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Inhibition of GPX4 enhances CDK4/6 inhibitor and endocrine therapy activity in breast cancer
M T Herrera-Abreu1, J Guan2, U Khalid1
1Breast Cancer Now Toby Robins Research Centre, The Institute of Cancer Research, London, UK.
Abstract:
CDK4/6 inhibition in combination with endocrine therapy is the standard of care for estrogen receptor (ER+) breast cancer, and although cytostasis is frequently observed, new treatment strategies that enhance efficacy are required. Here, we perform two independent genome-wide CRISPR screens to identify genetic determinants of CDK4/6 and endocrine therapy sensitivity. Genes involved in oxidative stress and ferroptosis modulate sensitivity, with GPX4 as the top sensitiser in both screens. Depletion or inhibition of GPX4 increases sensitivity to palbociclib and giredestrant, and their combination, in ER+ breast cancer models, with GPX4 null xenografts being highly sensitive to palbociclib. GPX4 perturbation additionally sensitises triple negative breast cancer (TNBC) models to palbociclib. Palbociclib and giredestrant induced oxidative stress and disordered lipid metabolism, leading to a ferroptosis-sensitive state. Lipid peroxidation is promoted by a peroxisome AGPAT3-dependent pathway in ER+ breast cancer models, rather than the classical ACSL4 pathway. Our data demonstrate that CDK4/6 and ER inhibition creates vulnerability to ferroptosis induction, that could be exploited through combination with GPX4 inhibitors, to enhance sensitivity to the current therapies in breast cancer.
Insights
Combining CDK4/6 inhibitors with endocrine therapy shows promise for breast cancer. Inhibiting GPX4 enhances sensitivity to these treatments by inducing ferroptosis, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- CDK4/6 inhibitors plus endocrine therapy are standard for ER+ breast cancer.
- Cytostasis is common, but enhanced efficacy strategies are needed.
Purpose of the Study:
- Identify genetic factors influencing CDK4/6 and endocrine therapy sensitivity.
- Explore novel therapeutic combinations for breast cancer.
Main Methods:
- Genome-wide CRISPR screens were performed to identify sensitizing genes.
- Investigated the role of oxidative stress and ferroptosis regulators, particularly GPX4.
- Assessed the impact of GPX4 inhibition on treatment sensitivity in ER+ and TNBC models.
Main Results:
- GPX4 was identified as a key sensitizer to CDK4/6 and endocrine therapy.
- GPX4 depletion or inhibition increased sensitivity to palbociclib and giredestrant.
- CDK4/6 and ER inhibition induced oxidative stress and a ferroptosis-vulnerable state.
- Lipid peroxidation was mediated by an AGPAT3-dependent pathway in ER+ models.
Conclusions:
- CDK4/6 and ER inhibition create a vulnerability to ferroptosis.
- GPX4 inhibitors could be combined with current therapies to improve breast cancer treatment efficacy.
- Targeting ferroptosis presents a promising new avenue for breast cancer therapy.
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