Two of the three [NiFe]-hydrogenases (Hyd) of Escherichia coli have a hydrogen-uptake function in anaerobic metabolism. While Hyd-2 is maximally synthesized when the bacterium grows by fumarate respiration, Hyd-1 synthesis shows a correlation with fermentation of sugar substrates. In an attempt to advance our knowledge on the physiological function of Hyd-1 during fermentative growth, we examined Hyd-1 activity and levels in various derivatives of E. coli K-12 MC4100 with specific defects in sugar utilization. MC4100 lacks a functional fructose phosphotransferase system (PTS) and therefore grows more slowly under anaerobic conditions in rich medium in the presence of D-fructose compared with a-glucose. Growth in the presence of fructose res...
The enterobacterium Escherichia coli synthesizes two H uptake enzymes, Hyd-1 and Hyd-2. We show usin...
Fermentation conditions (e.g., pressure and medium) are well-documented to impact the yield of micro...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
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 perform at least two modes of anaerobic hydrogen metabolism and expresses at le...
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology. The genome ...
Escherichia coli can produce H-2 from glucose via formate hydrogen lyase (FHL). In order to improve ...
Abstract To utilize fermentative bacteria for producing the alternative fuel hydrogen, we performed ...
AbstractThe hyc operon of Escherichia coli encodes the H2-evolving hydrogenase 3 (Hyd-3) complex tha...
In E. coli, four types of hydrogenases are recognized. Hydrogenases 1 (Hyd-1) and 2 (Hyd-2) are res...
Dihydrogen oxidation is an important feature of bacterial energy conservation. In Escherichia coli h...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...
Among various routes for the biological hydrogen production, the NAD(P)H-dependent pentose phosphate...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...
The enterobacterium Escherichia coli synthesizes two H uptake enzymes, Hyd-1 and Hyd-2. We show usin...
Fermentation conditions (e.g., pressure and medium) are well-documented to impact the yield of micro...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
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 perform at least two modes of anaerobic hydrogen metabolism and expresses at le...
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology. The genome ...
Escherichia coli can produce H-2 from glucose via formate hydrogen lyase (FHL). In order to improve ...
Abstract To utilize fermentative bacteria for producing the alternative fuel hydrogen, we performed ...
AbstractThe hyc operon of Escherichia coli encodes the H2-evolving hydrogenase 3 (Hyd-3) complex tha...
In E. coli, four types of hydrogenases are recognized. Hydrogenases 1 (Hyd-1) and 2 (Hyd-2) are res...
Dihydrogen oxidation is an important feature of bacterial energy conservation. In Escherichia coli h...
Escherichia coli uptake hydrogenase 2 (Hyd-2) catalyzes the reversible oxidation of H2 to protons an...
Among various routes for the biological hydrogen production, the NAD(P)H-dependent pentose phosphate...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...
The enterobacterium Escherichia coli synthesizes two H uptake enzymes, Hyd-1 and Hyd-2. We show usin...
Fermentation conditions (e.g., pressure and medium) are well-documented to impact the yield of micro...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...