Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes in metallocenter assembly. The Fe(CN)2CO moiety of [NiFe] hydrogenases is assembled via unknown transient interactions among specific maturation proteins HypC (metallochaperone), HypD (redox protein), and HypE (cyanide synthesis/donor). Here, we report the structures of the HypC-HypD and HypC-HypD-HypE complexes, providing a view of the transient interactions that take place during the maturation process. HypC binds to the conserved region of HypD through extensive hydrophobic interactions. The ternary complex formation between HypE and the HypCD complex involves both HypC and HypD, rendering the HypE conformation favorable for cyanide transf...
The maturation of [NiFe] hydrogenase is a multistep process that requires the participation of acces...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assemble...
Hydrogenases are metalloenzymes that are key to energy metabolism in a variety of microbial communit...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
[NiFe]-hydrogenases catalyze the reversible conversion of hydrogen gas into protons and electrons an...
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...
<div><p>The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine resid...
[NiFe]-hydrogenases bind a NiFe–(CN)<sub>2</sub>CO cofactor in their catalytic large subunit. The ir...
The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine residues, cya...
Hydrogenases are enzymes involved in hydrogen metabolism, utilizing H2 as an electron source. [NiFe]...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
Figure S1. Sequence alignment and secondary structure assignment of HypC proteins from T
Summary[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN)2CO bimet...
During the maturation of the bimetallic catalytic centre of [NiFe]-hydrogenase enzymes, the nickel i...
The maturation of [NiFe] hydrogenase is a multistep process that requires the participation of acces...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assemble...
Hydrogenases are metalloenzymes that are key to energy metabolism in a variety of microbial communit...
Summary[NiFe] hydrogenase maturation represents one of the most dynamic and sophisticated processes ...
[NiFe]-hydrogenases catalyze the reversible conversion of hydrogen gas into protons and electrons an...
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...
<div><p>The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine resid...
[NiFe]-hydrogenases bind a NiFe–(CN)<sub>2</sub>CO cofactor in their catalytic large subunit. The ir...
The active site of [NiFe]-hydrogenase contains nickel and iron coordinated by cysteine residues, cya...
Hydrogenases are enzymes involved in hydrogen metabolism, utilizing H2 as an electron source. [NiFe]...
AbstractThe HypC and HypD maturases are required for the biosynthesis of the Fe(CN)2CO cofactor in t...
Figure S1. Sequence alignment and secondary structure assignment of HypC proteins from T
Summary[NiFe]-hydrogenases are multimeric proteins. The large subunit contains the NiFe(CN)2CO bimet...
During the maturation of the bimetallic catalytic centre of [NiFe]-hydrogenase enzymes, the nickel i...
The maturation of [NiFe] hydrogenase is a multistep process that requires the participation of acces...
In the intricate maturation process of [NiFe]-hydrogenases, the Fe(CN)2CO cofactor is first assemble...
Hydrogenases are metalloenzymes that are key to energy metabolism in a variety of microbial communit...