Cargando…

Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence

DNA methylation (DNAm) is known to play a pivotal role in childhood health and development, but a comprehensive characterization of genome-wide DNAm trajectories across this age period is currently lacking. We have therefore performed a series of epigenome-wide association studies in 5019 blood samp...

Descripción completa

Detalles Bibliográficos
Autores principales: Mulder, Rosa H, Neumann, Alexander, Cecil, Charlotte A M, Walton, Esther, Houtepen, Lotte C, Simpkin, Andrew J, Rijlaarsdam, Jolien, Heijmans, Bastiaan T, Gaunt, Tom R, Felix, Janine F, Jaddoe, Vincent W V, Bakermans-Kranenburg, Marian J, Tiemeier, Henning, Relton, Caroline L, van IJzendoorn, Marinus H, Suderman, Matthew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8033147/
https://www.ncbi.nlm.nih.gov/pubmed/33450751
http://dx.doi.org/10.1093/hmg/ddaa280
_version_ 1783676351693193216
author Mulder, Rosa H
Neumann, Alexander
Cecil, Charlotte A M
Walton, Esther
Houtepen, Lotte C
Simpkin, Andrew J
Rijlaarsdam, Jolien
Heijmans, Bastiaan T
Gaunt, Tom R
Felix, Janine F
Jaddoe, Vincent W V
Bakermans-Kranenburg, Marian J
Tiemeier, Henning
Relton, Caroline L
van IJzendoorn, Marinus H
Suderman, Matthew
author_facet Mulder, Rosa H
Neumann, Alexander
Cecil, Charlotte A M
Walton, Esther
Houtepen, Lotte C
Simpkin, Andrew J
Rijlaarsdam, Jolien
Heijmans, Bastiaan T
Gaunt, Tom R
Felix, Janine F
Jaddoe, Vincent W V
Bakermans-Kranenburg, Marian J
Tiemeier, Henning
Relton, Caroline L
van IJzendoorn, Marinus H
Suderman, Matthew
author_sort Mulder, Rosa H
collection PubMed
description DNA methylation (DNAm) is known to play a pivotal role in childhood health and development, but a comprehensive characterization of genome-wide DNAm trajectories across this age period is currently lacking. We have therefore performed a series of epigenome-wide association studies in 5019 blood samples collected at multiple time-points from birth to late adolescence from 2348 participants of two large independent cohorts. DNAm profiles of autosomal CpG sites (CpGs) were generated using the Illumina Infinium HumanMethylation450 BeadChip. Change over time was widespread, observed at over one-half (53%) of CpGs. In most cases, DNAm was decreasing (36% of CpGs). Inter-individual variation in linear trajectories was similarly widespread (27% of CpGs). Evidence for non-linear change and inter-individual variation in non-linear trajectories was somewhat less common (11 and 8% of CpGs, respectively). Very little inter-individual variation in change was explained by sex differences (0.4% of CpGs) even though sex-specific DNAm was observed at 5% of CpGs. DNAm trajectories were distributed non-randomly across the genome. For example, CpGs with decreasing DNAm were enriched in gene bodies and enhancers and were annotated to genes enriched in immune-developmental functions. In contrast, CpGs with increasing DNAm were enriched in promoter regions and annotated to genes enriched in neurodevelopmental functions. These findings depict a methylome undergoing widespread and often non-linear change throughout childhood. They support a developmental role for DNA methylation that extends beyond birth into late adolescence and has implications for understanding life-long health and disease. DNAm trajectories can be visualized at http://epidelta.mrcieu.ac.uk.
format Online
Article
Text
id pubmed-8033147
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-80331472021-04-14 Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence Mulder, Rosa H Neumann, Alexander Cecil, Charlotte A M Walton, Esther Houtepen, Lotte C Simpkin, Andrew J Rijlaarsdam, Jolien Heijmans, Bastiaan T Gaunt, Tom R Felix, Janine F Jaddoe, Vincent W V Bakermans-Kranenburg, Marian J Tiemeier, Henning Relton, Caroline L van IJzendoorn, Marinus H Suderman, Matthew Hum Mol Genet Association Studies Article DNA methylation (DNAm) is known to play a pivotal role in childhood health and development, but a comprehensive characterization of genome-wide DNAm trajectories across this age period is currently lacking. We have therefore performed a series of epigenome-wide association studies in 5019 blood samples collected at multiple time-points from birth to late adolescence from 2348 participants of two large independent cohorts. DNAm profiles of autosomal CpG sites (CpGs) were generated using the Illumina Infinium HumanMethylation450 BeadChip. Change over time was widespread, observed at over one-half (53%) of CpGs. In most cases, DNAm was decreasing (36% of CpGs). Inter-individual variation in linear trajectories was similarly widespread (27% of CpGs). Evidence for non-linear change and inter-individual variation in non-linear trajectories was somewhat less common (11 and 8% of CpGs, respectively). Very little inter-individual variation in change was explained by sex differences (0.4% of CpGs) even though sex-specific DNAm was observed at 5% of CpGs. DNAm trajectories were distributed non-randomly across the genome. For example, CpGs with decreasing DNAm were enriched in gene bodies and enhancers and were annotated to genes enriched in immune-developmental functions. In contrast, CpGs with increasing DNAm were enriched in promoter regions and annotated to genes enriched in neurodevelopmental functions. These findings depict a methylome undergoing widespread and often non-linear change throughout childhood. They support a developmental role for DNA methylation that extends beyond birth into late adolescence and has implications for understanding life-long health and disease. DNAm trajectories can be visualized at http://epidelta.mrcieu.ac.uk. Oxford University Press 2021-01-15 /pmc/articles/PMC8033147/ /pubmed/33450751 http://dx.doi.org/10.1093/hmg/ddaa280 Text en © The Author(s) 2021. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Association Studies Article
Mulder, Rosa H
Neumann, Alexander
Cecil, Charlotte A M
Walton, Esther
Houtepen, Lotte C
Simpkin, Andrew J
Rijlaarsdam, Jolien
Heijmans, Bastiaan T
Gaunt, Tom R
Felix, Janine F
Jaddoe, Vincent W V
Bakermans-Kranenburg, Marian J
Tiemeier, Henning
Relton, Caroline L
van IJzendoorn, Marinus H
Suderman, Matthew
Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence
title Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence
title_full Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence
title_fullStr Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence
title_full_unstemmed Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence
title_short Epigenome-wide change and variation in DNA methylation in childhood: trajectories from birth to late adolescence
title_sort epigenome-wide change and variation in dna methylation in childhood: trajectories from birth to late adolescence
topic Association Studies Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8033147/
https://www.ncbi.nlm.nih.gov/pubmed/33450751
http://dx.doi.org/10.1093/hmg/ddaa280
work_keys_str_mv AT mulderrosah epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT neumannalexander epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT cecilcharlotteam epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT waltonesther epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT houtepenlottec epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT simpkinandrewj epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT rijlaarsdamjolien epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT heijmansbastiaant epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT gaunttomr epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT felixjaninef epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT jaddoevincentwv epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT bakermanskranenburgmarianj epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT tiemeierhenning epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT reltoncarolinel epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT vanijzendoornmarinush epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence
AT sudermanmatthew epigenomewidechangeandvariationindnamethylationinchildhoodtrajectoriesfrombirthtolateadolescence