Cargando…

Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans

Severe mitochondria deficiency leads to a number of devastating degenerative disorders, yet, mild mitochondrial dysfunction in different species, including the nematode Caenorhabditis elegans, can have pro-longevity effects. This apparent paradox indicates that cellular adaptation to partial mitocho...

Descripción completa

Detalles Bibliográficos
Autores principales: Schiavi, Alfonso, Torgovnick, Alessandro, Kell, Alison, Megalou, Evgenia, Castelein, Natascha, Guccini, Ilaria, Marzocchella, Laura, Gelino, Sara, Hansen, Malene, Malisan, Florence, Condò, Ivano, Bei, Roberto, Rea, Shane L., Braeckman, Bart P., Tavernarakis, Nektarios, Testi, Roberto, Ventura, Natascia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3572394/
https://www.ncbi.nlm.nih.gov/pubmed/23247094
http://dx.doi.org/10.1016/j.exger.2012.12.002
_version_ 1782259316351303680
author Schiavi, Alfonso
Torgovnick, Alessandro
Kell, Alison
Megalou, Evgenia
Castelein, Natascha
Guccini, Ilaria
Marzocchella, Laura
Gelino, Sara
Hansen, Malene
Malisan, Florence
Condò, Ivano
Bei, Roberto
Rea, Shane L.
Braeckman, Bart P.
Tavernarakis, Nektarios
Testi, Roberto
Ventura, Natascia
author_facet Schiavi, Alfonso
Torgovnick, Alessandro
Kell, Alison
Megalou, Evgenia
Castelein, Natascha
Guccini, Ilaria
Marzocchella, Laura
Gelino, Sara
Hansen, Malene
Malisan, Florence
Condò, Ivano
Bei, Roberto
Rea, Shane L.
Braeckman, Bart P.
Tavernarakis, Nektarios
Testi, Roberto
Ventura, Natascia
author_sort Schiavi, Alfonso
collection PubMed
description Severe mitochondria deficiency leads to a number of devastating degenerative disorders, yet, mild mitochondrial dysfunction in different species, including the nematode Caenorhabditis elegans, can have pro-longevity effects. This apparent paradox indicates that cellular adaptation to partial mitochondrial stress can induce beneficial responses, but how this is achieved is largely unknown. Complete absence of frataxin, the mitochondrial protein defective in patients with Friedreich's ataxia, is lethal in C. elegans, while its partial deficiency extends animal lifespan in a p53 dependent manner. In this paper we provide further insight into frataxin control of C. elegans longevity by showing that a substantial reduction of frataxin protein expression is required to extend lifespan, affect sensory neurons functionality, remodel lipid metabolism and trigger autophagy. We find that Beclin and p53 genes are required to induce autophagy and concurrently reduce lipid storages and extend animal lifespan in response to frataxin suppression. Reciprocally, frataxin expression modulates autophagy in the absence of p53. Human Friedreich ataxia-derived lymphoblasts also display increased autophagy, indicating an evolutionarily conserved response to reduced frataxin expression. In sum, we demonstrate a causal connection between induction of autophagy and lifespan extension following reduced frataxin expression, thus providing the rationale for investigating autophagy in the pathogenesis and treatment of Friedreich's ataxia and possibly other human mitochondria-associated disorders.
format Online
Article
Text
id pubmed-3572394
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Elsevier Science
record_format MEDLINE/PubMed
spelling pubmed-35723942013-02-14 Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans Schiavi, Alfonso Torgovnick, Alessandro Kell, Alison Megalou, Evgenia Castelein, Natascha Guccini, Ilaria Marzocchella, Laura Gelino, Sara Hansen, Malene Malisan, Florence Condò, Ivano Bei, Roberto Rea, Shane L. Braeckman, Bart P. Tavernarakis, Nektarios Testi, Roberto Ventura, Natascia Exp Gerontol Article Severe mitochondria deficiency leads to a number of devastating degenerative disorders, yet, mild mitochondrial dysfunction in different species, including the nematode Caenorhabditis elegans, can have pro-longevity effects. This apparent paradox indicates that cellular adaptation to partial mitochondrial stress can induce beneficial responses, but how this is achieved is largely unknown. Complete absence of frataxin, the mitochondrial protein defective in patients with Friedreich's ataxia, is lethal in C. elegans, while its partial deficiency extends animal lifespan in a p53 dependent manner. In this paper we provide further insight into frataxin control of C. elegans longevity by showing that a substantial reduction of frataxin protein expression is required to extend lifespan, affect sensory neurons functionality, remodel lipid metabolism and trigger autophagy. We find that Beclin and p53 genes are required to induce autophagy and concurrently reduce lipid storages and extend animal lifespan in response to frataxin suppression. Reciprocally, frataxin expression modulates autophagy in the absence of p53. Human Friedreich ataxia-derived lymphoblasts also display increased autophagy, indicating an evolutionarily conserved response to reduced frataxin expression. In sum, we demonstrate a causal connection between induction of autophagy and lifespan extension following reduced frataxin expression, thus providing the rationale for investigating autophagy in the pathogenesis and treatment of Friedreich's ataxia and possibly other human mitochondria-associated disorders. Elsevier Science 2013-02 /pmc/articles/PMC3572394/ /pubmed/23247094 http://dx.doi.org/10.1016/j.exger.2012.12.002 Text en © 2013 Elsevier Inc. This document may be redistributed and reused, subject to certain conditions (http://www.elsevier.com/wps/find/authorsview.authors/supplementalterms1.0) .
spellingShingle Article
Schiavi, Alfonso
Torgovnick, Alessandro
Kell, Alison
Megalou, Evgenia
Castelein, Natascha
Guccini, Ilaria
Marzocchella, Laura
Gelino, Sara
Hansen, Malene
Malisan, Florence
Condò, Ivano
Bei, Roberto
Rea, Shane L.
Braeckman, Bart P.
Tavernarakis, Nektarios
Testi, Roberto
Ventura, Natascia
Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans
title Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans
title_full Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans
title_fullStr Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans
title_full_unstemmed Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans
title_short Autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in C. elegans
title_sort autophagy induction extends lifespan and reduces lipid content in response to frataxin silencing in c. elegans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3572394/
https://www.ncbi.nlm.nih.gov/pubmed/23247094
http://dx.doi.org/10.1016/j.exger.2012.12.002
work_keys_str_mv AT schiavialfonso autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT torgovnickalessandro autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT kellalison autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT megalouevgenia autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT casteleinnatascha autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT gucciniilaria autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT marzocchellalaura autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT gelinosara autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT hansenmalene autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT malisanflorence autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT condoivano autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT beiroberto autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT reashanel autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT braeckmanbartp autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT tavernarakisnektarios autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT testiroberto autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans
AT venturanatascia autophagyinductionextendslifespanandreduceslipidcontentinresponsetofrataxinsilencingincelegans