Epigenetic signature of human immune aging in the GESTALT study

Author:

Roy Roshni1,Kuo Pei-Lun2,Candia Julián2ORCID,Sarantopoulou Dimitra1,Ubaida-Mohien Ceereena2ORCID,Hernandez Dena3,Kaileh Mary1ORCID,Arepalli Sampath3,Singh Amit1,Bektas Arsun2,Kim Jaekwan1,Moore Ann Z2,Tanaka Toshiko2ORCID,McKelvey Julia4,Zukley Linda4,Nguyen Cuong5,Wallace Tonya5,Dunn Christopher5ORCID,Wood William6,Piao Yulan6,Coletta Christopher6,De Supriyo6,Sen Jyoti7,Weng Nan-ping1,Sen Ranjan1,Ferrucci Luigi2ORCID

Affiliation:

1. Laboratory of Molecular Biology and Immunology, National Institute on Aging

2. Translational Gerontology Branch, National Institute on Aging

3. Laboratory of Neurogenetics, National Institute on Aging

4. Clinical Research Core, National Institute on Aging

5. Flow Cytometry Unit, National Institute on Aging

6. Laboratory of Genetics and Genomics, National Institute on Aging

7. Laboratory of Clinical Investigation, National Institute on Aging

Abstract

Age-associated DNA methylation in blood cells convey information on health status. However, the mechanisms that drive these changes in circulating cells and their relationships to gene regulation are unknown. We identified age-associated DNA methylation sites in six purified blood-borne immune cell types (naive B, naive CD4+ and CD8+ T cells, granulocytes, monocytes, and NK cells) collected from healthy individuals interspersed over a wide age range. Of the thousands of age-associated sites, only 350 sites were differentially methylated in the same direction in all cell types and validated in an independent longitudinal cohort. Genes close to age-associated hypomethylated sites were enriched for collagen biosynthesis and complement cascade pathways, while genes close to hypermethylated sites mapped to neuronal pathways. In silico analyses showed that in most cell types, the age-associated hypo- and hypermethylated sites were enriched for ARNT (HIF1β) and REST transcription factor (TF) motifs, respectively, which are both master regulators of hypoxia response. To conclude, despite spatial heterogeneity, there is a commonality in the putative regulatory role with respect to TF motifs and histone modifications at and around these sites. These features suggest that DNA methylation changes in healthy aging may be adaptive responses to fluctuations of oxygen availability.

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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