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Updated: Jan 27, 2026

Using the E1A Minigene Tool to Study mRNA Splicing Changes
Published on: April 22, 2021
Mis-splicing in breast cancer: identification of pathogenic BRCA2 variants by systematic minigene assays
Eugenia Fraile-Bethencourt1, Alberto Valenzuela-Palomo1, Beatriz Díez-Gómez1
1Splicing and Genetic Susceptibility to Cancer, Instituto de Biología y Genética Molecular (CSIC-UVa), Valladolid, Spain.
Abstract:
Splicing disruption is a common mechanism of gene inactivation associated with germline variants of susceptibility genes. To study the role of BRCA2 mis-splicing in hereditary breast/ovarian cancer (HBOC), we performed a comprehensive analysis of variants from BRCA2 exons 2-9, as well as the initial characterization of the regulatory mechanisms of such exons. A pSAD-based minigene with exons 2-9 was constructed and validated in MCF-7 cells, producing the expected transcript (1016-nt/V1-BRCA2_exons_2-9-V2). DNA variants from mutational databases were analyzed by NNSplice and Human Splicing Finder softwares. To refine ESE-variant prediction, we mapped the regulatory regions through a functional strategy whereby 26 exonic microdeletions were introduced into the minigene and tested in MCF-7 cells. Thus, we identified nine spliceogenic ESE-rich intervals where ESE-variants may be located. Combining bioinformatics and microdeletion assays, 83 variants were selected and genetically engineered in the minigene. Fifty-three changes impaired splicing: 28 variants disrupted the canonical sites, four created new ones, 10 abrogated enhancers, eight created silencers and three caused a double-effect. Notably, nine spliceogenic-ESE variants were located within ESE-containing intervals. Capillary electrophoresis and sequencing revealed more than 23 aberrant transcripts, where exon skipping was the most common event. Interestingly, variant c.67G>A triggered the usage of a noncanonical GC-donor 4-nt upstream. Thirty-six variants that induced severe anomalies (>60% aberrant transcripts) were analyzed according to the ACMG guidelines. Thus, 28 variants were classified as pathogenic, five as likely pathogenic and three as variants of uncertain significance. Interestingly, 13 VUS were reclassified as pathogenic or likely pathogenic variants. In conclusion, a large fraction of BRCA2 variants (∼64%) provoked splicing anomalies lending further support to the high prevalence of this disease-mechanism. The low accuracy of ESE-prediction algorithms may be circumvented by functional ESE-mapping that represents an optimal strategy to identify spliceogenic ESE-variants. Finally, systematic functional assays by minigenes depict a valuable tool for the initial characterization of splicing anomalies and the clinical interpretation of variants. © 2019 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
Insights
Splicing disruptions in BRCA2 gene variants are a frequent cause of hereditary breast and ovarian cancer. Functional minigene assays identified numerous pathogenic BRCA2 splicing variants, improving clinical interpretation.
Area of Science:
- Molecular Genetics
- Cancer Genomics
- Splicing Biology
Background:
- Splicing disruption is a key mechanism for gene inactivation in hereditary cancer predisposition.
- BRCA2 variants are frequently associated with hereditary breast and ovarian cancer (HBOC).
- Understanding the impact of BRCA2 variants on splicing is crucial for accurate genetic diagnosis.
Purpose of the Study:
- To investigate the role of BRCA2 mis-splicing in HBOC.
- To comprehensively analyze variants in BRCA2 exons 2-9 and characterize their regulatory mechanisms.
- To refine the prediction and functional assessment of spliceogenic variants in BRCA2.
Main Methods:
- Construction and validation of a pSAD-based minigene encompassing BRCA2 exons 2-9 in MCF-7 cells.
- Bioinformatic analysis of DNA variants using NNSplice and Human Splicing Finder.
- Functional mapping of regulatory regions via exonic microdeletion assays and minigene splicing assays for 83 engineered variants.
Main Results:
- Fifty-three out of 83 tested BRCA2 variants impaired splicing, including disruption of canonical sites, creation of new sites, and alteration of enhancer/silencer elements.
- Over 23 aberrant transcripts were detected, with exon skipping being the most common event.
- Functional assays reclassified 13 variants of uncertain significance (VUS) as pathogenic or likely pathogenic, and 64% of analyzed BRCA2 variants caused splicing anomalies.
Conclusions:
- A significant proportion of BRCA2 variants (~64%) lead to splicing anomalies, contributing to HBOC pathogenesis.
- Functional ESE-mapping and minigene assays are effective strategies to identify spliceogenic variants and improve clinical interpretation, overcoming limitations of prediction algorithms.
- Systematic functional assays provide a valuable tool for characterizing splicing anomalies and aiding in the clinical classification of genetic variants.
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