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Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors

We reported that knockdown of the antisense noncoding mitochondrial RNAs (ASncmtRNAs) induces apoptotic death of several human tumor cell lines, but not normal cells, suggesting this approach for selective therapy against different types of cancer. In order to translate these results to a preclinica...

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Autores principales: Lobos-González, Lorena, Silva, Verónica, Araya, Mariela, Restovic, Franko, Echenique, Javiera, Oliveira-Cruz, Luciana, Fitzpatrick, Christopher, Briones, Macarena, Villegas, Jaime, Villota, Claudio, Vidaurre, Soledad, Borgna, Vincenzo, Socias, Miguel, Valenzuela, Sebastián, Lopez, Constanza, Socias, Teresa, Varas, Manuel, Díaz, Jorge, Burzio, Luis O., Burzio, Verónica A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5295434/
https://www.ncbi.nlm.nih.gov/pubmed/27507060
http://dx.doi.org/10.18632/oncotarget.11110
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author Lobos-González, Lorena
Silva, Verónica
Araya, Mariela
Restovic, Franko
Echenique, Javiera
Oliveira-Cruz, Luciana
Fitzpatrick, Christopher
Briones, Macarena
Villegas, Jaime
Villota, Claudio
Vidaurre, Soledad
Borgna, Vincenzo
Socias, Miguel
Valenzuela, Sebastián
Lopez, Constanza
Socias, Teresa
Varas, Manuel
Díaz, Jorge
Burzio, Luis O.
Burzio, Verónica A.
author_facet Lobos-González, Lorena
Silva, Verónica
Araya, Mariela
Restovic, Franko
Echenique, Javiera
Oliveira-Cruz, Luciana
Fitzpatrick, Christopher
Briones, Macarena
Villegas, Jaime
Villota, Claudio
Vidaurre, Soledad
Borgna, Vincenzo
Socias, Miguel
Valenzuela, Sebastián
Lopez, Constanza
Socias, Teresa
Varas, Manuel
Díaz, Jorge
Burzio, Luis O.
Burzio, Verónica A.
author_sort Lobos-González, Lorena
collection PubMed
description We reported that knockdown of the antisense noncoding mitochondrial RNAs (ASncmtRNAs) induces apoptotic death of several human tumor cell lines, but not normal cells, suggesting this approach for selective therapy against different types of cancer. In order to translate these results to a preclinical scenario, we characterized the murine noncoding mitochondrial RNAs (ncmtRNAs) and performed in vivo knockdown in syngeneic murine melanoma models. Mouse ncmtRNAs display structures similar to the human counterparts, including long double-stranded regions arising from the presence of inverted repeats. Knockdown of ASncmtRNAs with specific antisense oligonucleotides (ASO) reduces murine melanoma B16F10 cell proliferation and induces apoptosis in vitro through downregulation of pro-survival and metastasis markers, particularly survivin. For in vivo studies, subcutaneous B16F10 melanoma tumors in C57BL/6 mice were treated systemically with specific and control antisense oligonucleotides (ASO). For metastasis studies, tumors were resected, followed by systemic administration of ASOs and the presence of metastatic nodules in lungs and liver was assessed. Treatment with specific ASO inhibited tumor growth and metastasis after primary tumor resection. In a metastasis-only assay, mice inoculated intravenously with cells and treated with the same ASO displayed reduced number and size of melanoma nodules in the lungs, compared to controls. Our results suggest that ASncmtRNAs could be potent targets for melanoma therapy. To our knowledge, the ASncmtRNAs are the first potential non-nuclear targets for melanoma therapy.
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spelling pubmed-52954342017-02-08 Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors Lobos-González, Lorena Silva, Verónica Araya, Mariela Restovic, Franko Echenique, Javiera Oliveira-Cruz, Luciana Fitzpatrick, Christopher Briones, Macarena Villegas, Jaime Villota, Claudio Vidaurre, Soledad Borgna, Vincenzo Socias, Miguel Valenzuela, Sebastián Lopez, Constanza Socias, Teresa Varas, Manuel Díaz, Jorge Burzio, Luis O. Burzio, Verónica A. Oncotarget Research Paper We reported that knockdown of the antisense noncoding mitochondrial RNAs (ASncmtRNAs) induces apoptotic death of several human tumor cell lines, but not normal cells, suggesting this approach for selective therapy against different types of cancer. In order to translate these results to a preclinical scenario, we characterized the murine noncoding mitochondrial RNAs (ncmtRNAs) and performed in vivo knockdown in syngeneic murine melanoma models. Mouse ncmtRNAs display structures similar to the human counterparts, including long double-stranded regions arising from the presence of inverted repeats. Knockdown of ASncmtRNAs with specific antisense oligonucleotides (ASO) reduces murine melanoma B16F10 cell proliferation and induces apoptosis in vitro through downregulation of pro-survival and metastasis markers, particularly survivin. For in vivo studies, subcutaneous B16F10 melanoma tumors in C57BL/6 mice were treated systemically with specific and control antisense oligonucleotides (ASO). For metastasis studies, tumors were resected, followed by systemic administration of ASOs and the presence of metastatic nodules in lungs and liver was assessed. Treatment with specific ASO inhibited tumor growth and metastasis after primary tumor resection. In a metastasis-only assay, mice inoculated intravenously with cells and treated with the same ASO displayed reduced number and size of melanoma nodules in the lungs, compared to controls. Our results suggest that ASncmtRNAs could be potent targets for melanoma therapy. To our knowledge, the ASncmtRNAs are the first potential non-nuclear targets for melanoma therapy. Impact Journals LLC 2016-08-06 /pmc/articles/PMC5295434/ /pubmed/27507060 http://dx.doi.org/10.18632/oncotarget.11110 Text en Copyright: © 2016 Lobos-González et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Lobos-González, Lorena
Silva, Verónica
Araya, Mariela
Restovic, Franko
Echenique, Javiera
Oliveira-Cruz, Luciana
Fitzpatrick, Christopher
Briones, Macarena
Villegas, Jaime
Villota, Claudio
Vidaurre, Soledad
Borgna, Vincenzo
Socias, Miguel
Valenzuela, Sebastián
Lopez, Constanza
Socias, Teresa
Varas, Manuel
Díaz, Jorge
Burzio, Luis O.
Burzio, Verónica A.
Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
title Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
title_full Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
title_fullStr Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
title_full_unstemmed Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
title_short Targeting antisense mitochondrial ncRNAs inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
title_sort targeting antisense mitochondrial ncrnas inhibits murine melanoma tumor growth and metastasis through reduction in survival and invasion factors
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5295434/
https://www.ncbi.nlm.nih.gov/pubmed/27507060
http://dx.doi.org/10.18632/oncotarget.11110
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