AbstractA key component in cellular bioenergetics is the ATP synthase. The enzyme from archaea represents a new class of ATPases, the A1AO ATP synthases. They are composed of two domains that function as a pair of rotary motors connected by a central and peripheral stalk(s). The structure of the chemically-driven motor (A1) was solved by small angle X-ray scattering in solution, and the structure of the first A1AO ATP synthases (from methanoarchaea) was obtained recently by single particle analyses. These studies revealed novel structural features such as a second peripheral stalk and a collar-like structure. Interestingly, the membrane-embedded electrically-driven motor (AO) is very different in archaea with sometimes novel, exceptional su...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
AbstractATPases are unique rotary motors that are essential to all living organisms because of their...
AbstractArchaea live under different environmental conditions, such as high salinity, extreme pHs an...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
In Archaea, bacteria, and eukarya, ATP provides metabolic energy for energy-dependent processes. It ...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
Archaea are considered to be the most primitive organisms forming a separate evolutionary kingdom lo...
In Archaea, bacteria, and eukarya, ATP provides met-abolic energy for energy-dependent processes. It...
Abstract Adenosine triphosphate (ATP) synthase produces ATP from ADP and inorganic phosphate at the ...
ATP synthases and ATPases are membrane-bound enzymes that synthesize either ATP from ADP and phospha...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
ATP synthases convert an electrochemical proton gradient into rotational movement to produce the ubi...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
Archaea swim using the archaellum (archaeal flagellum), a reversible rotary motor consisting of a to...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
AbstractATPases are unique rotary motors that are essential to all living organisms because of their...
AbstractArchaea live under different environmental conditions, such as high salinity, extreme pHs an...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
In Archaea, bacteria, and eukarya, ATP provides metabolic energy for energy-dependent processes. It ...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
Archaea are considered to be the most primitive organisms forming a separate evolutionary kingdom lo...
In Archaea, bacteria, and eukarya, ATP provides met-abolic energy for energy-dependent processes. It...
Abstract Adenosine triphosphate (ATP) synthase produces ATP from ADP and inorganic phosphate at the ...
ATP synthases and ATPases are membrane-bound enzymes that synthesize either ATP from ADP and phospha...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
ATP synthases convert an electrochemical proton gradient into rotational movement to produce the ubi...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
Archaea swim using the archaellum (archaeal flagellum), a reversible rotary motor consisting of a to...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
AbstractATPases are unique rotary motors that are essential to all living organisms because of their...