The H-cluster of [Fe-Fe] hydrogenase consists of a [4Fe]H subcluster linked by the sulfur of a cysteine residue to an organometallic [2Fe]H subcluster that utilizes terminal CO and CN ligands to each Fe along with a bridging CO and a bridging SCH2NHCH2S azadithiolate (adt) to catalyze proton reduction or hydrogen oxidation. Three Fe-S "maturase" proteins, HydE, HydF, and HydG, are responsible for the biosynthesis of the [2Fe]H subcluster and its incorporation into the hydrogenase enzyme to form this catalytically active H-cluster. We have proposed that HydG is a bifunctional enzyme that uses S-adenosylmethione (SAM) bound to a [4Fe-4S] cluster to lyse tyrosine via a transient 5'-deoxyadenosyl radical to produce CO and CN ligands to a unique...
Three maturase enzymes-HydE, HydF, and HydG-synthesize and insert the organometallic component of th...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe]-hydrogenases employ a catalytic H-cluster, consisting of a [4Fe-4S]H cluster linked to a [2Fe...
Hydrogenases catalyze the redox interconversion of protons and H2, an important reaction for a numbe...
[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 biosynthesis of the active site of the [FeFe]-hydrogenases (HydA1), the H-cluster, is of interes...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Hydrogenase enzymes catalyze the rapid and reversible interconversion of H2 with protons and electro...
The enzyme [FeFe]-hydrogenase (HydA1) contains a unique 6-iron cofactor, the H-cluster, that has unu...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
Radical S-adenosylmethionine (radical SAM or rSAM) enzymes use their S-adenosylmethionine cofactor b...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
Three maturase enzymes-HydE, HydF, and HydG-synthesize and insert the organometallic component of th...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe]-hydrogenases employ a catalytic H-cluster, consisting of a [4Fe-4S]H cluster linked to a [2Fe...
Hydrogenases catalyze the redox interconversion of protons and H2, an important reaction for a numbe...
[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 biosynthesis of the active site of the [FeFe]-hydrogenases (HydA1), the H-cluster, is of interes...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
Hydrogenase enzymes catalyze the rapid and reversible interconversion of H2 with protons and electro...
The enzyme [FeFe]-hydrogenase (HydA1) contains a unique 6-iron cofactor, the H-cluster, that has unu...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
Radical S-adenosylmethionine (radical SAM or rSAM) enzymes use their S-adenosylmethionine cofactor b...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
Three maturase enzymes-HydE, HydF, and HydG-synthesize and insert the organometallic component of th...
[FeFe] hydrogenases are promising catalysts for producing hydrogen as a sustainable fuel and chemica...
[FeFe]-hydrogenases employ a catalytic H-cluster, consisting of a [4Fe-4S]H cluster linked to a [2Fe...