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使用 HumanCVD 聚焦基因分型阵列进行基因中心分析的活化部分凝血活酶时间和活化蛋白 C 抵抗。

A gene-centric analysis of activated partial thromboplastin time and activated protein C resistance using the HumanCVD focused genotyping array.

机构信息

MRC Centre for Causal Analyses in Translational Epidemiology, School of Social and Community Medicine, University of Bristol, Oakfield Grove, Bristol, UK.

出版信息

Eur J Hum Genet. 2013 Jul;21(7):779-83. doi: 10.1038/ejhg.2012.242. Epub 2012 Nov 28.

Abstract

Activated partial thromboplastin time (aPTT) is an important routine measure of intrinsic blood coagulation. Addition of activated protein C (APC) to the aPTT test to produce a ratio, provides one measure of APC resistance. The associations of some genetic mutations (eg, factor V Leiden) with these measures are established, but associations of other genetic variations remain to be established. The objective of this work was to test for association between genetic variants and blood coagulation using a high-density genotyping array. Genetic association with aPTT and APC resistance was analysed using a focused genotyping array that tests approximately 50 000 single-nucleotide polymorphisms (SNPs) in nearly 2000 cardiovascular candidate genes, including coagulation pathway genes. Analyses were conducted on 2544 European origin women from the British Women's Heart and Health Study. We confirm associations with aPTT at the coagulation factor XII (F12)/G protein-coupled receptor kinase 6 (GRK6) and kininogen 1 (KNG1)/histidine-rich glycoprotein (HRG) loci, and identify novel SNPs at the ABO locus and novel locus kallikrein B (KLKB1)/F11. In addition, we confirm association between APC resistance and factor V Leiden mutation, and identify novel SNP associations with APC resistance in the HRG and F5/solute carrier family 19 member 2 (SLC19A2) regions. In conclusion, variation at several genetic loci influences intrinsic blood coagulation as measured by both aPTT and APC resistance.

摘要

活化部分凝血活酶时间(aPTT)是内在血液凝固的重要常规测量指标。在 aPTT 测试中添加活化蛋白 C(APC)以产生比值,提供 APC 抵抗的一种测量方法。一些基因突变(例如因子 V 莱顿)与这些测量方法的关联已得到确立,但其他遗传变异的关联仍有待确定。这项工作的目的是使用高密度基因分型阵列测试遗传变异与血液凝固之间的关联。使用聚焦基因分型阵列分析 aPTT 和 APC 抵抗的遗传关联,该阵列测试了近 2000 个心血管候选基因中约 50000 个单核苷酸多态性(SNP),包括凝血途径基因。在来自英国女性心脏与健康研究的 2544 名欧洲血统女性中进行了分析。我们确认了在凝血因子 XII(F12)/G 蛋白偶联受体激酶 6(GRK6)和激肽原 1(KNG1)/组氨酸丰富糖蛋白(HRG)基因座与 aPTT 的关联,并在 ABO 基因座和新的 KLKB1/丝氨酸蛋白酶 11(F11)基因座发现了新的 SNP。此外,我们确认了 APC 抵抗与因子 V 莱顿突变之间的关联,并在 HRG 和 F5/溶质载体家族 19 成员 2(SLC19A2)区域发现了与 APC 抵抗相关的新 SNP 关联。总之,几个遗传基因座的变异会影响通过 aPTT 和 APC 抵抗测量的内在血液凝固。

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