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Updated: Jan 28, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Epigenetic Co-Deregulation of EZH2/TET1 is a Senescence-Countering, Actionable Vulnerability in Triple-Negative
Yong Yu1, Jingjing Qi2,3, Jieyi Xiong1
1Max-Delbrück-Center for Molecular Medicine in the Helmholtz Association, 13125 Berlin, Germany.
Abstract:
Triple-negative breast cancer (TNBC) cells lack the expression of ER, PR and HER2. Thus, TNBC patients cannot benefit from hormone receptor-targeted therapy as non-TNBC patients, but can only receive chemotherapy as the systemic treatment and have a worse overall outcome. More effective therapeutic targets and combination therapy strategies are urgently needed to improve the treatment effectiveness. Methods: We analyzed the expression levels of EZH2 and TET1 in TCGA and our own breast cancer patient cohort, and tested their correlation with patient survival. We used TNBC and non-TNBC cell lines and mouse xenograft tumor model to unveil novel EZH2 targets and investigated the effect of EZH2 inhibition or TET1 overexpression in cell proliferation and viability of TNBC cells. Results: In TNBC cells, EZH2 decreases TET1 expression by H3K27me3 epigenetic regulation and subsequently suppresses anti-tumor p53 signaling pathway. Patients with high EZH2 and low TET1 presented the poorest survival outcome. Experimentally, targeting EZH2 in TNBC cells with specific inhibitor GSK343 or shRNA genetic approach could induce cell cycle arrest and senescence by elevating TET1 expression and p53 pathway activation. Using mouse xenograft model, we have tested a novel therapy strategy to combine GSK343 and chemotherapy drug Adriamycin and could show drastic and robust inhibition of TNBC tumor growth by synergistic induction of senescence and apoptosis. Conclusions: We postulate that the well-controlled dynamic pathway EZH2-H3K27me3-TET1 is a novel epigenetic co-regulator module and provide evidence regarding how to exploit it as a novel therapeutic target via its pivotal role in senescence and apoptosis control. Of clinical and therapeutic significance, the present study opens a new avenue for TNBC treatment by targeting the EZH2-H3K27me3-TET1 pathway that can modulate the epigenetic landscape.
Insights
Targeting EZH2 in triple-negative breast cancer (TNBC) increases TET1 and p53, inducing senescence. Combining EZH2 inhibition with chemotherapy shows potent TNBC tumor growth inhibition.
Area of Science:
- Epigenetics
- Cancer Biology
- Molecular Oncology
Background:
- Triple-negative breast cancer (TNBC) lacks ER, PR, and HER2 expression, limiting treatment options to chemotherapy.
- TNBC patients exhibit poorer survival outcomes compared to non-TNBC patients.
- Novel therapeutic targets and combination strategies are crucial for improving TNBC treatment efficacy.
Purpose of the Study:
- To investigate the role of EZH2 and TET1 in TNBC pathogenesis.
- To explore the EZH2-TET1 regulatory axis in TNBC.
- To evaluate EZH2 inhibition and combination therapy for TNBC treatment.
Main Methods:
- Analysis of EZH2 and TET1 expression in patient cohorts (TCGA and local).
- In vitro studies using TNBC and non-TNBC cell lines.
- In vivo studies using a mouse xenograft tumor model.
- Pharmacological inhibition of EZH2 (GSK343) and genetic approaches (shRNA).
Main Results:
- EZH2 suppresses TET1 expression via H3K27me3 epigenetic modification in TNBC cells, inhibiting the p53 pathway.
- High EZH2 and low TET1 expression correlate with significantly poorer patient survival.
- Targeting EZH2 with GSK343 or shRNA induced cell cycle arrest and senescence by upregulating TET1 and p53.
- Combination therapy with GSK343 and Adriamycin demonstrated synergistic inhibition of TNBC tumor growth through senescence and apoptosis induction.
Conclusions:
- The EZH2-H3K27me3-TET1 pathway acts as a novel epigenetic co-regulatory module in TNBC.
- Exploiting this pathway offers a new therapeutic target for TNBC by controlling senescence and apoptosis.
- Targeting the EZH2-TET1 pathway presents a promising new avenue for TNBC treatment.
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