[Fe]-hydrogenase (Hmd) catalyzes the reversible heterolytic cleavage of H-2, and hydride transfer to methenyl-tetrahydromethanopterin (methenyl-H4MPT+). The iron-guanylylpyridinol (FeGP) cofactor, the prosthetic group of Hmd, can be extracted from the holoenzyme and inserted back into the protein. Here, we report the crystal structure of an asymmetric homodimer of Hmd fromMethanolacinia paynteri(pHmd), which was composed of one monomer in the open conformation with the FeGP cofactor (holo-form) and a second monomer in the closed conformation without the cofactor (apo-form). In addition, we report the symmetric pHmd-homodimer structure in complex with guanosine monophosphate (GMP) or guanylylpyridinol (GP), in which each ligand was bound to ...
Hydrogenases, hydrogen-splitting enzymes, are of common interest, because they may substitute platin...
Hydrogenases are promising templates for constructing new H-2-based catalysts. [Fe]-hydrogenase, whi...
Hydrogenases are promising templates for constructing new H-2-based catalysts. [Fe]-hydrogenase, whi...
The iron–sulphur cluster-free hydrogenase (Hmd, EC 1.12.98.2) from methanogenic archaea is a novel t...
[Fe]-hydrogenase (Hmd), an enzyme of the methanogenic energy metabolism, harbors an iron-guanylylpyr...
Hydrogenases are promising templates for designing new H2-based catalysts. [Fe]-hydrogenase reversib...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
[Fe]-hydrogenase (Hmd), an enzyme of the methanogenic energy metabolism, harbors an iron-guanylylpyr...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
The three known types of hydrogenases catalyze reversible activation of H2 and heterolytic cleavage ...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
[Fe]-hydrogenase (Hmd) catalyzes the reduction of methenyl-H4MPT+ to methylene-H4MPT using H2 as ele...
The three known types of hydrogenases catalyze reversible activation of H2 and heterolyticcleavage t...
[Fe]-hydrogenase (Hmd) catalyzes the reversible hydrogenation of methenyltetrahydromethanopterin (me...
Hydrogenases, hydrogen-splitting enzymes, are of common interest, because they may substitute platin...
Hydrogenases are promising templates for constructing new H-2-based catalysts. [Fe]-hydrogenase, whi...
Hydrogenases are promising templates for constructing new H-2-based catalysts. [Fe]-hydrogenase, whi...
The iron–sulphur cluster-free hydrogenase (Hmd, EC 1.12.98.2) from methanogenic archaea is a novel t...
[Fe]-hydrogenase (Hmd), an enzyme of the methanogenic energy metabolism, harbors an iron-guanylylpyr...
Hydrogenases are promising templates for designing new H2-based catalysts. [Fe]-hydrogenase reversib...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
[Fe]-hydrogenase (Hmd), an enzyme of the methanogenic energy metabolism, harbors an iron-guanylylpyr...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
The three known types of hydrogenases catalyze reversible activation of H2 and heterolytic cleavage ...
[Fe]-hydrogenase functions in the methanogenic pathway of hydrogenotrophic methanogenic archaea. It ...
[Fe]-hydrogenase (Hmd) catalyzes the reduction of methenyl-H4MPT+ to methylene-H4MPT using H2 as ele...
The three known types of hydrogenases catalyze reversible activation of H2 and heterolyticcleavage t...
[Fe]-hydrogenase (Hmd) catalyzes the reversible hydrogenation of methenyltetrahydromethanopterin (me...
Hydrogenases, hydrogen-splitting enzymes, are of common interest, because they may substitute platin...
Hydrogenases are promising templates for constructing new H-2-based catalysts. [Fe]-hydrogenase, whi...
Hydrogenases are promising templates for constructing new H-2-based catalysts. [Fe]-hydrogenase, whi...