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Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin

Hereditary spastic paraplegias, a group of neurodegenerative disorders, can be caused by loss-of-function mutations in the protein spartin. However, the physiological role of spartin remains largely elusive. Here we show that heterologous expression of human or Drosophila spartin extends chronologic...

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Autores principales: Ring, Julia, Rockenfeller, Patrick, Abraham, Claudia, Tadic, Jelena, Poglitsch, Michael, Schimmel, Katherina, Westermayer, Julia, Schauer, Simon, Achleitner, Bettina, Schimpel, Christa, Moitzi, Barbara, Rechberger, Gerald N., Sigrist, Stephan J., Carmona-Gutierrez, Didac, Kroemer, Guido, Büttner, Sabrina, Eisenberg, Tobias, Madeo, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shared Science Publishers OG 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5722644/
https://www.ncbi.nlm.nih.gov/pubmed/29234670
http://dx.doi.org/10.15698/mic2017.12.603
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author Ring, Julia
Rockenfeller, Patrick
Abraham, Claudia
Tadic, Jelena
Poglitsch, Michael
Schimmel, Katherina
Westermayer, Julia
Schauer, Simon
Achleitner, Bettina
Schimpel, Christa
Moitzi, Barbara
Rechberger, Gerald N.
Sigrist, Stephan J.
Carmona-Gutierrez, Didac
Kroemer, Guido
Büttner, Sabrina
Eisenberg, Tobias
Madeo, Frank
author_facet Ring, Julia
Rockenfeller, Patrick
Abraham, Claudia
Tadic, Jelena
Poglitsch, Michael
Schimmel, Katherina
Westermayer, Julia
Schauer, Simon
Achleitner, Bettina
Schimpel, Christa
Moitzi, Barbara
Rechberger, Gerald N.
Sigrist, Stephan J.
Carmona-Gutierrez, Didac
Kroemer, Guido
Büttner, Sabrina
Eisenberg, Tobias
Madeo, Frank
author_sort Ring, Julia
collection PubMed
description Hereditary spastic paraplegias, a group of neurodegenerative disorders, can be caused by loss-of-function mutations in the protein spartin. However, the physiological role of spartin remains largely elusive. Here we show that heterologous expression of human or Drosophila spartin extends chronological lifespan of yeast, reducing age-associated ROS production, apoptosis, and necrosis. We demonstrate that spartin localizes to the proximity of mitochondria and physically interacts with proteins related to mitochondrial and respiratory metabolism. Interestingly, Nde1, the mitochondrial external NADH dehydrogenase, and Pda1, the core enzyme of the pyruvate dehydrogenase complex, are required for spartin-mediated cytoprotection. Furthermore, spartin interacts with the glycolysis enhancer phospo-fructo-kinase-2,6 (Pfk26) and is sufficient to complement for PFK26-deficiency at least in early aging. We conclude that mitochondria-related energy metabolism is crucial for spartin’s vital function during aging and uncover a network of specific interactors required for this function.
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spelling pubmed-57226442017-12-12 Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin Ring, Julia Rockenfeller, Patrick Abraham, Claudia Tadic, Jelena Poglitsch, Michael Schimmel, Katherina Westermayer, Julia Schauer, Simon Achleitner, Bettina Schimpel, Christa Moitzi, Barbara Rechberger, Gerald N. Sigrist, Stephan J. Carmona-Gutierrez, Didac Kroemer, Guido Büttner, Sabrina Eisenberg, Tobias Madeo, Frank Microb Cell Microbiology Hereditary spastic paraplegias, a group of neurodegenerative disorders, can be caused by loss-of-function mutations in the protein spartin. However, the physiological role of spartin remains largely elusive. Here we show that heterologous expression of human or Drosophila spartin extends chronological lifespan of yeast, reducing age-associated ROS production, apoptosis, and necrosis. We demonstrate that spartin localizes to the proximity of mitochondria and physically interacts with proteins related to mitochondrial and respiratory metabolism. Interestingly, Nde1, the mitochondrial external NADH dehydrogenase, and Pda1, the core enzyme of the pyruvate dehydrogenase complex, are required for spartin-mediated cytoprotection. Furthermore, spartin interacts with the glycolysis enhancer phospo-fructo-kinase-2,6 (Pfk26) and is sufficient to complement for PFK26-deficiency at least in early aging. We conclude that mitochondria-related energy metabolism is crucial for spartin’s vital function during aging and uncover a network of specific interactors required for this function. Shared Science Publishers OG 2017-11-30 /pmc/articles/PMC5722644/ /pubmed/29234670 http://dx.doi.org/10.15698/mic2017.12.603 Text en https://creativecommons.org/licenses/by/4.0/ This is an open-access article released under the terms of the Creative Commons Attribution (CC BY) license, which allows the unrestricted use, distribution, and reproduction in any medium, provided the original author and source are acknowledged.
spellingShingle Microbiology
Ring, Julia
Rockenfeller, Patrick
Abraham, Claudia
Tadic, Jelena
Poglitsch, Michael
Schimmel, Katherina
Westermayer, Julia
Schauer, Simon
Achleitner, Bettina
Schimpel, Christa
Moitzi, Barbara
Rechberger, Gerald N.
Sigrist, Stephan J.
Carmona-Gutierrez, Didac
Kroemer, Guido
Büttner, Sabrina
Eisenberg, Tobias
Madeo, Frank
Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
title Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
title_full Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
title_fullStr Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
title_full_unstemmed Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
title_short Mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
title_sort mitochondrial energy metabolism is required for lifespan extension by the spastic paraplegia-associated protein spartin
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5722644/
https://www.ncbi.nlm.nih.gov/pubmed/29234670
http://dx.doi.org/10.15698/mic2017.12.603
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