Journal of the American Chemical Society · 2006 · 58 citations · 18 references
EngineeringBioelectrochemistryChemistryDesulfurizationSulfide AdductChemical BiologyRedox BiologyReactive Nitrogen SpecieEnvironmental MicrobiologyRedox ChemistryBiochemistryActive SiteCatalysisNew SpeciesHydrogenReversible ReactionsNatural SciencesEnzyme CatalysisBiotechnologyMicrobiologyMolecular Catalysis
Rapid and reversible binding of sulfide to [NiFe]-hydrogenases (particularly the enzyme from Desulfovibrio vulgaris) under weakly acidic conditions (pH 6) has been studied by protein film voltammetry, which tracks the formation of different species as a function of potential. Sulfide (most likely entering as H2S) rapidly attacks the active site during H2 oxidation. The inactive adduct is formed (and is stable) only at potentials substantially more positive than the comparable species formed with oxygen species and is easily reactivated upon reduction. The sulfide adduct also reacts further with O2 to produce a new species that undergoes reductive activation very slowly. The results clarify complex and controversial chemistry reported in the literature and provide insight into how these enzymes would cope with sulfide production in sulfate-reducing bacteria.
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Crystal structure of the nickel–iron hydrogenase from Desulfovibrio gigas
Anne Volbeda, Marie‐Hélène Charon, C. Piras et al. · Nature · 1995 · 1.5K citations
Yoshiki Higuchi, Hideaki Ogata, Kunio Miki et al. · Structure · 1999 · 319 citations · Full text
Inorganic Chemistry, Chemical Engineering, X-ray Structure Analysis +11