[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemical feedstock, and they also serve as paradigms for biomimetic hydrogen-evolving compounds. Hydrogen formation is catalyzed by the H-cluster, a unique iron-based cofactor requiring three carbon monoxide (CO) and two cyanide (CN2) ligands as well as a dithiolate bridge. Three accessory proteins (HydE, HydF, and HydG) are presumably responsible for assembling and installing the H-cluster, yet their precise roles and the biosynthetic pathway have yet to be fully defined. In this report, we describe effective cell-free methods for investigating H-cluster synthesis and [FeFe] hydrogenase activation. Combining isotopic labeling with FTIR spectroscopy...
Three iron-sulfur proteins–HydE, HydF, and HydG–play a key role in the synthesis of the [2Fe]H compo...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Biosynthesis of the unusual organometallic H-cluster at the active site of the [FeFe]-hydrogenase re...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The H-cluster of [Fe-Fe] hydrogenase consists of a [4Fe]H subcluster linked by the sulfur of a cyste...
The enzyme [FeFe]-hydrogenase (HydA1) contains a unique 6-iron cofactor, the H-cluster, that has unu...
[FeFe]-hydrogenase enzymes employ a unique organometallic cofactor for efficient and reversible hydr...
International audienceThe synthesis and assembly of the active site [FeFe] unit of [FeFe]-hydrogenas...
. These proteins are distinguished by an active site cofactor known as the H-cluster. This unique [6...
Abstract: Biosynthesis of the unusual organometallic H-cluster at the active site of the [FeFe]-hydr...
International audienceThe synthesis and assembly of the active site [FeFe] unit of [FeFe]-hydrogenas...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Three iron-sulfur proteins–HydE, HydF, and HydG–play a key role in the synthesis of the [2Fe]H compo...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Biosynthesis of the unusual organometallic H-cluster at the active site of the [FeFe]-hydrogenase re...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The H-cluster of [Fe-Fe] hydrogenase consists of a [4Fe]H subcluster linked by the sulfur of a cyste...
The enzyme [FeFe]-hydrogenase (HydA1) contains a unique 6-iron cofactor, the H-cluster, that has unu...
[FeFe]-hydrogenase enzymes employ a unique organometallic cofactor for efficient and reversible hydr...
International audienceThe synthesis and assembly of the active site [FeFe] unit of [FeFe]-hydrogenas...
. These proteins are distinguished by an active site cofactor known as the H-cluster. This unique [6...
Abstract: Biosynthesis of the unusual organometallic H-cluster at the active site of the [FeFe]-hydr...
International audienceThe synthesis and assembly of the active site [FeFe] unit of [FeFe]-hydrogenas...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Three iron-sulfur proteins–HydE, HydF, and HydG–play a key role in the synthesis of the [2Fe]H compo...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Biosynthesis of the unusual organometallic H-cluster at the active site of the [FeFe]-hydrogenase re...