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A Genome- and Phenome-Wide Association Study to Identify Genetic Variants Influencing Platelet Count and Volume and their Pleiotropic Effects

机译:全基因组和现象全范围的关联研究以确定影响血小板计数和体积及其多效性效应的遗传变异

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摘要

Platelets are enucleated cell fragments derived from megakaryocytes that play key roles in hemostasis and in the pathogenesis of atherothrombosis and cancer. Platelet traits are highly heritable and identification of genetic variants associated with platelet traits and assessing their pleiotropic effects may help to understand the role of underlying biological pathways. We conducted an electronic medical record (EMR)-based study to identify common variants that influence inter-individual variation in the number of circulating platelets (PLT) and mean platelet volume (MPV), by performing a genome-wide association study (GWAS). We characterized association of variants influencing MPV and PLT using functional, pathway and disease enrichment analysis assess pleiotropic effects of such variants by performing a phenome-wide association study (PheWAS) with a wide range of EMR-derived phenotypes. A total of 13,582 participants in the electronic MEdical Records and GEnomic (eMERGE) network had data for PLT and 6,291 participants had data for MPV. We identified 5 chromosomal regions associated with PLT and 8 associated with MPV at genome-wide significance (P<5E-8). In addition, we replicated 20 SNPs (out of 56 SNPs (α: 0.05/56=9E-4)) influencing PLT and 22 SNPs (out of 29 SNPs (α: 0.05/29=2E-3)) influencing MPV in a meta-analysis of GWAS of PLT and MPV. While our GWAS did not reveal any novel associations, our functional analyses revealed that genes in these regions influence thrombopoiesis and encode kinases, membrane proteins, proteins involved in cellular trafficking, transcription factors, proteasome complex subunits, proteins of signal transduction pathways, proteins involved in megakaryocyte development and platelet production and hemostasis. PheWAS using a single-SNP Bonferroni correction for 1368 diagnoses (0.05/1368=3.6E-5) revealed that several variants in these genes have pleiotropic associations with myocardial infarction, autoimmune and hematologic disorders. We conclude that multiple genetic loci influence interindividual variation in platelet traits and also have significant pleiotropic effects; the related genes are in multiple functional pathways including those relevant to thrombopoiesis.
机译:血小板是来源于巨核细胞的去核细胞碎片,在止血以及动脉粥样硬化和癌症的发病机理中起着关键作用。血小板性状是高度可遗传的,鉴定与血小板性状相关的遗传变异并评估其多效性可能有助于了解潜在的生物学途径的作用。我们进行了基于电子病历(EMR)的研究,以通过进行全基因组关联研究(GWAS)来确定影响个体间循环血小板数(PLT)和平均血小板体积(MPV)变异的常见变异体。我们使用功能,途径和疾病富集分析对影响MPV和PLT的变体进行关联,并通过进行广泛的EMR衍生表型的全现象组关联研究(PheWAS)评估此类变体的多效性效应。电子病历和基因组(eMERGE)网络中的总共13,582名参与者具有PLT数据,而6,291名参与者具有MPV数据。我们确定了与PLT相关的5个染色体区域和与MPV相关的8个在全基因组范围内的重要性(P <5E-8)。此外,我们复制了20个影响PLT的SNP(56个SNP(α:0.05 / 56 = 9E-4)中的影响)和22个影响MPV的SNP(29个SNP(α:0.05 / 29 = 2E-3)中的影响)。对PLT和MPV的GWAS进行荟萃分析。尽管我们的GWAS没有揭示任何新颖的关联,但我们的功能分析表明,这些区域的基因影响血小板生成并编码激酶,膜蛋白,参与细胞运输的蛋白,转录因子,蛋白酶体复合物亚基,信号转导途径的蛋白,参与蛋白质的蛋白。巨核细胞发育,血小板产生和止血。使用单SNP Bonferroni校正的PheWAS用于1368个诊断(0.05 / 1368 = 3.6E-5)显示,这些基因中的几个变异与心肌梗死,自身免疫和血液系统疾病具有多效性关联。我们得出的结论是,多个遗传基因座影响血小板性状的个体差异,并且还具有显着的多效性效应;相关基因处于多种功能途径中,包括与血小板生成有关的途径。

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