In archaea the A1AO ATP synthase uses a transmembrane electrochemical potential to generate ATP, while the soluble A1 domain (subunits A3B3DF) alone can hydrolyse ATP. The three nucleotide-binding AB pairs form a barrel-like structure with a central orifice that hosts the rotating central stalk subunits DF. ATP binding, hydrolysis and product release cause a conformational change inside the A:B-interface, which enforces the rotation of subunits DF. Recently, we reported that subunit F is a stimulator of ATPase activity. Here, we investigated the nucleotide-dependent conformational changes of subunit F relative to subunit D during ATP hydrolysis in the A3B3DF complex of the Methanosarcina mazei Gö1 A-ATP synthase using single-molecule Förste...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
AbstractSubunit ɛ of bacterial and chloroplast FOF1-ATP synthase is responsible for inhibition of AT...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
In archaea the A1AO ATP synthase uses a transmembrane electrochemical potential to generate ATP, whi...
ATP synthases utilize a proton motive force to synthesize ATP. In reverse, these membrane-embedded e...
ATP synthases and ATPases are membrane-bound enzymes that synthesize either ATP from ADP and phospha...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across ...
A1AO ATP synthases couple ion-transport of the AO sector and ATP synthesis/hydrolysis of the A3B3-he...
The interaction of the nucleotide-binding subunit B with subunit F is essential in coupling of ion p...
Adenosine 5’-triphosphate (ATP) synthesis by oxidative phosphorylation or photophosphorylation is a ...
<p>ATP synthases catalyse the formation of ATP, the most common chemical energy storage unit found i...
Archaea are considered to be the most primitive organisms forming a separate evolutionary kingdom lo...
F-ATP synthases use proton flow through the FO domain to synthesize ATP in the F1 domain. In Escheri...
F1F0 ATP synthases are responsible for production of the majority of ATP, the universal energy curre...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
AbstractSubunit ɛ of bacterial and chloroplast FOF1-ATP synthase is responsible for inhibition of AT...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
In archaea the A1AO ATP synthase uses a transmembrane electrochemical potential to generate ATP, whi...
ATP synthases utilize a proton motive force to synthesize ATP. In reverse, these membrane-embedded e...
ATP synthases and ATPases are membrane-bound enzymes that synthesize either ATP from ADP and phospha...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across ...
A1AO ATP synthases couple ion-transport of the AO sector and ATP synthesis/hydrolysis of the A3B3-he...
The interaction of the nucleotide-binding subunit B with subunit F is essential in coupling of ion p...
Adenosine 5’-triphosphate (ATP) synthesis by oxidative phosphorylation or photophosphorylation is a ...
<p>ATP synthases catalyse the formation of ATP, the most common chemical energy storage unit found i...
Archaea are considered to be the most primitive organisms forming a separate evolutionary kingdom lo...
F-ATP synthases use proton flow through the FO domain to synthesize ATP in the F1 domain. In Escheri...
F1F0 ATP synthases are responsible for production of the majority of ATP, the universal energy curre...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
AbstractSubunit ɛ of bacterial and chloroplast FOF1-ATP synthase is responsible for inhibition of AT...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...