MRC Centre for Causal Analyses in Translational Epidemiology, School of Social and Community Medicine, University of Bristol, Oakfield House, Oakfield Grove, Bristol BS8 2BN, UK.
University College London Genetics Institute, Department of Genetics, Environment and Evolution, Gower St, London WC1E 6BT, UK.
Thromb Haemost. 2013 Nov;110(5):995-1003. doi: 10.1160/TH13-02-0087. Epub 2013 Aug 29.
Coagulation phenotypes show strong intercorrelations, affect cardiovascular disease risk and are influenced by genetic variants. The objective of this study was to search for novel genetic variants influencing the following coagulation phenotypes: factor VII levels, fibrinogen levels, plasma viscosity and platelet count. We genotyped the British Women's Heart and Health Study (n=3,445) and the Whitehall II study (n=5,059) using the Illumina HumanCVD BeadArray to investigate genetic associations and pleiotropy. In addition to previously reported associations (SH2B3, F7/F10, PROCR, GCKR, FGA/FGB/FGG, IL5), we identified novel associations at GRK5 (rs10128498, p=1.30x10(-6)), GCKR (rs1260326, p=1.63x10(-6)), ZNF259-APOA5 (rs651821, p=7.17x10(-6)) with plasma viscosity; and at CSF1 (rs333948, p=8.88x10(-6)) with platelet count. A pleiotropic effect was identified in GCKR which associated with factor VII (p=2.16x10(-7)) and plasma viscosity (p=1.63x10(-6)), and, to a lesser extent, ZNF259-APOA5 which also associated with factor VII and fibrinogen (p<1.00x10-²) and plasma viscosity (p<1.00x10(-5)). Triglyceride associated variants were overrepresented in factor VII and plasma viscosity associations. Adjusting for triglyceride levels resulted in attenuation of associations at the GCKR and ZNF259-APOA5 loci. In addition to confirming previously reported associations, we identified four single nucleotide polymorphisms (SNPs) associated with plasma viscosity and platelet count and found evidence of pleiotropic effects with SNPs in GCKR and ZNF259-APOA5. These triglyceride-associated, pleiotropic SNPs suggest a possible causal role for triglycerides in coagulation.
凝血表型之间存在强烈的相关性,会影响心血管疾病的风险,并且受到遗传变异的影响。本研究的目的是寻找影响以下凝血表型的新型遗传变异:因子 VII 水平、纤维蛋白原水平、血浆粘度和血小板计数。我们使用 Illumina HumanCVD BeadArray 对英国妇女心脏与健康研究(n=3445)和白厅 II 研究(n=5059)进行基因分型,以研究遗传关联和多效性。除了先前报道的关联(SH2B3、F7/F10、PROCR、GCKR、FGA/FGB/FGG、IL5)外,我们还在 GRK5(rs10128498,p=1.30x10(-6))、GCKR(rs1260326,p=1.63x10(-6))、ZNF259-APOA5(rs651821,p=7.17x10(-6))上发现了与血浆粘度相关的新关联;并在 CSF1(rs333948,p=8.88x10(-6))上发现了与血小板计数相关的新关联。在 GCKR 中发现了一种多效性效应,与因子 VII(p=2.16x10(-7))和血浆粘度(p=1.63x10(-6))相关,并且在较小程度上与 ZNF259-APOA5 相关,该变异也与因子 VII 和纤维蛋白原(p<1.00x10-²)和血浆粘度(p<1.00x10(-5))相关。甘油三酯相关变异在因子 VII 和血浆粘度关联中过度表达。调整甘油三酯水平后,GCKR 和 ZNF259-APOA5 位点的关联减弱。除了证实先前报道的关联外,我们还确定了四个与血浆粘度和血小板计数相关的单核苷酸多态性(SNP),并发现 GCKR 和 ZNF259-APOA5 中的 SNP 存在多效性效应的证据。这些与甘油三酯相关的、多效性的 SNP 表明甘油三酯在凝血中可能具有因果作用。