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

被引:12
|
作者
Gaunt, Tom R. [1 ]
Lowe, Gordon D. O. [2 ]
Lawlor, Debbie A. [1 ]
Casas, Juan-Pablo [3 ,4 ]
Day, Ian N. M. [1 ]
机构
[1] Univ Bristol, Sch Social & Community Med, MRC Ctr Causal Anal Translat Epidemiol, Bristol BS8 2BN, Avon, England
[2] Univ Glasgow, Inst Cardiovasc & Med Sci, BHF Glasgow Cardiovasc Res Ctr, Glasgow, Lanark, Scotland
[3] London Sch Hyg & Trop Med, Fac Epidemiol & Populat Hlth, Dept Noncommunicable Dis Epidemiol, London WC1, England
[4] UCL, Dept Epidemiol & Publ Hlth, London, England
基金
英国医学研究理事会;
关键词
aPTT; coagulation; genotype; SNP; HISTIDINE-RICH GLYCOPROTEIN; VON-WILLEBRAND-FACTOR; FACTOR-V; CARDIOVASCULAR RISK; BLOOD-COAGULATION; PLASMA-LEVELS; FACTOR-VIII; ASSOCIATION; DISEASE; THROMBOEMBOLISM;
D O I
10.1038/ejhg.2012.242
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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.
引用
收藏
页码:779 / 783
页数:5
相关论文
共 50 条
  • [1] A gene-centric analysis of activated partial thromboplastin time and activated protein C resistance using the HumanCVD focused genotyping array
    Tom R Gaunt
    Gordon DO Lowe
    Debbie A Lawlor
    Juan-Pablo Casas
    Ian NM Day
    European Journal of Human Genetics, 2013, 21 : 779 - 783
  • [2] The analysis of false prolongation of the activated partial thromboplastin time (activator: silica): Interference of C-reactive protein
    Liu, Jie
    Li, Fanfan
    Shu, Kuangyi
    Chen, Tao
    Wang, Xiaoou
    Xie, Yaoqi
    Li, Shanshan
    Zhang, Zhaohua
    Jin, Susu
    Jiang, Minghua
    JOURNAL OF CLINICAL LABORATORY ANALYSIS, 2018, 32 (08)
  • [3] Effect of Freezing Plasma at-20°C for 2 Weeks on Prothrombin Time, Activated Partial Thromboplastin Time, Dilute Russell Viper Venom Time, Activated Protein C Resistance, and D-Dimer Levels
    Foshat, Michelle
    Bates, Stephanie
    Russo, Wendy
    Huerta, Araceli
    Albright, Kathleen
    Giddings, Karen
    Indrikovs, Alexander
    Qian, You-wen
    CLINICAL AND APPLIED THROMBOSIS-HEMOSTASIS, 2015, 21 (01) : 41 - 47
  • [4] Clot waveform analysis of prolonged activated partial thromboplastin time in various disorders
    Kadu, Apeksha
    Shah, Ami M.
    Goswami, Hansa
    INDIAN JOURNAL OF PATHOLOGY AND MICROBIOLOGY, 2025, 68 (01) : 137 - 140
  • [5] Genetic Associations for Activated Partial Thromboplastin Time and Prothrombin Time, their Gene Expression Profiles, and Risk of Coronary Artery Disease
    Tang, Weihong
    Schwienbacher, Christine
    Lopez, Lorna M.
    Ben-Shlomo, Yoav
    Oudot-Mellakh, Tiphaine
    Johnson, Andrew D.
    Samani, Nilesh J.
    Basu, Saonli
    Goegele, Martin
    Davies, Gail
    Lowe, Gordon D. O.
    Tregouet, David-Alexandre
    Tan, Adrian
    Pankow, James S.
    Tenesa, Albert
    Levy, Daniel
    Volpato, Claudia B.
    Rumley, Ann
    Gow, Alan J.
    Minelli, Cosetta
    Yarnell, John W. G.
    Porteous, David J.
    Starr, John M.
    Gallacher, John
    Boerwinkle, Eric
    Visscher, Peter M.
    Pramstaller, Peter P.
    Cushman, Mary
    Emilsson, Valur
    Plump, Andrew S.
    Matijevic, Nena
    Morange, Pierre-Emmanuel
    Deary, Ian J.
    Hicks, Andrew A.
    Folsom, Aaron R.
    AMERICAN JOURNAL OF HUMAN GENETICS, 2012, 91 (01) : 152 - 162
  • [6] C-reactive protein-induced activated partial thromboplastin time prolongation in heparinized samples is attenuated by elevated factor VIII
    Kostousov, Vadim
    Devaraj, Sridevi
    Bruzdoski, Karen
    Hensch, Lisa
    Hui, Shiu-Ki
    Teruya, Jun
    INTERNATIONAL JOURNAL OF LABORATORY HEMATOLOGY, 2021, 43 (01) : 139 - 142
  • [7] Comparative analysis on characteristics of two activated partial thromboplastin time reagents
    Yasui, Yutaro
    Ishii, Toshiaki
    Tatebe, Junko
    Morita, Toshisuke
    JOURNAL OF CLINICAL LABORATORY ANALYSIS, 2022, 36 (09)
  • [8] Activated partial thromboplastin time-based clot waveform analysis: a potential for application in acute myocardial infarction and its complications
    Ng, Chen Lin
    Uy, Felix Maverick
    Cheong, May Anne
    Wong, Wan Hui
    Lau, Yee How
    Ng, Heng Joo
    Yeo, Khung Keong
    Tan, Chuen Wen
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [9] Evaluation of Activated Partial Thromboplastin Time Mixing Studies Using Several Methods
    Liu, Chaonan
    Ling, Liqin
    Huang, Xunbei
    Mi, Jian
    Liao, Juan
    Jia, Jin
    Wang, Xia
    Zhou, Jing
    ARCHIVES OF PATHOLOGY & LABORATORY MEDICINE, 2022, 146 (11) : 1387 - 1394
  • [10] Diagnostic efficacy of activated partial thromboplastin time waveform and procalcitonin analysis in pediatric meningococcal sepsis
    Paize, Fauzia
    Carrol, Enitan
    Downey, Colin
    Parry, Christopher M.
    Green, Gerwyn
    Diggle, Peter
    Newland, Paul
    Riordan, F. A. I.
    Thomson, Alistair
    Hart, C. A.
    Toh, Cheng-Hock
    PEDIATRIC CRITICAL CARE MEDICINE, 2011, 12 (06) : E322 - E329