme group hemoglobin histidine hydrogen hydrogenase hydrophobic interaction iron atoms iron-sulphur kinetic kJ mol¯¹ laccase ligands Likhtenshtein macromolecule magnetic field mechanism membrane metal metalloenzymes methods molecular mass molecules molybdenum Mössbauer motion myoglobin N₂ nitrogen nitrogenase nitroxide radicals non-heme nuclear nuclei O₂ one-electron orbitals oxidation oxidoreductase oxygen paramagnetic parameters particles peroxidase photosynthesis properties protein globule proton rate constant redox reduced relaxation resonance Russian spectroscopy spectrum spin labels structure substrate subunits temperature tion transition tron two-electron vibrational X-ray diffraction xanthine oxidase