AbstractAnalyzing the direction of F1-ATPase subunit γ rotation, its shape and non-random distribution of surface residues, a mechanism is proposed for how γ induces the closing/opening of the catalytic sites at β/α interfaces: by keeping contact with the mobile domain of subunits β at the ‘jaw’ (D386, the seven consecutive hydrophobic residues and D394/E395), rotating γ works as a screw conveyer within the barrel of (α,β)3. Mutations of the conveyer contacts are predicted to inhibit. Rotating wheel cartoons illustrate enzyme turnover and conformational changes. Steric clashes, polar interactions and also substrate limitations lead to specific stops. Because it is constructed as a stepper, γ prevents uncoupling at high energy charge
AbstractF1-ATPase (F1) is a reversible ATP-driven rotary motor protein. When its rotary shaft is rev...
AbstractRotation of the γ subunit in chloroplast F1-ATPase (CF1) was investigated by using a single ...
AbstractWe focus on the rotational catalysis of Escherichia coli F-ATPase (ATP synthase, FOF1). Usin...
AbstractAnalyzing the direction of F1-ATPase subunit γ rotation, its shape and non-random distributi...
AbstractWe present a mechanism for F1-ATPase in which hydrolysis of MgATP in the high-affinity catal...
AbstractMolecular dynamics trajectories for the bovine mitochondrial F1-ATPase are used to demonstra...
AbstractF1-ATPase is a water-soluble portion of FoF1-ATP synthase and rotary molecular motor that ex...
F-1-ATPase (F-1) is the catalytic portion of ATP synthase, a rotary motor protein that couples proto...
AbstractATP synthase uses a rotary mechanism to carry out its cellular function of manufacturing ATP...
AbstractAccording to the different nucleotide occupancies of the F1-ATPase β-subunits and due to the...
AbstractRotation of the F0F1 ATP synthase γ subunit drives each of the three catalytic sites through...
AbstractF1-ATPase is a water-soluble portion of FoF1-ATP synthase and rotary molecular motor that ex...
AbstractWe present a mechanism for F1-ATPase in which hydrolysis of MgATP in the high-affinity catal...
AbstractF1-ATPase (F1) is an ATP-driven rotary motor in which the three catalytic β subunits in the ...
SummaryF1-ATPase, a rotary motor powered by adenosine triphosphate hydrolysis, has been extensively ...
AbstractF1-ATPase (F1) is a reversible ATP-driven rotary motor protein. When its rotary shaft is rev...
AbstractRotation of the γ subunit in chloroplast F1-ATPase (CF1) was investigated by using a single ...
AbstractWe focus on the rotational catalysis of Escherichia coli F-ATPase (ATP synthase, FOF1). Usin...
AbstractAnalyzing the direction of F1-ATPase subunit γ rotation, its shape and non-random distributi...
AbstractWe present a mechanism for F1-ATPase in which hydrolysis of MgATP in the high-affinity catal...
AbstractMolecular dynamics trajectories for the bovine mitochondrial F1-ATPase are used to demonstra...
AbstractF1-ATPase is a water-soluble portion of FoF1-ATP synthase and rotary molecular motor that ex...
F-1-ATPase (F-1) is the catalytic portion of ATP synthase, a rotary motor protein that couples proto...
AbstractATP synthase uses a rotary mechanism to carry out its cellular function of manufacturing ATP...
AbstractAccording to the different nucleotide occupancies of the F1-ATPase β-subunits and due to the...
AbstractRotation of the F0F1 ATP synthase γ subunit drives each of the three catalytic sites through...
AbstractF1-ATPase is a water-soluble portion of FoF1-ATP synthase and rotary molecular motor that ex...
AbstractWe present a mechanism for F1-ATPase in which hydrolysis of MgATP in the high-affinity catal...
AbstractF1-ATPase (F1) is an ATP-driven rotary motor in which the three catalytic β subunits in the ...
SummaryF1-ATPase, a rotary motor powered by adenosine triphosphate hydrolysis, has been extensively ...
AbstractF1-ATPase (F1) is a reversible ATP-driven rotary motor protein. When its rotary shaft is rev...
AbstractRotation of the γ subunit in chloroplast F1-ATPase (CF1) was investigated by using a single ...
AbstractWe focus on the rotational catalysis of Escherichia coli F-ATPase (ATP synthase, FOF1). Usin...