Genetic loci and metabolic states associated with murine epigenetic aging

Author:

Mozhui Khyobeni12ORCID,Lu Ake T3,Li Caesar Z3,Haghani Amin4ORCID,Sandoval-Sierra Jose Vladimir1ORCID,Wu Yibo56,Williams Robert W2,Horvath Steve34

Affiliation:

1. Department of Preventive Medicine, University of Tennessee Health Science Center, College of Medicine

2. Department of Genetics, Genomics and Informatics, University of Tennessee Health Science Center, College of Medicine

3. Department of Human Genetics, David Geffen School of Medicine, University of California Los Angeles

4. Department of Biostatistics, Fielding School of Public Health, University of California Los Angeles

5. YCI Laboratory for Next-Generation Proteomics, RIKEN Center for Integrative Medical Sciences

6. University of Geneva

Abstract

Changes in DNA methylation (DNAm) are linked to aging. Here, we profile highly conserved CpGs in 339 predominantly female mice belonging to the BXD family for which we have deep longevity and genomic data. We use a ‘pan-mammalian’ microarray that provides a common platform for assaying the methylome across mammalian clades. We computed epigenetic clocks and tested associations with DNAm entropy, diet, weight, metabolic traits, and genetic variation. We describe the multifactorial variance of methylation at these CpGs and show that high-fat diet augments the age-related changes. Entropy increases with age. The progression to disorder, particularly at CpGs that gain methylation over time, was predictive of genotype-dependent life expectancy. The longer-lived BXD strains had comparatively lower entropy at a given age. We identified two genetic loci that modulate epigenetic age acceleration (EAA): one on chromosome (Chr) 11 that encompasses the Erbb2/Her2 oncogenic region, and the other on Chr19 that contains a cytochrome P450 cluster. Both loci harbor genes associated with EAA in humans, including STXBP4, NKX2-3, and CUTC. Transcriptome and proteome analyses revealed correlations with oxidation-reduction, metabolic, and immune response pathways. Our results highlight concordant loci for EAA in humans and mice, and demonstrate a tight coupling between the metabolic state and epigenetic aging.

Funder

National Institute on Aging

Publisher

eLife Sciences Publications, Ltd

Subject

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

Reference100 articles.

1. A physical map and candidate genes in the BRCA1 region on chromosome 17q12-21;Albertsen;Nature Genetics,1994

2. A mammalian methylation array for profiling methylation levels at conserved sequences;Arneson;Nature Communications,2022

3. Born to Cry: A Genetic Dissection of Infant Vocalization;Ashbrook;Frontiers in Behavioral Neuroscience,2018

4. A platform for experimental precision medicine: The extended BXD mouse family;Ashbrook;Cell Systems,2021

5. lme4: Linear mixed-effects models using Eigen and S4;Bates,2021

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