Hydrogen production in nature is performed by hydrogenases. Among them, [FeFe]-hydrogenases have a peculiar active site, named H-cluster, that is made of two parts, synthesized in different pathways. The cubane sub-cluster requires the normal iron-sulfur cluster maturation machinery. The [2Fe] sub-cluster instead requires a dedicated set of maturase proteins, HydE, HydF, and HydG that work to assemble the cluster and deliver it to the apo-hydrogenase. In particular, the delivery is performed by HydF. In this review, we will perform an overview of the latest knowledge on the maturation machinery of the H-cluster, focusing in particular on HydF
. These proteins are distinguished by an active site cofactor known as the H-cluster. This unique [6...
Hydrogenase enzymes catalyze the rapid and reversible interconversion of H2 with protons and electro...
International audience[FeFe] hydrogenase (HydA) catalyzes interconversion between 2H+ and H2 at an a...
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...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The [FeFe] hydrogenases are ancient metalloenzymes that catalyse the reversible interconversion betw...
The [FeFe] hydrogenases are ancient metalloenzymes that catalyse the reversible interconversion betw...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
[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...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
The catalytic site of [FeFe]-hydrogenase, the “H-cluster”, composed by a [4Fe-4S] unit connected by ...
. These proteins are distinguished by an active site cofactor known as the H-cluster. This unique [6...
Hydrogenase enzymes catalyze the rapid and reversible interconversion of H2 with protons and electro...
International audience[FeFe] hydrogenase (HydA) catalyzes interconversion between 2H+ and H2 at an a...
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...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
The [FeFe] hydrogenases are ancient metalloenzymes that catalyse the reversible interconversion betw...
The [FeFe] hydrogenases are ancient metalloenzymes that catalyse the reversible interconversion betw...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
[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...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
The catalytic site of [FeFe]-hydrogenase, the “H-cluster”, composed by a [4Fe-4S] unit connected by ...
. These proteins are distinguished by an active site cofactor known as the H-cluster. This unique [6...
Hydrogenase enzymes catalyze the rapid and reversible interconversion of H2 with protons and electro...
International audience[FeFe] hydrogenase (HydA) catalyzes interconversion between 2H+ and H2 at an a...