International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular hydrogen. Several oxidized, inactive states of these enzymes are known that are distinguishable by their very different activation properties. So far, the structural basis for this difference has not been understood because of lack of relevant crystallographic data. Here, we present the crystal structure of the ready Ni-B state of Desulfovibrio fructosovorans [NiFe] hydrogenase and show it to have a putative μ-hydroxo Ni–Fe bridging ligand at the active site. On the other hand, a new, improved refinement procedure of the X-ray diffraction data obtained for putative unready Ni-A/Ni-SU states resulted in a more elongated electron density for th...
AbstractBackground: [NiFeSe] hydrogenases are metalloenzymes that catalyze the reaction H2↔2H++2e-.T...
AbstractBackground: The hydrogenase of Desulfovibrio sp. catalyzes the reversible oxidoreduction of ...
[NiFe]-hydrogenase contains several metal centers, including the bimetallic Ni-Fe active site, iron-...
International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular ...
International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular ...
International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular ...
[NiFe] hydrogenases catalyse the reaction H2 2H(+) + 2e(-). Several states of the enzyme have been ...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
SummaryHydrogenases catalyze oxidoreduction of molecular hydrogen and have potential applications fo...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
Catalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are characterized by a mixture of t...
[NiFe] hydrogenase (H2ase) catalyzes the oxidation of dihydrogen to two protons and two electrons an...
AbstractBackground: [NiFeSe] hydrogenases are metalloenzymes that catalyze the reaction H2↔2H++2e-.T...
AbstractBackground: The hydrogenase of Desulfovibrio sp. catalyzes the reversible oxidoreduction of ...
[NiFe]-hydrogenase contains several metal centers, including the bimetallic Ni-Fe active site, iron-...
International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular ...
International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular ...
International audience[NiFe] hydrogenases catalyze the reversible heterolytic cleavage of molecular ...
[NiFe] hydrogenases catalyse the reaction H2 2H(+) + 2e(-). Several states of the enzyme have been ...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
SummaryHydrogenases catalyze oxidoreduction of molecular hydrogen and have potential applications fo...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
International audienceCatalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are character...
Catalytically inactive oxidized O2-sensitive [NiFe]-hydrogenases are characterized by a mixture of t...
[NiFe] hydrogenase (H2ase) catalyzes the oxidation of dihydrogen to two protons and two electrons an...
AbstractBackground: [NiFeSe] hydrogenases are metalloenzymes that catalyze the reaction H2↔2H++2e-.T...
AbstractBackground: The hydrogenase of Desulfovibrio sp. catalyzes the reversible oxidoreduction of ...
[NiFe]-hydrogenase contains several metal centers, including the bimetallic Ni-Fe active site, iron-...