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Merck

Extracellular Acidosis Differentially Regulates Estrogen Receptor ฮฒ-Dependent EMT Reprogramming in Female and Male Melanoma Cells.

International journal of molecular sciences (2022-12-12)
Silvia Peppicelli, Jessica Ruzzolini, Matteo Lulli, Alessio Biagioni, Francesca Bianchini, Adele Caldarella, Chiara Nediani, Elena Andreucci, Lido Calorini
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Clinical outcomes of melanoma patients pointed out a gender disparity that supports a correlation between sex hormone activity on estrogen receptors (ER) and melanoma development and progression. Here, we found that the epithelial-to-mesenchymal transition (EMT) of melanoma cells induced by extracellular acidosis, which is a crucial hallmark of solid cancers, correlates with the expression of ERฮฒ, the most representative ER on melanoma cells. Extracellular acidosis induces an enhanced expression of ERฮฒ in female cells and EMT markers remain unchanged, while extracellular acidosis did not induce the expression of ERฮฒ in male cells and EMT was strongly promoted. An inverse relationship between ERฮฒ expression and EMT markers in melanoma cells of different sex exposed to extracellular acidosis was revealed by two different technical approaches: florescence-activated cell sorting of high ERฮฒ expressing cell subpopulations and ERฮฒ receptor silencing. Finally, we found that ERฮฒ regulates EMT through NF-ฮบB activation. These results demonstrate that extracellular acidosis drives a differential ERฮฒ regulation in male and female melanoma cells and that this gender disparity might open new perspectives for personalized therapeutic approaches.

MATERIALS
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Sigma-Aldrich
Sodium Orthovanadate, A broad spectrum potent inhibitor of protein tyrosine phosphatases.
Sigma-Aldrich
Monoclonal Anti-ฮฒ-Tubulin antibody produced in mouse, clone TUB 2.1, ascites fluid