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.

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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