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Structure of the yeast F₁Fₒ-ATP synthase dimer and its role in shaping the mitochondrial cristae
by
Anselmi, Claudio
, Davies, Karen M
, Wittig, Ilka
, Faraldo-Gómez, José D
, Kühlbrandt, Werner
in
Adenosine Triphosphate - chemistry
/ Biological Sciences
/ Catalysis
/ computer simulation
/ Cryoelectron Microscopy - methods
/ Dimerization
/ energy
/ Energy Metabolism
/ H+/K+-exchanging ATPase
/ H-transporting ATP synthase
/ lipid bilayers
/ Lipid Bilayers - chemistry
/ mitochondria
/ Mitochondria - metabolism
/ mitochondrial membrane
/ Models, Molecular
/ Molecular Conformation
/ Molecular Dynamics Simulation
/ mutants
/ Mutation
/ Oxygen - chemistry
/ Phosphorylation
/ plastic deformation
/ Protein Conformation
/ Proton-Translocating ATPases - chemistry
/ Saccharomyces cerevisiae
/ Saccharomyces cerevisiae - metabolism
/ Temperature
/ yeasts
2012
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Structure of the yeast F₁Fₒ-ATP synthase dimer and its role in shaping the mitochondrial cristae
by
Anselmi, Claudio
, Davies, Karen M
, Wittig, Ilka
, Faraldo-Gómez, José D
, Kühlbrandt, Werner
in
Adenosine Triphosphate - chemistry
/ Biological Sciences
/ Catalysis
/ computer simulation
/ Cryoelectron Microscopy - methods
/ Dimerization
/ energy
/ Energy Metabolism
/ H+/K+-exchanging ATPase
/ H-transporting ATP synthase
/ lipid bilayers
/ Lipid Bilayers - chemistry
/ mitochondria
/ Mitochondria - metabolism
/ mitochondrial membrane
/ Models, Molecular
/ Molecular Conformation
/ Molecular Dynamics Simulation
/ mutants
/ Mutation
/ Oxygen - chemistry
/ Phosphorylation
/ plastic deformation
/ Protein Conformation
/ Proton-Translocating ATPases - chemistry
/ Saccharomyces cerevisiae
/ Saccharomyces cerevisiae - metabolism
/ Temperature
/ yeasts
2012
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Structure of the yeast F₁Fₒ-ATP synthase dimer and its role in shaping the mitochondrial cristae
by
Anselmi, Claudio
, Davies, Karen M
, Wittig, Ilka
, Faraldo-Gómez, José D
, Kühlbrandt, Werner
in
Adenosine Triphosphate - chemistry
/ Biological Sciences
/ Catalysis
/ computer simulation
/ Cryoelectron Microscopy - methods
/ Dimerization
/ energy
/ Energy Metabolism
/ H+/K+-exchanging ATPase
/ H-transporting ATP synthase
/ lipid bilayers
/ Lipid Bilayers - chemistry
/ mitochondria
/ Mitochondria - metabolism
/ mitochondrial membrane
/ Models, Molecular
/ Molecular Conformation
/ Molecular Dynamics Simulation
/ mutants
/ Mutation
/ Oxygen - chemistry
/ Phosphorylation
/ plastic deformation
/ Protein Conformation
/ Proton-Translocating ATPases - chemistry
/ Saccharomyces cerevisiae
/ Saccharomyces cerevisiae - metabolism
/ Temperature
/ yeasts
2012
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Structure of the yeast F₁Fₒ-ATP synthase dimer and its role in shaping the mitochondrial cristae
Journal Article
Structure of the yeast F₁Fₒ-ATP synthase dimer and its role in shaping the mitochondrial cristae
2012
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Overview
We used electron cryotomography of mitochondrial membranes from wild-type and mutant Saccharomyces cerevisiae to investigate the structure and organization of ATP synthase dimers in situ. Subtomogram averaging of the dimers to 3.7 nm resolution revealed a V-shaped structure of twofold symmetry, with an angle of 86° between monomers. The central and peripheral stalks are well resolved. The monomers interact within the membrane at the base of the peripheral stalks. In wild-type mitochondria ATP synthase dimers are found in rows along the highly curved cristae ridges, and appear to be crucial for membrane morphology. Strains deficient in the dimer-specific subunits e and g or the first transmembrane helix of subunit 4 lack both dimers and lamellar cristae. Instead, cristae are either absent or balloon-shaped, with ATP synthase monomers distributed randomly in the membrane. Computer simulations indicate that isolated dimers induce a plastic deformation in the lipid bilayer, which is partially relieved by their side-by-side association. We propose that the assembly of ATP synthase dimer rows is driven by the reduction in the membrane elastic energy, rather than by direct protein contacts, and that the dimer rows enable the formation of highly curved ridges in mitochondrial cristae.
Publisher
National Academy of Sciences,National Acad Sciences
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