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全基因组和表观基因组关联研究鉴定了韩国人群代谢综合征中 CpG 位点和区域的易感性。

Genome- and epigenome-wide association studies identify susceptibility of CpG sites and regions for metabolic syndrome in a Korean population.

机构信息

Forensic Toxicology Division, Daegu Institute, National Forensic Service, Chilgok-gun, 39872, Gyeongsangbuk-do, Korea.

Interdisciplinary Program in Bioinformatics, Seoul National University, Seoul, 08826, Korea.

出版信息

Clin Epigenetics. 2024 Apr 29;16(1):60. doi: 10.1186/s13148-024-01671-5.

Abstract

BACKGROUND

While multiple studies have investigated the relationship between metabolic syndrome (MetS) and its related traits (fasting glucose, triglyceride, HDL cholesterol, blood pressure, waist circumference) and DNA methylation, our understanding of the epigenetic mechanisms in MetS remains limited. Therefore, we performed an epigenome-wide meta-analysis of blood DNA methylation to identify differentially methylated probes (DMPs) and differentially methylated regions (DMRs) associated with MetS and its components using two independent cohorts comprising a total of 2,334 participants. We also investigated the specific genetic effects on DNA methylation, identified methylation quantitative trait loci (meQTLs) through genome-wide association studies and further utilized Mendelian randomization (MR) to assess how these meQTLs subsequently influence MetS status.

RESULTS

We identified 40 DMPs and 27 DMRs that are significantly associated with MetS. In addition, we identified many novel DMPs and DMRs underlying inflammatory and steroid hormonal processes. The most significant associations were observed in 3 DMPs (cg19693031, cg26974062, cg02988288) and a DMR (chr1:145440444-145441553) at the TXNIP, which are involved in lipid metabolism. These CpG sites were identified as coregulators of DNA methylation in MetS, TG and FAG levels. We identified a total of 144 cis-meQTLs, out of which only 13 were found to be associated with DMPs for MetS. Among these, we confirmed the identified causal mediators of genetic effects at CpG sites cg01881899 at ABCG1 and cg00021659 at the TANK genes for MetS.

CONCLUSIONS

This study observed whether specific CpGs and methylated regions act independently or are influenced by genetic effects for MetS and its components in the Korean population. These associations between the identified DNA methylation and MetS, along with its individual components, may serve as promising targets for the development of preventive interventions for MetS.

摘要

背景

虽然多项研究已经调查了代谢综合征 (MetS) 及其相关特征(空腹血糖、甘油三酯、高密度脂蛋白胆固醇、血压、腰围)与 DNA 甲基化之间的关系,但我们对 MetS 中的表观遗传机制的理解仍然有限。因此,我们对血液 DNA 甲基化进行了全基因组元分析,以使用包含总共 2334 名参与者的两个独立队列,鉴定与 MetS 及其成分相关的差异甲基化探针 (DMP) 和差异甲基化区域 (DMR)。我们还通过全基因组关联研究调查了特定基因对 DNA 甲基化的影响,确定了甲基化数量性状基因座 (meQTL),并进一步利用孟德尔随机化 (MR) 来评估这些 meQTL 如何随后影响 MetS 状态。

结果

我们鉴定了 40 个与 MetS 显著相关的 DMP 和 27 个 DMR。此外,我们还鉴定了许多与炎症和类固醇激素过程有关的新的 DMP 和 DMR。在 TXNIP 中,3 个 DMP (cg19693031、cg26974062、cg02988288) 和一个 DMR (chr1:145440444-145441553) 中观察到最显著的关联,这些 DMP 和 DMR 参与脂质代谢。这些 CpG 位点被鉴定为 MetS、TG 和 FAG 水平 DNA 甲基化的核心调节剂。我们总共鉴定了 144 个顺式-meQTL,其中只有 13 个与 MetS 的 DMP 相关。其中,我们证实了在 ABCG1 中的 CpG 位点 cg01881899 和 TANK 基因中的 cg00021659 上鉴定的遗传效应的因果介导物与 MetS 有关。

结论

本研究观察了在韩国人群中,特定的 CpG 位点和甲基化区域是否独立或受 MetS 及其成分的遗传效应影响。这些与鉴定的 DNA 甲基化与 MetS 及其各个成分之间的关联可能成为 MetS 预防干预措施发展的有前途的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b16/11059751/9cf5bf3aafa2/13148_2024_1671_Fig1_HTML.jpg

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