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ONECUT2 is a druggable driver of luminal to basal breast cancer plasticity
Irene Zamora1, Mirian Gutiérrez1, Alex Pascual1
1Department of Health Sciences, Public University of Navarre, Pamplona, Navarre, Spain.
Purpose:
Tumor heterogeneity complicates patient treatment and can be due to transitioning of cancer cells across phenotypic cell states. This process is associated with the acquisition of independence from an oncogenic driver, such as the estrogen receptor (ER) in breast cancer (BC), resulting in tumor progression, therapeutic failure and metastatic spread. The transcription factor ONECUT2 (OC2) has been shown to be a master regulator protein of metastatic castration-resistant prostate cancer (mCRPC) tumors that promotes lineage plasticity to a drug-resistant neuroendocrine (NEPC) phenotype. Here, we investigate the role of OC2 in the dynamic conversion between different molecular subtypes in BC.
Methods:
We analyze OC2 expression and clinical significance in BC using public databases and immunohistochemical staining. In vitro, we perform RNA-Seq, RT-qPCR and western-blot after OC2 enforced expression. We also assess cellular effects of OC2 silencing and inhibition with a drug-like small molecule in vitro and in vivo.
Results:
OC2 is highly expressed in a substantial subset of hormone receptor negative human BC tumors and tamoxifen-resistant models, and is associated with poor clinical outcome, lymph node metastasis and heightened clinical stage. OC2 inhibits ER expression and activity, suppresses a gene expression program associated with luminal differentiation and activates a basal-like state at the gene expression level. We also show that OC2 is required for cell growth and survival in metastatic BC models and that it can be targeted with a small molecule inhibitor providing a novel therapeutic strategy for patients with OC2 active tumors.
Conclusions:
The transcription factor OC2 is a driver of BC heterogeneity and a potential drug target in distinct cell states within the breast tumors.
Insights
The transcription factor ONECUT2 (OC2) drives breast cancer (BC) heterogeneity and resistance. Targeting OC2 with small molecules offers a new therapeutic strategy for aggressive BC tumors.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Tumor heterogeneity complicates breast cancer (BC) treatment, often driven by phenotypic cell state transitions.
- Estrogen receptor (ER) independence and lineage plasticity contribute to tumor progression and therapeutic failure in BC.
- ONECUT2 (OC2) regulates metastatic castration-resistant prostate cancer (mCRPC) plasticity towards a neuroendocrine (NEPC) phenotype.
Purpose of the Study:
- Investigate the role of ONECUT2 (OC2) in mediating dynamic molecular subtype conversion in breast cancer (BC).
- Determine OC2's impact on ER expression, differentiation pathways, and aggressive BC phenotypes.
Main Methods:
- Analysis of OC2 expression and clinical significance in BC using public databases and immunohistochemistry.
- In vitro studies including RNA-Seq, RT-qPCR, and Western blot following OC2 overexpression.
- In vitro and in vivo assessment of OC2 silencing and small molecule inhibition effects.
Main Results:
- OC2 is highly expressed in hormone receptor-negative BC and tamoxifen-resistant models, correlating with poor outcomes and metastasis.
- OC2 suppresses ER expression/activity and luminal differentiation programs, while activating a basal-like gene expression state.
- OC2 is essential for metastatic BC cell growth and survival; a small molecule inhibitor shows therapeutic potential.
Conclusions:
- ONECUT2 (OC2) acts as a key driver of breast cancer (BC) heterogeneity.
- OC2 represents a potential therapeutic target for distinct, aggressive cell states within breast tumors.
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