Biological Landscape of Triple Negative Breast Cancers Expressing CTLA-4

María G C Navarrete-Bernal1, Mayte G Cervantes-Badillo2,3, Jose Fabián Martínez-Herrera4

  • 1Departamento de Biología Molecular y Biotecnología, Instituto de Investigaciones Biomédicas, UNAM, Ciudad de Mexico, Mexico.

Frontiers in Oncology
|August 28, 2020
PubMed

Insights

This study reveals that Cytotoxic T-Lymphocyte Associated protein 4 (CTLA-4) in triple-negative breast cancer (TNBC) cells influences tumor growth and immune response. Targeting CTLA-4 shows promise for improving immunotherapy outcomes in TNBC patients.

Area of Science:

  • Immunology
  • Oncology
  • Molecular Biology

Background:

  • Triple-negative breast cancer (TNBC) lacks targeted therapies, leading to poor prognoses.
  • Immunotherapy, particularly immune checkpoint inhibitors like anti-CTLA-4, has emerged as a treatment strategy.
  • The role of CTLA-4 expressed within tumor cells, distinct from its role on immune cells, remains incompletely understood.

Purpose of the Study:

  • To investigate the biological functions and landscape of CTLA-4 expressed in TNBC cells.
  • To explore the impact of CTLA-4 expression and blockade on TNBC cell behavior and the tumor immune microenvironment.
  • To correlate CTLA-4 activation patterns with immunotherapy response in TNBC.

Main Methods:

  • Immunohistochemistry analysis of CTLA-4 expression in 50 TNBC tumors.
  • Preclinical experiments using TNBC cell lines to assess the effects of CTLA-4 stimulation and blockade (Ipilimumab) on signaling pathways (ERK1/2, AKT) and proliferation.
  • In silico analysis of public data to identify tumor clusters associated with CTLA-4 activation and their associated pathways, immune infiltrate, and immunotherapy response predictors.

Main Results:

  • CTLA-4 was found to be expressed in both membrane and cytoplasmic compartments of TNBC cells.
  • CTLA-4 stimulation activated ERK1/2, while blockade with Ipilimumab activated AKT and reduced proliferation in vitro.
  • Four distinct tumor clusters linked to CTLA-4 activation were identified, enriched in pathways like MAPK signaling, VEGF, and KRAS signaling. CTLA-4 blockade increased IL-2 secretion by tumor cells. CTLA-4 activation correlated with high immune scores and predicted good response to anti-CTLA-4 therapy.

Conclusions:

  • Activated CTLA-4 in TNBC cells plays a significant role in regulating tumor cell functions and potentially influencing the immune microenvironment.
  • The identified CTLA-4 activation patterns in tumors are associated with specific pathway enrichments and an immune-evasive phenotype.
  • Tumor-intrinsic CTLA-4 activation serves as a potential biomarker for predicting response to anti-CTLA-4 immunotherapy in TNBC.

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