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3D Functional Genomics Screens Identify CREBBP as a Targetable Driver in Aggressive Triple-Negative Breast Cancer
Barrie Peck1,2, Philip Bland1,2, Ioanna Mavrommati1,2
1The Breast Cancer Now Toby Robins Research Centre, The Institute of Cancer Research, London, England, United Kingdom.
Abstract:
Triple-negative breast cancers (TNBC) are resistant to standard-of-care chemotherapy and lack known targetable driver gene alterations. Identification of novel drivers could aid the discovery of new treatment strategies for this hard-to-treat patient population, yet studies using high-throughput and accurate models to define the functions of driver genes in TNBC to date have been limited. Here, we employed unbiased functional genomics screening of the 200 most frequently mutated genes in breast cancer, using spheroid cultures to model in vivo-like conditions, and identified the histone acetyltransferase CREBBP as a novel tumor suppressor in TNBC. CREBBP protein expression in patient tumor samples was absent in 8% of TNBCs and at a high frequency in other tumors, including squamous lung cancer, where CREBBP-inactivating mutations are common. In TNBC, CREBBP alterations were associated with higher genomic heterogeneity and poorer patient survival and resulted in upregulation and dependency on a FOXM1 proliferative program. Targeting FOXM1-driven proliferation indirectly with clinical CDK4/6 inhibitors (CDK4/6i) selectively impaired growth in spheroids, cell line xenografts, and patient-derived models from multiple tumor types with CREBBP mutations or loss of protein expression. In conclusion, we have identified CREBBP as a novel driver in aggressive TNBC and identified an associated genetic vulnerability in tumor cells with alterations in CREBBP and provide a preclinical rationale for assessing CREBBP alterations as a biomarker of CDK4/6i response in a new patient population. SIGNIFICANCE: This study demonstrates that CREBBP genomic alterations drive aggressive TNBC, lung cancer, and lymphomas and may be selectively treated with clinical CDK4/6 inhibitors.
Insights
Researchers identified CREBBP as a tumor suppressor in triple-negative breast cancer (TNBC). Loss of CREBBP drives aggressive tumors, suggesting CDK4/6 inhibitors as a potential treatment for patients with CREBBP alterations.
Area of Science:
- Oncology
- Genomics
- Cancer Biology
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies due to chemoresistance and unknown drivers.
- Accurate models are needed to identify functional driver genes in TNBC.
Purpose of the Study:
- Identify novel tumor suppressors and therapeutic targets in TNBC.
- Investigate the role of CREBBP in TNBC development and progression.
Main Methods:
- Unbiased functional genomics screening using spheroid cultures.
- Analysis of CREBBP protein expression in patient tumor samples.
- Assessment of CDK4/6 inhibitors in preclinical models with CREBBP alterations.
Main Results:
- CREBBP identified as a novel tumor suppressor in TNBC.
- CREBBP loss associated with genomic heterogeneity, poorer survival, and FOXM1 program dependency.
- CDK4/6 inhibitors selectively impaired growth in models with CREBBP alterations.
Conclusions:
- CREBBP alterations drive aggressive TNBC, lung cancer, and lymphomas.
- Targeting FOXM1-driven proliferation with CDK4/6 inhibitors shows therapeutic potential.
- CREBBP alterations may serve as a biomarker for CDK4/6 inhibitor response.
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