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Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice

Advanced age is not only a major risk factor for a range of disorders within an aging individual but may also enhance susceptibility for disease in the next generation. In humans, advanced paternal age has been associated with increased risk for a number of diseases. Experiments in rodent models hav...

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Autores principales: Xie, Kan, Ryan, Devon P., Pearson, Brandon L., Henzel, Kristin S., Neff, Frauke, Vidal, Ramon O., Hennion, Magali, Lehmann, Isabelle, Schleif, Melvin, Schröder, Susanne, Adler, Thure, Rathkolb, Birgit, Rozman, Jan, Schütz, Anna-Lena, Prehn, Cornelia, Mickael, Michel E., Weiergräber, Marco, Adamski, Jerzy, Busch, Dirk H., Ehninger, Gerhard, Matynia, Anna, Jackson, Walker S., Wolf, Eckhard, Fuchs, Helmut, Gailus-Durner, Valerie, Bonn, Stefan, Hrabě de Angelis, Martin, Ehninger, Dan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5877957/
https://www.ncbi.nlm.nih.gov/pubmed/29467291
http://dx.doi.org/10.1073/pnas.1707337115
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author Xie, Kan
Ryan, Devon P.
Pearson, Brandon L.
Henzel, Kristin S.
Neff, Frauke
Vidal, Ramon O.
Hennion, Magali
Lehmann, Isabelle
Schleif, Melvin
Schröder, Susanne
Adler, Thure
Rathkolb, Birgit
Rozman, Jan
Schütz, Anna-Lena
Prehn, Cornelia
Mickael, Michel E.
Weiergräber, Marco
Adamski, Jerzy
Busch, Dirk H.
Ehninger, Gerhard
Matynia, Anna
Jackson, Walker S.
Wolf, Eckhard
Fuchs, Helmut
Gailus-Durner, Valerie
Bonn, Stefan
Hrabě de Angelis, Martin
Ehninger, Dan
author_facet Xie, Kan
Ryan, Devon P.
Pearson, Brandon L.
Henzel, Kristin S.
Neff, Frauke
Vidal, Ramon O.
Hennion, Magali
Lehmann, Isabelle
Schleif, Melvin
Schröder, Susanne
Adler, Thure
Rathkolb, Birgit
Rozman, Jan
Schütz, Anna-Lena
Prehn, Cornelia
Mickael, Michel E.
Weiergräber, Marco
Adamski, Jerzy
Busch, Dirk H.
Ehninger, Gerhard
Matynia, Anna
Jackson, Walker S.
Wolf, Eckhard
Fuchs, Helmut
Gailus-Durner, Valerie
Bonn, Stefan
Hrabě de Angelis, Martin
Ehninger, Dan
author_sort Xie, Kan
collection PubMed
description Advanced age is not only a major risk factor for a range of disorders within an aging individual but may also enhance susceptibility for disease in the next generation. In humans, advanced paternal age has been associated with increased risk for a number of diseases. Experiments in rodent models have provided initial evidence that paternal age can influence behavioral traits in offspring animals, but the overall scope and extent of paternal age effects on health and disease across the life span remain underexplored. Here, we report that old father offspring mice showed a reduced life span and an exacerbated development of aging traits compared with young father offspring mice. Genome-wide epigenetic analyses of sperm from aging males and old father offspring tissue identified differentially methylated promoters, enriched for genes involved in the regulation of evolutionarily conserved longevity pathways. Gene expression analyses, biochemical experiments, and functional studies revealed evidence for an overactive mTORC1 signaling pathway in old father offspring mice. Pharmacological mTOR inhibition during the course of normal aging ameliorated many of the aging traits that were exacerbated in old father offspring mice. These findings raise the possibility that inherited alterations in longevity pathways contribute to intergenerational effects of aging in old father offspring mice.
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spelling pubmed-58779572018-04-02 Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice Xie, Kan Ryan, Devon P. Pearson, Brandon L. Henzel, Kristin S. Neff, Frauke Vidal, Ramon O. Hennion, Magali Lehmann, Isabelle Schleif, Melvin Schröder, Susanne Adler, Thure Rathkolb, Birgit Rozman, Jan Schütz, Anna-Lena Prehn, Cornelia Mickael, Michel E. Weiergräber, Marco Adamski, Jerzy Busch, Dirk H. Ehninger, Gerhard Matynia, Anna Jackson, Walker S. Wolf, Eckhard Fuchs, Helmut Gailus-Durner, Valerie Bonn, Stefan Hrabě de Angelis, Martin Ehninger, Dan Proc Natl Acad Sci U S A PNAS Plus Advanced age is not only a major risk factor for a range of disorders within an aging individual but may also enhance susceptibility for disease in the next generation. In humans, advanced paternal age has been associated with increased risk for a number of diseases. Experiments in rodent models have provided initial evidence that paternal age can influence behavioral traits in offspring animals, but the overall scope and extent of paternal age effects on health and disease across the life span remain underexplored. Here, we report that old father offspring mice showed a reduced life span and an exacerbated development of aging traits compared with young father offspring mice. Genome-wide epigenetic analyses of sperm from aging males and old father offspring tissue identified differentially methylated promoters, enriched for genes involved in the regulation of evolutionarily conserved longevity pathways. Gene expression analyses, biochemical experiments, and functional studies revealed evidence for an overactive mTORC1 signaling pathway in old father offspring mice. Pharmacological mTOR inhibition during the course of normal aging ameliorated many of the aging traits that were exacerbated in old father offspring mice. These findings raise the possibility that inherited alterations in longevity pathways contribute to intergenerational effects of aging in old father offspring mice. National Academy of Sciences 2018-03-06 2018-02-21 /pmc/articles/PMC5877957/ /pubmed/29467291 http://dx.doi.org/10.1073/pnas.1707337115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
Xie, Kan
Ryan, Devon P.
Pearson, Brandon L.
Henzel, Kristin S.
Neff, Frauke
Vidal, Ramon O.
Hennion, Magali
Lehmann, Isabelle
Schleif, Melvin
Schröder, Susanne
Adler, Thure
Rathkolb, Birgit
Rozman, Jan
Schütz, Anna-Lena
Prehn, Cornelia
Mickael, Michel E.
Weiergräber, Marco
Adamski, Jerzy
Busch, Dirk H.
Ehninger, Gerhard
Matynia, Anna
Jackson, Walker S.
Wolf, Eckhard
Fuchs, Helmut
Gailus-Durner, Valerie
Bonn, Stefan
Hrabě de Angelis, Martin
Ehninger, Dan
Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
title Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
title_full Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
title_fullStr Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
title_full_unstemmed Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
title_short Epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
title_sort epigenetic alterations in longevity regulators, reduced life span, and exacerbated aging-related pathology in old father offspring mice
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5877957/
https://www.ncbi.nlm.nih.gov/pubmed/29467291
http://dx.doi.org/10.1073/pnas.1707337115
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