The [NiFe] hydrogenase from Desulfovibrio vulgaris Hildenborough was isolated from the cytoplasmic membranes and characterized by EPR spectroscopy. It has a total molecular mass of 98.7 kDa (subunits of 66.4 and 32.3 kDa), and contains 1 nickel and 12 Fe atoms per heterodimer. The catalytic activities for hydrogen consumption and production were determined to be 174 and 89 umol H2 min-1 mg -1, respectively. As isolated, under aerobic conditions, this hydrogenase exhibits EPR signals characteristic of the nickel centers in [NiFe] hydrogenases (Ni-A signal at gx,y,z=2.32, 2.23 and ~2.0 and Ni-B signal at gx,y,z=2.33, 2.16 and ~2.0) as well as an intense quasi-isotropic signal centered at g=2.02 due to the oxidized [3Fe-4S] center. The redox p...
We studied the mechanism of aerobic inactivation of Desulfovibrio fructosovorans nickel-iron (NiFe) ...
Hydrogenase is an electron-transfer protein and catalyses the simplest chemical redox reaction, the ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65872/1/j.1432-1033.1983.tb07727.x.pd
This work was supported by Instituto Nacional de Investiga ao Cientifica (INIC), Junta Nacional de I...
International audienceThe soluble hydrogenase from Desulfovibrio africanus has been isolated and cha...
The genome of Desulfovibrio vulgaris Hildenborough (DvH) encodes for six hydrogenases (Hases), makin...
Erkens A, Schneider K, Müller A. The NAD linked soluble hydrogenase from Alcaligenes eutrophus H16: ...
AbstractUpon reduction under hydrogen-argon atmosphere, the nickel-hydrogenases generally show a cha...
Electron paramagnetic resonance (EPR) and Fourier transform IR studies on the soluble hydrogenase fr...
A soluble hydrogenase from Allochromatium vinosum was purified. It consisted of a large (M (r) = 52 ...
Abstract: Hydrogenases are microbial enzymes which catalyze uptake and production of H2. Hydrogenase...
The cytoplasmic, tetrameric NAD-linked hydrogenase from Nocardia opaca Ib can be separated in two di...
AbstractBackground: [NiFeSe] hydrogenases are metalloenzymes that catalyze the reaction H2↔2H++2e-.T...
International audienceHydrogenases are metalloenzymes that catalyse both H(2)evolution and uptake. T...
Les hydrogénases sont les métalloenzymes, issues de micro-organismes anaérobies, qui catalysent l'ox...
We studied the mechanism of aerobic inactivation of Desulfovibrio fructosovorans nickel-iron (NiFe) ...
Hydrogenase is an electron-transfer protein and catalyses the simplest chemical redox reaction, the ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65872/1/j.1432-1033.1983.tb07727.x.pd
This work was supported by Instituto Nacional de Investiga ao Cientifica (INIC), Junta Nacional de I...
International audienceThe soluble hydrogenase from Desulfovibrio africanus has been isolated and cha...
The genome of Desulfovibrio vulgaris Hildenborough (DvH) encodes for six hydrogenases (Hases), makin...
Erkens A, Schneider K, Müller A. The NAD linked soluble hydrogenase from Alcaligenes eutrophus H16: ...
AbstractUpon reduction under hydrogen-argon atmosphere, the nickel-hydrogenases generally show a cha...
Electron paramagnetic resonance (EPR) and Fourier transform IR studies on the soluble hydrogenase fr...
A soluble hydrogenase from Allochromatium vinosum was purified. It consisted of a large (M (r) = 52 ...
Abstract: Hydrogenases are microbial enzymes which catalyze uptake and production of H2. Hydrogenase...
The cytoplasmic, tetrameric NAD-linked hydrogenase from Nocardia opaca Ib can be separated in two di...
AbstractBackground: [NiFeSe] hydrogenases are metalloenzymes that catalyze the reaction H2↔2H++2e-.T...
International audienceHydrogenases are metalloenzymes that catalyse both H(2)evolution and uptake. T...
Les hydrogénases sont les métalloenzymes, issues de micro-organismes anaérobies, qui catalysent l'ox...
We studied the mechanism of aerobic inactivation of Desulfovibrio fructosovorans nickel-iron (NiFe) ...
Hydrogenase is an electron-transfer protein and catalyses the simplest chemical redox reaction, the ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65872/1/j.1432-1033.1983.tb07727.x.pd