Aug 2026· American Journal of Human Genetics· 0 citations· 58 references
Medicine
TL;DR
The Evidence-based Network for the Interpretation of Germline Mutant Alleles (ENIGMA) research consortium conducted a comprehensive study to characterize spliceogenic variants in BRCA1 exon 18, indicating the degree of splice perturbation required to impair BRCA1 function may depend on the nature of the resulting non-functional transcript.
Abstract
The Evidence-based Network for the Interpretation of Germline Mutant Alleles (ENIGMA) research consortium conducted a comprehensive study to characterize spliceogenic variants in BRCA1 exon 18. The absence of systematic RNA-based assessment for these variants has led to inconsistent interpretation, limiting accurate classification and management of individuals and their families. The splicing profile of 166 variants was assessed using minigene assays; 32 were additionally analyzed in blood-derived RNA from 51 individuals and 18 in mouse embryonic stem cell (mESC)-based assays to evaluate homology-directed repair (HDR) capacity. mRNA assessment by RT-PCR in blood samples and minigene assays showed a significant positive correlation, with splicing analysis in mESCs displaying highly concordant results. The mESC-based HDR assay showed that the in-frame exon 18 skipping (Δ18) transcript encodes a non-functional protein lacking rescue activity. Linear regression analysis using mESC splicing and functional data indicated that ≥59% of full-length (FL) levels and <34% of Δ18 were associated with benign HDR activity. These thresholds differ from those recommended by the ClinGen ENIGMA BRCA1 and BRCA2 Variant Curation Expert Panel American College of Medical Genetics and Genomics (ACMG)/Association for Molecular Pathology (AMP) specifications for applying BP7_strong(RNA): >30% functional transcripts or <70% non-functional transcripts. Incorporation of RNA splicing evidence into variant interpretation increased pathogenic (28.6%-31.7%) and benign (3.7%-24.4%) classifications while reducing likely pathogenic (19.5%-17.7%), uncertain (18.9%-8.5%), and likely benign (29.3%-17.7%) categories. Experimental mRNA profiling impacted the interpretation of 34% of variants and resolved uncertainty in approximately 10% of cases. Exon 18 skipping was less tolerated, indicating that the degree of splice perturbation required to impair BRCA1 function may depend on the nature of the resulting non-functional transcript.
Minigene RT-PCR assays are widely used to assess variant impact on splicing, with increasing reports of massively parallel splicing assays (MPSAs) demonstrating potential to upscale diagnostic use of construct-based data. This study conducted a comprehensive evaluation of > 41,000 variants from construct-based sp...
D. Canson, G. Wiggins, Eladio A. Velasco-Sampedro et al.· Genome Medicine· 0 citations
A streamlined minigene-based workflow for rapid functional evaluation of splicing variants and a robust and scalable framework for functional interpretation of splicing variants is developed, improving diagnostic resolution and supporting more informed clinical decision-making in hereditary cancer genetics.
Noemi Calandra, Elisabetta Mereu, P. Ogliara et al.· Journal of Medical Genetics· 0 citations
Deep intronic variants remain an understudied class of pathogenic variation, primarily due to their absence from standard exome and gene panel datasets and the complexity of non-coding genome interpretation. We hypothesized that pathogenic deep intronic variants are not randomly distributed but instead cluster within i...
H. Saei, B. Ardin, N. Kaiser et al.· medRxiv· 0 citations
AIM
Deep intronic variants can disrupt splicing and cause monogenic disease but are missed by routine genetic testing. This study assessed the contribution of deep intronic variants to Wolcott-Rallison syndrome (WRS), a recessive disorder characterized by early-onset diabetes and progressive multisystem disease caused...
Alaa Al Assi, G. Bonfield, J. Russ-Silsby et al.· Diabetic Medicine· 0 citations
BACKGROUND
Disruption of MYBPC3 precursor mRNA splicing is a frequent genetic cause of hypertrophic cardiomyopathy (HCM). Most often, it reflects changes at canonical sites or the creation of novel splice sites. Prediction tools usually prioritize splice variants with lower efficiency when they are distant from canonic...
M. Gallego-Delgado, S. L. Lorenzo Hernández, Soledad García Hernández et al.· Circulation· 0 citations
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