Rotation-Direction-Dependent Mechanism of the Inhibitor Protein IF<sub>1</sub> for Mitochondrial ATP Synthase from Atomistic Simulations. [PDF]
Kobayashi R, Okazaki KI.
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Single-cell mitochondrial morphomics reveals cellular heterogeneity and predicts complex I, III, and ATP synthase Inhibition responses. [PDF]
Sutharsan R +6 more
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High glucose affects the cardiac function of diabetic Akita mice by inhibiting cardiac ATP synthase beta subunit. [PDF]
Ma Y, Wang G, Li J.
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Genetically encoded tool for manipulation of ΔΨm identifies its role as the driver of ISR induced by ATP synthase dysfunction. [PDF]
Choe M +4 more
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Correction to "Defective Dimerization of FoF1-ATP Synthase Secondary to Glycation Favors Mitochondrial Energy Deficiency in Cardiomyocytes During Aging". [PDF]
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Erratum: Analysis of mitochondrial Complex I activity and ATP hydrolysis capacity of ATP synthase in developing rat brains using frozen tissues. [PDF]
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Structure of the human ATP synthase
Molecular Cell, 2023Biological energy currency ATP is produced by F1Fo-ATP synthase. However, the molecular mechanism for human ATP synthase action remains unknown. Here, we present snapshot images for three main rotational states and one substate of human ATP synthase using cryoelectron microscopy. These structures reveal that the release of ADP occurs when the β subunit
Zhanqiang Du
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Phomoxanthone A Targets ATP Synthase
Chemistry – A European Journal, 2022AbstractPhomoxanthone A is a naturally occurring molecule and a powerful anti‐cancer agent, although its mechanism of action is unknown. To facilitate the determination of its biological target(s), we used affinity‐based labelling using a phomoxanthone A probe. Labelled proteins were pulled down, subjected to chemoproteomics analysis using LC‐MS/MS and
Rameez Ali +8 more
openaire +3 more sources
Oxygenic photosynthesis is the principal converter of sunlight into chemical energy. Cyanobacteria and plants provide aerobic life with oxygen, food, fuel, fibers, and platform chemicals. Four multisubunit membrane proteins are involved: photosystem I (PSI), photosystem II (PSII), cytochrome b6f (cyt b6f), and ATP synthase (FOF1).
Wolfgang, Junge, Nathan, Nelson
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