<p>Germline <i>BRCA2</i> loss-of function variants, which can be identified through clinical genetic testing, predispose to several cancers<sup><CitationRef AdditionalCitationIDS="CR2 CR3 CR4" CitationID="CR1">1</CitationRef>–<CitationRef CitationID="CR5">5</CitationRef></sup>. However, variants of uncertain significance limit the clinical utility of test results. Thus, there is a need for functional characterization and clinical classification of all <i>BRCA2</i> variants to facilitate the clinical management of individuals with these variants. Here we analysed all possible single-nucleotide variants from exons 15 to 26 that encode the <i>BRCA2</i> DNA-binding domain hotspot for pathogenic missense variants. To enable this, we used saturation genome editing CRISPR–Cas9-based knock-in endogenous targeting of human haploid HAP1 cells<sup><CitationRef CitationID="CR6">6</CitationRef></sup>. The assay was calibrated relative to nonsense and silent variants and was validated using pathogenic and benign standards from ClinVar and results from a homology-directed repair functional assay<sup><CitationRef CitationID="CR7">7</CitationRef></sup>. Variants (6,959 out of 6,960 evaluated) were assigned to seven categories of pathogenicity based on a VarCall Bayesian model<sup><CitationRef CitationID="CR8">8</CitationRef></sup>. Single-nucleotide variants that encode loss-of-function missense variants were associated with increased risks of breast cancer and ovarian cancer. The functional assay results were integrated into models from ClinGen, the American College of Medical Genetics and Genomics, and the Association for Molecular Pathology<sup><CitationRef CitationID="CR9">9</CitationRef></sup> for clinical classification of <i>BRCA2</i> variants. Using this approach, 91% were classified as pathogenic or likely pathogenic or as benign or likely benign. These classified variants can be used to improve clinical management of individuals with a <i>BRCA2</i> variant.</p>

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Functional evaluation and clinical classification of BRCA2 variants

  • Huaizhi Huang,
  • Chunling Hu,
  • Jie Na,
  • Steven N. Hart,
  • Rohan David Gnanaolivu,
  • Mohamed Abozaid,
  • Tara Rao,
  • Yohannes A. Tecleab,
  • Christine B. Ambrosone,
  • Song Yao,
  • Amy Trentham-Dietz,
  • A. Heather Eliassen,
  • Lauren R. Teras,
  • Alpa Patel,
  • Christopher A. Haiman,
  • Esther M. John,
  • Elena Martinez,
  • James V. Lacey,
  • Dale P. Sandler,
  • Clarice R. Weinberg,
  • Julie R. Palmer,
  • Celine M. Vachon,
  • Janet E. Olson,
  • Kathryn E. Ruddy,
  • Hoda Anton-Culver,
  • Jeffrey N. Weitzel,
  • Peter Kraft,
  • Tina Pesaran,
  • Paulo Cilas Morais Lyra,
  • Rachid Karam,
  • Siddhartha Yadav,
  • Katherine L. Nathanson,
  • Susan M. Domchek,
  • Miguel de la Hoya,
  • Mark Robson,
  • Miika Mehine,
  • Chaitanya Bandlamudi,
  • Diana Mandelker,
  • Alvaro N. A. Monteiro,
  • Edwin S. Iversen,
  • Nicholas Boddicker,
  • Wenan Chen,
  • Marcy E. Richardson,
  • Fergus J. Couch

摘要

Germline BRCA2 loss-of function variants, which can be identified through clinical genetic testing, predispose to several cancers15. However, variants of uncertain significance limit the clinical utility of test results. Thus, there is a need for functional characterization and clinical classification of all BRCA2 variants to facilitate the clinical management of individuals with these variants. Here we analysed all possible single-nucleotide variants from exons 15 to 26 that encode the BRCA2 DNA-binding domain hotspot for pathogenic missense variants. To enable this, we used saturation genome editing CRISPR–Cas9-based knock-in endogenous targeting of human haploid HAP1 cells6. The assay was calibrated relative to nonsense and silent variants and was validated using pathogenic and benign standards from ClinVar and results from a homology-directed repair functional assay7. Variants (6,959 out of 6,960 evaluated) were assigned to seven categories of pathogenicity based on a VarCall Bayesian model8. Single-nucleotide variants that encode loss-of-function missense variants were associated with increased risks of breast cancer and ovarian cancer. The functional assay results were integrated into models from ClinGen, the American College of Medical Genetics and Genomics, and the Association for Molecular Pathology9 for clinical classification of BRCA2 variants. Using this approach, 91% were classified as pathogenic or likely pathogenic or as benign or likely benign. These classified variants can be used to improve clinical management of individuals with a BRCA2 variant.