Mitochondrial F0F1-ATP synthase governs the induction of mitochondrial fission.

Biochemistry Cell biology Functional aspects of cell biology

Journal

iScience
ISSN: 2589-0042
Titre abrégé: iScience
Pays: United States
ID NLM: 101724038

Informations de publication

Date de publication:
17 May 2024
Historique:
received: 21 07 2023
revised: 22 12 2023
accepted: 22 04 2024
medline: 14 5 2024
pubmed: 14 5 2024
entrez: 14 5 2024
Statut: epublish

Résumé

Mitochondrial dynamics is a process that balances fusion and fission events, the latter providing a mechanism for segregating dysfunctional mitochondria. Fission is controlled by the mitochondrial membrane potential (ΔΨm), optic atrophy 1 (OPA1) cleavage, and DRP1 recruitment. It is thought that this process is closely linked to the activity of the mitochondrial respiratory chain (MRC). However, we report here that MRC inhibition does not decrease ΔΨm nor increase fission, as evidenced by hyperconnected mitochondria. Conversely, blocking F0F1-ATP synthase activity induces fragmentation. We show that the F0F1-ATP synthase is sensing the inhibition of MRC activity by immediately promoting its reverse mode of action to hydrolyze matrix ATP and restoring ΔΨm, thus preventing fission. While this reverse mode is expected to be inhibited by the ATPase inhibitor ATPIF1, we show that this sensing is independent of this factor. We have unraveled an unexpected role of F0F1-ATP synthase in controlling the induction of fission by sensing and maintaining ΔΨm.

Identifiants

pubmed: 38741710
doi: 10.1016/j.isci.2024.109808
pii: S2589-0042(24)01030-7
pmc: PMC11089353
doi:

Types de publication

Journal Article

Langues

eng

Pagination

109808

Informations de copyright

© 2024 The Authors.

Déclaration de conflit d'intérêts

The authors declare no competing interests.

Auteurs

Charlène Lhuissier (C)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.

Valérie Desquiret-Dumas (V)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.
Departments of Biochemistry and Molecular Biology, University Hospital Angers, Angers, France.

Anaïs Girona (A)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.

Jennifer Alban (J)

Departments of Biochemistry and Molecular Biology, University Hospital Angers, Angers, France.

Justine Faure (J)

Departments of Biochemistry and Molecular Biology, University Hospital Angers, Angers, France.

Julien Cassereau (J)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.
Department of Neurology, Angers University Hospital, Angers, France.

Philippe Codron (P)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.
Department of Neurology, Angers University Hospital, Angers, France.

Guy Lenaers (G)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.
Department of Neurology, Angers University Hospital, Angers, France.

Olivier R Baris (OR)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.

Naïg Gueguen (N)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.
Departments of Biochemistry and Molecular Biology, University Hospital Angers, Angers, France.

Arnaud Chevrollier (A)

University Angers, MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers, France.

Classifications MeSH