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Genome-wide DNA promoter methylation and transcriptome analysis in human adipose tissue unravels novel candidate genes for obesity

机译:人类脂肪组织中的全基因组DNA启动子甲基化和转录组分析揭示了肥胖的新候选基因

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Objective/methods: DNA methylation plays an important role in obesity and related metabolic complications. We examined genome-wide DNA promoter methylation along with mRNA profiles in paired samples of human subcutaneous adipose tissue (SAT) and omental visceral adipose tissue (OVAT) from non-obese vs. obese individuals. Results: We identified negatively correlated methylation and expression of several obesity-associated genes in our discovery dataset and in silico replicated ETV6 in two independent cohorts. Further, we identified six adipose tissue depot-specific genes (HAND2, HOXC6, PPARG, SORBS2, CD36, and CLDN1). The effects were further supported in additional independent cohorts. Our top hits might play a role in adipogenesis and differentiation, obesity, lipid metabolism, and adipose tissue expandability. Finally, we show that in vitro methylation of SORBS2 directly represses gene expression. Conclusions: Taken together, our data show distinct tissue specific epigenetic alterations which associate with obesity.
机译:目的/方法:DNA甲基化在肥胖症和相关的代谢并发症中起重要作用。我们在非肥胖对肥胖个体的人皮下脂肪组织(SAT)和网膜内脏脂肪组织(OVAT)的配对样本中检查了全基因组DNA启动子甲基化以及mRNA谱。结果:我们在两个独立的队列中,在我们的发现数据集和计算机复制的ETV6中鉴定了与肥胖相关的几个基因的甲基化和负相关表达。此外,我们鉴定了六个脂肪组织贮库特异性基因(HAND2,HOXC6,PPARG,SORBS2,CD36和CLDN1)。其他独立队列进一步支持了这种效应。我们的热门歌曲可能在脂肪生成和分化,肥胖,脂质代谢和脂肪组织可扩展性中起作用。最后,我们显示SORBS2的体外甲基化直接抑制基因表达。结论:综上所述,我们的数据显示与肥胖相关的明显的组织特异性表观遗传学改变。

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