Hydrogenase-1 (Hyd-1) from Escherichia coli is a membrane-bound enzyme that catalyses the reversible oxidation of molecular H2 The active site contains one Fe and one Ni atom and several conserved amino acids including an arginine (Arg(509)), which interacts with two conserved aspartate residues (Asp(118) and Asp(574)) forming an outer shell canopy over the metals. There is also a highly conserved glutamate (Glu(28)) positioned on the opposite side of the active site to the canopy. The mechanism of hydrogen activation has been dissected by site-directed mutagenesis to identify the catalytic base responsible for splitting molecular hydrogen and possible proton transfer pathways to/from the active site. Previous reported attempts to mutate re...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Catalytic long-range proton transfer in [NiFe]-hydrogenases has long been associated with a highly c...
Hydrogenase-1 (Hyd-1) from Escherichia coli is a membrane-bound enzyme that catalyses the reversible...
© 2015 Nature America, Inc. All rights reserved. The active site of [NiFe] hydrogenases contains a s...
Hydrogenase-2 from E. coli is a multi-faceted [NiFe]-hydrogenase that is important because of its du...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
The active site of [NiFe]-hydrogenases contains a strictly-conserved pendant arginine, the guanidine...
Naturally occurring oxygen tolerant NiFe membrane bound hydrogenases have a conserved catalytic bias...
Hydrogenases catalyse the interconversion of molecular hydrogen with protons and electrons. Thus, th...
The active site of Hyd-1, an oxygen-tolerant membrane-bound [NiFe]-hydrogenase from Escherichia coli...
[NiFe] hydrogenases are complex model enzymes for the reversible cleavage of dihydrogen (H2). Howeve...
[NiFe] hydrogenases are complex model enzymes for the reversible cleavage of dihydrogen (H2). Howeve...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Catalytic long-range proton transfer in [NiFe]-hydrogenases has long been associated with a highly c...
Hydrogenase-1 (Hyd-1) from Escherichia coli is a membrane-bound enzyme that catalyses the reversible...
© 2015 Nature America, Inc. All rights reserved. The active site of [NiFe] hydrogenases contains a s...
Hydrogenase-2 from E. coli is a multi-faceted [NiFe]-hydrogenase that is important because of its du...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
The active site of [NiFe]-hydrogenases contains a strictly-conserved pendant arginine, the guanidine...
Naturally occurring oxygen tolerant NiFe membrane bound hydrogenases have a conserved catalytic bias...
Hydrogenases catalyse the interconversion of molecular hydrogen with protons and electrons. Thus, th...
The active site of Hyd-1, an oxygen-tolerant membrane-bound [NiFe]-hydrogenase from Escherichia coli...
[NiFe] hydrogenases are complex model enzymes for the reversible cleavage of dihydrogen (H2). Howeve...
[NiFe] hydrogenases are complex model enzymes for the reversible cleavage of dihydrogen (H2). Howeve...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Catalytic long-range proton transfer in [NiFe]-hydrogenases has long been associated with a highly c...