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Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans

Ageing is driven by a loss of transcriptional and protein homeostasis(1–3) and is the key risk factor for multiple chronic diseases. Interventions that attenuate or reverse systemic dysfunction seen with age therefore have potential to reduce overall disease risk in the elderly. Pre-mRNA splicing is...

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Autores principales: Heintz, Caroline, Doktor, Thomas Koed, Lanjuin, Anne, Escoubas, Caroline, Zhang, Yue, Weir, Heather J., Dutta, Sneha, Silva-García, Carlos Giovanni, Bruun, Gitte Hoffmann, Morantte, Ianessa, Hoxhaj, Gerta, Manning, Brendan D., Andresen, Brage S., Mair, William B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5361225/
https://www.ncbi.nlm.nih.gov/pubmed/27919065
http://dx.doi.org/10.1038/nature20789
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author Heintz, Caroline
Doktor, Thomas Koed
Lanjuin, Anne
Escoubas, Caroline
Zhang, Yue
Weir, Heather J.
Dutta, Sneha
Silva-García, Carlos Giovanni
Bruun, Gitte Hoffmann
Morantte, Ianessa
Hoxhaj, Gerta
Manning, Brendan D.
Andresen, Brage S.
Mair, William B.
author_facet Heintz, Caroline
Doktor, Thomas Koed
Lanjuin, Anne
Escoubas, Caroline
Zhang, Yue
Weir, Heather J.
Dutta, Sneha
Silva-García, Carlos Giovanni
Bruun, Gitte Hoffmann
Morantte, Ianessa
Hoxhaj, Gerta
Manning, Brendan D.
Andresen, Brage S.
Mair, William B.
author_sort Heintz, Caroline
collection PubMed
description Ageing is driven by a loss of transcriptional and protein homeostasis(1–3) and is the key risk factor for multiple chronic diseases. Interventions that attenuate or reverse systemic dysfunction seen with age therefore have potential to reduce overall disease risk in the elderly. Pre-mRNA splicing is a fundamental link between gene expression and the proteome, and deregulation of the splicing machinery is linked to multiple age-related chronic diseases(4,5). However, the role of splicing homeostasis in healthy ageing remains unclear. Here we demonstrate that pre-mRNA splicing homeostasis is a biomarker and predictor of life expectancy in Caenorhabditis elegans. Using transcriptomics and in-depth splicing analysis in young and old animals fed ad libitum or on dietary restriction (DR), we find defects in global pre-mRNA splicing with age that are reduced by DR via the branch point binding protein (BBP)/splicing factor 1 (SFA-1). We show that SFA-1 is specifically required for lifespan extension both by DR, and modulation of TORC1 pathway components AMPK, RAGA-1 and RSKS-1/S6 Kinase. Lastly, we demonstrate that overexpression of SFA-1 is sufficient to extend lifespan. Together, these data demonstrate a role for RNA splicing homeostasis in DR longevity and suggest modulation of specific spliceosome components can prolong healthy ageing.
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spelling pubmed-53612252017-06-05 Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans Heintz, Caroline Doktor, Thomas Koed Lanjuin, Anne Escoubas, Caroline Zhang, Yue Weir, Heather J. Dutta, Sneha Silva-García, Carlos Giovanni Bruun, Gitte Hoffmann Morantte, Ianessa Hoxhaj, Gerta Manning, Brendan D. Andresen, Brage S. Mair, William B. Nature Article Ageing is driven by a loss of transcriptional and protein homeostasis(1–3) and is the key risk factor for multiple chronic diseases. Interventions that attenuate or reverse systemic dysfunction seen with age therefore have potential to reduce overall disease risk in the elderly. Pre-mRNA splicing is a fundamental link between gene expression and the proteome, and deregulation of the splicing machinery is linked to multiple age-related chronic diseases(4,5). However, the role of splicing homeostasis in healthy ageing remains unclear. Here we demonstrate that pre-mRNA splicing homeostasis is a biomarker and predictor of life expectancy in Caenorhabditis elegans. Using transcriptomics and in-depth splicing analysis in young and old animals fed ad libitum or on dietary restriction (DR), we find defects in global pre-mRNA splicing with age that are reduced by DR via the branch point binding protein (BBP)/splicing factor 1 (SFA-1). We show that SFA-1 is specifically required for lifespan extension both by DR, and modulation of TORC1 pathway components AMPK, RAGA-1 and RSKS-1/S6 Kinase. Lastly, we demonstrate that overexpression of SFA-1 is sufficient to extend lifespan. Together, these data demonstrate a role for RNA splicing homeostasis in DR longevity and suggest modulation of specific spliceosome components can prolong healthy ageing. 2016-12-05 2017-01-05 /pmc/articles/PMC5361225/ /pubmed/27919065 http://dx.doi.org/10.1038/nature20789 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Heintz, Caroline
Doktor, Thomas Koed
Lanjuin, Anne
Escoubas, Caroline
Zhang, Yue
Weir, Heather J.
Dutta, Sneha
Silva-García, Carlos Giovanni
Bruun, Gitte Hoffmann
Morantte, Ianessa
Hoxhaj, Gerta
Manning, Brendan D.
Andresen, Brage S.
Mair, William B.
Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans
title Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans
title_full Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans
title_fullStr Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans
title_full_unstemmed Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans
title_short Splicing Factor 1 Modulates Dietary Restriction and TORC1 Pathway Longevity in C. elegans
title_sort splicing factor 1 modulates dietary restriction and torc1 pathway longevity in c. elegans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5361225/
https://www.ncbi.nlm.nih.gov/pubmed/27919065
http://dx.doi.org/10.1038/nature20789
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