Open access · CC-BY
via OpenAlex
Functional genomics analysis identifies T and NK cell activation as a driver of epigenetic clock progression
Thomas H. Jonkman, Koen F. Dekkers, Roderick C. Slieker, Crystal D. Grant, M. Arfan Ikram, Marleen M. J. van Greevenbroek, Lude Franke, Jan H. Veldink, Dorret I. Boomsma, P. Eline Slagboom, Bastiaan T. Heijmans
Genome biology · 2022 · ▲ 79 citations
Abstract
BACKGROUND: Epigenetic clocks use DNA methylation (DNAm) levels of specific sets of CpG dinucleotides to accurately predict individual chronological age. A popular application of these clocks is to explore whether the deviation of predicted age from chronological age is associated with disease phenotypes, where this deviation is interpreted as a potential biomarker of biological age. This wide application, however, contrasts with the limited insight in the processes that may drive the running of epigenetic clocks. RESULTS: We perform a functional genomics analysis on four epigenetic clocks, including Hannum's blood predictor and Horvath's multi-tissue predictor, using blood DNA methylome and transcriptome data from 3132 individuals. The four clocks result in similar predictions of individual chronological age, and their constituting CpGs are correlated in DNAm level and are enriched for similar histone modifications and chromatin states. Interestingly, DNAm levels of CpGs from the clocks are commonly associated with gene expression in trans. The gene sets involved are highly overlapping and enriched for T cell processes. Further analysis of the transcriptome and methylome of sorted blood cell types identifies differences in DNAm between naive and activated T and NK cells as a probable contributor to the clocks. Indeed, within the same donor, the four epigenetic clocks predict naive cells to be up to 40 years younger than activated cells. CONCLUSIONS: The ability of epigenetic clocks to predict chronological age involves their ability to detect changes in proportions of naive and activated immune blood cells, an established feature of immuno-senescence(definition). This finding may contribute to the interpretation of associations between clock-derived measures and age-related health outcomes.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1186/s13059-021-02585-8
- Canonical
- link ↗
- Fetched
- 2026-07-28 MST
Cite this
APA
Jonkman, T.H., Dekkers, K.F., Slieker, R.C., Grant, C.D., Ikram, M.A., Greevenbroek, M.M.J.V., Franke, L., Veldink, J.H., Boomsma, D.I., Slagboom, P.E., & Heijmans, B.T. (2022). Functional genomics analysis identifies T and NK cell activation as a driver of epigenetic clock progression. <em>Genome biology</em>. https://doi.org/10.1186/s13059-021-02585-8
Vancouver
Jonkman TH, Dekkers KF, Slieker RC, Grant CD, Ikram MA, Greevenbroek MMJV, et al. Functional genomics analysis identifies T and NK cell activation as a driver of epigenetic clock progression. Genome biology. 2022. doi:10.1186/s13059-021-02585-8.
BibTeX
@article{thomas2022Functi,
title = {Functional genomics analysis identifies T and NK cell activation as a driver of epigenetic clock progression},
author = {Thomas H. Jonkman and Koen F. Dekkers and Roderick C. Slieker and Crystal D. Grant and M. Arfan Ikram and Marleen M. J. van Greevenbroek and Lude Franke and Jan H. Veldink and Dorret I. Boomsma and P. Eline Slagboom and Bastiaan T. Heijmans},
journal = {Genome biology},
year = {2022},
doi = {10.1186/s13059-021-02585-8},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Molecular Ecology Resources 2021
Open access · CC-BY
DNA methylation as a tool to explore ageing in wild roe deer populations
Communications Biology 2024
Open access · CC-BY
Development of an epigenetic clock resistant to changes in immune cell composition
American Journal of Human Biology 2020
Citation only
“Epigenetic clocks”: Theory and applications in human biology
2026
Preprint
A Generalised Epigenetic Clock Reveals Therapeutic Vulnerabilities Linked to Ageing in Cancer Cells
Genome biology 2014
Open access · CC-BY
Aging of blood can be tracked by DNA methylation changes at just three CpG sites
PLoS Genetics 2011
Open access · CC-BY