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在一项肥胖症的全表观基因组关联研究中,细胞因子信号转导抑制因子3(SOCS3)的甲基化与代谢综合征呈负相关。

Methylation of SOCS3 is inversely associated with metabolic syndrome in an epigenome-wide association study of obesity.

作者信息

Ali Omar, Cerjak Diana, Kent Jack W, James Roland, Blangero John, Carless Melanie A, Zhang Yi

机构信息

a Department of Pediatrics , Medical College of Wisconsin , Milwaukee , WI , USA.

b TOPS Obesity and Metabolic Research Center, Department of Medicine, Medical College of Wisconsin , Milwaukee , WI , USA.

出版信息

Epigenetics. 2016 Sep;11(9):699-707. doi: 10.1080/15592294.2016.1216284. Epub 2016 Aug 26.

Abstract

Epigenetic mechanisms, including DNA methylation, mediate the interaction between gene and environment and may play an important role in the obesity epidemic. We assessed the relationship between DNA methylation and obesity in peripheral blood mononuclear cells (PBMCs) at 485,000 CpG sites across the genome in family members (8-90 y of age) using a discovery cohort (192 individuals) and a validation cohort (1,052 individuals) of Northern European ancestry. After Bonferroni-correction (P = 1.31 × 10) for genome-wide significance, we identified 3 loci, cg18181703 (SOCS3), cg04502490 (ZNF771), and cg02988947 (LIMD2), where methylation status was associated with body mass index percentile (BMI%), a clinical index for obesity in children, adolescents, and adults. These sites were also associated with multiple metabolic syndrome (MetS) traits, including central obesity, fat depots, insulin responsiveness, and plasma lipids. The SOCS3 methylation locus was also associated with the clinical definition of MetS. In the validation cohort, SOCS3 methylation status was found to be inversely associated with BMI% (P = 1.75 × 10), waist to height ratio (P = 4.18 × 10), triglycerides (P = 4.01 × 10), and MetS (P = 4.01 × 10), and positively correlated with HDL-c (P = 4.57 × 10). Functional analysis in a sub cohort (333 individuals) demonstrated SOCS3 methylation and gene expression in PBMCs were inversely correlated (P = 2.93 × 10) and expression of SOCS3 was positively correlated with status of MetS (P = 0.012). We conclude that epigenetic modulation of SOCS3, a gene involved in leptin and insulin signaling, may play an important role in obesity and MetS.

摘要

表观遗传机制,包括DNA甲基化,介导基因与环境之间的相互作用,可能在肥胖流行中发挥重要作用。我们使用一个发现队列(192名个体)和一个北欧血统的验证队列(1052名个体),在全基因组485,000个CpG位点评估了家庭成员(8至90岁)外周血单核细胞(PBMC)中DNA甲基化与肥胖之间的关系。经过Bonferroni校正(P = 1.31×10)以达到全基因组显著性后,我们确定了3个位点,即cg18181703(SOCS3)、cg04502490(ZNF771)和cg02988947(LIMD2),其甲基化状态与体重指数百分位数(BMI%)相关,BMI%是儿童、青少年和成人肥胖的临床指标。这些位点还与多种代谢综合征(MetS)特征相关,包括中心性肥胖、脂肪储存、胰岛素反应性和血脂。SOCS3甲基化位点也与MetS的临床定义相关。在验证队列中,发现SOCS3甲基化状态与BMI%(P = 1.75×10)、腰高比(P = 4.18×10)、甘油三酯(P = 4.01×10)和MetS(P = 4.01×10)呈负相关,与高密度脂蛋白胆固醇(HDL-c)呈正相关(P = 4.57×10)。在一个亚队列(333名个体)中的功能分析表明,PBMC中SOCS3甲基化与基因表达呈负相关(P = 2.93×10),且SOCS3表达与MetS状态呈正相关(P = 0.012)。我们得出结论,参与瘦素和胰岛素信号传导的基因SOCS3的表观遗传调控可能在肥胖和MetS中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2572/5048720/48cd74bcfcea/kepi-11-09-1216284-g001.jpg

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