학술논문

Genome-Wide Association Transethnic Meta-Analyses Identifies Novel Associations Regulating Coagulation Factor VIII and von Willebrand Factor Plasma Levels
Document Type
article
Author
Sabater-Lleal, MariaHuffman, Jennifer Ede Vries, Paul SMarten, JonathanMastrangelo, Michael ASong, CiPankratz, NathanWard-Caviness, Cavin KYanek, Lisa RTrompet, StellaDelgado, Graciela EGuo, XiuqingBartz, Traci MMartinez-Perez, AngelGermain, Marinede Haan, Hugoline GOzel, Ayse BPolasek, OzrenSmith, Albert VEicher, John DReiner, Alex PTang, WeihongDavies, Neil MStott, David JRotter, Jerome ITofler, Geoffrey HBoerwinkle, Ericde Maat, Moniek PMKleber, Marcus EWelsh, PaulBrody, Jennifer AChen, Ming-HueiVaidya, DhananjaySoria, José ManuelSuchon, Pierrevan Hylckama Vlieg, AstridDesch, Karl CKolcic, IvanaJoshi, Peter KLauner, Lenore JHarris, Tamara BCampbell, HarryRudan, IgorBecker, Diane MLi, Jun ZRivadeneira, FernandoUitterlinden, André GHofman, AlbertFranco, Oscar HCushman, MaryPsaty, Bruce MMorange, Pierre-EmmanuelMcKnight, BarbaraChong, Michael RFernandez-Cadenas, IsraelRosand, JonathanLindgren, ArneConsortium, INVENT Consortium MEGASTROKE Consortium of the International Stroke GeneticsGudnason, VilmundurWilson, James FHayward, CarolineGinsburg, DavidFornage, MyriamRosendaal, Frits RSouto, Juan CarlosBecker, Lewis CJenny, Nancy SMärz, WinfriedJukema, J WouterDehghan, AbbasTrégouët, David-AlexandreMorrison, Alanna CJohnson, Andrew DO’Donnell, Christopher JStrachan, David PLowenstein, Charles JSmith, Nicholas L
Source
Circulation. 139(5)
Subject
Epidemiology
Health Sciences
Hematology
Biotechnology
Rare Diseases
Genetics
Human Genome
Aetiology
2.1 Biological and endogenous factors
Blood
Cardiovascular
Arterial Occlusive Diseases
Biomarkers
Blood Coagulation
Blood Coagulation Disorders
Inherited
Factor VIII
Genetic Loci
Genetic Markers
Genetic Predisposition to Disease
Genome-Wide Association Study
Humans
Mendelian Randomization Analysis
Phenotype
Ribosomal Protein L3
Risk Factors
Venous Thrombosis
von Willebrand Factor
cardiovascular diseases
factor VIII
genome-wide association studies
genetics
risk factors
von Willebrand factor
INVENT Consortium
MEGASTROKE Consortium of the International Stroke Genetics Consortium
Cardiorespiratory Medicine and Haematology
Clinical Sciences
Public Health and Health Services
Cardiovascular System & Hematology
Cardiovascular medicine and haematology
Clinical sciences
Sports science and exercise
Language
Abstract
BackgroundFactor VIII (FVIII) and its carrier protein von Willebrand factor (VWF) are associated with risk of arterial and venous thrombosis and with hemorrhagic disorders. We aimed to identify and functionally test novel genetic associations regulating plasma FVIII and VWF.MethodsWe meta-analyzed genome-wide association results from 46 354 individuals of European, African, East Asian, and Hispanic ancestry. All studies performed linear regression analysis using an additive genetic model and associated ≈35 million imputed variants with natural log-transformed phenotype levels. In vitro gene silencing in cultured endothelial cells was performed for candidate genes to provide additional evidence on association and function. Two-sample Mendelian randomization analyses were applied to test the causal role of FVIII and VWF plasma levels on the risk of arterial and venous thrombotic events.ResultsWe identified 13 novel genome-wide significant ( P≤2.5×10-8) associations, 7 with FVIII levels ( FCHO2/TMEM171/TNPO1, HLA, SOX17/RP1, LINC00583/NFIB, RAB5C-KAT2A, RPL3/TAB1/SYNGR1, and ARSA) and 11 with VWF levels ( PDHB/PXK/KCTD6, SLC39A8, FCHO2/TMEM171/TNPO1, HLA, GIMAP7/GIMAP4, OR13C5/NIPSNAP, DAB2IP, C2CD4B, RAB5C-KAT2A, TAB1/SYNGR1, and ARSA), beyond 10 previously reported associations with these phenotypes. Functional validation provided further evidence of association for all loci on VWF except ARSA and DAB2IP. Mendelian randomization suggested causal effects of plasma FVIII activity levels on venous thrombosis and coronary artery disease risk and plasma VWF levels on ischemic stroke risk.ConclusionsThe meta-analysis identified 13 novel genetic loci regulating FVIII and VWF plasma levels, 10 of which we validated functionally. We provide some evidence for a causal role of these proteins in thrombotic events.