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多个影响脂蛋白(a)胆固醇水平的独立基因变异的证据。

Evidence for several independent genetic variants affecting lipoprotein (a) cholesterol levels.

作者信息

Lu Wensheng, Cheng Yu-Ching, Chen Keping, Wang Hong, Gerhard Glenn S, Still Christopher D, Chu Xin, Yang Rongze, Parihar Ankita, O'Connell Jeffrey R, Pollin Toni I, Angles-Cano Eduardo, Quon Michael J, Mitchell Braxton D, Shuldiner Alan R, Fu Mao

机构信息

Division of Endocrinology, Diabetes and Nutrition, University of Maryland School of Medicine, Baltimore, MD 21201, USA, Department of Endocrinology, People's Hospital of Guangxi Zhuang Autonomous Region, Nanning, Guangxi 530021, China.

Division of Endocrinology, Diabetes and Nutrition, University of Maryland School of Medicine, Baltimore, MD 21201, USA, Veterans Affairs Maryland Health Care System, Baltimore, MD 21201, USA.

出版信息

Hum Mol Genet. 2015 Apr 15;24(8):2390-400. doi: 10.1093/hmg/ddu731. Epub 2015 Jan 9.

Abstract

Lipoprotein (a) [Lp(a)] is an independent risk factor for atherosclerosis-related events that is under strong genetic control (heritability = 0.68-0.98). However, causal mutations and functional validation of biological pathways modulating Lp(a) metabolism are lacking. We performed a genome-wide association scan to identify genetic variants associated with Lp(a)-cholesterol levels in the Old Order Amish. We confirmed a previously known locus on chromosome 6q25-26 and found Lp(a) levels also to be significantly associated with a SNP near the APOA5-APOA4-APOC3-APOA1 gene cluster on chromosome 11q23 linked in the Amish to the APOC3 R19X null mutation. On 6q locus, we detected associations of Lp(a)-cholesterol with 118 common variants (P = 5 × 10(-8) to 3.91 × 10(-19)) spanning a ∼5.3 Mb region that included the LPA gene. To further elucidate variation within LPA, we sequenced LPA and identified two variants most strongly associated with Lp(a)-cholesterol, rs3798220 (P = 1.07 × 10(-14)) and rs10455872 (P = 1.85 × 10(-12)). We also measured copy numbers of kringle IV-2 (KIV-2) in LPA using qPCR. KIV-2 numbers were significantly associated with Lp(a)-cholesterol (P = 2.28 × 10(-9)). Conditional analyses revealed that rs3798220 and rs10455872 were associated with Lp(a)-cholesterol levels independent of each other and KIV-2 copy number. Furthermore, we determined for the first time that levels of LPA mRNA were higher in the carriers than non-carriers of rs10455872 (P = 0.0001) and were not different between carriers and non-carriers of rs3798220. Protein levels of apo(a) were higher in the carriers than non-carriers of both rs10455872 and rs3798220. In summary, we identified multiple independent genetic determinants for Lp(a)-cholesterol. These findings provide new insights into Lp(a) regulation.

摘要

脂蛋白(a)[Lp(a)]是动脉粥样硬化相关事件的独立危险因素,受强大的基因控制(遗传度=0.68 - 0.98)。然而,缺乏调节Lp(a)代谢的因果突变和生物学途径的功能验证。我们进行了全基因组关联扫描,以确定与老派阿米什人中Lp(a)胆固醇水平相关的基因变异。我们证实了6号染色体q25 - 26上一个先前已知的基因座,并发现Lp(a)水平也与11号染色体q23上APOA5 - APOA4 - APOC3 - APOA1基因簇附近的一个单核苷酸多态性显著相关,在阿米什人中该基因簇与APOC3 R19X无效突变相关。在6号染色体基因座上,我们检测到Lp(a)胆固醇与118个常见变异(P = 5×10(-8)至3.91×10(-19))的关联,这些变异跨越了一个约5.3 Mb的区域,其中包括LPA基因。为了进一步阐明LPA内的变异,我们对LPA进行了测序,并鉴定出与Lp(a)胆固醇最强烈相关的两个变异rs379 (P = 1.07×10(-14))和rs10455872 (P = 1.85×10(-12))。我们还使用定量聚合酶链反应测量了LPA中kringle IV - 2(KIV - 2)的拷贝数。KIV - 2数量与Lp(a)胆固醇显著相关(P = 2.28×10(-9))。条件分析显示,rs3798220和rs10455872彼此独立且与KIV - 2拷贝数无关地与Lp(a)胆固醇水平相关。此外,我们首次确定,rs10455872的携带者中LPA mRNA水平高于非携带者(P = 0.0001),而rs3798220的携带者和非携带者之间无差异。rs10455872和rs3798220的携带者中载脂蛋白(a)的蛋白质水平均高于非携带者。总之,我们确定了Lp(a)胆固醇的多个独立遗传决定因素。这些发现为Lp(a)调节提供了新的见解。

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