The thermophilic acetogen Thermacetogenium phaeum uses the Wood-Ljungdahl pathway in both directions, either for the production of acetate from various compounds or for the oxidation of acetate in syntrophic cooperation with methanogens. In this study, energy conserving enzyme systems in Thermacetogenium phaeum were investigated in both metabolic directions. A gene cluster containing a membrane-bound periplasmically oriented formate dehydrogenase directly adjacent to putative menaquinone synthesis genes was identified in the genome. The protein products of these genes were identified by total proteome analysis, and menaquinone MK-7 had been found earlier as the dominant quinone in the membrane. Enzyme assays with membrane preparations and a...
Syntrophaceticus schinkii is a mesophilic, anaerobic bacterium capable of oxidising acetate to CO2 a...
Methanomassiliicoccus luminyensis was originally isolated from human feces and belongs to the sevent...
Methanogenic oxidation of butyrate to acetate requires a tight cooperation between syntrophically fe...
The thermophilic acetogen Thermacetogenium phaeum uses the Wood-Ljungdahl pathway in both directions...
Thermacetogenium phaeum, the bacterium investigated in this work, can synthesize acetate from hydrog...
Thermacetogenium phaeum is a homoacetogenic bacterium that can grow on various substrates, such as p...
Syntrophic acetate oxidation operates close to the thermodynamic equilibrium and very little is know...
In syntrophic conversion of butyrate to methane and CO2, butyrate is oxidized to acetate by secondar...
In syntrophic conversion of butyrate to methane and CO2, butyrate is oxidized to acetate by secondar...
<div><p>In syntrophic conversion of butyrate to methane and CO<sub>2</sub>, butyrate is oxidized to ...
AbstractMethane-forming archaea are strictly anaerobic microbes and are essential for global carbon ...
Background: Thermacetogenium phaeum is a thermophilic strictly anaerobic bacterium oxidizing acetate...
Acetogenic bacteria are a polyphyletic group of organisms that fix carbon dioxide under anaerobic, n...
Under methanogenic conditions, short-chain fatty acids are common byproducts from degradation of org...
BACKGROUND: Acetogenic bacteria are able to use CO2 as terminal electron acceptor of an anaerobic re...
Syntrophaceticus schinkii is a mesophilic, anaerobic bacterium capable of oxidising acetate to CO2 a...
Methanomassiliicoccus luminyensis was originally isolated from human feces and belongs to the sevent...
Methanogenic oxidation of butyrate to acetate requires a tight cooperation between syntrophically fe...
The thermophilic acetogen Thermacetogenium phaeum uses the Wood-Ljungdahl pathway in both directions...
Thermacetogenium phaeum, the bacterium investigated in this work, can synthesize acetate from hydrog...
Thermacetogenium phaeum is a homoacetogenic bacterium that can grow on various substrates, such as p...
Syntrophic acetate oxidation operates close to the thermodynamic equilibrium and very little is know...
In syntrophic conversion of butyrate to methane and CO2, butyrate is oxidized to acetate by secondar...
In syntrophic conversion of butyrate to methane and CO2, butyrate is oxidized to acetate by secondar...
<div><p>In syntrophic conversion of butyrate to methane and CO<sub>2</sub>, butyrate is oxidized to ...
AbstractMethane-forming archaea are strictly anaerobic microbes and are essential for global carbon ...
Background: Thermacetogenium phaeum is a thermophilic strictly anaerobic bacterium oxidizing acetate...
Acetogenic bacteria are a polyphyletic group of organisms that fix carbon dioxide under anaerobic, n...
Under methanogenic conditions, short-chain fatty acids are common byproducts from degradation of org...
BACKGROUND: Acetogenic bacteria are able to use CO2 as terminal electron acceptor of an anaerobic re...
Syntrophaceticus schinkii is a mesophilic, anaerobic bacterium capable of oxidising acetate to CO2 a...
Methanomassiliicoccus luminyensis was originally isolated from human feces and belongs to the sevent...
Methanogenic oxidation of butyrate to acetate requires a tight cooperation between syntrophically fe...