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BRCA1 immunohistochemistry in a molecularly characterized cohort of ovarian high-grade serous carcinomas
Karuna Garg1, Douglas A Levine, Narciso Olvera
1Department of Pathology, Memorial Sloan-Kettering Cancer Center, New York, NY 10065, USA.
Abstract:
BRCA1 and BRCA2 dysfunction, frequently seen in high-grade serous ovarian carcinomas, often results from germline mutations, somatic mutations, and promoter methylation. Identification of tumors with BRCA defects has therapeutic and prognostic implications. Identifying germline BRCA mutations is also important given the increased risk for hereditary breast and ovarian carcinoma. Our goal was to assess whether immunohistochemical analysis (IHC) for BRCA1 is an effective method for the detection of BRCA1 dysfunction in molecularly characterized high-grade ovarian serous carcinoma. We identified 43 high-grade ovarian serous carcinomas with known events in BRCA1 and BRCA2 included in The Cancer Genome Atlas Project. BRCA1 stain was first assessed without knowledge of the BRCA status, and a semiquantitative assessment for intensity and amount of staining was performed. The stains were reevaluated and divided into 3 categories (retained, loss, and equivocal) on the basis of correlation with genotyping data. Presence of retained BRCA staining was considered normal, whereas the other patterns, including equivocal staining or loss of staining, were considered abnormal. Two pathologists, blinded to the BRCA status, then scored 2 sets of validation cases selected on the basis of available molecular data-1 with only germline mutation status available (n=31) and 1 with comprehensive genomic data (n=39). The pathologists agreed 88% of the time in the training set and 91% in the validation sets. In the training set, abnormal BRCA staining was seen in 24 cases, of which 21 (87%) showed BRCA1 genetic abnormalities, 1 showed BRCA2 mutations, and 2 showed no BRCA abnormalities. Abnormal BRCA1 staining was noted in all 5 cases with BRCA1 germline mutations, in 3 (60%) of 5 with BRCA1 somatic mutations, and in 13 (93%) of 14 with BRCA1 promoter methylation. The 2 validation sets included 70 additional patients, and all cases with germline BRCA1 mutations (n=11) showed abnormal BRCA1 staining. Tumors with BRCA1 promoter methylation also showed abnormal staining in 6 (86%) of 7 cases. In the entire study, no cases with BRCA1 germline mutation showed intact immunostaining (negative predictive value=100%). This study shows that BRCA1 IHC is well correlated with molecular events in ovarian carcinoma. Considering the high negative predictive value for germline mutations, BRCA1 IHC appears to be an effective approach to stratify patients for germline genetic testing and to detect other mechanisms of BRCA1 dysfunction in high-grade serous ovarian carcinomas.
Insights
Immunohistochemical analysis (IHC) for BRCA1 effectively detects BRCA1 dysfunction in ovarian cancer. This method shows high accuracy in identifying patients who may benefit from genetic testing for hereditary breast and ovarian cancer syndrome.
Area of Science:
- Oncology
- Genetics
- Pathology
Background:
- BRCA1 and BRCA2 gene dysfunction is common in high-grade serous ovarian carcinomas.
- This dysfunction arises from germline mutations, somatic mutations, and promoter methylation.
- Identifying BRCA defects has significant therapeutic and prognostic implications.
Purpose of the Study:
- To evaluate the effectiveness of BRCA1 immunohistochemical analysis (IHC) for detecting BRCA1 dysfunction.
- To assess if IHC can identify BRCA1 dysfunction in molecularly characterized high-grade ovarian serous carcinoma.
Main Methods:
- Analyzed 43 high-grade ovarian serous carcinomas from The Cancer Genome Atlas Project with known BRCA1/BRCA2 events.
- Performed semiquantitative assessment of BRCA1 staining (retained, loss, equivocal) blinded to molecular status.
- Validated findings using two sets of cases with available germline and genomic data (n=31 and n=39).
Main Results:
- BRCA1 IHC showed strong correlation with molecular events in ovarian carcinoma.
- Abnormal BRCA1 staining was observed in all 11 cases with germline BRCA1 mutations in validation sets (100% negative predictive value).
- BRCA1 IHC accurately identified BRCA1 genetic abnormalities, somatic mutations, and promoter methylation in training and validation sets.
Conclusions:
- BRCA1 IHC is a reliable method for detecting BRCA1 dysfunction in high-grade serous ovarian carcinomas.
- The high negative predictive value supports its use in stratifying patients for germline genetic testing.
- BRCA1 IHC aids in identifying patients with BRCA1 dysfunction, guiding treatment and prognosis.
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