EMD-4812

Single-particle
2.8 Å
EMD-4812 Deposition: 12/04/2019
Map released: 03/07/2019
Last modified: 22/05/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-4812

CryoEM structure of Polytomella F-ATP synthase, Primary rotary state 1, focussed refinement of F1 head and rotor

EMD-4812

Single-particle
2.8 Å
EMD-4812 Deposition: 12/04/2019
Map released: 03/07/2019
Last modified: 22/05/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Polytomella sp. Pringsheim 198.80
Sample: Polytomella F-ATP synthase
Fitted models: 6rdb (Avg. Q-score: 0.558)
Raw data: EMPIAR-10375

Deposition Authors: Murphy BJ , Klusch N
Rotary substates of mitochondrial ATP synthase reveal the basis of flexible F 1 -F o coupling.
Murphy BJ , Klusch N , Langer J , Mills DJ , Yildiz O, Kuhlbrandt W
(2019) Science , 364
PUBMED: 31221832
DOI: doi:10.1126/science.aaw9128
ISSN: 1095-9203
ASTM: SCIEAS
Abstract:
F1Fo-adenosine triphosphate (ATP) synthases make the energy of the proton-motive force available for energy-consuming processes in the cell. We determined the single-particle cryo-electron microscopy structure of active dimeric ATP synthase from mitochondria of Polytomella sp. at a resolution of 2.7 to 2.8 angstroms. Separation of 13 well-defined rotary substates by three-dimensional classification provides a detailed picture of the molecular motions that accompany c-ring rotation and result in ATP synthesis. Crucially, the F1 head rotates along with the central stalk and c-ring rotor for the first ~30° of each 120° primary rotary step to facilitate flexible coupling of the stoichiometrically mismatched F1 and Fo subcomplexes. Flexibility is mediated primarily by the interdomain hinge of the conserved OSCP subunit. A conserved metal ion in the proton access channel may synchronize c-ring protonation with rotation.