Key result
Rare RYR2 loss-of-function variants link to epilepsy and bridge cardiac and neuropsychiatric phenotypes.
Why the study?
Whether ultra-rare RYR2 variants are robustly associated with neuropsychiatric phenotypes in large population databases and disease cohorts had not been determined.
Are ultra-rare RYR2 variants associated with neuropsychiatric disorders in general and disease populations?
Are ultra-rare RYR2 variants associated with neuropsychiatric disorders in general and disease populations?
Ultra-rare RYR2 variants, including a novel loss-of-function variant, are associated with epilepsy and neurocardiac phenotypes, highlighting the overlap between inherited arrhythmias and neuropsychiatric disorders.
May warrant neuropsychiatric evaluation in RYR2 variant carriers; extends inherited arrhythmia phenotypes and remains hypothesis-generating.
Overlapping neuropsychiatric and cardiac features in rare monogenic syndromes stem from shared gene expression. Pathogenic gain-of-function RYR2 variants, leading to a lethal cardiac arrhythmia syndrome known as catecholaminergic polymorphic ventricular tachycardia (CPVT), have also been associated with neuropsychiatric disorders such as epilepsy, schizophrenia, and intellectual disability. Neuropsychiatric phenotypes have not been reported in patients with calcium release deficiency syndrome (CRDS), a recently described inherited arrhythmia disorder distinct from CPVT caused by loss-of-function RYR2 variants. Whether there is a robust association between ultra-rare RYR2 variants and neuropsychiatric phenotypes in large population databases and disease cohorts has not been determined to-date. Here, we explore the association of RYR2 variants with neuropsychiatric disorders in 748,879 individuals from multiple biobanks, including 155,236 non-Europeans, and in neuropsychiatric disease cohorts. Our analyses suggest an association between RYR2 variants and epilepsy, while links with other disorders were not robust. In this process, a previously uncharacterized RYR2 variant (p.Y4962N) with conflicting reported pathogenicity was found to be associated with both cardiac and neuropsychiatric phenotypes. To better understand the potential impact of the variant, we further assessed its mechanistic impact and found that RyR2-p.Y4962N results in loss-of-function. Such a finding has not been reported previously in association with RYR2 loss-of-function variants or CRDS. Altogether, our study expands our understanding of the involvement of RYR2 variants in neurocardiac phenotypes in general populations and disease cohorts, which could enhance personalized medicine efforts by integrating cardiac and neuropsychiatric risk profiles.
No takes yet. Share an insight, caveat, or question.
Dababneh et al. (2026) studied this question. Rare RYR2 variants are associated with epilepsy, and the novel RYR2-p.Y4962N loss-of-function variant links both cardiac and neuropsychiatric phenotypes.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: