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脂肪组织的表观基因组全基因组关联研究——METSIM 队列研究

Epigenome-wide association in adipose tissue from the METSIM cohort.

机构信息

Department of Molecular, Cell and Developmental Biology, University of California Los Angeles.

Departments of Human Genetics, Medicine, and Microbiology, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Hum Mol Genet. 2018 May 15;27(10):1830-1846. doi: 10.1093/hmg/ddy093.

Abstract

Most epigenome-wide association studies to date have been conducted in blood. However, metabolic syndrome is mediated by a dysregulation of adiposity and therefore it is critical to study adipose tissue in order to understand the effects of this syndrome on epigenomes. To determine if natural variation in DNA methylation was associated with metabolic syndrome traits, we profiled global methylation levels in subcutaneous abdominal adipose tissue. We measured association between 32 clinical traits related to diabetes and obesity in 201 people from the Metabolic Syndrome in Men cohort. We performed epigenome-wide association studies between DNA methylation levels and traits, and identified associations for 13 clinical traits in 21 loci. We prioritized candidate genes in these loci using expression quantitative trait loci, and identified 18 high confidence candidate genes, including known and novel genes associated with diabetes and obesity traits. Using methylation deconvolution, we examined which cell types may be mediating the associations, and concluded that most of the loci we identified were specific to adipocytes. We determined whether the abundance of cell types varies with metabolic traits, and found that macrophages increased in abundance with the severity of metabolic syndrome traits. Finally, we developed a DNA methylation-based biomarker to assess type 2 diabetes risk in adipose tissue. In conclusion, our results demonstrate that profiling DNA methylation in adipose tissue is a powerful tool for understanding the molecular effects of metabolic syndrome on adipose tissue, and can be used in conjunction with traditional genetic analyses to further characterize this disorder.

摘要

迄今为止,大多数全基因组表观遗传关联研究都是在血液中进行的。然而,代谢综合征是由脂肪组织失调介导的,因此研究脂肪组织对于了解该综合征对表观基因组的影响至关重要。为了确定 DNA 甲基化的自然变异是否与代谢综合征特征有关,我们对皮下腹部脂肪组织的全甲基化水平进行了分析。我们在来自男性代谢综合征队列的 201 人中测量了与糖尿病和肥胖相关的 32 个临床特征之间的关联。我们在这些特征之间进行了全基因组表观遗传关联研究,并在 21 个基因座中鉴定出了 13 个临床特征的关联。我们使用表达数量性状基因座对这些基因座中的候选基因进行了优先级排序,并确定了 18 个高可信度的候选基因,其中包括与糖尿病和肥胖特征相关的已知和新基因。通过甲基化去卷积,我们研究了哪些细胞类型可能介导这些关联,结果表明,我们鉴定的大多数基因座都特定于脂肪细胞。我们确定了细胞类型的丰度是否随代谢特征而变化,并发现随着代谢综合征特征的严重程度,巨噬细胞的丰度增加。最后,我们开发了一种基于 DNA 甲基化的生物标志物来评估脂肪组织中 2 型糖尿病的风险。总之,我们的研究结果表明,分析脂肪组织中的 DNA 甲基化是了解代谢综合征对脂肪组织的分子影响的有力工具,并且可以与传统的遗传分析结合使用,以进一步表征这种疾病。

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