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Neuregulin 4 Boosts the Efficacy of Anti-ERBB2 Neutralizing Antibodies
Carmen Miano1,2, Donatella Romaniello2,3, Martina Mazzeschi2,3
1National Laboratory of Molecular Biology and Stem Cell Engineering, National Institute of Biostructures and Biosystems (INBB), Bologna, Italy.
Abstract:
ERBB4 is a tyrosine kinase receptor reported to exert both oncogenic and tumor suppressor activities. These paradoxical effects were suggested to stem from different ERBB4 homo-/hetero-dimers and/or isoforms. By stratifying breast cancer patients for clinical and molecular subtypes and ERBB4 mRNA abundance, we here report that higher ERBB4 levels correlate with longer relapse-free survival in breast cancer patients of HER2-enriched and luminal A molecular subtypes, proposing a cancer-protecting role for this receptor in these specific subgroups. We also observed that HER2-enriched breast cancers express intermediate ERBB4 mRNA levels compared to luminal and triple-negative/basal-like subgroups, which displayed the highest and the lowest levels, respectively. Inspired by these clinical data, we tested the activation of ERBB4 by Neuregulins as a potential anticancer strategy for HER2+ breast cancers. To this end, we employed two HER2+ breast cancer cellular models (BT474 and SKBR3), which express intermediate/high and low ERBB4 levels, respectively. Cell proliferation and motility were evaluated on these cellular models following treatments with Neuregulin 1 (NRG1), which activates both ERBB3 and ERBB4, or Neuregulin 4 (NRG4), which specifically activates ERBB4. Both NRG1 and NRG4 were used alone or in combination with anti-ERBB2 neutralizing antibodies, namely trastuzumab and pertuzumab. In vitro treatment with NRG1 on BT474 cells restrained cell growth and reduced the anti-proliferative efficacy of trastuzumab. In contrast, treatment with NRG1 on SKBR3 cells increased cell proliferation and migration, and partially or completely impaired the anti-proliferative/anti-migratory action of trastuzumab and/or pertuzumab. Importantly, in both the cell lines, treatment with NRG4 robustly potentiated the anti-proliferative action of trastuzumab and pertuzumab. Collectively, our data in HER2+ breast cancer cells highlight that NRG1 may exert both pro- and anti-proliferative effects, and may reduce the efficacy of anti-HER2 agents, whereas NRG4 may boost the anti-proliferative effects of anti-ERBB2 agents. We propose a provocative paradigm shift in the field of growth factors in cancer progression, suggesting the administration of ERBB4 ligands, such as Neuregulin 4, as a strategy to improve the efficacy of anti-ERBB2 agents.
Insights
Higher ERBB4 levels correlate with better survival in specific breast cancer subtypes. Neuregulin 4 enhances anti-HER2 therapies, suggesting a new strategy for HER2+ breast cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- ERBB4, a tyrosine kinase receptor, exhibits dual roles in cancer, acting as both an oncogene and tumor suppressor.
- Its paradoxical functions are attributed to distinct ERBB4 homo/heterodimers and isoforms.
- Understanding ERBB4's role in different breast cancer subtypes is crucial for targeted therapies.
Purpose of the Study:
- To investigate the correlation between ERBB4 expression levels and patient survival across various breast cancer subtypes.
- To evaluate the therapeutic potential of Neuregulin 4 (NRG4) in combination with anti-HER2 agents for HER2-positive breast cancer.
Main Methods:
- Stratification of breast cancer patients based on clinical and molecular subtypes and ERBB4 mRNA abundance.
- In vitro studies using HER2-positive breast cancer cell lines (BT474 and SKBR3) treated with Neuregulin 1 (NRG1) or Neuregulin 4 (NRG4).
- Evaluation of cell proliferation and motility in response to NRG1, NRG4, and anti-ERBB2 antibodies (trastuzumab, pertuzumab).
Main Results:
- Higher ERBB4 levels correlated with improved relapse-free survival in HER2-enriched and Luminal A breast cancer subtypes.
- NRG1 demonstrated context-dependent effects, inhibiting proliferation in BT474 cells but promoting it in SKBR3 cells, potentially reducing anti-HER2 efficacy.
- NRG4 consistently enhanced the anti-proliferative effects of trastuzumab and pertuzumab in both HER2+ cell lines.
Conclusions:
- ERBB4 may play a protective role in specific breast cancer subtypes.
- NRG1's effects are complex and can interfere with anti-HER2 therapies.
- NRG4 shows promise as an adjuvant therapy to potentiate the efficacy of anti-ERBB2 agents in HER2-positive breast cancer.
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