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Interferon-γ links UV to melanocyte activation and promotes melanomagenesis

Cutaneous malignant melanoma is a highly aggressive and frequently chemoresistant cancer, whose incidence continues to rise. Epidemiological studies reveal that the major etiological melanoma risk factor is ultraviolet (UV) solar radiation, with the highest risk associated with intermittent burning...

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Autores principales: Zaidi, M. Raza, Davis, Sean, Noonan, Frances P., Graff-Cherry, Cari, Hawley, Teresa S., Walker, Robert L., Feigenbaum, Lionel, Fuchs, Elaine, Lyakh, Lyudmila, Young, Howard A., Hornyak, Thomas J., Arnheiter, Heinz, Trinchieri, Giorgio, Meltzer, Paul S., De Fabo, Edward C., Merlino, Glenn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3140101/
https://www.ncbi.nlm.nih.gov/pubmed/21248750
http://dx.doi.org/10.1038/nature09666
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author Zaidi, M. Raza
Davis, Sean
Noonan, Frances P.
Graff-Cherry, Cari
Hawley, Teresa S.
Walker, Robert L.
Feigenbaum, Lionel
Fuchs, Elaine
Lyakh, Lyudmila
Young, Howard A.
Hornyak, Thomas J.
Arnheiter, Heinz
Trinchieri, Giorgio
Meltzer, Paul S.
De Fabo, Edward C.
Merlino, Glenn
author_facet Zaidi, M. Raza
Davis, Sean
Noonan, Frances P.
Graff-Cherry, Cari
Hawley, Teresa S.
Walker, Robert L.
Feigenbaum, Lionel
Fuchs, Elaine
Lyakh, Lyudmila
Young, Howard A.
Hornyak, Thomas J.
Arnheiter, Heinz
Trinchieri, Giorgio
Meltzer, Paul S.
De Fabo, Edward C.
Merlino, Glenn
author_sort Zaidi, M. Raza
collection PubMed
description Cutaneous malignant melanoma is a highly aggressive and frequently chemoresistant cancer, whose incidence continues to rise. Epidemiological studies reveal that the major etiological melanoma risk factor is ultraviolet (UV) solar radiation, with the highest risk associated with intermittent burning doses, especially during childhood1,2. We have experimentally validated these epidemiological findings using the hepatocyte growth factor/scatter factor (HGF/SF) transgenic mouse model, which develops lesions in stages highly reminiscent of human melanoma with respect to biological, genetic and etiologic criteria, but only when irradiated as neonatal pups with UVB, not UVA3,4. However, mechanisms underlying UVB-initiated, neonatal-specific melanomagenesis remain largely unknown. Here we introduce a mouse model permitting fluorescence-aided melanocyte imaging and isolation following in vivo UV irradiation. We use expression profiling to show that activated neonatal skin melanocytes isolated following a melanomagenic UVB dose bear a distinct, persistent interferon response signature, including genes associated with immunoevasion. UVB-induced melanocyte activation, characterized by aberrant growth and migration, was abolished by antibody-mediated systemic blockade of interferon-γ (IFN-γ), but not type-I interferons. IFN-γ was produced by macrophages recruited to neonatal skin by UVB-induced ligands to the chemokine receptor Ccr2. Admixed recruited skin macrophages enhanced transplanted melanoma growth by inhibiting apoptosis; notably, IFN-γ blockade abolished macrophage-enhanced melanoma growth and survival. IFN-γ-producing macrophages were also identified in 70% of human melanomas examined. Our data reveal an unanticipated role for IFN-γ in promoting melanocytic cell survival/immunoevasion, and suggest that IFN-γ-R signaling represents a novel therapeutic melanoma target.
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spelling pubmed-31401012011-07-27 Interferon-γ links UV to melanocyte activation and promotes melanomagenesis Zaidi, M. Raza Davis, Sean Noonan, Frances P. Graff-Cherry, Cari Hawley, Teresa S. Walker, Robert L. Feigenbaum, Lionel Fuchs, Elaine Lyakh, Lyudmila Young, Howard A. Hornyak, Thomas J. Arnheiter, Heinz Trinchieri, Giorgio Meltzer, Paul S. De Fabo, Edward C. Merlino, Glenn Nature Article Cutaneous malignant melanoma is a highly aggressive and frequently chemoresistant cancer, whose incidence continues to rise. Epidemiological studies reveal that the major etiological melanoma risk factor is ultraviolet (UV) solar radiation, with the highest risk associated with intermittent burning doses, especially during childhood1,2. We have experimentally validated these epidemiological findings using the hepatocyte growth factor/scatter factor (HGF/SF) transgenic mouse model, which develops lesions in stages highly reminiscent of human melanoma with respect to biological, genetic and etiologic criteria, but only when irradiated as neonatal pups with UVB, not UVA3,4. However, mechanisms underlying UVB-initiated, neonatal-specific melanomagenesis remain largely unknown. Here we introduce a mouse model permitting fluorescence-aided melanocyte imaging and isolation following in vivo UV irradiation. We use expression profiling to show that activated neonatal skin melanocytes isolated following a melanomagenic UVB dose bear a distinct, persistent interferon response signature, including genes associated with immunoevasion. UVB-induced melanocyte activation, characterized by aberrant growth and migration, was abolished by antibody-mediated systemic blockade of interferon-γ (IFN-γ), but not type-I interferons. IFN-γ was produced by macrophages recruited to neonatal skin by UVB-induced ligands to the chemokine receptor Ccr2. Admixed recruited skin macrophages enhanced transplanted melanoma growth by inhibiting apoptosis; notably, IFN-γ blockade abolished macrophage-enhanced melanoma growth and survival. IFN-γ-producing macrophages were also identified in 70% of human melanomas examined. Our data reveal an unanticipated role for IFN-γ in promoting melanocytic cell survival/immunoevasion, and suggest that IFN-γ-R signaling represents a novel therapeutic melanoma target. 2011-01-19 2011-01-27 /pmc/articles/PMC3140101/ /pubmed/21248750 http://dx.doi.org/10.1038/nature09666 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Zaidi, M. Raza
Davis, Sean
Noonan, Frances P.
Graff-Cherry, Cari
Hawley, Teresa S.
Walker, Robert L.
Feigenbaum, Lionel
Fuchs, Elaine
Lyakh, Lyudmila
Young, Howard A.
Hornyak, Thomas J.
Arnheiter, Heinz
Trinchieri, Giorgio
Meltzer, Paul S.
De Fabo, Edward C.
Merlino, Glenn
Interferon-γ links UV to melanocyte activation and promotes melanomagenesis
title Interferon-γ links UV to melanocyte activation and promotes melanomagenesis
title_full Interferon-γ links UV to melanocyte activation and promotes melanomagenesis
title_fullStr Interferon-γ links UV to melanocyte activation and promotes melanomagenesis
title_full_unstemmed Interferon-γ links UV to melanocyte activation and promotes melanomagenesis
title_short Interferon-γ links UV to melanocyte activation and promotes melanomagenesis
title_sort interferon-γ links uv to melanocyte activation and promotes melanomagenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3140101/
https://www.ncbi.nlm.nih.gov/pubmed/21248750
http://dx.doi.org/10.1038/nature09666
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