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Androgen pathway dysregulation in BRCA1-mutated breast tumors
Els M J J Berns1, Maaike J M Dirkzwager-Kiel, Vibeke Kuenen-Boumeester
1Department of Medical Oncology, Josephine Nefkens Institute, Erasmus MC, Rotterdam, The Netherlands. p.m.j.j.berns@erasmusmc.nl
Background:
Using array analysis for screening RNA from BRCA1-mutated and sporadic breast tumors, we observed that AIGF/FGF-8 expression was lost in BRCA1-mutated breast tumors. Since this growth factor is induced by androgens, we studied the androgen receptor (AR) expression in BRCA-mutated tumors and in matched sporadic breast tumors.
Methods:
Paraffin embedded breast tumors of carriers of a BRCA1 mutation (n=41, median age of patients at time of surgery was 41 years [range 28-59 years]) or a BRCA2 mutation (n=14, median age 41 years [range 31-85 years]) were analyzed for the presence of ER-alpha, PR, P53 and AR using standard immunohistochemical techniques. All statistical tests used, Pearson chi2 and Fisher exact, were two-sided.
Results:
The AR was only present in 12% of BRCA1-mutated tumors, with mutations located at the C-terminal half of the BRCA1-gene. The AR expression was significantly more prevalent, however, in a series of 61 sporadic breast tumors (80%) and in BRCA2-mutated tumors (50%). In contrast to an increased percentage of p53 positive cells, in 66% of the BRCA1-mutated tumors, the ER-alpha expression was observed only in 25% and the PR in 13% of these specimens. The three steroid hormone receptors were expressed in about half of the BRCA2-mutated specimens studied.
Conclusions:
Our data add to the emerging evidence that the biological phenotype of BRCA1-associated tumors may be different from BRCA2 and non-hereditary cases. The loss of the AR expression, as shown by immunohistochemistry, together with the observed loss of other steroid hormone receptors in BRCA1-mutated tumors may lead to a hormone-independent growth or to anti-hormone resistant growth of these tumors.
Insights
BRCA1-mutated breast tumors show a significant loss of androgen receptor (AR) expression compared to sporadic tumors. This AR loss, along with other steroid hormone receptors, suggests a distinct biological phenotype and potential hormone-independent growth in BRCA1-associated cancers.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Array analysis revealed loss of AIGF/FGF-8 in BRCA1-mutated breast tumors.
- AIGF/FGF-8 is induced by androgens, prompting investigation into androgen receptor (AR) expression.
Purpose of the Study:
- To investigate androgen receptor (AR) expression in BRCA1-mutated and sporadic breast tumors.
- To compare AR expression patterns between BRCA1-mutated, BRCA2-mutated, and sporadic breast tumors.
Main Methods:
- Immunohistochemical analysis of ER-alpha, PR, P53, and AR in 41 BRCA1-mutated, 14 BRCA2-mutated, and 61 sporadic breast tumors.
- Statistical analysis using Pearson chi2 and Fisher exact tests.
Main Results:
- AR was present in only 12% of BRCA1-mutated tumors versus 80% of sporadic and 50% of BRCA2-mutated tumors.
- BRCA1-mutated tumors showed increased p53 (66%) but decreased ER-alpha (25%) and PR (13%) expression.
- BRCA2-mutated tumors expressed steroid hormone receptors in approximately half of specimens.
Conclusions:
- BRCA1-associated tumors exhibit a distinct biological phenotype compared to BRCA2 and sporadic tumors.
- Loss of AR and other steroid hormone receptors in BRCA1-mutated tumors may drive hormone-independent or anti-hormone resistant growth.
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