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.

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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