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High-throughput screening identifies suppressors of mitochondrial fragmentation in OPA1 fibroblasts

Authors :
Cretin, Emma
Lopes, Priscilla
Vimont, Elodie
Tatsuta, Takashi
Langer, Thomas
Gazi, Anastasia
Sachse, Martin
Yu‐Wai‐Man, Patrick
Reynier, Pascal
Wai, Timothy
Cretin, Emma [0000-0002-8423-233X]
Tatsuta, Takashi [0000-0003-0003-0587]
Langer, Thomas [0000-0003-1250-1462]
Gazi, Anastasia [0000-0002-2922-3625]
Sachse, Martin [0000-0001-5981-9166]
Yu‐Wai‐Man, Patrick [0000-0001-7847-9320]
Reynier, Pascal [0000-0003-0802-4608]
Wai, Timothy [0000-0002-6770-6222]
Apollo - University of Cambridge Repository
Biologie mitochondriale – Mitochondrial biology
Institut Pasteur [Paris] (IP)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité)
Université Paris Cité (UPCité)
Max planck Institute for Biology of Ageing [Cologne]
Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases (CECAD)
University of Cologne
Plateforme BioImagerie Ultrastructurale – Ultrastructural BioImaging Platform (UTechS UBI)
Institut Pasteur [Paris] (IP)
University of Cambridge [UK] (CAM)
Moorfields Eye Hospital [London]
UCL-Institute of Ophthalmology
University College of London [London] (UCL)
MitoVasc - Physiopathologie Cardiovasculaire et Mitochondriale (MITOVASC)
Université d'Angers (UA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)
Centre Hospitalier Universitaire d'Angers (CHU Angers)
PRES Université Nantes Angers Le Mans (UNAM)
T.W. is supported by the European Research Council (ERC) Starting Grant No. 714472 (Acronym 'Mitomorphosis') and ATIP-AVENIR (INSERM/CNRS). E.C. is supported by a PhD scholarship from the French Ministry of Higher Education, Research, and Innovation (Ministère français de lʼEnseignement supérieur, de la Recherche et de lʼInnovation). T.L. was supported by funds of the German Research Council (CRC1218, project number 269925409. P.YWM. is supported by a Clinician Scientist Fellowship Award (G1002570) from the Medical Research Council (UK) and also receives funding from Fight for Sight (UK), Moorfields Eye Charity, the Isaac Newton Trust (UK), the Addenbrooke's Charitable Trust, the National Eye Research Centre (UK), the International Foundation for Optic Nerve Disease (IFOND), the UK National Institute of Health Research (NIHR) as part of the Rare Diseases Translational Research Collaboration, the NIHR Cambridge Biomedical Research Centre (BRC-1215-20014), and the NIHR Biomedical Research Centre based at Moorfields Eye Hospital NHS Foundation Trust and UCL Institute of Ophthalmology. The views expressed are those of the author(s) and not necessarily those of the NHS, the NIHR, or the Department of Health.
We thank Kristin Tsuo and Vincent Guillemot for statistical assistance in R, Etienne Kornobis for Illumina sequencing, and Pierre-Henri Commere and Sandrine Schmutz for flow cytometry services at the Institut Pasteur. Imaging on the Opera Phenix, funded by the Région Ile-de-France program DIM1-Health, was facilitated by Nathalie Aulner. We thank Sylvie Fabrega of the Viral Vector for Gene Transfer core facility of Structure Fédérative de Recherche Necker, Université de Paris for lentiviral particle synthesis. We thank Michael Ryan for providing MEFs lacking MiD49/MiD51/Mff, Nils-Göran Larsson for providing mitoYFP mice, and Guangwei Du for plasmids. We thank Arnaud Echard for critical reading of the manuscript and Marie Lemesle for excellent administrative assistance.
European Project: 714472,ERC-2016-STG,Mitomorphosis(2017)
Yu-Wai-Man, Patrick [0000-0001-7847-9320]
Institut Pasteur [Paris]-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP)
Université de Paris (UP)
Institut Pasteur [Paris]
Faculty of Brain Sciences of University College London (UCL)
Physiopathologie Cardiovasculaire et Mitochondriale (MITOVASC)
Source :
EMBO Mol Med, EMBO Molecular Medicine, EMBO Molecular Medicine, 2021, pp.e13579. ⟨10.15252/emmm.202013579⟩, EMBO Molecular Medicine, Vol 13, Iss 6, Pp n/a-n/a (2021), EMBO Molecular Medicine, Wiley Open Access, 2021, pp.e13579. ⟨10.15252/emmm.202013579⟩
Publication Year :
2021

Abstract

International audience; Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotype characterized by more severe neurological deficits. OPA1 deficiency causes mitochondrial fragmentation and also disrupts cristae, respiration, mitochondrial DNA (mtDNA) maintenance, and cell viability. It has not yet been established whether phenotypic severity can be modulated by genetic modifiers of OPA1. We screened the entire known mitochondrial proteome (1,531 genes) to identify genes that control mitochondrial morphology using a first-in-kind imaging pipeline. We identified 145 known and novel candidate genes whose depletion promoted elongation or fragmentation of the mitochondrial network in control fibroblasts and 91 in DOA+ patient fibroblasts that prevented mitochondrial fragmentation, including phosphatidyl glycerophosphate synthase (PGS1). PGS1 depletion reduces CL content in mitochondria and rebalances mitochondrial dynamics in OPA1-deficient fibroblasts by inhibiting mitochondrial fission, which improves defective respiration, but does not rescue mtDNA depletion, cristae dysmorphology, or apoptotic sensitivity. Our data reveal that the multifaceted roles of OPA1 in mitochondria can be functionally uncoupled by modulating mitochondrial lipid metabolism, providing novel insights into the cellular relevance of mitochondrial fragmentation.

Details

ISSN :
17574676 and 17574684
Database :
OpenAIRE
Journal :
EMBO Mol Med, EMBO Molecular Medicine, EMBO Molecular Medicine, 2021, pp.e13579. ⟨10.15252/emmm.202013579⟩, EMBO Molecular Medicine, Vol 13, Iss 6, Pp n/a-n/a (2021), EMBO Molecular Medicine, Wiley Open Access, 2021, pp.e13579. ⟨10.15252/emmm.202013579⟩
Accession number :
edsair.doi.dedup.....a8da58132a399425304a4933cd43c8ad
Full Text :
https://doi.org/10.15252/emmm.202013579⟩