Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In particular, a formate hydrogenlyase (FHL) enzyme is responsible for the majority of hydrogen gas produced under fermentative conditions. FHL comprises a formate dehydrogenase (encoded by fdhF) linked directly to [NiFe]‐hydrogenase‐3 (Hyd‐3), and formate is the only natural substrate known for proton reduction by this hydrogenase. In this work, the possibility of engineering an alternative electron donor for hydrogen production has been explored. Rational design and genetic engineering led to the construction of a fusion between Thermotoga maritima ferredoxin (Fd) and Hyd‐3. The Fd‐ Hyd‐3 fusion was found to evolve hydrogen when co‐produced with...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
Escherichia coli produces enzymes dedicated to hydrogen metabolism under anaerobic conditions. In pa...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
During mixed-acid fermentation Escherichia coli produces formate, which is initially excreted out th...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...