BRCA1-IRIS inactivation overcomes paclitaxel resistance in triple negative breast cancers

Zannel Blanchard1, Bibbin T Paul2,3, Barbara Craft4

  • 1Cancer Institute, University of Mississippi Medical Center, 2500 N. State Street, Jackson, MS, 39216, USA. zblanchard@umc.edu.

Abstract

Insights

BRCA1-IRIS overexpression drives triple-negative breast cancer (TNBC) paclitaxel resistance by activating signaling loops that degrade FOXO3a and increase survivin. Targeting BRCA1-IRIS offers a new therapeutic strategy for TNBC.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Chemoresistance is a significant challenge in cancer treatment.
  • Triple-negative breast cancer (TNBC) often develops resistance to paclitaxel.
  • BRCA1-IRIS is investigated as a potential therapeutic target for TNBC.

Purpose of the Study:

  • To investigate the role of BRCA1-IRIS in TNBC chemoresistance.
  • To explore BRCA1-IRIS as a novel treatment target for paclitaxel-resistant TNBC.
  • To elucidate the signaling pathways involved in BRCA1-IRIS-mediated resistance.

Main Methods:

  • Analyzed BRCA1-IRIS effects on normal and TNBC cells treated with paclitaxel.
  • Investigated BRCA1-IRIS downstream signaling pathways.
  • Assessed BRCA1-IRIS, FOXO3a, and survivin expression in patient tumor samples.
  • Evaluated BRCA1-IRIS inhibition in an orthotopic TNBC model.

Main Results:

  • Paclitaxel treatment increases BRCA1-IRIS expression, activating EGF/EGFR and NRG1/ErbB2 signaling loops.
  • These loops enhance AKT activity, leading to FOXO3a degradation and survivin overexpression, causing paclitaxel resistance.
  • Inhibiting BRCA1-IRIS restores FOXO3a, sensitizes TNBC cells to paclitaxel, and reduces tumor formation.
  • BRCA1-IRIS and survivin overexpression correlate with low FOXO3a and decreased survival in TNBC patients.

Conclusions:

  • BRCA1-IRIS overexpression drives TNBC tumor growth and paclitaxel resistance via specific signaling loops.
  • Targeting BRCA1-IRIS and its activated signaling pathways presents a rational therapeutic approach for advanced TNBC.
  • BRCA1-IRIS-specific therapies are needed for TNBC patients with chemoresistance.

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