OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases

Bibliographic Details
Main Authors: Aurélie M. C. Millet, Corentin Coustham, Camille Champigny, Marlène Botella, Christine Demeilliers, Anne Devin, Anne Galinier, Pascale Belenguer, Joel Bordeneuve-Guibé, Noélie Davezac
Format: Article
Language:English
Published: The Company of Biologists 2023-09-01
Series:Disease Models & Mechanisms
Subjects:
Online Access:http://dmm.biologists.org/content/16/9/dmm050266
_version_ 1797661920163004416
author Aurélie M. C. Millet
Corentin Coustham
Camille Champigny
Marlène Botella
Christine Demeilliers
Anne Devin
Anne Galinier
Pascale Belenguer
Joel Bordeneuve-Guibé
Noélie Davezac
author_facet Aurélie M. C. Millet
Corentin Coustham
Camille Champigny
Marlène Botella
Christine Demeilliers
Anne Devin
Anne Galinier
Pascale Belenguer
Joel Bordeneuve-Guibé
Noélie Davezac
author_sort Aurélie M. C. Millet
collection DOAJ
first_indexed 2024-03-11T18:52:36Z
format Article
id doaj.art-635bf4ce66a9449d811ae515ce73b61f
institution Directory Open Access Journal
issn 1754-8403
1754-8411
language English
last_indexed 2024-03-11T18:52:36Z
publishDate 2023-09-01
publisher The Company of Biologists
record_format Article
series Disease Models & Mechanisms
spelling doaj.art-635bf4ce66a9449d811ae515ce73b61f2023-10-11T08:10:08ZengThe Company of BiologistsDisease Models & Mechanisms1754-84031754-84112023-09-0116910.1242/dmm.050266050266OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseasesAurélie M. C. Millet0Corentin Coustham1Camille Champigny2Marlène Botella3Christine Demeilliers4Anne Devin5Anne Galinier6Pascale Belenguer7Joel Bordeneuve-Guibé8Noélie Davezac9 Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI), Toulouse University, CNRS, UPS, 31400 Toulouse, France Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI), Toulouse University, CNRS, UPS, 31400 Toulouse, France Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI), Toulouse University, CNRS, UPS, 31400 Toulouse, France Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI), Toulouse University, CNRS, UPS, 31400 Toulouse, France Université Grenoble Alpes, Inserm U1055, LBFA, 38000 Grenoble, France Laboratoire Métabolisme Energétique Cellulaire IBGC du CNRS, 1 rue Camille Saint Saëns, 33077 Bordeaux cedex, France RESTORE – Université de Toulouse, CNRS ERL5311, EFS, INP-ENVT, Inserm U1031, UPS, Bâtiment INCERE, 4bis avenue Hubert Curien, 31100 Toulouse, France Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI), Toulouse University, CNRS, UPS, 31400 Toulouse, France ISAE-SUPAERO, Toulouse University, 31400 Toulouse, France Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI), Toulouse University, CNRS, UPS, 31400 Toulouse, France http://dmm.biologists.org/content/16/9/dmm050266mathematical modelmitochondrianeurodegenerative diseaseoxidative metabolism
spellingShingle Aurélie M. C. Millet
Corentin Coustham
Camille Champigny
Marlène Botella
Christine Demeilliers
Anne Devin
Anne Galinier
Pascale Belenguer
Joel Bordeneuve-Guibé
Noélie Davezac
OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases
Disease Models & Mechanisms
mathematical model
mitochondria
neurodegenerative disease
oxidative metabolism
title OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases
title_full OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases
title_fullStr OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases
title_full_unstemmed OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases
title_short OPA1 deficiency impairs oxidative metabolism in cycling cells, underlining a translational approach for degenerative diseases
title_sort opa1 deficiency impairs oxidative metabolism in cycling cells underlining a translational approach for degenerative diseases
topic mathematical model
mitochondria
neurodegenerative disease
oxidative metabolism
url http://dmm.biologists.org/content/16/9/dmm050266
work_keys_str_mv AT aureliemcmillet opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT corentincoustham opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT camillechampigny opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT marlenebotella opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT christinedemeilliers opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT annedevin opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT annegalinier opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT pascalebelenguer opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT joelbordeneuveguibe opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases
AT noeliedavezac opa1deficiencyimpairsoxidativemetabolismincyclingcellsunderliningatranslationalapproachfordegenerativediseases