Methylococcus capsulatus (Bath) was shown to contain two distinct hydrogenases, a soluble hydrogenase and a membrane-bound hydrogenase. This is the first report of a membrane-bound hydrogenase in methanotrophs. Both enzymes were expressed apparently constitutively under normal growth conditions. The soluble hydrogenase was capable of reducing NAD(+) with molecular hydrogen. The activities of both soluble and particulate methane monooxygenases could be driven by molecular hydrogen. This confirmed that molecular hydrogen could be used as a source of reducing power for methane oxidation. Hydrogen-driven methane monooxygenase activities tolerated elevated temperatures and moderate oxygen concentrations. The significance of these findings for bi...
The methanogenic archaeon Methanosarcina barkeri encodes three distinct types of hydrogenase, whose ...
Methane is both a valuable source of energy and a potent greenhouse gas; its oxidation to methanol p...
Methane monooxygenase (MMO) catalyzes the oxidation of methane to methanol as the \ufb01rst step of ...
The trace amounts (0.53 ppmv) of atmospheric hydrogen gas (H2) can be utilized by microorganisms to ...
Methane oxidizing bacteria (methanotrophs) are a unique group of aerobic bacteria that can gain all ...
The first gene cluster encoding for a membrane bound [NiFe] hydrogenase from a methanotroph, Methylo...
Methanotrophs are a widely distributed group of aerobic bacteria that use methane as their source of...
AbstractCrude inside-out vesicles from the methanogenic strain Göl were prepared via protoplasts. Th...
Methanogenesis is the final step in the anaerobic degradation of organic matter. The most important ...
Alcaligenes eutrophus strains H 16, B 19, G 27 and N9A contained two different hydrogenases. One enz...
Methane, an important greenhouse gas, has a 20-fold higher heat capacity than carbon dioxide. Earlie...
Certain anaerobic microorganisms evolved a mechanism to use H-2 as a reductant in their energy metab...
Methane monooxygenase (MMO) catalyzes the oxidation of methane to methanol as the first step of meth...
The recently isolated methanogen Methanonatronarchaeum thermophilum is an extremely haloalkaliphilic...
Methane producing archaea have a vital role in the global carbon cycle by facilitating the conversio...
The methanogenic archaeon Methanosarcina barkeri encodes three distinct types of hydrogenase, whose ...
Methane is both a valuable source of energy and a potent greenhouse gas; its oxidation to methanol p...
Methane monooxygenase (MMO) catalyzes the oxidation of methane to methanol as the \ufb01rst step of ...
The trace amounts (0.53 ppmv) of atmospheric hydrogen gas (H2) can be utilized by microorganisms to ...
Methane oxidizing bacteria (methanotrophs) are a unique group of aerobic bacteria that can gain all ...
The first gene cluster encoding for a membrane bound [NiFe] hydrogenase from a methanotroph, Methylo...
Methanotrophs are a widely distributed group of aerobic bacteria that use methane as their source of...
AbstractCrude inside-out vesicles from the methanogenic strain Göl were prepared via protoplasts. Th...
Methanogenesis is the final step in the anaerobic degradation of organic matter. The most important ...
Alcaligenes eutrophus strains H 16, B 19, G 27 and N9A contained two different hydrogenases. One enz...
Methane, an important greenhouse gas, has a 20-fold higher heat capacity than carbon dioxide. Earlie...
Certain anaerobic microorganisms evolved a mechanism to use H-2 as a reductant in their energy metab...
Methane monooxygenase (MMO) catalyzes the oxidation of methane to methanol as the first step of meth...
The recently isolated methanogen Methanonatronarchaeum thermophilum is an extremely haloalkaliphilic...
Methane producing archaea have a vital role in the global carbon cycle by facilitating the conversio...
The methanogenic archaeon Methanosarcina barkeri encodes three distinct types of hydrogenase, whose ...
Methane is both a valuable source of energy and a potent greenhouse gas; its oxidation to methanol p...
Methane monooxygenase (MMO) catalyzes the oxidation of methane to methanol as the \ufb01rst step of ...