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Generation of mitochondrial reactive oxygen species is controlled by ATPase inhibitory factor 1 and regulates cognition

Authors :
Inés Romero-Carramiñana
Carla Sánchez-Castillo
Rafael Artuch
José M. Cuezva
Noelia Blanco
Georgina Bates
Pau B. Esparza-Moltó
José A. Esteban
Beatriz Pardo
Michael P. Murphy
Marta P. Pereira
Cristina Núñez de Arenas
UAM. Departamento de Biología Molecular
Esparza-Moltó, Pau B. [0000-0001-9034-1121]
Pereira, Marta P. [0000-0002-9347-957X]
Blanco, Noelia [0000-0002-2487-228X]
Bates, Georgina R. [0000-0002-6574-5164]
Esteban, José A. [0000-0002-3759-3300]
Cuezva, José M. [0000-0003-1118-248X]
Apollo - University of Cambridge Repository
Esparza-Moltó, Pau B [0000-0001-9034-1121]
Pereira, Marta P [0000-0002-9347-957X]
Bates, Georgina R [0000-0002-6574-5164]
Esteban, José A [0000-0002-3759-3300]
Cuezva, José M [0000-0003-1118-248X]
Source :
Digital.CSIC. Repositorio Institucional del CSIC, instname, PLoS Biology, Vol 19, Iss 5, p e3001252 (2021), PLoS Biology
Publication Year :
2021
Publisher :
Public Library of Science, 2021.

Abstract

The mitochondrial ATP synthase emerges as key hub of cellular functions controlling the production of ATP, cellular signaling, and fate. It is regulated by the ATPase inhibitory factor 1 (IF1), which is highly abundant in neurons. Herein, we ablated or overexpressed IF1 in mouse neurons to show that IF1 dose defines the fraction of active/inactive enzyme in vivo, thereby controlling mitochondrial function and the production of mitochondrial reactive oxygen species (mtROS). Transcriptomic, proteomic, and metabolomic analyses indicate that IF1 dose regulates mitochondrial metabolism, synaptic function, and cognition. Ablation of IF1 impairs memory, whereas synaptic transmission and learning are enhanced by IF1 overexpression. Mechanistically, quenching the IF1-mediated increase in mtROS production in mice overexpressing IF1 reduces the increased synaptic transmission and obliterates the learning advantage afforded by the higher IF1 content. Overall, IF1 plays a key role in neuronal function by regulating the fraction of ATP synthase responsible for mitohormetic mtROS signaling.<br />This study explores the role of ATPase inhibitory factor 1 (IF-1) in neuronal function, revealing that IF-1-mediated changes in ATP synthase modulate the production of mitochondrial reactive oxygen species, and that these changes influence synaptic transmission and cognition.

Subjects

Subjects :
0301 basic medicine
ATPase Inhibitory Protein
Engineering and technology
Mitochondrion
Biochemistry
Hippocampus
Mice
Cognition
Learning and Memory
0302 clinical medicine
Adenosine Triphosphate
Animal Cells
Biology (General)
Energy-Producing Organelles
Neurons
chemistry.chemical_classification
ATP synthase
biology
Genetically Modified Organisms
General Neuroscience
Brain
Animal Models
Mitochondrial Proton-Translocating ATPases
Biología y Biomedicina / Biología
Mitochondrial DNA
Mitochondria
Cell biology
Adenosine Diphosphate
Experimental Organism Systems
Long Term Memory
Cellular Structures and Organelles
Cellular Types
Anatomy
Signal transduction
Genetic Engineering
General Agricultural and Biological Sciences
Biotechnology
Signal Transduction
Research Article
Cell signaling
QH301-705.5
Primary Cell Culture
Mouse Models
Bioengineering
Bioenergetics
Neurotransmission
General Biochemistry, Genetics and Molecular Biology
Cell Line
03 medical and health sciences
Model Organisms
Memory
Reactive Oxygen Metabolite
Animals
Molecular Biology Techniques
Molecular Biology
Medicine and health sciences
Reactive oxygen species
Genetically Modified Animals
Biology and life sciences
General Immunology and Microbiology
Proteins
Cell Biology
Metabolism
Hydrogen Peroxide
FOS: Engineering and technology
Mice, Inbred C57BL
Research and analysis methods
030104 developmental biology
chemistry
Cellular Neuroscience
Animal Studies
biology.protein
Cognitive Science
Reactive Oxygen Species
030217 neurology & neurosurgery
Function (biology)
Neuroscience
Cloning

Details

Language :
English
Database :
OpenAIRE
Journal :
Digital.CSIC. Repositorio Institucional del CSIC, instname, PLoS Biology, Vol 19, Iss 5, p e3001252 (2021), PLoS Biology
Accession number :
edsair.doi.dedup.....3faea67fdca298f15e3149c94b02d1fc