Exploring the Functional Basis of Epigenetic Aging in Relation to Body Fat Phenotypes in the Norfolk Island Cohort

, , , , , & (2023) Exploring the Functional Basis of Epigenetic Aging in Relation to Body Fat Phenotypes in the Norfolk Island Cohort. Current Issues in Molecular Biology, 45(10), pp. 7862-7877.

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Description

DNA methylation is an epigenetic factor that is modifiable and can change over a lifespan. While many studies have identified methylation sites (CpGs) related to aging, the relationship of these to gene function and age-related disease phenotypes remains unclear. This research explores this question by testing for the conjoint association of age-related CpGs with gene expression and the relation of these to body fat phenotypes. The study included blood-based gene transcripts and intragenic CpG methylation data from Illumina 450 K arrays in 74 healthy adults from the Norfolk Island population. First, a series of regression analyses were performed to detect associations between gene transcript level and intragenic CpGs and their conjoint relationship with age. Second, we explored how these age-related expression CpGs (eCpGs) correlated with obesity-related phenotypes, including body fat percentage, body mass index, and waist-to-hip ratio. We identified 35 age-related eCpGs associated with age. Of these, ten eCpGs were associated with at least one body fat phenotype. Collagen Type XI Alpha 2 Chain (COL11A2), Complement C1s (C1s), and four and a half LIM domains 2 (FHL2) genes were among the most significant genes with multiple eCpGs associated with both age and multiple body fat phenotypes. The COL11A2 gene contributes to the correct assembly of the extracellular matrix in maintaining the healthy structural arrangement of various components, with the C1s gene part of complement systems functioning in inflammation. Moreover, FHL2 expression was upregulated under hypermethylation in both blood and adipose tissue with aging. These results suggest new targets for future studies and require further validation to confirm the specific function of these genes on body fat regulation.

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ID Code: 245786
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Cao, Thao Vanorcid.org/0000-0002-7639-6879
Sutherland, Heidi G.orcid.org/0000-0002-8512-1498
Benton, Miles C.orcid.org/0000-0003-3442-965X
Haupt, Larisa M.orcid.org/0000-0002-7735-8110
Griffiths, Lyn R.orcid.org/0000-0002-6774-5475
Additional Information: Funding Information: The National Health and Medical Research Council of Australia, NHMRC, funded this research with project grant APP1058806. The Australia Government Research Training Program Scholarship provided funding for this work as a scholarship to T.V.C.
Measurements or Duration: 16 pages
Keywords: aging, DNA methylation, epigenetics, gene expression, Norfolk Island, obesity
DOI: 10.3390/cimb45100497
ISSN: 1467-3037
Pure ID: 155815257
Divisions: Current > Research Centres > Centre for Genomics and Personalised Health
Current > QUT Faculties and Divisions > Academic Division
Current > QUT Faculties and Divisions > Faculty of Health
Current > Schools > School of Biomedical Sciences
Funding Information: The National Health and Medical Research Council of Australia, NHMRC, funded this research with project grant APP1058806. The Australia Government Research Training Program Scholarship provided funding for this work as a scholarship to T.V.C.
Funding:
Copyright Owner: 2023 The Authors
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Deposited On: 23 Jan 2024 05:42
Last Modified: 29 Feb 2024 14:12