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Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny

The heritability of lifespan is 20-30%, but only a few genes associated with longevity have been identified. To explain this discrepancy, the inheritance of epigenetic features, such as DNA methylation, have been proposed to contribute to the heritability of lifespan. We investigated whether parenta...

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Autores principales: Marttila, Saara, Kananen, Laura, Jylhävä, Juulia, Nevalainen, Tapio, Hervonen, Antti, Jylhä, Marja, Hurme, Mikko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741551/
https://www.ncbi.nlm.nih.gov/pubmed/26436701
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author Marttila, Saara
Kananen, Laura
Jylhävä, Juulia
Nevalainen, Tapio
Hervonen, Antti
Jylhä, Marja
Hurme, Mikko
author_facet Marttila, Saara
Kananen, Laura
Jylhävä, Juulia
Nevalainen, Tapio
Hervonen, Antti
Jylhä, Marja
Hurme, Mikko
author_sort Marttila, Saara
collection PubMed
description The heritability of lifespan is 20-30%, but only a few genes associated with longevity have been identified. To explain this discrepancy, the inheritance of epigenetic features, such as DNA methylation, have been proposed to contribute to the heritability of lifespan. We investigated whether parental lifespan is associated with DNA methylation profile in nonagenarians. A regression model, adjusted for differences in blood cell proportions, identified 659 CpG sites where the level of methylation was associated with paternal lifespan. However, no association was observed between maternal lifespan and DNA methylation. The 659 CpG sites associated with paternal lifespan were enriched outside of CpG islands and were located in genes associated with development and morphogenesis, as well as cell signaling. The largest difference in the level of methylation between the progeny of the shortest-lived and longest-lived fathers was identified for CpG sites mapping to CXXC5. In addition, the level of methylation in three Notch-genes (NOTCH1, NOTCH3 and NOTCH4) was also associated with paternal lifespan. There are implications for the inheritance of acquired traits via epigenetic mechanisms in mammals. Here we describe DNA methylation features that are associated with paternal lifespan, and we speculate that the identified CpG sites may represent intergenerational epigenetic inheritance.
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spelling pubmed-47415512016-03-03 Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny Marttila, Saara Kananen, Laura Jylhävä, Juulia Nevalainen, Tapio Hervonen, Antti Jylhä, Marja Hurme, Mikko Oncotarget Research Paper: Gerotarget (Focus on Aging) The heritability of lifespan is 20-30%, but only a few genes associated with longevity have been identified. To explain this discrepancy, the inheritance of epigenetic features, such as DNA methylation, have been proposed to contribute to the heritability of lifespan. We investigated whether parental lifespan is associated with DNA methylation profile in nonagenarians. A regression model, adjusted for differences in blood cell proportions, identified 659 CpG sites where the level of methylation was associated with paternal lifespan. However, no association was observed between maternal lifespan and DNA methylation. The 659 CpG sites associated with paternal lifespan were enriched outside of CpG islands and were located in genes associated with development and morphogenesis, as well as cell signaling. The largest difference in the level of methylation between the progeny of the shortest-lived and longest-lived fathers was identified for CpG sites mapping to CXXC5. In addition, the level of methylation in three Notch-genes (NOTCH1, NOTCH3 and NOTCH4) was also associated with paternal lifespan. There are implications for the inheritance of acquired traits via epigenetic mechanisms in mammals. Here we describe DNA methylation features that are associated with paternal lifespan, and we speculate that the identified CpG sites may represent intergenerational epigenetic inheritance. Impact Journals LLC 2015-09-30 /pmc/articles/PMC4741551/ /pubmed/26436701 Text en Copyright: © 2015 Marttila et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper: Gerotarget (Focus on Aging)
Marttila, Saara
Kananen, Laura
Jylhävä, Juulia
Nevalainen, Tapio
Hervonen, Antti
Jylhä, Marja
Hurme, Mikko
Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny
title Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny
title_full Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny
title_fullStr Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny
title_full_unstemmed Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny
title_short Length of paternal lifespan is manifested in the DNA methylome of their nonagenarian progeny
title_sort length of paternal lifespan is manifested in the dna methylome of their nonagenarian progeny
topic Research Paper: Gerotarget (Focus on Aging)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741551/
https://www.ncbi.nlm.nih.gov/pubmed/26436701
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