ATP synthases produce ATP by rotary catalysis, powered by the electrochemical proton gradient across the membrane. Understanding this fundamental process requires an atomic model of the proton pathway. We determined the structure of an intact mitochondrial ATP synthase dimer by electron cryo-microscopy at near-atomic resolution. Charged and polar residues of the a-subunit stator define two aqueous channels, each spanning one half of the membrane. Passing through a conserved membrane-intrinsic helix hairpin, the lumenal channel protonates an acidic glutamate in the c-ring rotor. Upon ring rotation, the protonated glutamate encounters the matrix channel and deprotonates. An arginine between the two channels prevents proton leakage. The steep ...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
The electrochemical potential difference of protons across the membrane is used to synthesize ATP th...
F1-Fo-adenosine triphosphate (ATP) synthases make the energy of the proton-motive force available fo...
Adenosine triphosphate (ATP), the chemical energy currency of biology, is synthesized in eukaryotic ...
Adenosine triphosphate (ATP), the energy currency of cellular biology, is synthesized by the mitocho...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
F1 Fo ATP synthases produce most of the ATP in the cell. F-type ATP synthases have been investigated...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
We determined the structure of a complete, dimeric F1Fo-ATP synthase from yeast Yarrowia lipolytica ...
AbstractThe ATP synthase is a nanometric rotary machine that uses a transmembrane electrochemical gr...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
ABSTRACT F1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell...
Ion-translocating rotary ATPases serve either as ATP synthases, using energy from a transmembrane io...
International audienceThe ATP synthase is a nanometric rotary machine that uses a transmembrane elec...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
The electrochemical potential difference of protons across the membrane is used to synthesize ATP th...
F1-Fo-adenosine triphosphate (ATP) synthases make the energy of the proton-motive force available fo...
Adenosine triphosphate (ATP), the chemical energy currency of biology, is synthesized in eukaryotic ...
Adenosine triphosphate (ATP), the energy currency of cellular biology, is synthesized by the mitocho...
Adenosine triphosphate (ATP) is the molecular currency of intracellular energy transfer in living or...
F1 Fo ATP synthases produce most of the ATP in the cell. F-type ATP synthases have been investigated...
AbstractIn recent years, structural information on the F1 sector of the ATP synthase has provided an...
We determined the structure of a complete, dimeric F1Fo-ATP synthase from yeast Yarrowia lipolytica ...
AbstractThe ATP synthase is a nanometric rotary machine that uses a transmembrane electrochemical gr...
AbstractF1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell'...
ABSTRACT F1Fo-ATP synthase is a ubiquitous membrane protein complex that efficiently converts a cell...
Ion-translocating rotary ATPases serve either as ATP synthases, using energy from a transmembrane io...
International audienceThe ATP synthase is a nanometric rotary machine that uses a transmembrane elec...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
The electrochemical potential difference of protons across the membrane is used to synthesize ATP th...