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影响循环脂质水平和冠心病风险的遗传变异。

Genetic variants influencing circulating lipid levels and risk of coronary artery disease.

机构信息

Genetics Division, GlaxoSmithKline R&D, King of Prussia, PA, USA.

出版信息

Arterioscler Thromb Vasc Biol. 2010 Nov;30(11):2264-76. doi: 10.1161/ATVBAHA.109.201020. Epub 2010 Sep 23.

Abstract

OBJECTIVE

Genetic studies might provide new insights into the biological mechanisms underlying lipid metabolism and risk of CAD. We therefore conducted a genome-wide association study to identify novel genetic determinants of low-density lipoprotein cholesterol (LDL-C), high-density lipoprotein cholesterol (HDL-C), and triglycerides.

METHODS AND RESULTS

We combined genome-wide association data from 8 studies, comprising up to 17 723 participants with information on circulating lipid concentrations. We did independent replication studies in up to 37 774 participants from 8 populations and also in a population of Indian Asian descent. We also assessed the association between single-nucleotide polymorphisms (SNPs) at lipid loci and risk of CAD in up to 9 633 cases and 38 684 controls. We identified 4 novel genetic loci that showed reproducible associations with lipids (probability values, 1.6×10(-8) to 3.1×10(-10)). These include a potentially functional SNP in the SLC39A8 gene for HDL-C, an SNP near the MYLIP/GMPR and PPP1R3B genes for LDL-C, and at the AFF1 gene for triglycerides. SNPs showing strong statistical association with 1 or more lipid traits at the CELSR2, APOB, APOE-C1-C4-C2 cluster, LPL, ZNF259-APOA5-A4-C3-A1 cluster and TRIB1 loci were also associated with CAD risk (probability values, 1.1×10(-3) to 1.2×10(-9)).

CONCLUSIONS

We have identified 4 novel loci associated with circulating lipids. We also show that in addition to those that are largely associated with LDL-C, genetic loci mainly associated with circulating triglycerides and HDL-C are also associated with risk of CAD. These findings potentially provide new insights into the biological mechanisms underlying lipid metabolism and CAD risk.

摘要

目的

遗传研究可能为脂质代谢和 CAD 风险的生物学机制提供新的见解。因此,我们进行了全基因组关联研究,以确定 LDL-C、HDL-C 和甘油三酯的新遗传决定因素。

方法和结果

我们结合了 8 项研究的全基因组关联数据,这些研究共纳入了多达 17723 名有循环脂质浓度信息的参与者。我们在 8 个人群中最多 37774 名参与者中进行了独立的复制研究,也在一个印度亚洲血统的人群中进行了研究。我们还评估了脂质位点的单核苷酸多态性 (SNP) 与 CAD 风险之间的关联,这项研究共纳入了多达 9633 例病例和 38684 例对照。我们发现了 4 个与脂质具有可重复关联的新遗传位点(概率值为 1.6×10(-8) 至 3.1×10(-10))。这些包括 HDL-C 中 SLC39A8 基因的一个潜在功能 SNP、LDL-C 中 MYLIP/GMPR 和 PPP1R3B 基因附近的 SNP,以及甘油三酯中 AFF1 基因的 SNP。在 CELSR2、APOB、APOE-C1-C4-C2 簇、LPL、ZNF259-APOA5-A4-C3-A1 簇和 TRIB1 基因座中,与 1 种或多种脂质特征具有强统计学关联的 SNP 也与 CAD 风险相关(概率值为 1.1×10(-3) 至 1.2×10(-9))。

结论

我们已经确定了 4 个与循环脂质相关的新基因座。我们还表明,除了那些主要与 LDL-C 相关的基因座外,主要与循环甘油三酯和 HDL-C 相关的基因座也与 CAD 风险相关。这些发现可能为脂质代谢和 CAD 风险的生物学机制提供新的见解。

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1
Genetic variants influencing circulating lipid levels and risk of coronary artery disease.影响循环脂质水平和冠心病风险的遗传变异。
Arterioscler Thromb Vasc Biol. 2010 Nov;30(11):2264-76. doi: 10.1161/ATVBAHA.109.201020. Epub 2010 Sep 23.

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