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对长寿家族的遗传分析揭示了影响高密度脂蛋白胆固醇的新变体。

Genetic analysis of long-lived families reveals novel variants influencing high density-lipoprotein cholesterol.

机构信息

Division of Statistical Genomics, Department of Genetics, Washington University School of Medicine St. Louis, MO, USA.

Department of Experimental and Clinical Pharmacology, College of Pharmacy, University of Minnesota Minneapolis, MN, USA.

出版信息

Front Genet. 2014 Jun 3;5:159. doi: 10.3389/fgene.2014.00159. eCollection 2014.

Abstract

The plasma levels of high-density lipoprotein cholesterol (HDL) have an inverse relationship to the risks of atherosclerosis and cardiovascular disease (CVD), and have also been associated with longevity. We sought to identify novel loci for HDL that could potentially provide new insights into biological regulation of HDL metabolism in healthy-longevous subjects. We performed a genome-wide association (GWA) scan on HDL using a mixed model approach to account for family structure using kinship coefficients. A total of 4114 subjects of European descent (480 families) were genotyped at ~2.3 million SNPs and ~38 million SNPs were imputed using the 1000 Genome Cosmopolitan reference panel in MACH. We identified novel variants near-NLRP1 (17p13) associated with an increase of HDL levels at genome-wide significant level (p < 5.0E-08). Additionally, several CETP (16q21) and ZNF259-APOA5-A4-C3-A1 (11q23.3) variants associated with HDL were found, replicating those previously reported in the literature. A possible regulatory variant upstream of NLRP1 that is associated with HDL in these elderly Long Life Family Study (LLFS) subjects may also contribute to their longevity and health. Our NLRP1 intergenic SNPs show a potential regulatory function in Encyclopedia of DNA Elements (ENCODE); however, it is not clear whether they regulate NLRP1 or other more remote gene. NLRP1 plays an important role in the induction of apoptosis, and its inflammasome is critical for mediating innate immune responses. Nlrp1a (a mouse ortholog of human NLRP1) interacts with SREBP-1a (17p11) which has a fundamental role in lipid concentration and composition, and is involved in innate immune response in macrophages. The NLRP1 region is conserved in mammals, but also has evolved adaptively showing signals of positive selection in European populations that might confer an advantage. NLRP1 intergenic SNPs have also been associated with immunity/inflammasome disorders which highlights the biological importance of this chromosomal region.

摘要

高密度脂蛋白胆固醇(HDL)的血浆水平与动脉粥样硬化和心血管疾病(CVD)的风险呈负相关,也与长寿有关。我们试图确定新的 HDL 基因座,这些基因座可能为健康长寿个体中 HDL 代谢的生物学调节提供新的见解。我们使用混合模型方法对 HDL 进行了全基因组关联(GWA)扫描,以亲缘系数来解释家族结构。总共对 4114 名欧洲血统的个体(480 个家族)进行了约 230 万个单核苷酸多态性(SNP)的基因分型,并使用 1000 基因组泛基因组参考面板在 MACH 中进行了约 3800 万个 SNP 的推断。我们在全基因组显著水平(p < 5.0E-08)下鉴定了与 HDL 水平升高相关的 NLRP1(17p13)附近的新型变体。此外,还发现了几个与 HDL 相关的 CETP(16q21)和 ZNF259-APOA5-A4-C3-A1(11q23.3)变体,这些变体与文献中先前报道的结果一致。在这些老年长寿家族研究(LLFS)受试者中,与 NLRP1 相关的 NLRP1 上游的一个可能的调节变体可能也与其长寿和健康有关。我们的 NLRP1 基因间 SNP 在 DNA 元素百科全书(ENCODE)中显示出潜在的调节功能;然而,目前尚不清楚它们是否调节 NLRP1 或其他更远的基因。NLRP1 在细胞凋亡的诱导中发挥重要作用,其炎症小体对于介导固有免疫反应至关重要。Nlrp1a(人类 NLRP1 的小鼠同源物)与 SREBP-1a(17p11)相互作用,后者在脂质浓度和组成中起基础性作用,并参与巨噬细胞中的固有免疫反应。NLRP1 区域在哺乳动物中是保守的,但也经历了适应性进化,在欧洲人群中显示出正选择的信号,这可能赋予了优势。NLRP1 基因间 SNP 也与免疫/炎症小体疾病相关,这突出了该染色体区域的生物学重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c54/4042684/b0e32cc037d0/fgene-05-00159-g0001.jpg

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