Mononuclear molybdoenzymes of the dimethyl sulfoxide reductase (DMSOR) family catalyze a number of reactions essential to the carbon, nitrogen, sulfur, arsenic, and selenium biogeochemical cycles. These enzymes are also ancient, with many lineages likely predating the divergence of the last universal common ancestor into the Bacteria and Archaea domains. We have constructed rooted phylogenies for over 1,550 representatives of the DMSOR family using maximum likelihood methods to investigate the evolution of the arsenic biogeochemical cycle. The phylogenetic analysis provides compelling evidence that formylmethanofuran dehydrogenase B subunits, which catalyze the reduction of CO2 to formate during hydrogenotrophic methanogenesis, constitutes ...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
<div><p>Hydrogenotrophic methanogenesis and dissimilatory sulfate reduction, two of the oldest energ...
Although the biogeochemistry of the two environmentally hazardous compounds arsenic and sulfide has ...
Mononuclear molybdoenzymes of the dimethyl sulfoxide reductase (DMSOR) family catalyze a number of r...
Microbial activity is responsible for the transformation of at least one third of the elements in th...
Bacteria can harvest energy from a range of carbon sources from simple to complex, and couple this t...
Anaerobic oxidation of methane (AOM) is an important biological process responsible for controlling ...
International audienceThe three presently known enzymes responsible for arsenic-using bioenergetic p...
AbstractAlthough at low concentrations, arsenic commonly occurs naturally as a local geological cons...
Is the case of entire families (Nas, Nar, Aro or FdhH) or subfamilies (Unk). Arsenite oxidase (Aro) ...
Arsenic (As) and selenium (Se) are naturally occurring metalloids in the Earth’s crust. Their specia...
The molybdopterin enzyme family catalyzes a variety of substrates and plays a critical role in the c...
The Dimethyl Sulfoxide Reductase (or MopB) family is a diverse assemblage of enzymes found throughou...
While the molybdenum cofactor in the majority of bisPGD enzymes goes through two consecutive 1-elect...
The selenium oxyanions selenate (Se(VI)) and selenite (Se(IV)) can be utilized by some bacteria and ...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
<div><p>Hydrogenotrophic methanogenesis and dissimilatory sulfate reduction, two of the oldest energ...
Although the biogeochemistry of the two environmentally hazardous compounds arsenic and sulfide has ...
Mononuclear molybdoenzymes of the dimethyl sulfoxide reductase (DMSOR) family catalyze a number of r...
Microbial activity is responsible for the transformation of at least one third of the elements in th...
Bacteria can harvest energy from a range of carbon sources from simple to complex, and couple this t...
Anaerobic oxidation of methane (AOM) is an important biological process responsible for controlling ...
International audienceThe three presently known enzymes responsible for arsenic-using bioenergetic p...
AbstractAlthough at low concentrations, arsenic commonly occurs naturally as a local geological cons...
Is the case of entire families (Nas, Nar, Aro or FdhH) or subfamilies (Unk). Arsenite oxidase (Aro) ...
Arsenic (As) and selenium (Se) are naturally occurring metalloids in the Earth’s crust. Their specia...
The molybdopterin enzyme family catalyzes a variety of substrates and plays a critical role in the c...
The Dimethyl Sulfoxide Reductase (or MopB) family is a diverse assemblage of enzymes found throughou...
While the molybdenum cofactor in the majority of bisPGD enzymes goes through two consecutive 1-elect...
The selenium oxyanions selenate (Se(VI)) and selenite (Se(IV)) can be utilized by some bacteria and ...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
<div><p>Hydrogenotrophic methanogenesis and dissimilatory sulfate reduction, two of the oldest energ...
Although the biogeochemistry of the two environmentally hazardous compounds arsenic and sulfide has ...