Nature is a valuable source of inspiration in the design of catalysts, and various approaches are used to elucidate the mechanism of hydrogenases, the enzymes that oxidize or produce H 2. In FeFe hydrogenases, H 2 oxidation occurs at the H-cluster, and catalysis involves H 2 binding on the vacant coordination site of an iron centre. Here, we show that the reversible oxidative inactivation of this enzyme results from the binding of H 2 to coordination positions that are normally blocked by intrinsic CO ligands. This flexibility of the coordination sphere around the reactive iron centre confers on the enzyme the ability to avoid harmful reactions under oxidizing conditions, including exposure to O 2. The versatile chemistry of the diiron clus...
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...
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...
The development of oxygen-tolerant H-2-evolving catalysts plays a vital role for a future H-2 econom...
The development of oxygen-tolerant H-2-evolving catalysts plays a vital role for a future H-2 econom...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
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...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...
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...
The development of oxygen-tolerant H-2-evolving catalysts plays a vital role for a future H-2 econom...
The development of oxygen-tolerant H-2-evolving catalysts plays a vital role for a future H-2 econom...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
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...
International audienceFeFe hydrogenases catalyse H2 oxidation and production using a "H-cluster", wh...