Background and Aims: Dilated cardiomyopathy (DCM) is a genetically heterogeneous cause of heart failure and sudden cardiac death. Many patients remain without a molecular diagnosis. MAP3K7 encodes TAK1, a serine/threonine kinase important for cardiac homeostasis. MAP3K7 variants are an established cause of syndromic disease, including cardiospondylocarpofacial syndrome (CSCF), in which DCM has been occasionally reported. Here, we demonstrate that MAP3K7 variants can cause apparently isolated DCM, expanding the phenotypic spectrum of MAP3K7-related disorders. Methods: We compiled four orthogonal lines of human genetic evidence: de novo variation in paediatric cardiomyopathy; common variant association with adult DCM; familial segregation; and rare variant enrichment in DCM cases, together with functional categorisation of rare variants. Results: In 117 paediatric cardiomyopathy trios from the 100,000 Genomes Project, two probands harboured rare de novo MAP3K7 missense variants, significantly more than expected (Bonferroni-adjusted p=0.036). Independent GWAS implicated MAP3K7 as a susceptibility locus for adult DCM. Across global DCM cohorts, we identified families harbouring rare MAP3K7 variants, including one with segregation in nine affected relatives. Rare damaging non-truncating variants were enriched in DCM cases, while truncating variants were associated with DCM in the Genomics England cohort and increased left ventricular volumes in UK Biobank. DCM-associated variants reduced TAK1 kinase activity, supporting a loss-of-function mechanism consistent with CSCF-associated alleles. Conclusion: Multiple independent lines of evidence establish an association between MAP3K7 loss of function variants and DCM. Several affected individuals lacked overt syndromic features, demonstrating that MAP3K7-related disease may present as apparently isolated DCM across the lifespan and supporting inclusion of MAP3K7 in DCM diagnostic pipelines.
K. Josephs, C. Smith-Díaz, A. Woods et al.· medRxiv· 0 citations
Background: Genetic testing is a Class I recommendation for patients with hypertrophic cardiomyopathy (HCM). As knowledge and frameworks continue to evolve, genetic variant classifications may change with new evidence over time. Classifications rely on evidence sought from publicly available case data, improved classification rules, and gene-disease validity. We evaluated the frequency and reasons for variant reclassification from a large multi-center international HCM registry (Sarcomeric Human Cardiomyopathy Registry; SHaRe). Methods: Participants were clinically evaluated at specialised HCM centres. Genetic variants were sought from the genetic test report, with classifications based on either the initial report, an updated report or some underwent further SHaRe adjudication. All variants were computationally reannotated and reevaluated. Variants underwent expedited curation if no new evidence was present. The remainder underwent full manual curation using accepted criteria and classified as pathogenic/likely pathogenic (P/LP), variant of uncertain significance (VUS) and benign/likely benign (B/LB). Results: Of 12,187 HCM patients, 8,054 (66%) had genetic testing between 1989-2020, and 4,923 (61%) had a variant identified in one of 29 HCM genes (1606 unique variants). Expedited curation was performed for 704 (44%) variants and 902 (56%) underwent manual curation. There were 1275 (79%) variants that retained their classification: 146 B/LB, 660 VUS, and 468 P/LP. While 276 (17%) variants (n=672 patients) were reclassified (n=276), including 73 upgrades: 61 from VUS to P/LP (199 patients), and 12 from B/LB to VUS. There were 203 downgrades: 108 from P/LP to VUS (n=196 patients), and 95 from P/LP or VUS to B/LB. VUS were additionally subclassified: 90 VUS-High, 129 VUS-Mid, 115 VUS-Low. Sub-classification of VUS resulted in less uncertainty, with 369 (40.6%) variants reclassified as VUS-Low or B/LB, indicating a very strong probability of not being HCM associated. Conclusions: Clinically meaningful reclassification occurred in 10% of variants identified in HCM probands. Most VUS were unlikely to be causal, and sub-classification has potential to reduce their burden on clinicians and families. Periodic reevaluation is essential for accurate clinical interpretation.
S. Hespe, G. Powell, L. Catto et al.· medRxiv· 0 citations
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