textMethane is a greenhouse gas and a major contributor to climate change. Methanogenic Archaea produce more than 1 billion tons of this gas each year through methanogenesis, the anaerobic reduction of CO₂ to methane. Coenzyme B (CoB) is one of eight coenzymes required for methanogenesis and it is unique to methanogens. Therefore, this coenzyme is a potential target for inhibiting methanogenesis. To further elucidate the CoB biosynthetic pathway, genes from Methanocaldococcus jannaschii were cloned and expressed in an effort to identify the CoB homoaconitase. From this study, the MJ0499-MJ1277 pair of proteins was identified as the methanogen isopropylmalate isomerase involved in leucine and isoleucine biosynthesis. The MJ1003-MJ1271 pair o...
Multienzyme complexes catalyze important metabolic reactions in many organisms, but little is known ...
Iron-sulfur (Fe-S) clusters, the ancient cofactors found in proteins across all life forms, play vit...
Reduction of the disulfide of coenzyme M and coenzyme B (CoMS–SCoB) by heterodisulfide reductases (H...
Methane is a potent greenhouse gas that is generated and consumed in anaerobic environments through ...
Hydrogenotrophic methanogenic archaea are efficient H2 utilizers, but only a few are known to be abl...
Most methanogenic archaea use the rudimentary hydrogenotrophic pathway—from CO2 and H2 to methane—as...
The increasing environmental concerns due to greenhouse gas emissions have shifted the focus from fo...
Methylated sulfur compounds play pivotal roles in the global sulfur and carbon cycles and contribute...
Multienzyme complexes catalyze important metabolic reactions in many organisms, but little is known ...
Methanogenic archaea operate an ancient, if not primordial, metabolic pathway that releases methane ...
Biochemical studies have revealed two distinct classes of Coenzyme B-Coenzyme M heterodisulfide (CoB...
Methane biogenesis in methanogens is mediated by methyl-coenzyme M reductase, an enzyme that is also...
Methane biogenesis in methanogens is mediated by methyl-coenzyme M reductase, an enzyme that is also...
Methanogenic archaea are strictly anaerobic organisms responsible for the production of all biologic...
textMethanogens, members of the domain Archaea, are unique in their ability to reduce carbon substra...
Multienzyme complexes catalyze important metabolic reactions in many organisms, but little is known ...
Iron-sulfur (Fe-S) clusters, the ancient cofactors found in proteins across all life forms, play vit...
Reduction of the disulfide of coenzyme M and coenzyme B (CoMS–SCoB) by heterodisulfide reductases (H...
Methane is a potent greenhouse gas that is generated and consumed in anaerobic environments through ...
Hydrogenotrophic methanogenic archaea are efficient H2 utilizers, but only a few are known to be abl...
Most methanogenic archaea use the rudimentary hydrogenotrophic pathway—from CO2 and H2 to methane—as...
The increasing environmental concerns due to greenhouse gas emissions have shifted the focus from fo...
Methylated sulfur compounds play pivotal roles in the global sulfur and carbon cycles and contribute...
Multienzyme complexes catalyze important metabolic reactions in many organisms, but little is known ...
Methanogenic archaea operate an ancient, if not primordial, metabolic pathway that releases methane ...
Biochemical studies have revealed two distinct classes of Coenzyme B-Coenzyme M heterodisulfide (CoB...
Methane biogenesis in methanogens is mediated by methyl-coenzyme M reductase, an enzyme that is also...
Methane biogenesis in methanogens is mediated by methyl-coenzyme M reductase, an enzyme that is also...
Methanogenic archaea are strictly anaerobic organisms responsible for the production of all biologic...
textMethanogens, members of the domain Archaea, are unique in their ability to reduce carbon substra...
Multienzyme complexes catalyze important metabolic reactions in many organisms, but little is known ...
Iron-sulfur (Fe-S) clusters, the ancient cofactors found in proteins across all life forms, play vit...
Reduction of the disulfide of coenzyme M and coenzyme B (CoMS–SCoB) by heterodisulfide reductases (H...