Protein-truncating variants in the 3' region of a transcript, evading mRNA degradation and giving rise to aberrant truncated proteins, are an underrecognized cause in Mendelian diseases. Here, we report two individuals with heterozygous de novo nonsense variants in the penultimate and last exon of NUSAP1, both presenting with early-onset refractory epilepsy, global developmental delay, congenital microcephaly, and a recognizable facial gestalt. RNA sequencing performed in one individual did not show a reduction in expression, compatible with escape of aberrant transcripts from nonsense mediated mRNA decay (NMD). We systematically analyzed gnomAD population data to delineate a critical region at the 3' region of NUSAP1, where nonsense variants introduce a premature termination codon and escape NMD. Such variants are absent from healthy controls, while frameshift variants producing C-terminal elongations appear tolerated. This position-dependent model provides guidance for diagnostic variant interpretation.
Maureen Jacob, Susann Badmann, S. Bigoni et al.· Clinical Genetics· 0 citations
Background: Founder mutations in MYBPC3 may contribute substantially to the genetic burden of hypertrophic cardiomyopathy (HCM) and provide important insights into genotype–phenotype correlations and population-specific disease mechanisms. In this study, we investigated two recurrent canonical splice-site variants, MYBPC3 c.1458-1G>A and c.3331-1G>A, identified in patients with HCM from the Emilia-Romagna region of Northern Italy. Methods: Ninety-one unrelated patients with HCM carrying either MYBPC3c.1458-1G>A or c.3331-1G>A were analyzed. Haplotype reconstruction was performed to assess a possible founder effect and estimate the approximate age of the shared ancestral allele. Functional characterization was carried out by RNA sequencing of myocardial tissue to evaluate the impact of the variants on splicing. Clinical and phenotypic data were compared with those of carriers of other truncating MYBPC3 variants or pathogenic variants in other sarcomeric genes. Results: Both variants, classified as pathogenic according to ACMG criteria, shared a conserved variant-specific core haplotype. Founder age was estimated at approximately 10.5 generations (~262 years), consistent with a regional founder effect. RNA sequencing demonstrated aberrant splicing for both variants, resulting in premature termination codons and presumably subsequent nonsense-mediated mRNA decay. Clinically, carriers showed delayed disease onset, with a mean onset in the fifth decade of life, and a comparatively milder phenotype, including a lower incidence of sudden cardiac death, than patients carrying other truncating MYBPC3 variants or pathogenic variants in other sarcomeric genes. Both variants exhibited partial penetrance (approximately 63–67%) and age-dependent variable expressivity. Conclusions: MYBPC3 c.1458-1G>A and c.3331-1G>A represent novel founder alleles associated with HCM in Northern Italy. Identification of these locally prevalent variants improves molecular diagnosis, family screening, and supports the development of variant-targeted therapeutic approaches.
C. Cristalli, M. Schiavo, M. R. S. Foti et al.· Genes· 0 citations
This represents the most comprehensive characterization to date of TRND, a novel neurodevelopmental disorder, defining its genotypic and phenotypic spectrum.
Sally Nijim, Mimi Kim, Melissa Denish et al.· Genetics in Medicine· 1 citation
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