<div><p>Hydrogenotrophic methanogenesis and dissimilatory sulfate reduction, two of the oldest energy conserving respiratory systems on Earth, apparently could not have evolved in the same host, as sulfite, an intermediate of sulfate reduction, inhibits methanogenesis. However, certain methanogenic archaea metabolize sulfite employing a deazaflavin cofactor (F<sub>420</sub>)-dependent sulfite reductase (Fsr) where N- and C-terminal halves (Fsr-N and Fsr-C) are homologs of F<sub>420</sub>H<sub>2</sub> dehydrogenase and dissimilatory sulfite reductase (Dsr), respectively. From genome analysis we found that Fsr was likely assembled from freestanding Fsr-N homologs and Dsr-like proteins (Dsr-LP), both being abundant in methanogens. Dsr-LPs fell...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
Energy conservation via the pathway of dissimilatory sulfate reduction is present in a diverse group...
<p>Fsr-N and Fsr-C: N-terminal and C-terminal halves of Fsr, respectively. FGltS(I)-α and FGltS(I)-β...
A critical step in the biogeochemical cycle of sulfur on Earth is microbial sulfate reduction, yet o...
A critical step in the biogeochemical cycle of sulfur on Earth is microbial sulfate reduction, yet o...
Sulfate is the predominant electron acceptor for anaerobic oxidation of methane (AOM) in marine sedi...
Energy conservation by the pathway of dissimilatory sulfate reduction is present in a diverse group ...
International audiencePhylogenetic and geological evidence supports the hypothesis that life on Eart...
Dissimilatory sulfate reduction (DSR)—an important reaction in the biogeochemical sulfur cycle—has b...
The dissimilatory reduction of sulfate is an ancient metabolic process central to today's biogeochem...
Sulfate is the predominant electron acceptor for anaerobic oxidation of methane (AOM) in marine sedi...
Conservation of energy based on the reduction of sulfate is of fundamental importance for the biogeo...
Sulfate is the predominant electron acceptor for anaerobic oxidation of methane (AOM) in marine sedi...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
Energy conservation via the pathway of dissimilatory sulfate reduction is present in a diverse group...
<p>Fsr-N and Fsr-C: N-terminal and C-terminal halves of Fsr, respectively. FGltS(I)-α and FGltS(I)-β...
A critical step in the biogeochemical cycle of sulfur on Earth is microbial sulfate reduction, yet o...
A critical step in the biogeochemical cycle of sulfur on Earth is microbial sulfate reduction, yet o...
Sulfate is the predominant electron acceptor for anaerobic oxidation of methane (AOM) in marine sedi...
Energy conservation by the pathway of dissimilatory sulfate reduction is present in a diverse group ...
International audiencePhylogenetic and geological evidence supports the hypothesis that life on Eart...
Dissimilatory sulfate reduction (DSR)—an important reaction in the biogeochemical sulfur cycle—has b...
The dissimilatory reduction of sulfate is an ancient metabolic process central to today's biogeochem...
Sulfate is the predominant electron acceptor for anaerobic oxidation of methane (AOM) in marine sedi...
Conservation of energy based on the reduction of sulfate is of fundamental importance for the biogeo...
Sulfate is the predominant electron acceptor for anaerobic oxidation of methane (AOM) in marine sedi...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
A vital process in the biogeochemical sulfur cycle is the dissimilatory sulfate reduction pathway in...
Energy conservation via the pathway of dissimilatory sulfate reduction is present in a diverse group...