International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", where two Fe ions are bound by an aza-dithiolate (adt) ligand. Various hypotheses have been proposed (by us and others) to explain that the enzyme reversibly inactivates under oxidizing, anaerobic conditions: intramolecular binding of the N atom of adt, formation of the so-called Hox/inact state or non-productive binding of H2 to isomers of the H-cluster. Here we show that none of the above explains the new finding that the anaerobic, oxidative, H2-dependent reversible inactivation is strictly dependent on the presence of Cl- or Br-. We provide experimental evidence that chloride uncompetitively inhibits the enzyme: it reversibly binds to catal...
International audienceThe so-called FeFe hydrogenases catalyze H2 production and oxidation at a dinu...
The current investigation presents a reactivation pathway of the exogenously inhibited H-cluster (vi...
International audience[FeFe] hydrogenases are H2-evolving enzymes that feature a diiron cluster in t...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
FeFe hydrogenases catalyze H2 oxidation and production using an "H-cluster", where two Fe ions are b...
Nature is a valuable source of inspiration in the design of catalysts, and various approaches are us...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceThe so-called FeFe hydrogenases catalyze H2 production and oxidation at a dinu...
International audienceThe so-called FeFe hydrogenases catalyze H2 production and oxidation at a dinu...
The current investigation presents a reactivation pathway of the exogenously inhibited H-cluster (vi...
International audience[FeFe] hydrogenases are H2-evolving enzymes that feature a diiron cluster in t...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
FeFe hydrogenases catalyze H2 oxidation and production using an "H-cluster", where two Fe ions are b...
Nature is a valuable source of inspiration in the design of catalysts, and various approaches are us...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceNature is a valuable source of inspiration in the design of catalysts, and var...
International audienceThe so-called FeFe hydrogenases catalyze H2 production and oxidation at a dinu...
International audienceThe so-called FeFe hydrogenases catalyze H2 production and oxidation at a dinu...
The current investigation presents a reactivation pathway of the exogenously inhibited H-cluster (vi...
International audience[FeFe] hydrogenases are H2-evolving enzymes that feature a diiron cluster in t...