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Shared genetic pathways contribute to risk of hypertrophic and dilated cardiomyopathies with opposite directions of effect.

Authors :
Tadros R
Francis C
Xu X
Vermeer AMC
Harper AR
Huurman R
Kelu Bisabu K
Walsh R
Hoorntje ET
Te Rijdt WP
Buchan RJ
van Velzen HG
van Slegtenhorst MA
Vermeulen JM
Offerhaus JA
Bai W
de Marvao A
Lahrouchi N
Beekman L
Karper JC
Veldink JH
Kayvanpour E
Pantazis A
Baksi AJ
Whiffin N
Mazzarotto F
Sloane G
Suzuki H
Schneider-Luftman D
Elliott P
Richard P
Ader F
Villard E
Lichtner P
Meitinger T
Tanck MWT
van Tintelen JP
Thain A
McCarty D
Hegele RA
Roberts JD
Amyot J
Dubé MP
Cadrin-Tourigny J
Giraldeau G
L'Allier PL
Garceau P
Tardif JC
Boekholdt SM
Lumbers RT
Asselbergs FW
Barton PJR
Cook SA
Prasad SK
O'Regan DP
van der Velden J
Verweij KJH
Talajic M
Lettre G
Pinto YM
Meder B
Charron P
de Boer RA
Christiaans I
Michels M
Wilde AAM
Watkins H
Matthews PM
Ware JS
Bezzina CR
Source :
Nature genetics [Nat Genet] 2021 Feb; Vol. 53 (2), pp. 128-134. Date of Electronic Publication: 2021 Jan 25.
Publication Year :
2021

Abstract

The heart muscle diseases hypertrophic (HCM) and dilated (DCM) cardiomyopathies are leading causes of sudden death and heart failure in young, otherwise healthy, individuals. We conducted genome-wide association studies and multi-trait analyses in HCM (1,733 cases), DCM (5,521 cases) and nine left ventricular (LV) traits (19,260 UK Biobank participants with structurally normal hearts). We identified 16 loci associated with HCM, 13 with DCM and 23 with LV traits. We show strong genetic correlations between LV traits and cardiomyopathies, with opposing effects in HCM and DCM. Two-sample Mendelian randomization supports a causal association linking increased LV contractility with HCM risk. A polygenic risk score explains a significant portion of phenotypic variability in carriers of HCM-causing rare variants. Our findings thus provide evidence that polygenic risk score may account for variability in Mendelian diseases. More broadly, we provide insights into how genetic pathways may lead to distinct disorders through opposing genetic effects.

Details

Language :
English
ISSN :
1546-1718
Volume :
53
Issue :
2
Database :
MEDLINE
Journal :
Nature genetics
Publication Type :
Academic Journal
Accession number :
33495596
Full Text :
https://doi.org/10.1038/s41588-020-00762-2