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Common Genetic Variants Contribute to Risk of Transposition of the Great Arteries

Authors :
Škorić-Milosavljević, D
Tadros, R
Bosada, FM
Tessadori, F
van Weerd, JH
Woudstra, OI
Tjong, FVY
Lahrouchi, N
Bajolle, F
Cordell, HJ
Agopian, AJ
Blue, GM
Barge-Schaapveld, DQCM
Gewillig, M
Preuss, C
Lodder, EM
Barnett, P
Ilgun, A
Beekman, L
van Duijvenboden, K
Bokenkamp, R
Müller-Nurasyid, M
Vliegen, HW
Konings, TC
van Melle, JP
van Dijk, APJ
van Kimmenade, RRJ
Roos-Hesselink, JW
Sieswerda, GT
Meijboom, F
Abdul-Khaliq, H
Berger, F
Dittrich, S
Hitz, M-P
Moosmann, J
Riede, F-T
Schubert, S
Galan, P
Lathrop, M
Munter, HM
Al-Chalabi, A
Shaw, CE
Shaw, PJ
Morrison, KE
Veldink, JH
van den Berg, LH
Evans, S
Nobrega, MA
Aneas, I
Radivojkov-Blagojević, M
Meitinger, T
Oechslin, E
Mondal, T
Bergin, L
Smythe, JF
Altamirano-Diaz, L
Lougheed, J
Bouma, BJ
Chaix, M-A
Kline, J
Bassett, AS
Andelfinger, G
van der Palen, RLF
Bouvagnet, P
Clur, S-AB
Breckpot, J
Kerstjens-Frederikse, WS
Winlaw, DS
Bauer, UMM
Mital, S
Goldmuntz, E
Keavney, B
Bonnet, D
Mulder, BJ
Tanck, MWT
Bakkers, J
Christoffels, VM
Boogerd, CJ
Postma, AV
Bezzina, CR
Hubrecht Institute for Developmental Biology and Stem Cell Research
Cardiology
Cardiovascular Centre (CVC)
Medical Biology
ACS - Heart failure & arrhythmias
ACS - Pulmonary hypertension & thrombosis
Human Genetics
Amsterdam Reproduction & Development (AR&D)
Amsterdam Cardiovascular Sciences
General Paediatrics
Paediatric Cardiology
APH - Aging & Later Life
APH - Personalized Medicine
Epidemiology and Data Science
APH - Methodology
Pediatric surgery
Physiology
Source :
Circ Res, Circulation Research. Lippincott Williams & Wilkins, Circulation Research, 130, 166-180, Circulation Research, 130(2), 166-180. LIPPINCOTT WILLIAMS & WILKINS, Circulation Research, 130, 2, pp. 166-180, Circulation Research, 130(2), 166-180. Lippincott Williams & Wilkins, Circulation research, 130(2), 166-180. LIPPINCOTT WILLIAMS & WILKINS, Paediatrics Publications, Circulation research, 130(2), 166-180. Lippincott Williams and Wilkins, KORA-Study Group 2022, ' Common Genetic Variants Contribute to Risk of Transposition of the Great Arteries ', Circulation Research, vol. 130, no. 2, pp. 166-180 . https://doi.org/10.1161/CIRCRESAHA.120.317107, Circ. Res. 130, 166-180 (2021), Circulation Research, 130(2), 166-180. Lippincott Williams and Wilkins
Publication Year :
2022
Publisher :
Ovid Technologies (Wolters Kluwer Health), 2022.

Abstract

Rationale: Dextro-transposition of the great arteries (D-TGA) is a severe congenital heart defect which affects approximately 1 in 4,000 live births. While there are several reports of D-TGA patients with rare variants in individual genes, the majority of D-TGA cases remain genetically elusive. Familial recurrence patterns and the observation that most cases with D-TGA are sporadic suggest a polygenic inheritance for the disorder, yet this remains unexplored. Objective: We sought to study the role of common single nucleotide polymorphisms (SNPs) in risk for D-TGA. Methods and Results: We conducted a genome-wide association study in an international set of 1,237 patients with D-TGA and identified a genome-wide significant susceptibility locus on chromosome 3p14.3, which was subsequently replicated in an independent case-control set (rs56219800, meta-analysis P=8.6x10 -10 , OR=0.69 per C allele). SNP-based heritability analysis showed that 25% of variance in susceptibility to D-TGA may be explained by common variants. A genome-wide polygenic risk score derived from the discovery set was significantly associated to D-TGA in the replication set (P=4x10 -5 ). The genome-wide significant locus (3p14.3) co-localizes with a putative regulatory element that interacts with the promoter of WNT5A , which encodes the Wnt Family Member 5A protein known for its role in cardiac development in mice. We show that this element drives reporter gene activity in the developing heart of mice and zebrafish and is bound by the developmental transcription factor TBX20. We further demonstrate that TBX20 attenuates Wnt5a expression levels in the developing mouse heart. Conclusions: This work provides support for a polygenic architecture in D-TGA and identifies a susceptibility locus on chromosome 3p14.3 near WNT5A . Genomic and functional data support a causal role of WNT5A at the locus.

Details

ISSN :
15244571 and 00097330
Volume :
130
Database :
OpenAIRE
Journal :
Circulation Research
Accession number :
edsair.doi.dedup.....dfaa70576d634c2f88ae2a5ead12795b
Full Text :
https://doi.org/10.1161/circresaha.120.317107