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Estrogen Receptor β in Melanoma: From Molecular Insights to Potential Clinical Utility
Monica Marzagalli1, Marina Montagnani Marelli1, Lavinia Casati2
1Department of Pharmacological and Biomolecular Sciences, Università degli Studi di Milano , Milano , Italy.
Abstract:
Cutaneous melanoma is an aggressive tumor; its incidence has been reported to increase fast in the past decades. Melanoma is a heterogeneous tumor, with most patients harboring mutations in the BRAF or NRAS oncogenes, leading to the overactivation of the MAPK/ERK and PI3K/Akt pathways. The current therapeutic approaches are based on therapies targeting mutated BRAF and the downstream pathway, and on monoclonal antibodies against the immune checkpoint blockade. However, treatment resistance and side effects are common events of these therapeutic strategies. Increasing evidence supports that melanoma is a hormone-related cancer. Melanoma incidence is higher in males than in females, and females have a significant survival advantage over men. Estrogens exert their effects through estrogen receptors (ERα and ERβ) that affect cancer growth in an opposite way: ERα is associated with a proliferative action and ERβ with an anticancer effect. ERβ is the predominant ER in melanoma, and its expression decreases in melanoma progression, supporting its role as a tumor suppressor. Thus, ERβ is now considered as an effective molecular target for melanoma treatment. 17β-estradiol was reported to inhibit melanoma cells proliferation; however, clinical trials did not provide the expected survival benefits. In vitro studies demonstrate that ERβ ligands inhibit the proliferation of melanoma cells harboring the NRAS (but not the BRAF) mutation, suggesting that ERβ activation might impair melanoma development through the inhibition of the PI3K/Akt pathway. These data suggest that ERβ agonists might be considered as an effective treatment strategy, in combination with MAPK inhibitors, for NRAS mutant melanomas. In an era of personalized medicine, pretreatment evaluation of the expression of ER isoforms together with the concurrent oncogenic mutations should be considered before selecting the most appropriate therapeutic intervention. Natural compounds that specifically bind to ERβ have been identified. These phytoestrogens decrease the proliferation of melanoma cells. Importantly, these effects are unrelated to the oncogenic mutations of melanomas, suggesting that, in addition to their ERβ activating function, these compounds might impair melanoma development through additional mechanisms. A better identification of the role of ERβ in melanoma development will help increase the therapeutic options for this aggressive pathology.
Insights
Estrogen receptor beta (ERβ) shows promise as a therapeutic target for melanoma, particularly in NRAS-mutant cases. Natural compounds targeting ERβ may offer additional treatment avenues for this aggressive cancer.
Area of Science:
- Oncology and Endocrinology: Investigating the role of hormone signaling in cancer development and progression.
Background:
- Cutaneous melanoma is an aggressive cancer with increasing incidence, often driven by BRAF or NRAS mutations.
- Current treatments face challenges with resistance and side effects; melanoma exhibits hormone-related characteristics.
- Estrogen receptor beta (ERβ) acts as a tumor suppressor in melanoma, with its expression decreasing during progression.
Approach:
- Examining the opposing roles of estrogen receptors (ERα and ERβ) in melanoma cell proliferation and survival.
- Evaluating the efficacy of ERβ ligands in inhibiting melanoma cell proliferation, particularly in NRAS-mutant tumors.
- Investigating natural compounds (phytoestrogens) that bind to ERβ and their impact on melanoma cells.
Key Points:
- ERβ expression is diminished in progressing melanoma, supporting its tumor-suppressive function.
- ERβ agonists show potential in inhibiting NRAS-mutant melanoma proliferation by affecting the PI3K/Akt pathway.
- Phytoestrogens targeting ERβ demonstrate anti-proliferative effects on melanoma cells, independent of oncogenic mutations.
Conclusions:
- ERβ agonists, potentially combined with MAPK inhibitors, represent a promising therapeutic strategy for NRAS-mutant melanomas.
- Personalized medicine approaches should consider ER isoform expression and oncogenic mutations for optimal treatment selection.
- Further research into ERβ's role and natural ERβ-targeting compounds can expand therapeutic options for melanoma.
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