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Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair

Smad4 loss occurs frequently in human skin squamous cell carcinoma (SCC), but it is unknown if this loss increases ultraviolet-induced (UV) carcinogenesis, a major etiological factor in skin cancer. In the present study, mice with keratinocyte-specific Smad4 deletion (K14.Smad4(−/−)) and wildtype (W...

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Autores principales: Mitra, Doyel, Fernandez, Pamela, Bian, Li, Song, Ningjing, Li, Fulun, Han, Gangwen, Wang, Xiao-Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3783584/
https://www.ncbi.nlm.nih.gov/pubmed/23648546
http://dx.doi.org/10.1038/jid.2013.213
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author Mitra, Doyel
Fernandez, Pamela
Bian, Li
Song, Ningjing
Li, Fulun
Han, Gangwen
Wang, Xiao-Jing
author_facet Mitra, Doyel
Fernandez, Pamela
Bian, Li
Song, Ningjing
Li, Fulun
Han, Gangwen
Wang, Xiao-Jing
author_sort Mitra, Doyel
collection PubMed
description Smad4 loss occurs frequently in human skin squamous cell carcinoma (SCC), but it is unknown if this loss increases ultraviolet-induced (UV) carcinogenesis, a major etiological factor in skin cancer. In the present study, mice with keratinocyte-specific Smad4 deletion (K14.Smad4(−/−)) and wildtype (WT) littermates were chronically UV-irradiated. Compared to WT, K14.Smad4(−/−) mice exhibited increased DNA damage and increased susceptibility to UV-induced skin cancer. Among genes involved in repairing UV-induced DNA damage, Excision repair cross-complementation group1 (Ercc1) mRNA was significantly reduced in UV treated K14.Smad4(−/−) skin compared to WT skin. Further analysis revealed that Smad4 loss confers reduced Snail binding to the Ercc1 regulatory elements, resulting in reduced Ercc1 transcription. Consistently, transient transfection of Snai1 into Smad4(−/−) keratinocytes led to increased repair of UV-induced DNA lesions. Transfection of Ercc1 into Smad4(−/−) keratinocytes restored repair of UV-induced DNA damage. Further, immunostaining revealed that the presence of Smad4 protein is associated with the presence of Snail and Ercc1 proteins in human skin SCC and precancerous actinic keratoses (AK). Collectively, Smad4 loss associated Snail reduction compromises Ercc1-mediated DNA repair, contributing to increased UV-induced skin carcinogenesis. Thus we identified a role for Snail in UV-induced DNA repair.
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spelling pubmed-37835842014-05-01 Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair Mitra, Doyel Fernandez, Pamela Bian, Li Song, Ningjing Li, Fulun Han, Gangwen Wang, Xiao-Jing J Invest Dermatol Article Smad4 loss occurs frequently in human skin squamous cell carcinoma (SCC), but it is unknown if this loss increases ultraviolet-induced (UV) carcinogenesis, a major etiological factor in skin cancer. In the present study, mice with keratinocyte-specific Smad4 deletion (K14.Smad4(−/−)) and wildtype (WT) littermates were chronically UV-irradiated. Compared to WT, K14.Smad4(−/−) mice exhibited increased DNA damage and increased susceptibility to UV-induced skin cancer. Among genes involved in repairing UV-induced DNA damage, Excision repair cross-complementation group1 (Ercc1) mRNA was significantly reduced in UV treated K14.Smad4(−/−) skin compared to WT skin. Further analysis revealed that Smad4 loss confers reduced Snail binding to the Ercc1 regulatory elements, resulting in reduced Ercc1 transcription. Consistently, transient transfection of Snai1 into Smad4(−/−) keratinocytes led to increased repair of UV-induced DNA lesions. Transfection of Ercc1 into Smad4(−/−) keratinocytes restored repair of UV-induced DNA damage. Further, immunostaining revealed that the presence of Smad4 protein is associated with the presence of Snail and Ercc1 proteins in human skin SCC and precancerous actinic keratoses (AK). Collectively, Smad4 loss associated Snail reduction compromises Ercc1-mediated DNA repair, contributing to increased UV-induced skin carcinogenesis. Thus we identified a role for Snail in UV-induced DNA repair. 2013-05-06 2013-11 /pmc/articles/PMC3783584/ /pubmed/23648546 http://dx.doi.org/10.1038/jid.2013.213 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download 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
Mitra, Doyel
Fernandez, Pamela
Bian, Li
Song, Ningjing
Li, Fulun
Han, Gangwen
Wang, Xiao-Jing
Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair
title Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair
title_full Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair
title_fullStr Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair
title_full_unstemmed Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair
title_short Smad4 loss in mouse keratinocytes leads to increased susceptibility to UV carcinogenesis with reduced Ercc1-mediated DNA repair
title_sort smad4 loss in mouse keratinocytes leads to increased susceptibility to uv carcinogenesis with reduced ercc1-mediated dna repair
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3783584/
https://www.ncbi.nlm.nih.gov/pubmed/23648546
http://dx.doi.org/10.1038/jid.2013.213
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