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OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy

Mitochondrial stress triggers a response in the cell’s mitochondria and nucleus, but how these stress responses are coordinated in vivo is poorly understood. Here, we characterize a family with myopathy caused by a dominant p.G58R mutation in the mitochondrial protein CHCHD10. To understand the dise...

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Autores principales: Shammas, Mario K., Huang, Xiaoping, Wu, Beverly P., Fessler, Evelyn, Song, Insung Y., Randolph, Nicholas P., Li, Yan, Bleck, Christopher K.E., Springer, Danielle A., Fratter, Carl, Barbosa, Ines A., Powers, Andrew F., Quirós, Pedro M., Lopez-Otin, Carlos, Jae, Lucas T., Poulton, Joanna, Narendra, Derek P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282932/
https://www.ncbi.nlm.nih.gov/pubmed/35700042
http://dx.doi.org/10.1172/JCI157504
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author Shammas, Mario K.
Huang, Xiaoping
Wu, Beverly P.
Fessler, Evelyn
Song, Insung Y.
Randolph, Nicholas P.
Li, Yan
Bleck, Christopher K.E.
Springer, Danielle A.
Fratter, Carl
Barbosa, Ines A.
Powers, Andrew F.
Quirós, Pedro M.
Lopez-Otin, Carlos
Jae, Lucas T.
Poulton, Joanna
Narendra, Derek P.
author_facet Shammas, Mario K.
Huang, Xiaoping
Wu, Beverly P.
Fessler, Evelyn
Song, Insung Y.
Randolph, Nicholas P.
Li, Yan
Bleck, Christopher K.E.
Springer, Danielle A.
Fratter, Carl
Barbosa, Ines A.
Powers, Andrew F.
Quirós, Pedro M.
Lopez-Otin, Carlos
Jae, Lucas T.
Poulton, Joanna
Narendra, Derek P.
author_sort Shammas, Mario K.
collection PubMed
description Mitochondrial stress triggers a response in the cell’s mitochondria and nucleus, but how these stress responses are coordinated in vivo is poorly understood. Here, we characterize a family with myopathy caused by a dominant p.G58R mutation in the mitochondrial protein CHCHD10. To understand the disease etiology, we developed a knockin (KI) mouse model and found that mutant CHCHD10 aggregated in affected tissues, applying a toxic protein stress to the inner mitochondrial membrane. Unexpectedly, the survival of CHCHD10-KI mice depended on a protective stress response mediated by the mitochondrial metalloendopeptidase OMA1. The OMA1 stress response acted both locally within mitochondria, causing mitochondrial fragmentation, and signaled outside the mitochondria, activating the integrated stress response through cleavage of DAP3-binding cell death enhancer 1 (DELE1). We additionally identified an isoform switch in the terminal complex of the electron transport chain as a component of this response. Our results demonstrate that OMA1 was critical for neonatal survival conditionally in the setting of inner mitochondrial membrane stress, coordinating local and global stress responses to reshape the mitochondrial network and proteome.
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spelling pubmed-92829322022-07-18 OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy Shammas, Mario K. Huang, Xiaoping Wu, Beverly P. Fessler, Evelyn Song, Insung Y. Randolph, Nicholas P. Li, Yan Bleck, Christopher K.E. Springer, Danielle A. Fratter, Carl Barbosa, Ines A. Powers, Andrew F. Quirós, Pedro M. Lopez-Otin, Carlos Jae, Lucas T. Poulton, Joanna Narendra, Derek P. J Clin Invest Research Article Mitochondrial stress triggers a response in the cell’s mitochondria and nucleus, but how these stress responses are coordinated in vivo is poorly understood. Here, we characterize a family with myopathy caused by a dominant p.G58R mutation in the mitochondrial protein CHCHD10. To understand the disease etiology, we developed a knockin (KI) mouse model and found that mutant CHCHD10 aggregated in affected tissues, applying a toxic protein stress to the inner mitochondrial membrane. Unexpectedly, the survival of CHCHD10-KI mice depended on a protective stress response mediated by the mitochondrial metalloendopeptidase OMA1. The OMA1 stress response acted both locally within mitochondria, causing mitochondrial fragmentation, and signaled outside the mitochondria, activating the integrated stress response through cleavage of DAP3-binding cell death enhancer 1 (DELE1). We additionally identified an isoform switch in the terminal complex of the electron transport chain as a component of this response. Our results demonstrate that OMA1 was critical for neonatal survival conditionally in the setting of inner mitochondrial membrane stress, coordinating local and global stress responses to reshape the mitochondrial network and proteome. American Society for Clinical Investigation 2022-07-15 2022-07-15 /pmc/articles/PMC9282932/ /pubmed/35700042 http://dx.doi.org/10.1172/JCI157504 Text en © 2022 Shammas et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Shammas, Mario K.
Huang, Xiaoping
Wu, Beverly P.
Fessler, Evelyn
Song, Insung Y.
Randolph, Nicholas P.
Li, Yan
Bleck, Christopher K.E.
Springer, Danielle A.
Fratter, Carl
Barbosa, Ines A.
Powers, Andrew F.
Quirós, Pedro M.
Lopez-Otin, Carlos
Jae, Lucas T.
Poulton, Joanna
Narendra, Derek P.
OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy
title OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy
title_full OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy
title_fullStr OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy
title_full_unstemmed OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy
title_short OMA1 mediates local and global stress responses against protein misfolding in CHCHD10 mitochondrial myopathy
title_sort oma1 mediates local and global stress responses against protein misfolding in chchd10 mitochondrial myopathy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282932/
https://www.ncbi.nlm.nih.gov/pubmed/35700042
http://dx.doi.org/10.1172/JCI157504
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