Targeting MUC1-C suppresses BCL2A1 in triple-negative breast cancer

Masayuki Hiraki1,2, Takahiro Maeda1, Neha Mehrotra3

  • 11Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA USA.

Insights

Targeting the MUC1-C oncoprotein in triple-negative breast cancer (TNBC) downregulates BCL2A1, a key protein conferring drug resistance. This discovery offers a new therapeutic strategy for TNBCs unresponsive to current treatments.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • B-cell lymphoma 2-related protein A1 (BCL2A1) is an anti-apoptotic protein contributing to anti-cancer drug resistance.
  • MUC1-C oncoprotein is overexpressed in triple-negative breast cancer (TNBC), promoting epithelial-mesenchymal transition (EMT) and drug resistance.

Purpose of the Study:

  • To investigate the role of MUC1-C in regulating BCL2A1 expression in TNBC.
  • To explore the therapeutic potential of targeting MUC1-C in drug-resistant TNBC.

Main Methods:

  • Genetic and pharmacological targeting of MUC1-C in TNBC cell lines.
  • Analysis of NF-κB p65 pathway activation.
  • Assessment of BCL2A1 and MCL-1 expression levels.
  • Evaluation of TNBC cell response to ABT-737 and MUC1-C inhibition.

Main Results:

  • Targeting MUC1-C genetically or pharmacologically downregulates BCL2A1 expression in TNBC cells.
  • MUC1-C activates BCL2A1 transcription via an NF-κB p65-dependent mechanism, linking it to EMT.
  • Inhibition of MCL-1 activates the MUC1-C→NF-κB→BCL2A1 pathway.
  • TNBC cells resistant to BCL-2 inhibitors show increased MUC1-C and BCL2A1 expression.
  • Targeting MUC1-C in resistant cells suppresses BCL2A1 and induces cell death.

Conclusions:

  • MUC1-C is a critical regulator of BCL2A1 in TNBC and drives resistance to apoptosis.
  • The MUC1-C/NF-κB/BCL2A1 axis represents a potential therapeutic target for TNBC.
  • MUC1-C targeting is a promising strategy for overcoming resistance to BCL-2 family inhibitors in TNBC.

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