Lee Jenny C, Weissglas-Volkov Daphna, Kyttälä Mira, Dastani Zari, Cantor Rita M, Sobel Eric M, Plaisier Christopher L, Engert James C, van Greevenbroek Marleen M J, Kane John P, Malloy Mary J, Pullinger Clive R, Huertas-Vazquez Adriana, Aguilar-Salinas Carlos A, Tusie-Luna Teresa, de Bruin Tjerk W A, Aouizerat Bradley E, van der Kallen Carla C J, Croce Carlo M, Aqeilan Rami I, Marcil Michel, Viikari Jorma S A, Lehtimäki Terho, Raitakari Olli T, Kuusisto Johanna, Laakso Markku, Taskinen Marja-Riitta, Genest Jacques, Pajukanta Päivi
Department of Human Genetics, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA 90095, USA.
Am J Hum Genet. 2008 Aug;83(2):180-92. doi: 10.1016/j.ajhg.2008.07.002.
Low serum HDL-cholesterol (HDL-C) is a major risk factor for coronary artery disease. We performed targeted genotyping of a 12.4 Mb linked region on 16q to test for association with low HDL-C by using a regional-tag SNP strategy. We identified one SNP, rs2548861, in the WW-domain-containing oxidoreductase (WWOX) gene with region-wide significance for low HDL-C in dyslipidemic families of Mexican and European descent and in low-HDL-C cases and controls of European descent (p = 6.9 x 10(-7)). We extended our investigation to the population level by using two independent unascertained population-based Finnish cohorts, the cross-sectional METSIM cohort of 4,463 males and the prospective Young Finns cohort of 2,265 subjects. The combined analysis provided p = 4 x 10(-4) to 2 x 10(-5). Importantly, in the prospective cohort, we observed a significant longitudinal association of rs2548861 with HDL-C levels obtained at four different time points over 21 years (p = 0.003), and the T risk allele explained 1.5% of the variance in HDL-C levels. The rs2548861 resides in a highly conserved region in intron 8 of WWOX. Results from our in vitro reporter assay and electrophoretic mobility-shift assay demonstrate that this region functions as a cis-regulatory element whose associated rs2548861 SNP has a specific allelic effect and that the region forms an allele-specific DNA-nuclear-factor complex. In conclusion, analyses of 9,798 subjects show significant association between HDL-C and a WWOX variant with an allele-specific cis-regulatory function.
血清高密度脂蛋白胆固醇(HDL-C)水平低是冠状动脉疾病的主要危险因素。我们采用区域标签单核苷酸多态性(SNP)策略,对16号染色体上一个12.4 Mb的连锁区域进行靶向基因分型,以检测其与低HDL-C的关联性。我们在含WW结构域的氧化还原酶(WWOX)基因中鉴定出一个SNP,即rs2548861,该SNP在墨西哥和欧洲裔血脂异常家族以及欧洲裔低HDL-C病例和对照中,与低HDL-C具有全区域显著性关联(p = 6.9×10⁻⁷)。我们通过使用两个独立的、基于未确定人群的芬兰队列,将研究扩展到人群水平,这两个队列分别是4463名男性的横断面METSIM队列和2265名受试者的前瞻性青年芬兰人队列。联合分析得到的p值为4×10⁻⁴至2×10⁻⁵。重要的是,在前瞻性队列中,我们观察到rs2548861与21年间四个不同时间点测得的HDL-C水平存在显著的纵向关联(p = 0.003),T风险等位基因解释了HDL-C水平变异的1.5%。rs2548861位于WWOX基因第8内含子的一个高度保守区域。我们的体外报告基因检测和电泳迁移率变动分析结果表明,该区域作为一个顺式调控元件发挥作用,其相关的rs2548861 SNP具有特定的等位基因效应,并且该区域形成了一个等位基因特异性的DNA-核因子复合物。总之,对9798名受试者的分析表明,HDL-C与具有等位基因特异性顺式调控功能的WWOX变异体之间存在显著关联。