Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons and electrons. Hyd-2 synthesis is strongly upregulated during growth on glycerol or on glycerol-fumarate. Membrane-associated Hyd-2 is an unusual heterotetrameric [NiFe]-hydrogenase that lacks a typical cytochrome b membrane anchor subunit, which transfers electrons to the quinone pool. Instead, Hyd-2 has an additional electron transfer subunit, termed HybA, with four predicted iron-sulfur clusters. Here, we examined the physiological role of the HybA subunit. During respiratory growth with glycerol and fumarate, Hyd-2 used menaquinone/demethylmenaquinone (MQ/DMQ) to couple hydrogen oxidation to fumarate reduction. HybA was essential for electr...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
The majority of bacterial membrane-bound NiFe-hydrogenases and formate dehydrogenases have homologou...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology. The genome ...
Dihydrogen oxidation is an important feature of bacterial energy conservation. In Escherichia coli h...
Two of the three [NiFe]-hydrogenases (Hyd) of Escherichia coli have a hydrogen-uptake function in an...
Two of the three [NiFe]-hydrogenases (Hyd) of Escherichia coli have a hydrogen-uptake function in an...
Escherichia coli can both oxidize hydrogen and reduce protons. These activities involve three distin...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
The enterobacterium Escherichia coli synthesizes two H uptake enzymes, Hyd-1 and Hyd-2. We show usin...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
The majority of bacterial membrane-bound NiFe-hydrogenases and formate dehydrogenases have homologou...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology. The genome ...
Dihydrogen oxidation is an important feature of bacterial energy conservation. In Escherichia coli h...
Two of the three [NiFe]-hydrogenases (Hyd) of Escherichia coli have a hydrogen-uptake function in an...
Two of the three [NiFe]-hydrogenases (Hyd) of Escherichia coli have a hydrogen-uptake function in an...
Escherichia coli can both oxidize hydrogen and reduce protons. These activities involve three distin...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
The enterobacterium Escherichia coli synthesizes two H uptake enzymes, Hyd-1 and Hyd-2. We show usin...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
The majority of bacterial membrane-bound NiFe-hydrogenases and formate dehydrogenases have homologou...