Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action of several [NiFe]-hydrogenase enzymes. Hydrogenase-2, which is typically present in cells at low levels during anaerobic respiration, is a periplasmic-facing membrane-bound complex that functions as a proton pump to convert energy from H2 oxidation into a proton gradient; consequently, its structure is of great interest. Empirically, the complex consists of a tightly-bound core catalytic module, comprising large (HybC) and small (HybO) subunits, which is attached to an Fe-S protein (HybA) and an integral membrane protein, HybB. To date, efforts to gain a more detailed picture have been thwarted by low native expression levels of hydrogenase-2...
We report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 from Es...
Hydrogenases are microbial enzymes catalyzing reversible oxidation of molecular hydrogen. These enzy...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
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...
SummaryWe report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 ...
International audienceWe report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolera...
We report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolerant hydrogenase 1 from ...
Hydrogenase-2 from E. coli is a multi-faceted [NiFe]-hydrogenase that is important because of its du...
Hyb-type [NiFe]-hydrogenase (HYB) is encoded in the hyb operon (hybGFEDCBAO). HYB has been considere...
We report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 from Es...
Hydrogenases are microbial enzymes catalyzing reversible oxidation of molecular hydrogen. These enzy...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
Under anaerobic conditions, Escherichia coli is able to metabolize molecular hydrogen via the action...
Under anaerobic conditions Escherichia coli is able to metabolize molecular hydrogen via the action ...
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...
SummaryWe report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 ...
International audienceWe report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolera...
We report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolerant hydrogenase 1 from ...
Hydrogenase-2 from E. coli is a multi-faceted [NiFe]-hydrogenase that is important because of its du...
Hyb-type [NiFe]-hydrogenase (HYB) is encoded in the hyb operon (hybGFEDCBAO). HYB has been considere...
We report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 from Es...
Hydrogenases are microbial enzymes catalyzing reversible oxidation of molecular hydrogen. These enzy...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...