Back to Search
Start Over
Rare and low-frequency variants and their association with plasma levels of fibrinogen, FVII, FVIII, and vWF
- Source :
- Blood, vol 126, iss 11, Huffman, J E, de Vries, P, Morrison, A C, Sabater-Lleal, M, Kacprowski, T, Auer, P L, Brody, J A, Chasman, D I, Chen, M-H, Guo, X, Lin, L-A, Marioni, R, muller-nurasyid, M, Yanek, L R, Pankratz, N, Grove, M L, de Maat, M P M, Cushman, M, Wiggins, K L, Qi, L, Sennblad, B, Harris, S, Polašek, O, Riess, H, Rivadeneira, F, Rose, L M, Goel, A, Taylor, K D, Teumer, A, Uitterlinden, A G, Vaidya, D, Yao, J, Tang, W, Levy, D, Waldenberger, M, Becker, D M, Folsom, A R, Giulianini, F, Greinacher, A, Hofman, A, Huang, C-C, Kooperberg, C, Silveira, A, Starr, J M, Strauch, K, Strawbridge, R J, Wright, A F, McKnight, B, Franco, O H, Zakai, N, Mathias, R A, Psaty, B M, Ridker, P M, Tofler, G H, Voelker, U, Watkins, H, Fornage, M, Hamsten, A, Deary, I, Boerwinkle, E, Koenig, W, Rotter, J I, Hayward, C, Dehghan, A, Reiner, A P, O'Donnell, C J & Smith, N L 2015, ' Rare and low-frequency variants and their association with plasma levels of fibrinogen, FVII, FVIII, and vWF ', Blood . https://doi.org/10.1182/blood-2015-02-624551, Blood, 126(11), E19-E29. American Society of Hematology
- Publication Year :
- 2015
- Publisher :
- American Society of Hematology, 2015.
-
Abstract
- Fibrinogen, coagulation factor VII (FVII), and factor VIII (FVIII) and its carrier von Willebrand factor (vWF) play key roles in hemostasis. Previously identified common variants explain only a small fraction of the trait heritabilities, and additional variations may be explained by associations with rarer variants with larger effects. The aim of this study was to identify low-frequency (minor allele frequency [MAF] >= 0.01 and < 0.05) and rare (MAF < 0.01) variants that influence plasma concentrations of these 4 hemostatic factors by meta-analyzing exome chip data from up to 76 000 participants of 4 ancestries. We identified 12 novel associations of low-frequency (n=2) andrare (n=10) variants across the fibrinogen, FVII, FVIII, and vWF traits that were independent of previously identified associations. Novel loci were found within previously reported genes and had effect sizes much larger than and independent of previously identified common variants. In addition, associations at KCNT1, HID1, and KATNB1 identified new candidate genes related to hemostasis for follow-up replication and functional genomic analysis. Newly identified low-frequency and rare-variant associations accounted for modest amounts of trait variance and therefore are unlikely to increase predicted trait heritability but provide new information for understanding individual variation in hemostasis pathways.
- Subjects :
- congenital, hereditary, and neonatal diseases and abnormalities
Candidate gene
Potassium Channels
Clinical Sciences
Immunology
Nerve Tissue Proteins
Genome-wide association study
Potassium Channels, Sodium-Activated
Cardiorespiratory Medicine and Haematology
Fibrinogen
Polymorphism, Single Nucleotide
Biochemistry
Thrombosis and Hemostasis
Cohort Studies
Paediatrics and Reproductive Medicine
chemistry.chemical_compound
Gene Frequency
Von Willebrand factor
hemic and lymphatic diseases
von Willebrand Factor
medicine
Humans
Polymorphism
Allele frequency
Genetic Association Studies
Genetics
Factor VIII
biology
Factor VII
Genetic Variation
Single Nucleotide
Cell Biology
Hematology
Minor allele frequency
chemistry
Hemostasis
biology.protein
medicine.drug
Subjects
Details
- ISSN :
- 15280020 and 00064971
- Volume :
- 126
- Database :
- OpenAIRE
- Journal :
- Blood
- Accession number :
- edsair.doi.dedup.....2533b7efa1f340101078c63a70a00832
- Full Text :
- https://doi.org/10.1182/blood-2015-02-624551