Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe metal centre of hydrogenases from Escherichia coli. In the absence of carbamoylphosphate, cells accumulate a complex of two hydrogenase maturation proteins, namely HypC and HypD for the synthesis of hydrogenase 3. A procedure for the purification of wild-type HypD protein or of a biologically active derivative carrying the Strep-tagII((R)) at the N terminus has been developed. HypD is a monomeric protein possessing about 4 mol of iron per mol of protein. Electron paramagnetic resonance (EPR) and Mossbauer spectroscopy demonstrated that the iron is present as a diamagnetic [4Fe-4S](2+) cluster. The complex between HypC and HypD can be cross-link...
[NiFe]-hydrogenases catalyze uptake and evolution of H2 in a wide range of microorganisms. The enzym...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The hybG gene product from Escherichia coli has been identified as a chaperone-like protein acting i...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
The hydrogenase maturation proteins HypF and HypE catalyze the synthesis of the CN ligands of the ac...
Summary[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN)2CO bimet...
Hydrogenases are enzymes involved in hydrogen metabolism, utilizing H2 as an electron source. [NiFe]...
[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN) 2CO bimetallic ...
[NiFe]-hydrogenases catalyze the reversible conversion of hydrogen gas into protons and electrons an...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
[NiFe]-hydrogenases bind a NiFe–(CN)<sub>2</sub>CO cofactor in their catalytic large subunit. The ir...
AbstractA mutational screen of amino acid residues of hydrogenase maturation protein HypD from Esche...
The HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in the large...
[NiFe]-hydrogenases (Hyd) bind a nickel-iron-based cofactor. The Fe ion of the cofactor is bound by...
[NiFe]-hydrogenases catalyze uptake and evolution of H2 in a wide range of microorganisms. The enzym...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The hybG gene product from Escherichia coli has been identified as a chaperone-like protein acting i...
Carbamoylphosphate has been shown to be the educt for the synthesis of the CN ligands of the NiFe me...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
The hydrogenase maturation proteins HypF and HypE catalyze the synthesis of the CN ligands of the ac...
Summary[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN)2CO bimet...
Hydrogenases are enzymes involved in hydrogen metabolism, utilizing H2 as an electron source. [NiFe]...
[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN) 2CO bimetallic ...
[NiFe]-hydrogenases catalyze the reversible conversion of hydrogen gas into protons and electrons an...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
[NiFe]-hydrogenases bind a NiFe–(CN)<sub>2</sub>CO cofactor in their catalytic large subunit. The ir...
AbstractA mutational screen of amino acid residues of hydrogenase maturation protein HypD from Esche...
The HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in the large...
[NiFe]-hydrogenases (Hyd) bind a nickel-iron-based cofactor. The Fe ion of the cofactor is bound by...
[NiFe]-hydrogenases catalyze uptake and evolution of H2 in a wide range of microorganisms. The enzym...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The hybG gene product from Escherichia coli has been identified as a chaperone-like protein acting i...