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Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans

Ceramide and its metabolites constitute a diverse group of lipids, which play important roles as structural entities of biological membranes as well as regulators of cellular growth, differentiation, and development. The C. elegans genome comprises three ceramide synthase genes; hyl-1, hyl-2, and la...

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Autores principales: Mosbech, Mai-Britt, Kruse, Rikke, Harvald, Eva Bang, Olsen, Anne Sofie Braun, Gallego, Sandra Fernandez, Hannibal-Bach, Hans Kristian, Ejsing, Christer S., Færgeman, Nils J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3716707/
https://www.ncbi.nlm.nih.gov/pubmed/23894595
http://dx.doi.org/10.1371/journal.pone.0070087
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author Mosbech, Mai-Britt
Kruse, Rikke
Harvald, Eva Bang
Olsen, Anne Sofie Braun
Gallego, Sandra Fernandez
Hannibal-Bach, Hans Kristian
Ejsing, Christer S.
Færgeman, Nils J.
author_facet Mosbech, Mai-Britt
Kruse, Rikke
Harvald, Eva Bang
Olsen, Anne Sofie Braun
Gallego, Sandra Fernandez
Hannibal-Bach, Hans Kristian
Ejsing, Christer S.
Færgeman, Nils J.
author_sort Mosbech, Mai-Britt
collection PubMed
description Ceramide and its metabolites constitute a diverse group of lipids, which play important roles as structural entities of biological membranes as well as regulators of cellular growth, differentiation, and development. The C. elegans genome comprises three ceramide synthase genes; hyl-1, hyl-2, and lagr-1. HYL-1 function is required for synthesis of ceramides and sphingolipids containing very long acyl-chains (≥C24), while HYL-2 is required for synthesis of ceramides and sphingolipids containing shorter acyl-chains (≤C22). Here we show that functional loss of HYL-2 decreases lifespan, while loss of HYL-1 or LAGR-1 does not affect lifespan. We show that loss of HYL-1 and LAGR-1 functions extend lifespan in an autophagy-dependent manner, as knock down of the autophagy-associated gene ATG-12 abolishes hyl-1;lagr-1 longevity. The transcription factors PHA-4/FOXA, DAF-16/FOXO, and SKN-1 are also required for the observed lifespan extension, as well as the increased number of autophagosomes in hyl-1;lagr-1 animals. Both autophagic events and the transcription factors PHA-4/FOXA, DAF-16, and SKN-1 have previously been associated with dietary restriction-induced longevity. Accordingly, we find that hyl-1;lagr-1 animals display reduced feeding, increased resistance to heat, and reduced reproduction. Collectively, our data suggest that specific sphingolipids produced by different ceramide synthases have opposing roles in determination of C. elegans lifespan. We propose that loss of HYL-1 and LAGR-1 result in dietary restriction-induced autophagy and consequently prolonged longevity.
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spelling pubmed-37167072013-07-26 Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans Mosbech, Mai-Britt Kruse, Rikke Harvald, Eva Bang Olsen, Anne Sofie Braun Gallego, Sandra Fernandez Hannibal-Bach, Hans Kristian Ejsing, Christer S. Færgeman, Nils J. PLoS One Research Article Ceramide and its metabolites constitute a diverse group of lipids, which play important roles as structural entities of biological membranes as well as regulators of cellular growth, differentiation, and development. The C. elegans genome comprises three ceramide synthase genes; hyl-1, hyl-2, and lagr-1. HYL-1 function is required for synthesis of ceramides and sphingolipids containing very long acyl-chains (≥C24), while HYL-2 is required for synthesis of ceramides and sphingolipids containing shorter acyl-chains (≤C22). Here we show that functional loss of HYL-2 decreases lifespan, while loss of HYL-1 or LAGR-1 does not affect lifespan. We show that loss of HYL-1 and LAGR-1 functions extend lifespan in an autophagy-dependent manner, as knock down of the autophagy-associated gene ATG-12 abolishes hyl-1;lagr-1 longevity. The transcription factors PHA-4/FOXA, DAF-16/FOXO, and SKN-1 are also required for the observed lifespan extension, as well as the increased number of autophagosomes in hyl-1;lagr-1 animals. Both autophagic events and the transcription factors PHA-4/FOXA, DAF-16, and SKN-1 have previously been associated with dietary restriction-induced longevity. Accordingly, we find that hyl-1;lagr-1 animals display reduced feeding, increased resistance to heat, and reduced reproduction. Collectively, our data suggest that specific sphingolipids produced by different ceramide synthases have opposing roles in determination of C. elegans lifespan. We propose that loss of HYL-1 and LAGR-1 result in dietary restriction-induced autophagy and consequently prolonged longevity. Public Library of Science 2013-07-19 /pmc/articles/PMC3716707/ /pubmed/23894595 http://dx.doi.org/10.1371/journal.pone.0070087 Text en © 2013 Mosbech et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mosbech, Mai-Britt
Kruse, Rikke
Harvald, Eva Bang
Olsen, Anne Sofie Braun
Gallego, Sandra Fernandez
Hannibal-Bach, Hans Kristian
Ejsing, Christer S.
Færgeman, Nils J.
Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans
title Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans
title_full Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans
title_fullStr Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans
title_full_unstemmed Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans
title_short Functional Loss of Two Ceramide Synthases Elicits Autophagy-Dependent Lifespan Extension in C. elegans
title_sort functional loss of two ceramide synthases elicits autophagy-dependent lifespan extension in c. elegans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3716707/
https://www.ncbi.nlm.nih.gov/pubmed/23894595
http://dx.doi.org/10.1371/journal.pone.0070087
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