The microscopic mechanism of coupled c-ring rotation and ion translocation in F(1)F(o)-ATP synthases is unknown. Here we present conclusive evidence supporting the notion that the ability of c-rings to rotate within the F(o) complex derives from the interplay between the ion-binding sites and their nonhomogenous microenvironment. This evidence rests on three atomic structures of the c(15) rotor from crystals grown at low pH, soaked at high pH and, after N,N'-dicyclohexylcarbodiimide (DCCD) modification, resolved at 1.8, 3.0 and 2.2 Å, respectively. Alongside a quantitative DCCD-labeling assay and free-energy molecular dynamics calculations, these data demonstrate how the thermodynamic stability of the so-called proton-locked state is maximi...
AbstractThe proton-driven ATP synthase (FOF1) is comprised of two rotary, stepping motors (FO and F1...
Synthesis of adenosine triphosphate ATP, the \u27biological energy currency\u27, is accomplished by ...
AbstractThe proton-driven ATP synthase (FOF1) is comprised of two rotary, stepping motors (FO and F1...
The crystal structure of the c-ring from the proton-coupled F1Fo ATP synthase from Spirulina platens...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
ABSTRACT F1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
The electrochemical potential difference of protons across the membrane is used to synthesize ATP th...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractF1Fo ATP synthases generate ATP by a rotary catalytic mechanism in which H+ transport is cou...
Synthesis of adenosine triphosphate ATP, the \u27biological energy currency\u27, is accomplished by ...
The proton-driven ATP synthase (FoF1) is comprised of two rotary, stepping motors (Fo and F1) couple...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
The recently reported crystal structures of the membrane-embedded proton-dependent c-ring rotors of ...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractThe proton-driven ATP synthase (FOF1) is comprised of two rotary, stepping motors (FO and F1...
Synthesis of adenosine triphosphate ATP, the \u27biological energy currency\u27, is accomplished by ...
AbstractThe proton-driven ATP synthase (FOF1) is comprised of two rotary, stepping motors (FO and F1...
The crystal structure of the c-ring from the proton-coupled F1Fo ATP synthase from Spirulina platens...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
ABSTRACT F1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
The electrochemical potential difference of protons across the membrane is used to synthesize ATP th...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractF1Fo ATP synthases generate ATP by a rotary catalytic mechanism in which H+ transport is cou...
Synthesis of adenosine triphosphate ATP, the \u27biological energy currency\u27, is accomplished by ...
The proton-driven ATP synthase (FoF1) is comprised of two rotary, stepping motors (Fo and F1) couple...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
The recently reported crystal structures of the membrane-embedded proton-dependent c-ring rotors of ...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractThe proton-driven ATP synthase (FOF1) is comprised of two rotary, stepping motors (FO and F1...
Synthesis of adenosine triphosphate ATP, the \u27biological energy currency\u27, is accomplished by ...
AbstractThe proton-driven ATP synthase (FOF1) is comprised of two rotary, stepping motors (FO and F1...