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.

Oncogene
|June 8, 2022
PubMed

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.