Takenaka Yoichi, Watanabe Mikio
Faculty of Informatics, Kansai University, Osaka 569-1052, Japan.
Center for Twin Research, Graduate School of Medicine, The University of Osaka, Osaka 565-0871, Japan.
Epigenomes. 2024 Nov 21;8(4):44. doi: 10.3390/epigenomes8040044.
BACKGROUND/OBJECTIVES: The dynamic interaction between genomic DNA, epigenetic modifications, and phenotypic traits was examined in identical twins. Environmental perturbations can induce epigenetic changes in DNA methylation, influencing gene expression and phenotypes. Although DNA methylation mediates gene-environment correlations, the quantitative effects of external factors on DNA methylation remain underexplored. This study aimed to quantify these effects using a novel approach.
A cohort study was conducted on healthy monozygotic twins to evaluate the influence of environmental stimuli on DNA methylation. We developed the Environmental Factor Index (EFI) to identify methylation sites showing statistically significant changes in response to environmental stimuli. We analyzed the identified sites for associations with disorders, DNA methylation markers, and CpG islands.
The EFI identified methylation sites that exhibited significant associations with genes linked to various disorders, particularly cancer. These sites were overrepresented on CpG islands compared to other genomic features, highlighting their regulatory importance.
The EFI is a valuable tool for understanding the molecular mechanisms underlying disease pathogenesis. It provides insights into the development of preventive and therapeutic strategies and offers a new perspective on the role of environmental factors in epigenetic regulation.
背景/目的:在同卵双胞胎中研究了基因组DNA、表观遗传修饰和表型特征之间的动态相互作用。环境扰动可诱导DNA甲基化的表观遗传变化,影响基因表达和表型。虽然DNA甲基化介导基因与环境的相关性,但外部因素对DNA甲基化的定量影响仍未得到充分研究。本研究旨在使用一种新方法量化这些影响。
对健康的同卵双胞胎进行队列研究,以评估环境刺激对DNA甲基化的影响。我们开发了环境因子指数(EFI),以识别对环境刺激有统计学显著变化的甲基化位点。我们分析了所识别的位点与疾病、DNA甲基化标记和CpG岛的关联。
EFI识别出与各种疾病(尤其是癌症)相关基因有显著关联的甲基化位点。与其他基因组特征相比,这些位点在CpG岛上的比例过高,突出了它们的调控重要性。
EFI是理解疾病发病机制分子机制的宝贵工具。它为预防和治疗策略的制定提供了见解,并为环境因素在表观遗传调控中的作用提供了新视角。