The HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in the large subunit of [NiFe]-hydrogenases. Using infrared spectroscopy we demonstrate that an anaerobically purified, Strep-tagged HypCD complex from Escherichia coli exhibits absorption bands characteristic of diatomic CO and CN− ligands as well as CO2. Metal and sulphide analyses revealed that along with the [4Fe–4S]2+ cluster in HypD, the complex has two additional oxygen-labile Fe ions. We prove that HypD cysteine 41 is required for the coordination of all three ligands. These findings suggest that the HypCD complex carries minimally the Fe(CN)2CO cofactor
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)<sub>2</sub>CO cofactor is fi...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assemble...
The class of [NiFe]-hydrogenases is characterized by a bimetallic cofactor comprising low-spin nicke...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO moiety an...
[NiFe]-hydrogenases bind a NiFe–(CN)<sub>2</sub>CO cofactor in their catalytic large subunit. The ir...
The [4Fe-4S] cluster containing scaffold complex HypCD is the central construction site for the asse...
AbstractThe Fe atom in the bimetallic active site of [NiFe]-hydrogenases has one CO and two cyanide ...
Abstract[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO m...
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...
[NiFe]-hydrogenases (Hyd) bind a nickel-iron-based cofactor. The Fe ion of the cofactor is bound by...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
AbstractWithin the catalytic centre of [NiFe]-hydrogenases one carbonyl and two cyanide ligands are ...
The class of [NiFe]–hydrogenases is characterized by a bimetallic cofactor comprising low–spin nick...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)<sub>2</sub>CO cofactor is fi...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assemble...
The class of [NiFe]-hydrogenases is characterized by a bimetallic cofactor comprising low-spin nicke...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO moiety an...
[NiFe]-hydrogenases bind a NiFe–(CN)<sub>2</sub>CO cofactor in their catalytic large subunit. The ir...
The [4Fe-4S] cluster containing scaffold complex HypCD is the central construction site for the asse...
AbstractThe Fe atom in the bimetallic active site of [NiFe]-hydrogenases has one CO and two cyanide ...
Abstract[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO m...
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...
[NiFe]-hydrogenases (Hyd) bind a nickel-iron-based cofactor. The Fe ion of the cofactor is bound by...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
AbstractWithin the catalytic centre of [NiFe]-hydrogenases one carbonyl and two cyanide ligands are ...
The class of [NiFe]–hydrogenases is characterized by a bimetallic cofactor comprising low–spin nick...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)<sub>2</sub>CO cofactor is fi...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assemble...
The class of [NiFe]-hydrogenases is characterized by a bimetallic cofactor comprising low-spin nicke...