Hydrogenases use complex metal cofactors to catalyze the reversible formation of hydrogen. In [FeFe]-hydrogenases, the H-cluster cofactor includes a diiron subcluster containing azadithiolate, three CO, and two CN(-) ligands. During the assembly of the H cluster, the radical S-adenosyl methionine (SAM) enzyme HydG lyses the substrate tyrosine to yield the diatomic ligands. These diatomic products form an enzyme-bound Fe(CO)x(CN)y synthon that serves as a precursor for eventual H-cluster assembly. To further elucidate the mechanism of this complex reaction, we report the crystal structure and EPR analysis of HydG. At one end of the HydG (βα)8 triosephosphate isomerase (TIM) barrel, a canonical [4Fe-4S] cluster binds SAM in close proximity to...
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...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
The enzyme [FeFe]-hydrogenase (HydA1) contains a unique 6-iron cofactor, the H-cluster, that has unu...
Hydrogenases catalyze the redox interconversion of protons and H2, an important reaction for a numbe...
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...
The catalytic site of [FeFe]-hydrogenase, the “H-cluster”, composed by a [4Fe-4S] unit connected by ...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
Three maturase enzymes-HydE, HydF, and HydG-synthesize and insert the organometallic component of th...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
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...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...
The enzyme [FeFe]-hydrogenase (HydA1) contains a unique 6-iron cofactor, the H-cluster, that has unu...
Hydrogenases catalyze the redox interconversion of protons and H2, an important reaction for a numbe...
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...
The catalytic site of [FeFe]-hydrogenase, the “H-cluster”, composed by a [4Fe-4S] unit connected by ...
The catalytic site of [FeFe]-hydrogenase, the \u201cH-cluster\u201d, composed by a [4Fe-4S] unit con...
[FeFe] hydrogenases catalyze H(2) production using the H-cluster, an iron-sulfur cofactor that conta...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
[FeFe]-hydrogenases are key enzymes for bio(photo)production of hydrogen and several efforts are und...
[FeFe] hydrogenases carry out the redox interconversion of protons and molecular hydrogen (2H+ + 2e-...
Three maturase enzymes-HydE, HydF, and HydG-synthesize and insert the organometallic component of th...
[FeFe] hydrogenases catalyze H2 production using the H-cluster, an iron-sulfur cofactor that contain...
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...
Biosynthesis of the [FeFe] hydrogenase active site (the 'H-cluster') requires the interplay of multi...