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SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome

Mitochondria form a dynamic network that responds to physiological signals and metabolic stresses by altering the balance between fusion and fission. Mitochondrial fusion is orchestrated by conserved GTPases MFN1/2 and OPA1, a process coordinated in yeast by Ugo1, a mitochondrial metabolite carrier...

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Autores principales: Janer, Alexandre, Prudent, Julien, Paupe, Vincent, Fahiminiya, Somayyeh, Majewski, Jacek, Sgarioto, Nicolas, Des Rosiers, Christine, Forest, Anik, Lin, Zhen‐Yuan, Gingras, Anne‐Claude, Mitchell, Grant, McBride, Heidi M, Shoubridge, Eric A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5009808/
https://www.ncbi.nlm.nih.gov/pubmed/27390132
http://dx.doi.org/10.15252/emmm.201506159
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author Janer, Alexandre
Prudent, Julien
Paupe, Vincent
Fahiminiya, Somayyeh
Majewski, Jacek
Sgarioto, Nicolas
Des Rosiers, Christine
Forest, Anik
Lin, Zhen‐Yuan
Gingras, Anne‐Claude
Mitchell, Grant
McBride, Heidi M
Shoubridge, Eric A
author_facet Janer, Alexandre
Prudent, Julien
Paupe, Vincent
Fahiminiya, Somayyeh
Majewski, Jacek
Sgarioto, Nicolas
Des Rosiers, Christine
Forest, Anik
Lin, Zhen‐Yuan
Gingras, Anne‐Claude
Mitchell, Grant
McBride, Heidi M
Shoubridge, Eric A
author_sort Janer, Alexandre
collection PubMed
description Mitochondria form a dynamic network that responds to physiological signals and metabolic stresses by altering the balance between fusion and fission. Mitochondrial fusion is orchestrated by conserved GTPases MFN1/2 and OPA1, a process coordinated in yeast by Ugo1, a mitochondrial metabolite carrier family protein. We uncovered a homozygous missense mutation in SLC25A46, the mammalian orthologue of Ugo1, in a subject with Leigh syndrome. SLC25A46 is an integral outer membrane protein that interacts with MFN2, OPA1, and the mitochondrial contact site and cristae organizing system (MICOS) complex. The subject mutation destabilizes the protein, leading to mitochondrial hyperfusion, alterations in endoplasmic reticulum (ER) morphology, impaired cellular respiration, and premature cellular senescence. The MICOS complex is disrupted in subject fibroblasts, resulting in strikingly abnormal mitochondrial architecture, with markedly shortened cristae. SLC25A46 also interacts with the ER membrane protein complex EMC, and phospholipid composition is altered in subject mitochondria. These results show that SLC25A46 plays a role in a mitochondrial/ER pathway that facilitates lipid transfer, and link altered mitochondrial dynamics to early‐onset neurodegenerative disease and cell fate decisions.
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spelling pubmed-50098082016-11-14 SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome Janer, Alexandre Prudent, Julien Paupe, Vincent Fahiminiya, Somayyeh Majewski, Jacek Sgarioto, Nicolas Des Rosiers, Christine Forest, Anik Lin, Zhen‐Yuan Gingras, Anne‐Claude Mitchell, Grant McBride, Heidi M Shoubridge, Eric A EMBO Mol Med Research Articles Mitochondria form a dynamic network that responds to physiological signals and metabolic stresses by altering the balance between fusion and fission. Mitochondrial fusion is orchestrated by conserved GTPases MFN1/2 and OPA1, a process coordinated in yeast by Ugo1, a mitochondrial metabolite carrier family protein. We uncovered a homozygous missense mutation in SLC25A46, the mammalian orthologue of Ugo1, in a subject with Leigh syndrome. SLC25A46 is an integral outer membrane protein that interacts with MFN2, OPA1, and the mitochondrial contact site and cristae organizing system (MICOS) complex. The subject mutation destabilizes the protein, leading to mitochondrial hyperfusion, alterations in endoplasmic reticulum (ER) morphology, impaired cellular respiration, and premature cellular senescence. The MICOS complex is disrupted in subject fibroblasts, resulting in strikingly abnormal mitochondrial architecture, with markedly shortened cristae. SLC25A46 also interacts with the ER membrane protein complex EMC, and phospholipid composition is altered in subject mitochondria. These results show that SLC25A46 plays a role in a mitochondrial/ER pathway that facilitates lipid transfer, and link altered mitochondrial dynamics to early‐onset neurodegenerative disease and cell fate decisions. John Wiley and Sons Inc. 2016-07-07 2016-09 /pmc/articles/PMC5009808/ /pubmed/27390132 http://dx.doi.org/10.15252/emmm.201506159 Text en © 2016 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the Creative Commons Attribution 4.0 (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Janer, Alexandre
Prudent, Julien
Paupe, Vincent
Fahiminiya, Somayyeh
Majewski, Jacek
Sgarioto, Nicolas
Des Rosiers, Christine
Forest, Anik
Lin, Zhen‐Yuan
Gingras, Anne‐Claude
Mitchell, Grant
McBride, Heidi M
Shoubridge, Eric A
SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome
title SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome
title_full SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome
title_fullStr SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome
title_full_unstemmed SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome
title_short SLC25A46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for Leigh syndrome
title_sort slc25a46 is required for mitochondrial lipid homeostasis and cristae maintenance and is responsible for leigh syndrome
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5009808/
https://www.ncbi.nlm.nih.gov/pubmed/27390132
http://dx.doi.org/10.15252/emmm.201506159
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