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Higher chylomicron remnants and LDL particle numbers associate with CD36 SNPs and DNA methylation sites that reduce CD36

机译:更高的乳糜微粒残留物和LDL颗粒数量与CD36 SNP和降低CD36的DNA甲基化位点有关

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摘要

Cluster of differentiation 36 (CD36) variants influence fasting lipids and risk of metabolic syndrome, but their impact on postprandial lipids, an independent risk factor for cardiovascular disease, is unclear. We determined the effects of SNPs within a ~410 kb region encompassing CD36 and its proximal and distal promoters on chylomicron (CM) remnants and LDL particles at fasting and at 3.5 and 6 h following a high-fat meal (Genetics of Lipid Lowering Drugs and Diet Network study, n = 1,117). Five promoter variants associated with CMs, four with delayed TG clearance and five with LDL particle number. To assess mechanisms underlying the associations, we queried expression quantitative trait loci, DNA methylation, and ChIP-seq datasets for adipose and heart tissues that function in postprandial lipid clearance. Several SNPs that associated with higher serum lipids correlated with lower adipose and heart CD36 mRNA and aligned to active motifs for PPARγ, a major CD36 regulator. The SNPs also associated with DNA methylation sites that related to reduced CD36 mRNA and higher serum lipids, but mixed-model analyses indicated that the SNPs and methylation independently influence CD36 mRNA. The findings support contributions of CD36 SNPs that reduce adipose and heart CD36 RNA expression to inter-individual variability of postprandial lipid metabolism and document changes in CD36 DNA methylation that influence both CD36 expression and lipids.
机译:分化群36(CD36)变异体影响空腹血脂和代谢综合征的风险,但尚不清楚它们对餐后血脂(心血管疾病的独立危险因素)的影响。我们确定了禁食后以及高脂餐后3.5和6 h时,在大约CD410及其周围的近端启动子和CD36及其近端和远端启动子的约410 kb区域中,SNP对乳糜微粒(CM)残留物和LDL颗粒的影响(降脂药物的遗传学和Diet Network研究,n = 1,117)。五个与CM相关的启动子变体,四个具有延迟的TG清除,五个与LDL颗粒数。为了评估关联的机制,我们查询了在餐后脂质清除中起作用的脂肪和心脏组织的表达定量性状基因座,DNA甲基化和ChIP-seq数据集。与较高的血脂相关的几种SNP与较低的脂肪和心脏CD36 mRNA相关,并与主要的CD36调节剂PPARγ的活性基序对齐。 SNP也与DNA甲基化位点相关,这些DNA甲基化位点与减少的CD36 mRNA和更高的血脂有关,但是混合模型分析表明SNP和甲基化独立地影响CD36 mRNA。这些发现支持降低脂肪和心脏CD36 RNA表达的CD36 SNP对餐后脂质代谢的个体间差异的贡献,并记录了影响CD36表达和脂质的CD36 DNA甲基化变化。

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