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Large scale genome-wide association analyses identify novel genetic loci and mechanisms in hypertrophic cardiomyopathy.


ABSTRACT: Hypertrophic cardiomyopathy (HCM) is an important cause of morbidity and mortality with both monogenic and polygenic components. We here report results from the largest HCM genome-wide association study (GWAS) and multi-trait analysis (MTAG) including 5,900 HCM cases, 68,359 controls, and 36,083 UK Biobank (UKB) participants with cardiac magnetic resonance (CMR) imaging. We identified a total of 70 loci (50 novel) associated with HCM, and 62 loci (32 novel) associated with relevant left ventricular (LV) structural or functional traits. Amongst the common variant HCM loci, we identify a novel HCM disease gene, SVIL, which encodes the actin-binding protein supervillin, showing that rare truncating SVIL variants cause HCM. Mendelian randomization analyses support a causal role of increased LV contractility in both obstructive and non-obstructive forms of HCM, suggesting common disease mechanisms and anticipating shared response to therapy. Taken together, the findings significantly increase our understanding of the genetic basis and molecular mechanisms of HCM, with potential implications for disease management.

SUBMITTER: Tadros R 

PROVIDER: S-EPMC9915807 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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Large scale genome-wide association analyses identify novel genetic loci and mechanisms in hypertrophic cardiomyopathy.

Tadros Rafik R   Zheng Sean L SL   Grace Christopher C   Jordà Paloma P   Francis Catherine C   Jurgens Sean J SJ   Thomson Kate L KL   Harper Andrew R AR   Ormondroyd Elizabeth E   West Dominique M DM   Xu Xiao X   Theotokis Pantazis I PI   Buchan Rachel J RJ   McGurk Kathryn A KA   Mazzarotto Francesco F   Boschi Beatrice B   Pelo Elisabetta E   Lee Michael M   Noseda Michela M   Varnava Amanda A   Vermeer Alexa Mc AM   Walsh Roddy R   Amin Ahmad S AS   van Slegtenhorst Marjon A MA   Roslin Nicole N   Strug Lisa J LJ   Salvi Erika E   Lanzani Chiara C   de Marvao Antonio A   Roberts Jason D JD   Tremblay-Gravel Maxime M   Giraldeau Genevieve G   Cadrin-Tourigny Julia J   L'Allier Philippe L PL   Garceau Patrick P   Talajic Mario M   Pinto Yigal M YM   Rakowski Harry H   Pantazis Antonis A   Baksi John J   Halliday Brian P BP   Prasad Sanjay K SK   Barton Paul Jr PJ   O'Regan Declan P DP   Cook Stuart A SA   de Boer Rudolf A RA   Christiaans Imke I   Michels Michelle M   Kramer Christopher M CM   Ho Carolyn Y CY   Neubauer Stefan S   Matthews Paul M PM   Wilde Arthur A AA   Tardif Jean-Claude JC   Olivotto Iacopo I   Adler Arnon A   Goel Anuj A   Ware James S JS   Bezzina Connie R CR   Watkins Hugh H  

medRxiv : the preprint server for health sciences 20230206


Hypertrophic cardiomyopathy (HCM) is an important cause of morbidity and mortality with both monogenic and polygenic components. We here report results from the largest HCM genome-wide association study (GWAS) and multi-trait analysis (MTAG) including 5,900 HCM cases, 68,359 controls, and 36,083 UK Biobank (UKB) participants with cardiac magnetic resonance (CMR) imaging. We identified a total of 70 loci (50 novel) associated with HCM, and 62 loci (32 novel) associated with relevant left ventricu  ...[more]

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