AbstractF1-ATPase is a powerful rotary molecular motor that can rotate an object several hundred times as large as the motor itself against the viscous friction of water. Forced reverse rotation has been shown to lead to ATP synthesis, implying that the mechanical work against the motor’s high torque can be converted into the chemical energy of ATP. The minimal composition of the motor protein is α3β3γ subunits, where the central rotor subunit γ turns inside a stator cylinder made of alternately arranged α3β3 subunits using the energy derived from ATP hydrolysis. The rotor consists of an axle, a coiled coil of the amino- and carboxyl-terminal α-helices of γ, which deeply penetrates the stator cylinder, and a globular protrusion that juts ou...
During ATP hydrolysis by F1-ATPase subunit c rotates in a hydrophobic bearing, formed by the N-termi...
F1F0 ATP synthase (ATPase) either facilitates the synthesis of ATP in a process driven by the proton...
AbstractF1-ATPase (F1) is an ATP-driven rotary motor in which the three catalytic β subunits in the ...
AbstractF1-ATPase is a powerful rotary molecular motor that can rotate an object several hundred tim...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
ABSTRACT F1-ATPase is an ATP-driven rotary molecular motor in which the central g-subunit rotates in...
ABSTRACT F1-ATPase is an ATP-driven rotary molecular moto of a3b3 subunits. The amino and carboxyl t...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
We present a chemomechanical network model of the rotary molecular motor F1-ATPase which quantitativ...
abstract: The FoF1 ATP synthase is a molecular motor critical to the metabolism of virtually all lif...
AbstractF1-ATPase is an ATP-driven rotary motor that generates torque at the interface between the c...
F1F0 ATP synthase (ATPase) either facilitates the synthesis of ATP in a process driven by the proton...
AbstractA single molecule of F1-ATPase, a portion of ATP synthase, is by itself a rotary motor in wh...
During ATP hydrolysis by F1-ATPase subunit c rotates in a hydrophobic bearing, formed by the N-termi...
F1F0 ATP synthase (ATPase) either facilitates the synthesis of ATP in a process driven by the proton...
AbstractF1-ATPase (F1) is an ATP-driven rotary motor in which the three catalytic β subunits in the ...
AbstractF1-ATPase is a powerful rotary molecular motor that can rotate an object several hundred tim...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
ABSTRACT F1-ATPase is an ATP-driven rotary molecular motor in which the central g-subunit rotates in...
ABSTRACT F1-ATPase is an ATP-driven rotary molecular moto of a3b3 subunits. The amino and carboxyl t...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
AbstractF1-ATPase is an ATP-driven rotary molecular motor in which the central γ-subunit rotates ins...
We present a chemomechanical network model of the rotary molecular motor F1-ATPase which quantitativ...
abstract: The FoF1 ATP synthase is a molecular motor critical to the metabolism of virtually all lif...
AbstractF1-ATPase is an ATP-driven rotary motor that generates torque at the interface between the c...
F1F0 ATP synthase (ATPase) either facilitates the synthesis of ATP in a process driven by the proton...
AbstractA single molecule of F1-ATPase, a portion of ATP synthase, is by itself a rotary motor in wh...
During ATP hydrolysis by F1-ATPase subunit c rotates in a hydrophobic bearing, formed by the N-termi...
F1F0 ATP synthase (ATPase) either facilitates the synthesis of ATP in a process driven by the proton...
AbstractF1-ATPase (F1) is an ATP-driven rotary motor in which the three catalytic β subunits in the ...