Arsenate respiration by bacteria was discovered over two decades ago and is catalyzed by diverse organisms using the well-conserved Arr enzyme complex. Until now, the mechanisms underpinning this metabolism have been relatively opaque. Here, we report the structure of an Arr complex (solved by X-ray crystallography to 1.6-Å resolution), which was enabled by an improved Arr expression method in the genetically tractable arsenate respirer Shewanella sp. ANA-3. We also obtained structures bound with the substrate arsenate (1.8 Å), the product arsenite (1.8 Å), and the natural inhibitor phosphate (1.7 Å). The structures reveal a conserved active-site motif that distinguishes Arr [(R/K)GRY] from the closely related arsenite respiratory oxidase (...
Arsenate [As(V)]-respiring bacteria affect the speciation and mobilization of arsenic in the environ...
Arsenate Reductase (ArsC) is a superfamily of enzymes that reduce arsenate to arsenite. ArsC protein...
Although arsenic is a trace element in terms of its natural abundance, it nonetheless has a common ...
Arsenate respiration by bacteria was discovered over two decades ago and is catalyzed by diverse org...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
Microbial arsenate reduction affects the fate and transport of arsenic in the environment. Arsenate ...
AbstractBackground: In Escherichia coli bearing the plasmid R773, resistance to arsenite, arsenate, ...
Arsenic (As) is one of the most toxic metalloids, as it is harmful to all organisms. The two most im...
Because arsenate [As(V)] reduction by bacteria can significantly enhance arsenic mobility in the env...
For more than a decade, it has been recognized that arsenate [H2AsO41-; As(V)] can be used by microo...
International audienceThe three presently known enzymes responsible for arsenic-using bioenergetic p...
Arsenate reductase (ArsC) from Staphylococcus aureus plasmid pI258 plays a role in bacterial heavy m...
The anaerobic bacterium Chrysiogenes arsenatis respires using the oxyanion arsenate (AsO43–) as the ...
AbstractAlthough at low concentrations, arsenic commonly occurs naturally as a local geological cons...
Arsenate [As(V)]-respiring bacteria affect the speciation and mobilization of arsenic in the environ...
Arsenate Reductase (ArsC) is a superfamily of enzymes that reduce arsenate to arsenite. ArsC protein...
Although arsenic is a trace element in terms of its natural abundance, it nonetheless has a common ...
Arsenate respiration by bacteria was discovered over two decades ago and is catalyzed by diverse org...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
Microbial arsenate respiration contributes to the mobilization of arsenic from the solid to the solu...
Microbial arsenate reduction affects the fate and transport of arsenic in the environment. Arsenate ...
AbstractBackground: In Escherichia coli bearing the plasmid R773, resistance to arsenite, arsenate, ...
Arsenic (As) is one of the most toxic metalloids, as it is harmful to all organisms. The two most im...
Because arsenate [As(V)] reduction by bacteria can significantly enhance arsenic mobility in the env...
For more than a decade, it has been recognized that arsenate [H2AsO41-; As(V)] can be used by microo...
International audienceThe three presently known enzymes responsible for arsenic-using bioenergetic p...
Arsenate reductase (ArsC) from Staphylococcus aureus plasmid pI258 plays a role in bacterial heavy m...
The anaerobic bacterium Chrysiogenes arsenatis respires using the oxyanion arsenate (AsO43–) as the ...
AbstractAlthough at low concentrations, arsenic commonly occurs naturally as a local geological cons...
Arsenate [As(V)]-respiring bacteria affect the speciation and mobilization of arsenic in the environ...
Arsenate Reductase (ArsC) is a superfamily of enzymes that reduce arsenate to arsenite. ArsC protein...
Although arsenic is a trace element in terms of its natural abundance, it nonetheless has a common ...