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New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration

The mortality rate for malignant melanoma (MM) is very high, since it is highly invasive and resistant to chemotherapeutic treatments. The modulation of some transcription factors affects cellular processes in MM. In particular, a higher expression of the osteogenic master gene RUNX2 has been report...

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Autores principales: Deiana, Michela, Dalle Carbonare, Luca, Serena, Michela, Cheri, Samuele, Parolini, Francesca, Gandini, Alberto, Marchetto, Giulia, Innamorati, Giulio, Manfredi, Marcello, Marengo, Emilio, Brandi, Jessica, Cecconi, Daniela, Mori, Antonio, Mina, Maria Mihaela, Antoniazzi, Franco, Mottes, Monica, Tiso, Natascia, Malerba, Giovanni, Zipeto, Donato, Valenti, Maria Teresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6262450/
https://www.ncbi.nlm.nih.gov/pubmed/30463392
http://dx.doi.org/10.3390/cells7110220
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author Deiana, Michela
Dalle Carbonare, Luca
Serena, Michela
Cheri, Samuele
Parolini, Francesca
Gandini, Alberto
Marchetto, Giulia
Innamorati, Giulio
Manfredi, Marcello
Marengo, Emilio
Brandi, Jessica
Cecconi, Daniela
Mori, Antonio
Mina, Maria Mihaela
Antoniazzi, Franco
Mottes, Monica
Tiso, Natascia
Malerba, Giovanni
Zipeto, Donato
Valenti, Maria Teresa
author_facet Deiana, Michela
Dalle Carbonare, Luca
Serena, Michela
Cheri, Samuele
Parolini, Francesca
Gandini, Alberto
Marchetto, Giulia
Innamorati, Giulio
Manfredi, Marcello
Marengo, Emilio
Brandi, Jessica
Cecconi, Daniela
Mori, Antonio
Mina, Maria Mihaela
Antoniazzi, Franco
Mottes, Monica
Tiso, Natascia
Malerba, Giovanni
Zipeto, Donato
Valenti, Maria Teresa
author_sort Deiana, Michela
collection PubMed
description The mortality rate for malignant melanoma (MM) is very high, since it is highly invasive and resistant to chemotherapeutic treatments. The modulation of some transcription factors affects cellular processes in MM. In particular, a higher expression of the osteogenic master gene RUNX2 has been reported in melanoma cells, compared to normal melanocytes. By analyzing public databases for recurrent RUNX2 genetic and epigenetic modifications in melanoma, we found that the most common RUNX2 genetic alteration that exists in transcription upregulation is, followed by genomic amplification, nucleotide substitution and multiple changes. Additionally, altered RUNX2 is involved in unchecked pathways promoting tumor progression, Epithelial Mesenchymal Transition (EMT), and metastasis. In order to investigate further the role of RUNX2 in melanoma development and to identify a therapeutic target, we applied the CRISPR/Cas9 technique to explore the role of the RUNT domain of RUNX2 in a melanoma cell line. RUNT-deleted cells showed reduced proliferation, increased apoptosis, and reduced EMT features, suggesting the involvement of the RUNT domain in different pathways. In addition, del-RUNT cells showed a downregulation of genes involved in migration ability. In an in vivo zebrafish model, we observed that wild-type melanoma cells migrated in 81% of transplanted fishes, while del-RUNT cells migrated in 58%. All these findings strongly suggest the involvement of the RUNT domain in melanoma metastasis and cell migration and indicate RUNX2 as a prospective target in MM therapy.
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spelling pubmed-62624502018-12-03 New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration Deiana, Michela Dalle Carbonare, Luca Serena, Michela Cheri, Samuele Parolini, Francesca Gandini, Alberto Marchetto, Giulia Innamorati, Giulio Manfredi, Marcello Marengo, Emilio Brandi, Jessica Cecconi, Daniela Mori, Antonio Mina, Maria Mihaela Antoniazzi, Franco Mottes, Monica Tiso, Natascia Malerba, Giovanni Zipeto, Donato Valenti, Maria Teresa Cells Article The mortality rate for malignant melanoma (MM) is very high, since it is highly invasive and resistant to chemotherapeutic treatments. The modulation of some transcription factors affects cellular processes in MM. In particular, a higher expression of the osteogenic master gene RUNX2 has been reported in melanoma cells, compared to normal melanocytes. By analyzing public databases for recurrent RUNX2 genetic and epigenetic modifications in melanoma, we found that the most common RUNX2 genetic alteration that exists in transcription upregulation is, followed by genomic amplification, nucleotide substitution and multiple changes. Additionally, altered RUNX2 is involved in unchecked pathways promoting tumor progression, Epithelial Mesenchymal Transition (EMT), and metastasis. In order to investigate further the role of RUNX2 in melanoma development and to identify a therapeutic target, we applied the CRISPR/Cas9 technique to explore the role of the RUNT domain of RUNX2 in a melanoma cell line. RUNT-deleted cells showed reduced proliferation, increased apoptosis, and reduced EMT features, suggesting the involvement of the RUNT domain in different pathways. In addition, del-RUNT cells showed a downregulation of genes involved in migration ability. In an in vivo zebrafish model, we observed that wild-type melanoma cells migrated in 81% of transplanted fishes, while del-RUNT cells migrated in 58%. All these findings strongly suggest the involvement of the RUNT domain in melanoma metastasis and cell migration and indicate RUNX2 as a prospective target in MM therapy. MDPI 2018-11-20 /pmc/articles/PMC6262450/ /pubmed/30463392 http://dx.doi.org/10.3390/cells7110220 Text en © 2018 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
Deiana, Michela
Dalle Carbonare, Luca
Serena, Michela
Cheri, Samuele
Parolini, Francesca
Gandini, Alberto
Marchetto, Giulia
Innamorati, Giulio
Manfredi, Marcello
Marengo, Emilio
Brandi, Jessica
Cecconi, Daniela
Mori, Antonio
Mina, Maria Mihaela
Antoniazzi, Franco
Mottes, Monica
Tiso, Natascia
Malerba, Giovanni
Zipeto, Donato
Valenti, Maria Teresa
New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration
title New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration
title_full New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration
title_fullStr New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration
title_full_unstemmed New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration
title_short New Insights into the Runt Domain of RUNX2 in Melanoma Cell Proliferation and Migration
title_sort new insights into the runt domain of runx2 in melanoma cell proliferation and migration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6262450/
https://www.ncbi.nlm.nih.gov/pubmed/30463392
http://dx.doi.org/10.3390/cells7110220
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