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Updated: Oct 6, 2025

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
KDM6A Depletion in Breast Epithelial Cells Leads to Reduced Sensitivity to Anticancer Agents and Increased TGFβ
Jin-Fen Xiao1,2,3, Ley-Fang Kua1, Ling-Wen Ding4
1Cancer Science Institute of Singapore, National University of Singapore, Singapore.
Abstract:
KDM6A, an X chromosome-linked histone lysine demethylase, was reported to be frequently mutated in many tumor types including breast and bladder cancer. However, the functional role of KDM6A is not fully understood. Using MCF10A as a model of non-tumorigenic epithelial breast cells, we found that silencing KDM6A promoted cell migration and transformation demonstrated by the formation of tumor-like acini in three-dimensional culture. KDM6A loss reduced the sensitivity of MCF10A cells to therapeutic agents commonly used to treat patients with triple-negative breast cancer and also induced TGFβ extracellular secretion leading to suppressed expression of cytotoxic genes in normal human CD8+ T cells in vitro. Interestingly, when cells were treated with TGFβ, de novo synthesis of KDM6A protein was suppressed while TGFB1 transcription was enhanced, indicating a TGFβ/KDM6A-negative regulatory axis. Furthermore, both KDM6A deficiency and TGFβ treatment promoted disorganized acinar structures in three-dimensional culture, as well as transcriptional profiles associated with epithelial-to-mesenchymal transition and metastasis, suggesting KDM6A depletion and TGFβ drive tumor progression.
Implications:
Our study provides the preclinical rationale for evaluating KDM6A and TGFβ in breast tumor samples as predictors for response to chemo and immunotherapy, informing personalized therapy based on these findings.
Insights
Loss of KDM6A in breast cells promotes cancer progression and reduces treatment sensitivity. A negative regulatory axis between TGFβ and KDM6A drives tumor growth and metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- KDM6A (X chromosome-linked histone lysine demethylase) mutations are frequent in breast and bladder cancers.
- The precise function of KDM6A in tumor development remains unclear.
Purpose of the Study:
- To investigate the functional role of KDM6A in breast epithelial cells.
- To explore the relationship between KDM6A, TGFβ, and triple-negative breast cancer progression.
Main Methods:
- Utilized MCF10A cells (non-tumorigenic breast epithelial model).
- Performed KDM6A gene silencing experiments.
- Conducted 3D cell culture and TGFβ treatment assays.
- Analyzed gene expression and protein synthesis.
Main Results:
- KDM6A silencing enhanced cell migration, transformation, and tumor-like acini formation.
- KDM6A loss decreased sensitivity to triple-negative breast cancer therapeutics.
- KDM6A deficiency induced TGFβ secretion, suppressing CD8+ T cell cytotoxic gene expression.
- A negative regulatory feedback loop between TGFβ and KDM6A was identified.
- Both KDM6A deficiency and TGFβ treatment promoted epithelial-to-mesenchymal transition and metastasis-associated transcriptional profiles.
Conclusions:
- KDM6A plays a crucial role in suppressing breast cancer progression.
- The TGFβ/KDM6A axis is a key driver of tumor growth and metastasis.
- KDM6A and TGFβ may serve as predictive biomarkers for chemo and immunotherapy response in breast cancer.
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