AbstractKinetic analysis of both proton translocating and steady-state ATP hydrolytic activities catalyzed by F0F1 ATPase in submitochondrial particles were carried out over an ATP concentration range of 1–2000 μM. The results were examined in relation to the prediction based on the alternate binding change model proposed by Gresser et al. [(1982) J. Biol. Chem. 257, 12030–12038] in which energy transduction occurs only at the tri-site catalytic cycle. The present results essentially contrast with the model and rather indicate that if the alternate binding mechanism holds for the ATP hydrolytic reaction, the proton translocation should be coupled to at least both bi-site tri-site cycles
F_1F_o-ATP synthase is the enzyme responsible for most of the ATP synthesis in living systems. The c...
The integration of phosphorus chemistry with the mechanism of ATP synthesis/hydrolysis requires dyna...
AbstractUnder the conditions of ATP regeneration and molar excess of nucleotide-depleted F1-ATPase t...
AbstractUnder conditions of molar excess of enzyme, isolated F1-ATPase from beef heart mitochondria ...
We present an analysis of models based on current structural concepts of the F0F1 synthases, account...
Oxygen exchange reactions occurring at β-catalytic sites of the FOF1-ATP synthase/F1-ATPase imprint ...
AbstractThe effect of inorganic phosphate (Pi) on uni-site ATP binding and hydrolysis by the nucleot...
AbstractThe proton translocating ATP-synthase from chloroplasts, CF0F1, was isolated and reconstitut...
AbstractMost of the cellular ATP in living organisms is synthesized by the enzyme F1Fo-ATP synthase....
AbstractATPase activity of the F1-ATPase from the thermophilic Bacillus PS3 (TF1) was measured as a ...
AbstractF1-ATPase is a rotary molecular motor in which the central γ subunit rotates inside a cylind...
AbstractPreincubation of submitochondrial particles with ADP in the presence of Mg2+ results in the ...
AbstractThe rate of both ATP synthesis and hydrolysis catalysed by the thiol-modulated and activated...
AbstractIn active MF1, one of the two non-exchangeable tightly bound adenine nucleotides is an ATP, ...
AbstractATP synthase is conceived as a rotatory engine with two reversible drives, the proton-transp...
F_1F_o-ATP synthase is the enzyme responsible for most of the ATP synthesis in living systems. The c...
The integration of phosphorus chemistry with the mechanism of ATP synthesis/hydrolysis requires dyna...
AbstractUnder the conditions of ATP regeneration and molar excess of nucleotide-depleted F1-ATPase t...
AbstractUnder conditions of molar excess of enzyme, isolated F1-ATPase from beef heart mitochondria ...
We present an analysis of models based on current structural concepts of the F0F1 synthases, account...
Oxygen exchange reactions occurring at β-catalytic sites of the FOF1-ATP synthase/F1-ATPase imprint ...
AbstractThe effect of inorganic phosphate (Pi) on uni-site ATP binding and hydrolysis by the nucleot...
AbstractThe proton translocating ATP-synthase from chloroplasts, CF0F1, was isolated and reconstitut...
AbstractMost of the cellular ATP in living organisms is synthesized by the enzyme F1Fo-ATP synthase....
AbstractATPase activity of the F1-ATPase from the thermophilic Bacillus PS3 (TF1) was measured as a ...
AbstractF1-ATPase is a rotary molecular motor in which the central γ subunit rotates inside a cylind...
AbstractPreincubation of submitochondrial particles with ADP in the presence of Mg2+ results in the ...
AbstractThe rate of both ATP synthesis and hydrolysis catalysed by the thiol-modulated and activated...
AbstractIn active MF1, one of the two non-exchangeable tightly bound adenine nucleotides is an ATP, ...
AbstractATP synthase is conceived as a rotatory engine with two reversible drives, the proton-transp...
F_1F_o-ATP synthase is the enzyme responsible for most of the ATP synthesis in living systems. The c...
The integration of phosphorus chemistry with the mechanism of ATP synthesis/hydrolysis requires dyna...
AbstractUnder the conditions of ATP regeneration and molar excess of nucleotide-depleted F1-ATPase t...