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Data from Determination of Cancer Risk Associated with Germ Line BRCA1 Missense Variants by Functional Analysis

Posted on 2023-03-30 - 17:00
Abstract

Germ line inactivating mutations in BRCA1 confer susceptibility for breast and ovarian cancer. However, the relevance of the many missense changes in the gene for which the effect on protein function is unknown remains unclear. Determination of which variants are causally associated with cancer is important for assessment of individual risk. We used a functional assay that measures the transactivation activity of BRCA1 in combination with analysis of protein modeling based on the structure of BRCA1 BRCT domains. In addition, the information generated was interpreted in light of genetic data. We determined the predicted cancer association of 22 BRCA1 variants and verified that the common polymorphism S1613G has no effect on BRCA1 function, even when combined with other rare variants. We estimated the specificity and sensitivity of the assay, and by meta-analysis of 47 variants, we show that variants with <45% of wild-type activity can be classified as deleterious whereas variants with >50% can be classified as neutral. In conclusion, we did functional and structure-based analyses on a large series of BRCA1 missense variants and defined a tentative threshold activity for the classification missense variants. By interpreting the validated functional data in light of additional clinical and structural evidence, we conclude that it is possible to classify all missense variants in the BRCA1 COOH-terminal region. These results bring functional assays for BRCA1 closer to clinical applicability. [Cancer Res 2007;67(4):1494–501]

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Cancer Research

AUTHORS (19)

  • Marcelo A. Carvalho
    Sylvia M. Marsillac
    Rachel Karchin
    Siranoush Manoukian
    Scott Grist
    Ramona F. Swaby
    Turan P. Urmenyi
    Edson Rondinelli
    Rosane Silva
    Luis Gayol
    Lisa Baumbach
    Rebecca Sutphen
    Jennifer L. Pickard-Brzosowicz
    Katherine L. Nathanson
    Andrej Sali
    David Goldgar
    Fergus J. Couch
    Paolo Radice
    Alvaro N.A. Monteiro

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