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Published on: May 18, 2020
RB loss determines selective resistance and novel vulnerabilities in ER-positive breast cancer models
Vishnu Kumarasamy1, Ram Nambiar1, Jianxin Wang1
1Department of Molecular and Cellular Biology, Roswell Park Cancer Institute, Buffalo, NY, USA.
Abstract:
The management of metastatic estrogen receptor (ER) positive HER2 negative breast cancer (ER+) has improved; however, therapeutic resistance and disease progression emerges in majority of cases. Using unbiased approaches, as expected PI3K and MTOR inhibitors emerge as potent inhibitors to delay proliferation of ER+ models harboring PIK3CA mutations. However, the cytostatic efficacy of these drugs is hindered due to marginal impact on the expression of cyclin D1. Different combination approaches involving the inhibition of ER pathway or cell cycle result in durable growth arrest via RB activation and subsequent inhibition of CDK2 activity. However, cell cycle alterations due to RB loss or ectopic CDK4/cyclin D1 activation yields resistance to these cytostatic combination treatments. To define means to counter resistance to targeted therapies imparted with RB loss; complementary drug screens were performed with RB-deleted isogenic cell lines. In this setting, RB loss renders ER+ breast cancer models more vulnerable to drugs that target DNA replication and mitosis. Pairwise combinations using these classes of drugs defines greater selectivity for RB deficiency. The combination of AURK and WEE1 inhibitors, yields synergistic cell death selectively in RB-deleted ER+ breast cancer cells via apoptosis and yields profound disease control in vivo. Through unbiased efforts the XIAP/CIAP inhibitor birinapant was identified as a novel RB-selective agent. Birinapant further enhances the cytotoxic effect of chemotherapies and targeted therapies used in the treatment of ER+ breast cancer models selectively in the RB-deficient setting. Using organoid culture and xenograft models, we demonstrate the highly selective use of birinapant based combinations for the treatment of RB-deficient tumors. Together, these data illustrate the critical role of RB-pathway in response to many agents used to treat ER+ breast cancer, whilst informing new therapeutic approaches that could be deployed against resistant disease.
Insights
Targeted therapies for ER+ breast cancer can fail due to RB loss. Combining AURK/WEE1 inhibitors or birinapant with other drugs shows promise for treating RB-deficient tumors, overcoming resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Metastatic estrogen receptor (ER) positive HER2 negative breast cancer (ER+) management faces challenges with therapeutic resistance and disease progression.
- While PI3K and MTOR inhibitors show potential for ER+ models with PIK3CA mutations, their cytostatic efficacy is limited by minimal impact on cyclin D1.
- Combinations targeting ER or cell cycle pathways can induce growth arrest via RB activation, but RB loss or CDK4/cyclin D1 activation leads to resistance.
Purpose of the Study:
- To identify strategies to overcome therapeutic resistance in ER+ breast cancer associated with RB loss.
- To discover novel drug combinations and agents effective against RB-deficient ER+ breast cancer models.
Main Methods:
- Unbiased drug screens and complementary screens using RB-deleted isogenic cell lines.
- Evaluation of drug combinations targeting DNA replication and mitosis in RB-deficient models.
- In vitro studies using organoid cultures and in vivo studies using xenograft models.
Main Results:
- RB loss sensitizes ER+ breast cancer models to drugs targeting DNA replication and mitosis.
- The combination of AURK and WEE1 inhibitors induces synergistic cell death selectively in RB-deleted ER+ breast cancer cells.
- Birinapant, a XIAP/CIAP inhibitor, was identified as an RB-selective agent that enhances cytotoxic effects of existing therapies in RB-deficient settings.
Conclusions:
- The RB-pathway critically influences response to therapies for ER+ breast cancer.
- RB-deficient ER+ breast cancer exhibits unique vulnerabilities to specific drug combinations, including AURK/WEE1 inhibitors and birinapant-based regimens.
- These findings inform new therapeutic approaches for resistant ER+ breast cancer, particularly in RB-deficient tumors.
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