Hydrogenases are enzymes involved in hydrogen metabolism, utilizing H2 as an electron source. [NiFe] hydrogenases are heterodimeric Fe-S proteins, with a large subunit containing the reaction center involving Fe and Ni metal ions and a small subunit containing one or more Fe-S clusters. Maturation of the [NiFe] hydrogenase involves assembly of nonproteinaceous ligands on the large subunit by accessory proteins encoded by the hyp operon. HypE is an essential accessory protein and participates in the synthesis of two cyano groups found in the large subunit. We report the crystal structure of Escherichia coli HypE at 2.0-A resolution. HypE exhibits a fold similar to that of PurM and ThiL and forms dimers. The C-terminal catalytically essential...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN) 2CO bimetallic ...
Summary[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN)2CO bimet...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
The hydrogenase maturation proteins HypF and HypE catalyze the synthesis of the CN ligands of the ac...
[FeFe]-hydrogenases catalyze the reversible production of H2 in some bacteria and unicellular eukary...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine residues, cya...
<div><p>The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine resid...
[NiFe]-hydrogenases catalyze the reversible conversion of hydrogen gas into protons and electrons an...
[NiFe]-hydrogenases catalyze uptake and evolution of H2 in a wide range of microorganisms. The enzym...
[NiFe] hydrogenases are found in a variety of microorganisms and catalyze the reversible oxidation o...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN) 2CO bimetallic ...
Summary[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN)2CO bimet...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
The hydrogenase maturation proteins HypF and HypE catalyze the synthesis of the CN ligands of the ac...
[FeFe]-hydrogenases catalyze the reversible production of H2 in some bacteria and unicellular eukary...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine residues, cya...
<div><p>The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine resid...
[NiFe]-hydrogenases catalyze the reversible conversion of hydrogen gas into protons and electrons an...
[NiFe]-hydrogenases catalyze uptake and evolution of H2 in a wide range of microorganisms. The enzym...
[NiFe] hydrogenases are found in a variety of microorganisms and catalyze the reversible oxidation o...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...