Five years of change in adult twins: longitudinal changes of genetic and environmental influence on epigenetic clocks

医学 表观遗传学 双胞胎研究 纵向研究 遗传学 生理学 遗传力 基因 病理 生物
作者
Ke Miao,Shunkai Liu,Weihua Cao,Jun Lv,Canqing Yu,Tao Huang,Dianjianyi Sun,Chunxiao Liao,Yuanjie Pang,Runhua Hu,Zengchang Pang,Min Yu,Hua Wang,Xianping Wu,Yu Liu,Wenjing Gao,Liming Li
出处
期刊:BMC Medicine [BioMed Central]
卷期号:22 (1): 289-289 被引量:7
标识
DOI:10.1186/s12916-024-03511-y
摘要

Abstract Background Epigenetic clocks were known as promising biomarkers of aging, including original clocks trained by individual CpG sites and principal component (PC) clocks trained by PCs of CpG sites. The effects of genetic and environmental factors on epigenetic clocks are still unclear, especially for PC clocks. Methods We constructed univariate twin models in 477 same-sex twin pairs from the Chinese National Twin Registry (CNTR) to estimate the heritability of five epigenetic clocks (GrimAge, PhenoAge, DunedinPACE, PCGrimAge, and PCPhenoAge). Besides, we investigated the longitudinal changes of genetic and environmental influences on epigenetic clocks across 5 years in 134 same-sex twin pairs. Results Heritability of epigenetic clocks ranged from 0.45 to 0.70, and those for PC clocks were higher than those for original clocks. For five epigenetic clocks, the longitudinal stability was moderate to high and was largely due to genetic effects. The genetic correlations between baseline and follow-up epigenetic clocks were moderate to high. Special unique environmental factors emerged both at baseline and at follow-up. PC clocks showed higher longitudinal stability and unique environmental correlations than original clocks. Conclusions For five epigenetic clocks, they have the potential to identify aging interventions. High longitudinal stability is mainly due to genetic factors, and changes of epigenetic clocks over time are primarily due to changes in unique environmental factors. Given the disparities in genetic and environmental factors as well as longitudinal stability between PC and original clocks, the results of studies with original clocks need to be further verified with PC clocks.
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