Cargando…

Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging

Variation in the rate at which humans age may be rooted in early life events acting through genomic regions that are influenced by such events and subsequently are related to health phenotypes in later life. The parent-of-origin-effect (POE)-regulated methylome includes regions either enriched for g...

Descripción completa

Detalles Bibliográficos
Autores principales: Gao, Chenhao, Amador, Carmen, Walker, Rosie M., Campbell, Archie, Madden, Rebecca A, Adams, Mark J., Bai, Xiaomeng, Liu, Ying, Li, Miaoxin, Hayward, Caroline, Porteous, David J., Shen, Xueyi, Evans, Kathryn L., Haley, Chris S., McIntosh, Andrew M., Navarro, Pau, Zeng, Yanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882261/
https://www.ncbi.nlm.nih.gov/pubmed/36711749
http://dx.doi.org/10.1101/2023.01.18.524653
_version_ 1784879264141672448
author Gao, Chenhao
Amador, Carmen
Walker, Rosie M.
Campbell, Archie
Madden, Rebecca A
Adams, Mark J.
Bai, Xiaomeng
Liu, Ying
Li, Miaoxin
Hayward, Caroline
Porteous, David J.
Shen, Xueyi
Evans, Kathryn L.
Haley, Chris S.
McIntosh, Andrew M.
Navarro, Pau
Zeng, Yanni
author_facet Gao, Chenhao
Amador, Carmen
Walker, Rosie M.
Campbell, Archie
Madden, Rebecca A
Adams, Mark J.
Bai, Xiaomeng
Liu, Ying
Li, Miaoxin
Hayward, Caroline
Porteous, David J.
Shen, Xueyi
Evans, Kathryn L.
Haley, Chris S.
McIntosh, Andrew M.
Navarro, Pau
Zeng, Yanni
author_sort Gao, Chenhao
collection PubMed
description Variation in the rate at which humans age may be rooted in early life events acting through genomic regions that are influenced by such events and subsequently are related to health phenotypes in later life. The parent-of-origin-effect (POE)-regulated methylome includes regions either enriched for genetically controlled imprinting effects (the typical type of POE) or atypical POE introduced by environmental effects associated with parents. This part of the methylome is heavily influenced by early life events, making it a potential route connecting early environmental exposures, the epigenome and the rate of aging. Here, we aim to test the association of POE-influenced methylation of CpG dinucleotides (POE-CpG sites) with early and later environmental exposures and subsequently with health-related phenotypes and adult aging phenotypes. We do this by performing phenome-wide association analyses of the POE-influenced methylome using a large family-based population cohort (GS:SFHS, N(discovery)=5,087, N(replication)=4,450). At the single CpG level, 92 associations of POE-CpGs with phenotypic variation were identified and replicated. Most of the associations were contributed by POE-CpGs belonging to the atypical class and the most strongly enriched associations were with aging (DNAmTL acceleration), intelligence and parental (maternal) smoking exposure phenotypes. We further found that a proportion of the atypical-POE-CpGs formed co-methylation networks (modules) which are associated with these phenotypes, with one of the aging-associated modules displaying increased internal module connectivity (strength of methylation correlation across constituent CpGs) with age. Atypical POE-CpGs also displayed high levels of methylation heterogeneity and epigenetic drift (i.e. information loss with age) and a strong correlation with CpGs contained within epigenetic clocks. These results identified associations between the atypical-POE-influenced methylome and aging and provided new evidence for the “early development of origin” hypothesis for aging in humans.
format Online
Article
Text
id pubmed-9882261
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-98822612023-01-28 Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging Gao, Chenhao Amador, Carmen Walker, Rosie M. Campbell, Archie Madden, Rebecca A Adams, Mark J. Bai, Xiaomeng Liu, Ying Li, Miaoxin Hayward, Caroline Porteous, David J. Shen, Xueyi Evans, Kathryn L. Haley, Chris S. McIntosh, Andrew M. Navarro, Pau Zeng, Yanni bioRxiv Article Variation in the rate at which humans age may be rooted in early life events acting through genomic regions that are influenced by such events and subsequently are related to health phenotypes in later life. The parent-of-origin-effect (POE)-regulated methylome includes regions either enriched for genetically controlled imprinting effects (the typical type of POE) or atypical POE introduced by environmental effects associated with parents. This part of the methylome is heavily influenced by early life events, making it a potential route connecting early environmental exposures, the epigenome and the rate of aging. Here, we aim to test the association of POE-influenced methylation of CpG dinucleotides (POE-CpG sites) with early and later environmental exposures and subsequently with health-related phenotypes and adult aging phenotypes. We do this by performing phenome-wide association analyses of the POE-influenced methylome using a large family-based population cohort (GS:SFHS, N(discovery)=5,087, N(replication)=4,450). At the single CpG level, 92 associations of POE-CpGs with phenotypic variation were identified and replicated. Most of the associations were contributed by POE-CpGs belonging to the atypical class and the most strongly enriched associations were with aging (DNAmTL acceleration), intelligence and parental (maternal) smoking exposure phenotypes. We further found that a proportion of the atypical-POE-CpGs formed co-methylation networks (modules) which are associated with these phenotypes, with one of the aging-associated modules displaying increased internal module connectivity (strength of methylation correlation across constituent CpGs) with age. Atypical POE-CpGs also displayed high levels of methylation heterogeneity and epigenetic drift (i.e. information loss with age) and a strong correlation with CpGs contained within epigenetic clocks. These results identified associations between the atypical-POE-influenced methylome and aging and provided new evidence for the “early development of origin” hypothesis for aging in humans. Cold Spring Harbor Laboratory 2023-01-20 /pmc/articles/PMC9882261/ /pubmed/36711749 http://dx.doi.org/10.1101/2023.01.18.524653 Text en https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (https://creativecommons.org/licenses/by-nc/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Gao, Chenhao
Amador, Carmen
Walker, Rosie M.
Campbell, Archie
Madden, Rebecca A
Adams, Mark J.
Bai, Xiaomeng
Liu, Ying
Li, Miaoxin
Hayward, Caroline
Porteous, David J.
Shen, Xueyi
Evans, Kathryn L.
Haley, Chris S.
McIntosh, Andrew M.
Navarro, Pau
Zeng, Yanni
Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
title Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
title_full Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
title_fullStr Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
title_full_unstemmed Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
title_short Phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
title_sort phenome-wide analysis identifies parent-of-origin effects on the human methylome associated with changes in the rate of aging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882261/
https://www.ncbi.nlm.nih.gov/pubmed/36711749
http://dx.doi.org/10.1101/2023.01.18.524653
work_keys_str_mv AT gaochenhao phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT amadorcarmen phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT walkerrosiem phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT campbellarchie phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT maddenrebeccaa phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT adamsmarkj phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT baixiaomeng phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT liuying phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT limiaoxin phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT haywardcaroline phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT porteousdavidj phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT shenxueyi phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT evanskathrynl phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT haleychriss phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT mcintoshandrewm phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT navarropau phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging
AT zengyanni phenomewideanalysisidentifiesparentoforigineffectsonthehumanmethylomeassociatedwithchangesintherateofaging