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Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
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.
Abstract:
Patients with triple-negative breast cancer (TNBC) have a poor prognosis, partly because of the absence of targeted therapies. Recognition of the key role of immune responses against cancer has allowed the advent of immunotherapy, focused on the inhibition of negative immune checkpoints, such as CTLA-4. CTLA-4 is also expressed in some cancer cells, but its activity in tumor cells is not completely understood. Thus, the aim of the present work was to determine the biological landscape and functions of CTLA-4 expressed in TNBC cells through preclinical and in silico analysis. Exploration of CTLA-4 by immunohistochemistry in 50 TNBC tumors revealed membrane and cytoplasmic expression at different intensities. Preclinical experiments, using TNBC cell lines, showed that stimulation of CTLA-4 with CD80 enhances activation of the ERK1/2 signaling pathway, while CTLA-4 blockade by Ipilimumab induces the activation of AKT and reduces cell proliferation in vitro. We then developed an analytic pipeline to define the effects of CTLA-4 in available public data that allowed us to identify four distinct tumor clusters associated with CTLA-4 activation, which are characterized by enrichment of distinctive pathways associated with cell adhesion, MAPK signaling, TGF-ß, VEGF, TNF-α, drug metabolism, ion and amino acid transport, and KRAS signaling, among others. In addition, blockade of CTLA-4 induced increased secretion of IL-2 by tumor cells, suggesting that the receptor regulates cellular functions that may impact the immune microenvironment. This is relevant because a deep characterization of immune infiltrate, conducted using public data to estimate the abundancies of immune-cell types, showed that CTLA-4-activated-like tumors present a conditional immune state similar to an escape phenotype exploited by cancer cells. Finally, by interrogating transcriptional predictors of immunotherapy response, we defined that CTLA-4 activation correlates with high immune scores related to good clinical predicted responses to anti-CTLA-4 therapy. This work sheds new light on the roles of activated CLTA-4 in the tumor compartment and suggests an important interplay between tumor CLTA-4-activated portraits and immune-infiltrating cell populations.
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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