The prototypical hydrogen-producing enzyme, the membrane-bound formate hydrogenlyase (FHL) complex from Escherichia coli, links formate oxidation at a molybdopterin-containing formate dehydrogenase to proton reduction at a [NiFe] hydrogenase. It is of intense interest due to its ability to efficiently produce H2 during fermentation, its reversibility, allowing H2-dependent CO2 reduction, and its evolutionary link to respiratory complex I. FHL has been studied for over a century, but its atomic structure remains unknown. Here we report cryo-EM structures of FHL in its aerobically and anaerobically isolated forms at resolutions reaching 2.6 Å. This includes well-resolved density for conserved loops linking the soluble and membrane arms believ...
Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of th...
Mitochondrial complex I is a redox-driven proton pump that generates proton-motive force across the ...
Escherichia coli can perform two modes of formate metabolism. Under respiratory conditions, two peri...
Under anaerobic conditions, Escherichia coli can carry out a mixed-acid fermentation that ultimately...
Under anaerobic conditions, Escherichia coli can carry out a mixed-acid fermentation that ultimately...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
AbstractThe Escherichia coli formate hydrogenlyase (FHL) complex is produced under fermentative cond...
<p>Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of...
<p>Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of...
The Escherichia coli formate hydrogenlyase (FHL) complex is produced under fermentative conditions a...
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology. The genome ...
Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of th...
Mitochondrial complex I is a redox-driven proton pump that generates proton-motive force across the ...
Escherichia coli can perform two modes of formate metabolism. Under respiratory conditions, two peri...
Under anaerobic conditions, Escherichia coli can carry out a mixed-acid fermentation that ultimately...
Under anaerobic conditions, Escherichia coli can carry out a mixed-acid fermentation that ultimately...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
AbstractThe Escherichia coli formate hydrogenlyase (FHL) complex is produced under fermentative cond...
<p>Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of...
<p>Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of...
The Escherichia coli formate hydrogenlyase (FHL) complex is produced under fermentative conditions a...
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology. The genome ...
Formate dehydrogenase H (FDH-H) and [NiFe]-hydrogenase 3 (Hyd-3) form the catalytic components of th...
Mitochondrial complex I is a redox-driven proton pump that generates proton-motive force across the ...
Escherichia coli can perform two modes of formate metabolism. Under respiratory conditions, two peri...