[FeFe]-hydrogenases catalyze the reversible production of H2 in some bacteria and unicellular eukaryotes. These enzymes require ancillary proteins to assemble the unique active site H-cluster, a complex structure composed of a 2Fe center bridged to a [4Fe-4S] cubane. The first crystal structure of a key factor in the maturation process, HydF, has been determined at 3Å resolution. The protein monomer present in the asymmetric unit of the crystal comprises three domains: a GTP-binding domain, a dimerization domain, and a metal cluster-binding domain, all characterized by similar folding motifs. Two monomers dimerize, giving rise to a stable dimer, held together mainly by the formation of a continuous -sheet comprising eight-strands from two ...
[FeFe]-hydrogenases contain a complex [4Fee4S]-2Fe cluster (H-cluster) and are able to efficiently r...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
The aim of my PhD project was to obtain new structural and functional insights useful to draw a more...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
International audience[FeFe] hydrogenase (HydA) catalyzes interconversion between 2H+ and H2 at an a...
[FeFe]-hydrogenases are iron-sulfur proteins characterized by a complex active site, the H-cluster, ...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
Hydrogen production in nature is performed by hydrogenases. Among them, [FeFe]-hydrogenases have a p...
Hydrogen production in nature is performed by hydrogenases. Among them, [FeFe]-hydrogenases have a p...
The [FeFe] hydrogenases are ancient metalloenzymes that catalyse the reversible interconversion betw...
[FeFe]-hydrogenases catalyze the reversible interconversion of protons to molecular hydrogen (H-2) a...
Abstract[FeFe] hydrogenases are key enzymes for bio(photo)production of molecular hydrogen, and seve...
[FeFe] hydrogenases are key enzymes for bio(photo)production of molecular hydrogen, and several effo...
Hydrogenases use complex metal cofactors to catalyze the reversible formation of hydrogen. In [FeFe]...
International audienceMaturation of [FeFe]-hydrogenases, consisting in the synthesis and assembly of...
[FeFe]-hydrogenases contain a complex [4Fee4S]-2Fe cluster (H-cluster) and are able to efficiently r...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
The aim of my PhD project was to obtain new structural and functional insights useful to draw a more...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
International audience[FeFe] hydrogenase (HydA) catalyzes interconversion between 2H+ and H2 at an a...
[FeFe]-hydrogenases are iron-sulfur proteins characterized by a complex active site, the H-cluster, ...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
Hydrogen production in nature is performed by hydrogenases. Among them, [FeFe]-hydrogenases have a p...
Hydrogen production in nature is performed by hydrogenases. Among them, [FeFe]-hydrogenases have a p...
The [FeFe] hydrogenases are ancient metalloenzymes that catalyse the reversible interconversion betw...
[FeFe]-hydrogenases catalyze the reversible interconversion of protons to molecular hydrogen (H-2) a...
Abstract[FeFe] hydrogenases are key enzymes for bio(photo)production of molecular hydrogen, and seve...
[FeFe] hydrogenases are key enzymes for bio(photo)production of molecular hydrogen, and several effo...
Hydrogenases use complex metal cofactors to catalyze the reversible formation of hydrogen. In [FeFe]...
International audienceMaturation of [FeFe]-hydrogenases, consisting in the synthesis and assembly of...
[FeFe]-hydrogenases contain a complex [4Fee4S]-2Fe cluster (H-cluster) and are able to efficiently r...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
The aim of my PhD project was to obtain new structural and functional insights useful to draw a more...