AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP formation by a rotary catalytic mechanism. ATP is formed in alternating β subunits of the extramembranous F1 sector of the enzyme, synthesis being driven by rotation of the γ subunit in the center of the F1 molecule between the alternating catalytic sites . The H+ electrochemical potential is thought to drive γ subunit rotation by first coupling H+ transport to rotation of an oligomeric rotor of c subunits within the transmembrane Fo sector. The γ subunit is forced to turn with the c-oligomeric rotor due to connections between subunit c and the γ and ε subunits of F1. In this essay we will review recent studies on the Escherichia coli Fo secto...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractF1Fo ATP synthases generate ATP by a rotary catalytic mechanism in which H+ transport is cou...
AbstractH+-transporting F1Fo ATP synthase catalyzes the synthesis of ATP via coupled rotary motors w...
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'...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
AbstractF1F0 ATP synthases generate ATP by a rotary catalytic mechanism in which H+ transport is cou...
AbstractH+-transporting F1Fo ATP synthase catalyzes the synthesis of ATP via coupled rotary motors w...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractF1Fo ATP synthases generate ATP by a rotary catalytic mechanism in which H+ transport is cou...
AbstractH+-transporting F1Fo ATP synthase catalyzes the synthesis of ATP via coupled rotary motors w...
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'...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
AbstractF1F0 ATP synthases generate ATP by a rotary catalytic mechanism in which H+ transport is cou...
AbstractH+-transporting F1Fo ATP synthase catalyzes the synthesis of ATP via coupled rotary motors w...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...