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Genomic and transcriptomic association studies identify 16 novel susceptibility loci for venous thromboembolism

Authors :
Lindström, Sara
Wang, Lu
Smith, Erin N.
Gordon, William
van Hylckama Vlieg, Astrid
de Andrade, Mariza
Brody, Jennifer A.
Pattee, Jack W.
Haessler, Jeffrey
Brumpton, Ben M.
Chasman, Daniel I.
Suchon, Pierre
Chen, Ming-Huei
Turman, Constance
Germain, Marine
Wiggins, Kerri L.
MacDonald, James
Braekkan, Sigrid K.
Armasu, Sebastian M.
Pankratz, Nathan
Jackson, Rebecca D.
Nielsen, Jonas B.
Giulianini, Franco
Puurunen, Marja K.
Ibrahim, Manal
Heckbert, Susan R.
Damrauer, Scott M.
Natarajan, Pradeep
Klarin, Derek
de Vries, Paul S.
Sabater-Lleal, Maria
Huffman, Jennifer E.
Bammler, Theo K.
Frazer, Kelly A.
McCauley, Bryan M.
Taylor, Kent
Pankow, James S.
Reiner, Alexander P.
Gabrielsen, Maiken E.
Deleuze, Jean-François
O'Donnell, Chris J.
Kim, Jihye
McKnight, Barbara
Kraft, Peter
Hansen, John-Bjarne
Rosendaal, Frits R.
Heit, John A.
Psaty, Bruce M.
Tang, Weihong
Kooperberg, Charles
Hveem, Kristian
Ridker, Paul M.
Morange, Pierre-Emmanuel
Johnson, Andrew D.
Kabrhel, Christopher
Trégouët, David-Alexandre
Smith, Nicholas L.
Source :
Blood; November 2019, Vol. 134 Issue: 19 p1645-1657, 13p
Publication Year :
2019

Abstract

Venous thromboembolism (VTE) is a significant contributor to morbidity and mortality. To advance our understanding of the biology contributing to VTE, we conducted a genome-wide association study (GWAS) of VTE and a transcriptome-wide association study (TWAS) based on imputed gene expression from whole blood and liver. We meta-analyzed GWAS data from 18 studies for 30?234 VTE cases and 172?122 controls and assessed the association between 12?923?718 genetic variants and VTE. We generated variant prediction scores of gene expression from whole blood and liver tissue and assessed them for association with VTE. Mendelian randomization analyses were conducted for traits genetically associated with novel VTE loci. We identified 34 independent genetic signals for VTE risk from GWAS meta-analysis, of which 14 are newly reported associations. This included 11 newly associated genetic loci (C1orf198, PLEK, OSMR-AS1, NUGGC/SCARA5, GRK5, MPHOSPH9, ARID4A, PLCG2, SMG6, EIF5A, and STX10) of which 6 replicated, and 3 new independent signals in 3 known genes. Further, TWAS identified 5 additional genetic loci with imputed gene expression levels differing between cases and controls in whole blood (SH2B3, SPSB1, RP11-747H7.3, RP4-737E23.2) and in liver (ERAP1). At some GWAS loci, we found suggestive evidence that the VTE association signal for novel and previously known regions colocalized with expression quantitative trait locus signals. Mendelian randomization analyses suggested that blood traits may contribute to the underlying risk of VTE. To conclude, we identified 16 novel susceptibility loci for VTE; for some loci, the association signals are likely mediated through gene expression of nearby genes.

Details

Language :
English
ISSN :
00064971 and 15280020
Volume :
134
Issue :
19
Database :
Supplemental Index
Journal :
Blood
Publication Type :
Periodical
Accession number :
ejs52906308
Full Text :
https://doi.org/10.1182/blood.2019000435