Related Experiment Video
Updated: Apr 18, 2026

Silencing of BRCA2 to Identify Novel BRCA2-regulated Biological Functions in Cultured Human Cells
Published on: August 12, 2015
BRCA1-IRIS inactivation overcomes paclitaxel resistance in triple negative breast cancers
Zannel Blanchard1, Bibbin T Paul2,3, Barbara Craft4
1Cancer Institute, University of Mississippi Medical Center, 2500 N. State Street, Jackson, MS, 39216, USA. zblanchard@umc.edu.
Introduction:
Intrinsic or acquired chemoresistance is a major problem in oncology. Although highly responsive to chemotherapies such as paclitaxel, most triple negative breast cancer (TNBC) patients develop chemoresistance. Here we investigate the role of BRCA1-IRIS as a novel treatment target for TNBCs and their paclitaxel-resistant recurrences.
Methods:
We analyzed the response of BRCA1-IRIS overexpressing normal mammary cells or established TNBC cells silenced from BRCA1-IRIS to paclitaxel in vitro and in vivo. We analyzed BRCA1-IRIS downstream signaling pathways in relation to paclitaxel treatment. We also analyzed a large cohort of breast tumor samples for BRCA1-IRIS, Forkhead box class O3a (FOXO3a) and survivin expression. Finally, we analyzed the effect of BRCA1-IRIS silencing or inactivation on TNBCs formation, maintenance and response to paclitaxel in an orthotopic model.
Results:
We show that low concentrations of paclitaxel triggers BRCA1-IRIS expression in vitro and in vivo, and that BRCA1-IRIS activates two autocrine signaling loops (epidermal growth factor (EGF)/EGF receptor 1 (EGFR)-EGF receptor 2 (ErbB2) and neurogulin 1 (NRG1)/ErbB2-EGF receptor 3 (ErbB3), which enhances protein kinase B (AKT) and thus survivin expression/activation through promoting FOXO3a degradation. This signaling pathway is intact in TNBCs endogenously overexpressing BRCA1-IRIS. These events trigger the intrinsic and acquired paclitaxel resistance phenotype known for BRCA1-IRIS-overexpressing TNBCs. Inactivating BRCA1-IRIS signaling using a novel inhibitory mimetic peptide inactivates these autocrine loops, AKT and survivin activity/expression, in part by restoring FOXO3a expression, and sensitizes TNBC cells to low paclitaxel concentrations in vitro and in vivo. Finally, we show BRCA1-IRIS and survivin overexpression is correlated with lack of FOXO3a expression in a large cohort of primary tumor samples, and that BRCA1-IRIS overexpression-induced signature is associated with decreased disease free survival in heavily treated estrogen receptor alpha-negative patients.
Conclusions:
In addition to driving TNBC tumor formation, BRCA1-IRIS overexpression drives their intrinsic and acquired paclitaxel resistance, partly by activating autocrine signaling loops EGF/EGFR-ErbB2 and NRG1/ErbB2-ErbB3. These loops activate AKT, causing FOXO3a degradation and survivin overexpression. Taken together, this underscores the need for BRCA1-IRIS-specific therapy and strongly suggests that BRCA1-IRIS and/or signaling loops activated by it could be rational therapeutic targets for advanced TNBCs.
Insights
BRCA1-IRIS overexpression drives triple-negative breast cancer (TNBC) paclitaxel resistance by activating signaling loops that degrade FOXO3a and increase survivin. Targeting BRCA1-IRIS offers a new therapeutic strategy for TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Chemoresistance is a significant challenge in cancer treatment.
- Triple-negative breast cancer (TNBC) often develops resistance to paclitaxel.
- BRCA1-IRIS is investigated as a potential therapeutic target for TNBC.
Purpose of the Study:
- To investigate the role of BRCA1-IRIS in TNBC chemoresistance.
- To explore BRCA1-IRIS as a novel treatment target for paclitaxel-resistant TNBC.
- To elucidate the signaling pathways involved in BRCA1-IRIS-mediated resistance.
Main Methods:
- Analyzed BRCA1-IRIS effects on normal and TNBC cells treated with paclitaxel.
- Investigated BRCA1-IRIS downstream signaling pathways.
- Assessed BRCA1-IRIS, FOXO3a, and survivin expression in patient tumor samples.
- Evaluated BRCA1-IRIS inhibition in an orthotopic TNBC model.
Main Results:
- Paclitaxel treatment increases BRCA1-IRIS expression, activating EGF/EGFR and NRG1/ErbB2 signaling loops.
- These loops enhance AKT activity, leading to FOXO3a degradation and survivin overexpression, causing paclitaxel resistance.
- Inhibiting BRCA1-IRIS restores FOXO3a, sensitizes TNBC cells to paclitaxel, and reduces tumor formation.
- BRCA1-IRIS and survivin overexpression correlate with low FOXO3a and decreased survival in TNBC patients.
Conclusions:
- BRCA1-IRIS overexpression drives TNBC tumor growth and paclitaxel resistance via specific signaling loops.
- Targeting BRCA1-IRIS and its activated signaling pathways presents a rational therapeutic approach for advanced TNBC.
- BRCA1-IRIS-specific therapies are needed for TNBC patients with chemoresistance.
Related Concept Videos
Treatment Resistent Cancers
Targeted Cancer Therapies
There are several types of targeted therapies against...
Targeted Cancer Therapies
Treatment Resistant Cancers
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...

