Genetic and Histopathologic Evaluation ofBRCA1andBRCA2DNA Sequence Variants of Unknown Clinical Significance

Author:

Chenevix-Trench Georgia1,Healey Sue1,Lakhani Sunil12,Waring Paul3,Cummings Margaret2,Brinkworth Ross4,Deffenbaugh Amie M.5,Burbidge Lynn Anne5,Pruss Dmitry5,Judkins Thad5,Scholl Tom5,Bekessy Anna1,Marsh Anna1,Lovelock Paul14,Wong Ming6,Tesoriero Andrea6,Renard Helene7,Southey Melissa67,Hopper John L.8,Yannoukakos Koulis9,Brown Melissa4, ,Easton Douglas10,Tavtigian Sean V.7,Goldgar David11,Spurdle Amanda B.1

Affiliation:

1. 1Queensland Institute of Medical Research;

2. 2Department of Pathology and

3. 4Peter MacCallum Cancer Centre;

4. 3School of Molecular and Microbial Sciences, University of Queensland, Brisbane, Australia;

5. 7Myriad Genetic Laboratories, Inc.;

6. 5Department of Pathology and

7. 9IARC, Lyon, France;

8. 6Centre for Genetic Epidemiology University of Melbourne, Melbourne, Australia;

9. 10Molecular Diagnostics Lab., National Center for Scientific Research Demokritos, Athens, Greece; and

10. 11Strangeways Laboratory, University of Cambridge, Cambridge, England

11. 8Department of Medical Informatics, University of Utah, Salt Lake City, Utah;

Abstract

AbstractClassification of rare missense variants as neutral or disease causing is a challenge and has important implications for genetic counseling. A multifactorial likelihood model for classification of unclassified variants in BRCA1 and BRCA2 has previously been developed, which uses data on co-occurrence of the unclassified variant with pathogenic mutations in the same gene, cosegregation of the unclassified variant with affected status, and Grantham analysis of the fit between the missense substitution and the evolutionary range of variation observed at its position in the protein. We have further developed this model to take into account relevant features of BRCA1- and BRCA2-associated tumors, such as the characteristic histopathology and immunochemical profiles associated with pathogenic mutations in BRCA1, and the fact that ∼80% of tumors from BRCA1 and BRCA2 carriers undergo inactivation of the wild-type allele by loss of heterozygosity. We examined 10 BRCA1 and 15 BRCA2 unclassified variants identified in Australian, multiple-case breast cancer families. By a combination of genetic, in silico, and histopathologic analyses, we were able to classify one BRCA1 variant as pathogenic and six BRCA1 and seven BRCA2 variants as neutral. Five of these neutral variants were also found in at least 1 of 180 healthy controls, suggesting that screening a large number of appropriate controls might be a useful adjunct to other methods for evaluation of unclassified variants. (Cancer Res 2006; 66(4): 2019-27)

Publisher

American Association for Cancer Research (AACR)

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