Genome-wide association and multi-trait analyses characterize the common genetic architecture of heart failure

Michael G. Levin(Philadelphia VA Medical Center), Noah L. Tsao(University of Pennsylvania), Pankhuri Singhal(University of Pennsylvania), Chang Liu(Emory University), Ha My T. Vy(Icahn School of Medicine at Mount Sinai), Ishan Paranjpe(Stanford University), Joshua Backman(Regeneron (United States)), Tiffany R. Bellomo(University of Pennsylvania), William P. Bone(University of Pennsylvania), Kiran J. Biddinger(Broad Institute), Qin Hui(Emory University), Ozan Dikilitas(Mayo Clinic in Arizona), Benjamin A. Satterfield(Mayo Clinic in Arizona), Yifan Yang(Cardiovascular Institute of the South), Michael P. Morley(Cardiovascular Institute of the South), Yuki Bradford(University of Pennsylvania), Megan F. Burke(University of Pennsylvania), Nosheen Reza(University of Pennsylvania), Brian Charest(VA Boston Healthcare System), Renae Judy(University of Pennsylvania), Megan J. Puckelwartz(Northwestern University), Håkon Håkonarson(Children's Hospital of Philadelphia), Atlas Khan(Columbia University), Leah C. Kottyan(Cincinnati Children's Hospital Medical Center), Iftikhar J. Kullo(Mayo Clinic in Arizona), Yuan Luo(Northwestern University), Elizabeth M. McNally(Northwestern University), Laura J. Rasmussen‐Torvik(Northwestern University), Sharlene M. Day(Cardiovascular Institute of the South), Ron Do(Icahn School of Medicine at Mount Sinai), Lawrence S. Phillips(Emory University), Patrick T. Ellinor(Broad Institute), Girish N. Nadkarni(Icahn School of Medicine at Mount Sinai), Marylyn D. Ritchie(University of Pennsylvania), Zoltàn Arany(Cardiovascular Institute of the South), Thomas P. Cappola(Cardiovascular Institute of the South), Kenneth B. Margulies(Cardiovascular Institute of the South), Krishna G. Aragam(Broad Institute), Christopher M. Haggerty(Geisinger Neuroscience Institute), Jacob Joseph(Brigham and Women's Hospital), Yan V. Sun(Emory University), Benjamin F. Voight(Translational Therapeutics (United States)), Scott M. Damrauer(Philadelphia VA Medical Center)
Nature Communications
November 14, 2022
Cited by 144Open Access
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Abstract

Heart failure is a leading cause of cardiovascular morbidity and mortality. However, the contribution of common genetic variation to heart failure risk has not been fully elucidated, particularly in comparison to other common cardiometabolic traits. We report a multi-ancestry genome-wide association study meta-analysis of all-cause heart failure including up to 115,150 cases and 1,550,331 controls of diverse genetic ancestry, identifying 47 risk loci. We also perform multivariate genome-wide association studies that integrate heart failure with related cardiac magnetic resonance imaging endophenotypes, identifying 61 risk loci. Gene-prioritization analyses including colocalization and transcriptome-wide association studies identify known and previously unreported candidate cardiomyopathy genes and cellular processes, which we validate in gene-expression profiling of failing and healthy human hearts. Colocalization, gene expression profiling, and Mendelian randomization provide convergent evidence for the roles of BCKDHA and circulating branch-chain amino acids in heart failure and cardiac structure. Finally, proteome-wide Mendelian randomization identifies 9 circulating proteins associated with heart failure or quantitative imaging traits. These analyses highlight similarities and differences among heart failure and associated cardiovascular imaging endophenotypes, implicate common genetic variation in the pathogenesis of heart failure, and identify circulating proteins that may represent cardiomyopathy treatment targets.


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