AbstractAnalysis of tryptophan mutants of F1-ATPase from Escherichia coli [Löbau et al. (1997) FEBS Lett. 404, 15–18] suggested that nucleotide concentrations used to grow crystals for the determination of the structure of bovine F1-ATPase [Abrahams et al. (1994) Nature 370, 621–628] would be sufficient to occupy only two catalytic sites, and that higher concentrations of nucleotide would result in all three sites being occupied. We have determined the structure of bovine F1-ATPase at 2.9 Å resolution with crystals grown in the presence of 5 mM AMPPNP and 5 μM ADP. Similar to previous structures of bovine F1-ATPase determined with crystals grown in the presence of lower nucleotide concentrations, only two β-subunits have bound nucleotide an...
AbstractThe influence of adenine nucleotides and Mg2+ on the thermal denaturation of mitochondrial F...
In the structure of bovine mitochondrial F1-ATPase that was previously determined with crystals grow...
AbstractF1-ATPase, the catalytic sector of Fo-F1 ATPases–ATPsynthases, displays an apparent negative...
AbstractUsing site-directed tryptophan fluorescence we studied nucleotide occupancy of the catalytic...
AbstractBackground: The globular domain of the membrane-associated F1Fo-ATP synthase complex can be ...
AbstractThe crystal structure of a novel aluminium fluoride inhibited form of bovine mitochondrial F...
AbstractBackground: F1-ATPase, an oligomeric assembly with subunit stoichiometry α3β3γδϵ, is the cat...
AbstractBackground: F1-ATPase is the globular domain of F1F0-ATP synthase that catalyses the hydroly...
AbstractIn active MF1, one of the two non-exchangeable tightly bound adenine nucleotides is an ATP, ...
AbstractThe F1-Fo ATP synthase bears 6 nucleotide binding sites, only 3 of which turn over during ca...
AbstractThe conformation of adenine nucleotides bound to bovine mitochondrial F1-ATPase was investig...
The structure of the nucleotide-free F1-ATPase from a thermoalkaliphilic bacterium presented in this...
AbstractBackground: Proton-translocating ATP synthases convert the energy generated from photosynthe...
AbstractMost of the cellular ATP in living organisms is synthesized by the enzyme F1Fo-ATP synthase....
SummaryF1-ATPase, a rotary motor powered by adenosine triphosphate hydrolysis, has been extensively ...
AbstractThe influence of adenine nucleotides and Mg2+ on the thermal denaturation of mitochondrial F...
In the structure of bovine mitochondrial F1-ATPase that was previously determined with crystals grow...
AbstractF1-ATPase, the catalytic sector of Fo-F1 ATPases–ATPsynthases, displays an apparent negative...
AbstractUsing site-directed tryptophan fluorescence we studied nucleotide occupancy of the catalytic...
AbstractBackground: The globular domain of the membrane-associated F1Fo-ATP synthase complex can be ...
AbstractThe crystal structure of a novel aluminium fluoride inhibited form of bovine mitochondrial F...
AbstractBackground: F1-ATPase, an oligomeric assembly with subunit stoichiometry α3β3γδϵ, is the cat...
AbstractBackground: F1-ATPase is the globular domain of F1F0-ATP synthase that catalyses the hydroly...
AbstractIn active MF1, one of the two non-exchangeable tightly bound adenine nucleotides is an ATP, ...
AbstractThe F1-Fo ATP synthase bears 6 nucleotide binding sites, only 3 of which turn over during ca...
AbstractThe conformation of adenine nucleotides bound to bovine mitochondrial F1-ATPase was investig...
The structure of the nucleotide-free F1-ATPase from a thermoalkaliphilic bacterium presented in this...
AbstractBackground: Proton-translocating ATP synthases convert the energy generated from photosynthe...
AbstractMost of the cellular ATP in living organisms is synthesized by the enzyme F1Fo-ATP synthase....
SummaryF1-ATPase, a rotary motor powered by adenosine triphosphate hydrolysis, has been extensively ...
AbstractThe influence of adenine nucleotides and Mg2+ on the thermal denaturation of mitochondrial F...
In the structure of bovine mitochondrial F1-ATPase that was previously determined with crystals grow...
AbstractF1-ATPase, the catalytic sector of Fo-F1 ATPases–ATPsynthases, displays an apparent negative...