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    • microphthalmia-associated transcription factor1
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    • Original Article Melanocytes/Melanoma
      Open Archive

      Regulation of Melanoma Progression through the TCF4/miR-125b/NEDD9 Cascade

      Journal of Investigative Dermatology
      Vol. 136Issue 6p1229–1237Published online: March 8, 2016
      • Florian Rambow
      • Audrey Bechadergue
      • Flavie Luciani
      • Gwendoline Gros
      • Melanie Domingues
      • Jacky Bonaventure
      • and others
      Cited in Scopus: 21
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        Melanoma progression from a primary lesion to a distant metastasis is a complex process associated with genetic alterations, epigenetic modifications, and phenotypic switches. Elucidation of these phenomena may indicate how to interfere with this fatal disease. The role of microRNAs as key negative regulators of gene expression, controlling all cellular processes including cell migration and invasion, is now being recognized. Here, we used in silico analysis of microRNA expression profiles of primary and metastatic melanomas and functional experiments to show that microRNA-125b (miR-125b) is a determinant candidate of melanoma progression: (i) miR-125b is more strongly expressed in aggressive metastatic than primary melanomas, (ii) there is an inverse correlation between the amount of miR-125b and overall patient survival, (iii) invasion/migration potentials in vitro are inversely correlated with the amount of miR-125b in a series of human melanoma cell lines, and (iv) inhibition of miR-125b reduces migratory and invasive potentials without affecting cell proliferation in vitro.
        Regulation of Melanoma Progression through the TCF4/miR-125b/NEDD9 Cascade
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