In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assembled in a HypCD complex with iron coordinated by cysteines from both proteins and CO is added after ligation of cyanides. The small accessory protein HypC is known to play a role in delivering the cofactor needed for assembling the hydrogenase active site. However, the chemical nature of the Fe(CN)2CO moiety and the stability of the cofactor–HypC complex are open questions. In this work, we address geometries, properties, and the nature of bonding of all chemical species involved in formation and binding of the cofactor by means of quantum calculations. We also study the influence of environmental effects and binding to cysteines on vibrational ...
Abstract[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO m...
Developing from certain catalytic processes required for ancient life forms, the H-2 processing enzy...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)<sub>2</sub>CO cofactor is fi...
[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...
[FeFe]-Hydrogenases harbor a {2Fe3S} assembly bearing two CO and two CN- groups, a mu-CO ligand, and...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
The HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in the large...
<div><p>The class of [NiFe]–hydrogenases is characterized by a bimetallic cofactor comprising low–sp...
The class of [NiFe]–hydrogenases is characterized by a bimetallic cofactor comprising low–spin nicke...
In this work, we employ density functional theory to assign vibrational signatures of [FeFe]-hydroge...
The class of [NiFe]-hydrogenases is characterized by a bimetallic cofactor comprising low-spin nicke...
cited By 0International audienceThe active site of the [NiFe]-hydrogenase contains a pentacoordinate...
Abstract[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO m...
Developing from certain catalytic processes required for ancient life forms, the H-2 processing enzy...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)<sub>2</sub>CO cofactor is fi...
[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...
[FeFe]-Hydrogenases harbor a {2Fe3S} assembly bearing two CO and two CN- groups, a mu-CO ligand, and...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
The HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in the large...
<div><p>The class of [NiFe]–hydrogenases is characterized by a bimetallic cofactor comprising low–sp...
The class of [NiFe]–hydrogenases is characterized by a bimetallic cofactor comprising low–spin nicke...
In this work, we employ density functional theory to assign vibrational signatures of [FeFe]-hydroge...
The class of [NiFe]-hydrogenases is characterized by a bimetallic cofactor comprising low-spin nicke...
cited By 0International audienceThe active site of the [NiFe]-hydrogenase contains a pentacoordinate...
Abstract[NiFe]-hydrogenase accessory proteins HypC and HypD form a complex that binds a Fe–(CN)2CO m...
Developing from certain catalytic processes required for ancient life forms, the H-2 processing enzy...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...