Catalytic long-range proton transfer in [NiFe]-hydrogenases has long been associated with a highly conserved glutamate (E) situated within 4 Å of the active site. Substituting for glutamine (Q) in the O2-tolerant [NiFe]-hydrogenase-1 from Escherichia coli produces a variant (E28Q) with unique properties that have been investigated using protein film electrochemistry, protein film infrared electrochemistry, and X-ray crystallography. At pH 7 and moderate potential, E28Q displays approximately 1% of the activity of the native enzyme, high enough to allow detailed infrared measurements under steady-state conditions. Atomic-level crystal structures reveal partial displacement of the amide side chain by a hydroxide ion, the occupancy of which in...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
International audienceThe membrane-bound hydrogenase (Hase I) of the hyperthermophilic bacterium Aqu...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
Catalytic long-range proton transfer in [NiFe]-hydrogenases has long been associated with a highly c...
Hydrogenases catalyse the interconversion of molecular hydrogen with protons and electrons. Thus, th...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
A [NiFe] hydrogenase (H2ase) is a proton‐coupled electron transfer enzyme that catalyses reversible ...
[NiFe] hydrogenases are metalloenzymes that catalyze the reversible oxidation of H<sub>2</sub>. Whil...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
International audience"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
[NiFe] hydrogenases are enzymes that catalyze the splitting of molecular hydrogen according to the r...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
International audienceThe membrane-bound hydrogenase (Hase I) of the hyperthermophilic bacterium Aqu...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
Catalytic long-range proton transfer in [NiFe]-hydrogenases has long been associated with a highly c...
Hydrogenases catalyse the interconversion of molecular hydrogen with protons and electrons. Thus, th...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
A [NiFe] hydrogenase (H2ase) is a proton‐coupled electron transfer enzyme that catalyses reversible ...
[NiFe] hydrogenases are metalloenzymes that catalyze the reversible oxidation of H<sub>2</sub>. Whil...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
International audience"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
[NiFe] hydrogenases are enzymes that catalyze the splitting of molecular hydrogen according to the r...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
International audienceThe membrane-bound hydrogenase (Hase I) of the hyperthermophilic bacterium Aqu...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...