AbstractPossible proton transport pathways in Clostridium pasteurianum (CpI) [FeFe]-hydrogenase were investigated with molecular dynamics simulations. This study was undertaken to evaluate the functional pathway and provide insight into the hydrogen bonding features defining an active proton transport pathway. Three pathways were evaluated, two of which consist of water wires and one of predominantly amino acid residues. Our simulations suggest that protons are not transported through water wires. Instead, the five-residue motif (Glu282, Ser319, Glu279, H2O, Cys299) was found to be the likely pathway, consistent with previously made experimental observations. The pathway was found to have a persistent hydrogen bonded core (residues Cys299 t...
International audienceWe investigated di-hydrogen transport between the solvent and the active site ...
Die hohe Umsatzrate von [FeFe]-Hydrogenasen setzt einen effizienten Protonentransfer-Pfad (PTP) zwis...
<div><p>A highly conserved histidine-rich region with unknown function was recognized in the large s...
AbstractPossible proton transport pathways in Clostridium pasteurianum (CpI) [FeFe]-hydrogenase were...
To better understand the proton transport through the H<sub>2</sub> production catalysts, the [FeFe]...
AbstractProton transfer to the [Fe―Fe]H sub-cluster in the Desulfovibrio desulfuricans (DdH) and Clo...
[FeFe] hydrogenase enzymes can reversibly catalyze the conversion of protons into molecular hydrogen...
Hydrogenase enzymes are natural biocatalysts that might be harnessed to reduce the cost of hydrogen ...
SummaryWe report on a computational investigation of the passive transport of H2 and O2 between the ...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audience[NiFe]-hydrogenases catalyse the cleavage of molecular hydrogen into protons a...
The unmatched catalytic turnover rates of [FeFe]-hydrogenases require an exceptionally efficient pro...
ABSTRACT: The [FeFe]-hydrogenase enzymes catalyze hydrogen oxidation and production efficiently with...
Designing O<sub>2</sub>-tolerant hydrogenases is a major challenge in applying [Fe–Fe]H<sub>2</sub>...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
International audienceWe investigated di-hydrogen transport between the solvent and the active site ...
Die hohe Umsatzrate von [FeFe]-Hydrogenasen setzt einen effizienten Protonentransfer-Pfad (PTP) zwis...
<div><p>A highly conserved histidine-rich region with unknown function was recognized in the large s...
AbstractPossible proton transport pathways in Clostridium pasteurianum (CpI) [FeFe]-hydrogenase were...
To better understand the proton transport through the H<sub>2</sub> production catalysts, the [FeFe]...
AbstractProton transfer to the [Fe―Fe]H sub-cluster in the Desulfovibrio desulfuricans (DdH) and Clo...
[FeFe] hydrogenase enzymes can reversibly catalyze the conversion of protons into molecular hydrogen...
Hydrogenase enzymes are natural biocatalysts that might be harnessed to reduce the cost of hydrogen ...
SummaryWe report on a computational investigation of the passive transport of H2 and O2 between the ...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audience[NiFe]-hydrogenases catalyse the cleavage of molecular hydrogen into protons a...
The unmatched catalytic turnover rates of [FeFe]-hydrogenases require an exceptionally efficient pro...
ABSTRACT: The [FeFe]-hydrogenase enzymes catalyze hydrogen oxidation and production efficiently with...
Designing O<sub>2</sub>-tolerant hydrogenases is a major challenge in applying [Fe–Fe]H<sub>2</sub>...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
International audienceWe investigated di-hydrogen transport between the solvent and the active site ...
Die hohe Umsatzrate von [FeFe]-Hydrogenasen setzt einen effizienten Protonentransfer-Pfad (PTP) zwis...
<div><p>A highly conserved histidine-rich region with unknown function was recognized in the large s...