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Whole-genome analysis of plasma fibrinogen reveals population-differentiated genetic regulators with putative liver roles.

Authors :
Huffman JE
Nicholas J
Hahn J
Heath AS
Raffield LM
Yanek LR
Brody JA
Thibord F
Almasy L
Bartz TM
Bielak LF
Bowler RP
Carrasquilla GD
Chasman DI
Chen MH
Emmert DB
Ghanbari M
Haessler J
Hottenga JJ
Kleber ME
Le NQ
Lee J
Lewis JP
Li-Gao R
Luan J
Malmberg A
Mangino M
Marioni RE
Martinez-Perez A
Pankratz N
Polasek O
Richmond A
Rodriguez BAT
Rotter JI
Steri M
Suchon P
Trompet S
Weiss S
Zare M
Auer P
Cho MH
Christofidou P
Davies G
de Geus E
Deleuze JF
Delgado GE
Ekunwe L
Faraday N
Gögele M
Greinacher A
Gao H
Howard T
Joshi PK
Kilpeläinen TO
Lahti J
Linneberg A
Naitza S
Noordam R
Paüls-Vergés F
Rich SS
Rosendaal FR
Rudan I
Ryan KA
Souto JC
van Rooij FJA
Wang H
Zhao W
Becker LC
Beswick A
Brown MR
Cade BE
Campbell H
Cho K
Crapo JD
Curran JE
de Maat MPM
Doyle M
Elliott P
Floyd JS
Fuchsberger C
Grarup N
Guo X
Harris SE
Hou L
Kolcic I
Kooperberg C
Menni C
Nauck M
O'Connell JR
Orrù V
Psaty BM
Räikkönen K
Smith JA
Soria JM
Stott DJ
van Hylckama Vlieg A
Watkins H
Willemsen G
Wilson PWF
Ben-Shlomo Y
Blangero J
Boomsma D
Cox SR
Dehghan A
Eriksson JG
Fiorillo E
Fornage M
Hansen T
Hayward C
Ikram MA
Jukema JW
Kardia SLR
Lange LA
März W
Mathias RA
Mitchell BD
Mook-Kanamori DO
Morange PE
Pedersen O
Pramstaller PP
Redline S
Reiner A
Ridker PM
Silverman EK
Spector TD
Völker U
Wareham NJ
Wilson JF
Yao J
Trégouët DA
Johnson AD
Wolberg AS
de Vries PS
Sabater-Lleal M
Morrison AC
Smith NL
Source :
Blood [Blood] 2024 Nov 21; Vol. 144 (21), pp. 2248-2265.
Publication Year :
2024

Abstract

Abstract: Genetic studies have identified numerous regions associated with plasma fibrinogen levels in Europeans, yet missing heritability and limited inclusion of non-Europeans necessitates further studies with improved power and sensitivity. Compared with array-based genotyping, whole-genome sequencing (WGS) data provide better coverage of the genome and better representation of non-European variants. To better understand the genetic landscape regulating plasma fibrinogen levels, we meta-analyzed WGS data from the National Heart, Lung, and Blood Institute's Trans-Omics for Precision Medicine (TOPMed) program (n = 32 572), with array-based genotype data from the Cohorts for Heart and Aging Research in Genomic Epidemiology Consortium (n = 131 340) imputed to the TOPMed or Haplotype Reference Consortium panel. We identified 18 loci that have not been identified in prior genetic studies of fibrinogen. Of these, 4 are driven by common variants of small effect with reported minor allele frequency (MAF) at least 10 percentage points higher in African populations. Three signals (SERPINA1, ZFP36L2, and TLR10) contain predicted deleterious missense variants. Two loci, SOCS3 and HPN, each harbor 2 conditionally distinct, noncoding variants. The gene region encoding the fibrinogen protein chain subunits (FGG;FGB;FGA) contains 7 distinct signals, including 1 novel signal driven by rs28577061, a variant common in African ancestry populations but extremely rare in Europeans (MAFAFR = 0.180; MAFEUR = 0.008). Through phenome-wide association studies in the VA Million Veteran Program, we found associations between fibrinogen polygenic risk scores and thrombotic and inflammatory disease phenotypes, including an association with gout. Our findings demonstrate the utility of WGS to augment genetic discovery in diverse populations and offer new insights for putative mechanisms of fibrinogen regulation.

Details

Language :
English
ISSN :
1528-0020
Volume :
144
Issue :
21
Database :
MEDLINE
Journal :
Blood
Publication Type :
Academic Journal
Accession number :
39226462
Full Text :
https://doi.org/10.1182/blood.2023022596