The membrane-bound [NiFe]-hydrogenase from Allochromatium vinosum can occur in several inactive or active states. This study presents the first systematic infrared characterisation of the A. vinosum enzyme, with emphasis on the spectro-electrochemical properties of the inactive/active transition. This transition involves an energy barrier, which can be overcome at elevated temperatures. The reduced Ready enzyme can exist in two different inactive states, which are in an apparent acid¿base equilibrium. It is proposed that a hydroxyl ligand in a bridging position in the Ni-Fe site is protonated and that the formed water molecule is subsequently removed. This enables the active site to bind hydrogen in a bridging position, allowing the formati...
Infrared spectra of 15N-enriched preparations of the soluble cytoplasmic NAD+-reducing [NiFe]-hydrog...
The nickel-iron hydrogenase from Chromatium vinosum adsorbs at a pyrolytic graphite edge-plane (PGE)...
A novel in situ IR spectroscopic approach is demonstrated for the characterization of hydrogenase du...
The Ni-Fe site in the active membrane-bound [NiFe]-hydrogenase from Allochromatium Vinosum can exist...
The reaction between hydrogen and the [NiFe]-hydrogenase from Allochromatium Vinosum in its inactive...
A soluble hydrogenase from Allochromatium vinosum was purified. It consisted of a large (M (r) = 52 ...
Achieving a unified understanding of the mechanism of a multicenter redox enzyme such as [NiFe] hydr...
Dynamic electrochemical studies, incorporating catalytic voltammetry and detailed potential-step man...
Electron paramagnetic resonance (EPR) and Fourier transform IR studies on the soluble hydrogenase fr...
Hydrogenases are of great interest because they utilise abundant and inexpensive metals, Fe or Ni-Fe...
This thesis investigates the catalytic mechanism of NiFe hydrogenases. The specific enzyme studied ...
Hydrogenases are a class of metalloenzymes which catalyse H₂ oxidation and its reverse reaction, H⁺ ...
International audienceThe membrane-bound hydrogenase (Hase I) of the hyperthermophilic bacterium Aqu...
Catalysis of H2 production and oxidation reactions is critical in renewable energy systems based aro...
Catalysis of H2 production and oxidation reactions is critical in renewable energy systems based aro...
Infrared spectra of 15N-enriched preparations of the soluble cytoplasmic NAD+-reducing [NiFe]-hydrog...
The nickel-iron hydrogenase from Chromatium vinosum adsorbs at a pyrolytic graphite edge-plane (PGE)...
A novel in situ IR spectroscopic approach is demonstrated for the characterization of hydrogenase du...
The Ni-Fe site in the active membrane-bound [NiFe]-hydrogenase from Allochromatium Vinosum can exist...
The reaction between hydrogen and the [NiFe]-hydrogenase from Allochromatium Vinosum in its inactive...
A soluble hydrogenase from Allochromatium vinosum was purified. It consisted of a large (M (r) = 52 ...
Achieving a unified understanding of the mechanism of a multicenter redox enzyme such as [NiFe] hydr...
Dynamic electrochemical studies, incorporating catalytic voltammetry and detailed potential-step man...
Electron paramagnetic resonance (EPR) and Fourier transform IR studies on the soluble hydrogenase fr...
Hydrogenases are of great interest because they utilise abundant and inexpensive metals, Fe or Ni-Fe...
This thesis investigates the catalytic mechanism of NiFe hydrogenases. The specific enzyme studied ...
Hydrogenases are a class of metalloenzymes which catalyse H₂ oxidation and its reverse reaction, H⁺ ...
International audienceThe membrane-bound hydrogenase (Hase I) of the hyperthermophilic bacterium Aqu...
Catalysis of H2 production and oxidation reactions is critical in renewable energy systems based aro...
Catalysis of H2 production and oxidation reactions is critical in renewable energy systems based aro...
Infrared spectra of 15N-enriched preparations of the soluble cytoplasmic NAD+-reducing [NiFe]-hydrog...
The nickel-iron hydrogenase from Chromatium vinosum adsorbs at a pyrolytic graphite edge-plane (PGE)...
A novel in situ IR spectroscopic approach is demonstrated for the characterization of hydrogenase du...