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Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes

The MC1R/cAMP/MITF pathway is a key determinant for growth, differentiation, and survival of melanocytes and melanoma. MITF-M is the melanocyte-specific isoform of Microphthalmia-associated Transcription Factor (MITF) in human melanoma. Here we use two melanocyte cell lines to show that forced expre...

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Autores principales: Lavelle, Timothy J., Alver, Tine Norman, Heintz, Karen-Marie, Wernhoff, Patrik, Nygaard, Vegard, Nakken, Sigve, Øy, Geir Frode, Bøe, Sigurd Leinæs, Urbanucci, Alfonso, Hovig, Eivind
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408466/
https://www.ncbi.nlm.nih.gov/pubmed/32605315
http://dx.doi.org/10.3390/cancers12071719
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author Lavelle, Timothy J.
Alver, Tine Norman
Heintz, Karen-Marie
Wernhoff, Patrik
Nygaard, Vegard
Nakken, Sigve
Øy, Geir Frode
Bøe, Sigurd Leinæs
Urbanucci, Alfonso
Hovig, Eivind
author_facet Lavelle, Timothy J.
Alver, Tine Norman
Heintz, Karen-Marie
Wernhoff, Patrik
Nygaard, Vegard
Nakken, Sigve
Øy, Geir Frode
Bøe, Sigurd Leinæs
Urbanucci, Alfonso
Hovig, Eivind
author_sort Lavelle, Timothy J.
collection PubMed
description The MC1R/cAMP/MITF pathway is a key determinant for growth, differentiation, and survival of melanocytes and melanoma. MITF-M is the melanocyte-specific isoform of Microphthalmia-associated Transcription Factor (MITF) in human melanoma. Here we use two melanocyte cell lines to show that forced expression of hemagglutinin (HA) -tagged MITF-M through lentiviral transduction represents an oncogenic insult leading to consistent cell transformation of the immortalized melanocyte cell line Hermes 4C, being a melanocortin-1 receptor (MC1R) compound heterozygote, while not causing transformation of the MC1R wild type cell line Hermes 3C. The transformed HA-tagged MITF-M transduced Hermes 4C cells form colonies in soft agar and tumors in mice. Further, Hermes 4C cells display increased MITF chromatin binding, and transcriptional reprogramming consistent with an invasive melanoma phenotype. Mechanistically, forced expression of MITF-M drives the upregulation of the AXL tyrosine receptor kinase (AXL), with concomitant downregulation of phosphatase and tensin homolog (PTEN), leading to increased activation of the PI3K/AKT pathway. Treatment with AXL inhibitors reduces growth of the transformed cells by reverting AKT activation. In conclusion, we present a model system of melanoma development, driven by MITF-M in the context of MC1R loss of function, and independent of UV exposure. This model provides a basis for further studies of critical changes in the melanocyte transformation process.
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spelling pubmed-74084662020-08-13 Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes Lavelle, Timothy J. Alver, Tine Norman Heintz, Karen-Marie Wernhoff, Patrik Nygaard, Vegard Nakken, Sigve Øy, Geir Frode Bøe, Sigurd Leinæs Urbanucci, Alfonso Hovig, Eivind Cancers (Basel) Article The MC1R/cAMP/MITF pathway is a key determinant for growth, differentiation, and survival of melanocytes and melanoma. MITF-M is the melanocyte-specific isoform of Microphthalmia-associated Transcription Factor (MITF) in human melanoma. Here we use two melanocyte cell lines to show that forced expression of hemagglutinin (HA) -tagged MITF-M through lentiviral transduction represents an oncogenic insult leading to consistent cell transformation of the immortalized melanocyte cell line Hermes 4C, being a melanocortin-1 receptor (MC1R) compound heterozygote, while not causing transformation of the MC1R wild type cell line Hermes 3C. The transformed HA-tagged MITF-M transduced Hermes 4C cells form colonies in soft agar and tumors in mice. Further, Hermes 4C cells display increased MITF chromatin binding, and transcriptional reprogramming consistent with an invasive melanoma phenotype. Mechanistically, forced expression of MITF-M drives the upregulation of the AXL tyrosine receptor kinase (AXL), with concomitant downregulation of phosphatase and tensin homolog (PTEN), leading to increased activation of the PI3K/AKT pathway. Treatment with AXL inhibitors reduces growth of the transformed cells by reverting AKT activation. In conclusion, we present a model system of melanoma development, driven by MITF-M in the context of MC1R loss of function, and independent of UV exposure. This model provides a basis for further studies of critical changes in the melanocyte transformation process. MDPI 2020-06-28 /pmc/articles/PMC7408466/ /pubmed/32605315 http://dx.doi.org/10.3390/cancers12071719 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lavelle, Timothy J.
Alver, Tine Norman
Heintz, Karen-Marie
Wernhoff, Patrik
Nygaard, Vegard
Nakken, Sigve
Øy, Geir Frode
Bøe, Sigurd Leinæs
Urbanucci, Alfonso
Hovig, Eivind
Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes
title Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes
title_full Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes
title_fullStr Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes
title_full_unstemmed Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes
title_short Dysregulation of MITF Leads to Transformation in MC1R-Defective Melanocytes
title_sort dysregulation of mitf leads to transformation in mc1r-defective melanocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408466/
https://www.ncbi.nlm.nih.gov/pubmed/32605315
http://dx.doi.org/10.3390/cancers12071719
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