International audienceIn NiFe hydrogenases, electrons are transferred from the active site to the redox partner via a chain of three Iron−Sulfur clusters, and the surface-exposed [4Fe4S] cluster has an unusual His(Cys)3 ligation. When this Histidine (H184 in Desulfovibrio fructosovorans) is changed into a cysteine or a glycine, a distal cubane is still assembled but the oxidative activity of the mutants is only 1.5 and 3% of that of the WT, respectively. We compared the activities of the WT and engineered enzymes for H2 oxidation, H+ reduction and H/D exchange, under various conditions: (i) either with the enzyme directly adsorbed onto an electrode or using soluble redox partners, and (ii) in the presence of exogenous ligands whose binding...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
[FeFe] hydrogenases interconvert H2 into protons and electrons reversibly and efficiently. The activ...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...
International audienceIn NiFe hydrogenases, electrons are transferred from the active site to the re...
Biohydrogen is a versatile energy carrier for the generation of electric energy from renewable sourc...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
Protein film electrochemistry (PFE) has been used to study the assembly of the complex 6Fe active si...
[FeFe]-hydrogenases are highly efficient H(2)-evolving metalloenzymes that include cyanides and carb...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
[FeFe] hydrogenases interconvert H2 into protons and electrons reversibly and efficiently. The activ...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...
International audienceIn NiFe hydrogenases, electrons are transferred from the active site to the re...
Biohydrogen is a versatile energy carrier for the generation of electric energy from renewable sourc...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
Protein film electrochemistry (PFE) has been used to study the assembly of the complex 6Fe active si...
[FeFe]-hydrogenases are highly efficient H(2)-evolving metalloenzymes that include cyanides and carb...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to pl...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
[FeFe] hydrogenases interconvert H2 into protons and electrons reversibly and efficiently. The activ...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...