International audience[FeFe] hydrogenases are H2-evolving enzymes that feature a diiron cluster in their active site (the [2Fe]H cluster). One of the iron atoms has a vacant coordination site that directly interacts with H2, thus favoring its splitting in cooperation with the secondary amine group of a neighboring, flexible azadithiolate ligand. The vacant site is also the primary target of the inhibitor O2. The [2Fe]H cluster can span various redox states. The active-ready form (Hox) attains the Fe(II)Fe(I) state. States more oxidized than Hox were shown to be inactive and/or resistant to O2. In this work, we used density functional theory to evaluate whether azadithiolate-to-iron coordination is involved in oxidative inhibition and protec...
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...
The current investigation presents a reactivation pathway of the exogenously inhibited H-cluster (vi...
We have carried out extensive density functional theory (DFT) calculations for possible redox states...
The oxidation of H-cluster in gas phase, and in aqueous enzyme phase, has been investigated by means...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
The H<sub>2</sub>-evolving potential of [FeFe] hydrogenases is severely limited by the oxygen sensit...
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...
The current investigation presents a reactivation pathway of the exogenously inhibited H-cluster (vi...
We have carried out extensive density functional theory (DFT) calculations for possible redox states...
The oxidation of H-cluster in gas phase, and in aqueous enzyme phase, has been investigated by means...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
The H<sub>2</sub>-evolving potential of [FeFe] hydrogenases is severely limited by the oxygen sensit...
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...