Gene-specific reclassification patterns of variants in hypertrophic cardiomyopathy

Abstract Genetic variant interpretation in hypertrophic cardiomyopathy (HCM) evolves as population reference datasets expand, gene–disease validity assessments examine new candidate genes and additional functional and segregation evidence accumulates. Periodic re-interpretation is, therefore, necessary. Likely pathogenic/pathogenic (LP/P) variants and variants of unknown significance (VUS) were re-evaluated in 2154 HCM index cases using the ACMG/AMP framework. Gene selection was based on ClinGen gene-disease validity assessments. Overall, 12.8% of 1355 variants in HCM genes were reclassified, with 7.5% resulting in clinically meaningful impact (3.5% upgrading from VUS to LP/P and 4% downgrading from LP/P to VUS). Variant reclassification affected the genetic status of 86 individuals (4.0%), including loss of LP/P status in 47 (2.2%) and new gene-positive diagnoses in 39 (1.8%). Of 536 unique variants, 19 (3.5%) were upgraded from VUS to LP/P, 44 (8.2%) were downgraded from LP/P to VUS and 287 (53.5%) maintained LP/P status. Variants in MYBPC3 and MYH7 largely retained pathogenic classification (92.0% and 83.2% unchanged). TNNT2 showed the highest proportion of VUS upgrades (28.6%) alongside high retention of pathogenic variants. The largest LP/P to VUS shifts were noted in ACTC1 (50.0%), MYL3 (42.9%), TPM1 (42.9%) and TNNI3 (20.0%). In this large HCM cohort, variant re-evaluation resulted in a modest but clinically relevant reclassification of genetic variants. MYBPC3 and MYH7 classifications were largely unaltered, showing limited net change. Upgrades in TNNT2 variants, the third most frequent gene in this cohort, are consistent with consolidation of locus-specific evidence and are important given their association with adverse outcomes, despite modest hypertrophy.

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Publication Details

Journal
European Journal of Human Genetics
Published
2026-10-06
DOI
https://doi.org/10.1038/s41431-026-02227-2
Primary Topic
Cardiomyopathy and Myosin Studies
Type
article
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article

Gene-specific reclassification patterns of variants in hypertrophic cardiomyopathy

Gabrielle Norrish, Petros Syrris, Douglas Ewan Cannie, Alexandros Protonotarios et al.
European Journal of Human Genetics
Cardiomyopathy and Myosin Studies
article

Gene-specific reclassification patterns of variants in hypertrophic cardiomyopathy

Gabrielle Norrish, Petros Syrris, Douglas Ewan Cannie, Alexandros Protonotarios, Juan Pablo Kaski, Athanasios Bakalakos, Rebeca Lorca, Imogen Heenan, Marion van Vugt, Perry Mark Elliott
article en

Abstract

Abstract Genetic variant interpretation in hypertrophic cardiomyopathy (HCM) evolves as population reference datasets expand, gene–disease validity assessments examine new candidate genes and additional functional and segregation evidence accumulates. Periodic re-interpretation is, therefore, necessary. Likely pathogenic/pathogenic (LP/P) variants and variants of unknown significance (VUS) were re-evaluated in 2154 HCM index cases using the ACMG/AMP framework. Gene selection was based on ClinGen gene-disease validity assessments. Overall, 12.8% of 1355 variants in HCM genes were reclassified, with 7.5% resulting in clinically meaningful impact (3.5% upgrading from VUS to LP/P and 4% downgrading from LP/P to VUS). Variant reclassification affected the genetic status of 86 individuals (4.0%), including loss of LP/P status in 47 (2.2%) and new gene-positive diagnoses in 39 (1.8%). Of 536 unique variants, 19 (3.5%) were upgraded from VUS to LP/P, 44 (8.2%) were downgraded from LP/P to VUS and 287 (53.5%) maintained LP/P status. Variants in MYBPC3 and MYH7 largely retained pathogenic classification (92.0% and 83.2% unchanged). TNNT2 showed the highest proportion of VUS upgrades (28.6%) alongside high retention of pathogenic variants. The largest LP/P to VUS shifts were noted in ACTC1 (50.0%), MYL3 (42.9%), TPM1 (42.9%) and TNNI3 (20.0%). In this large HCM cohort, variant re-evaluation resulted in a modest but clinically relevant reclassification of genetic variants. MYBPC3 and MYH7 classifications were largely unaltered, showing limited net change. Upgrades in TNNT2 variants, the third most frequent gene in this cohort, are consistent with consolidation of locus-specific evidence and are important given their association with adverse outcomes, despite modest hypertrophy.

European Journal of Human Genetics
Openalex Percentile: Top 11%
Cardiomyopathy and Myosin Studies
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