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Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation

DNA repair inhibition has been described as an essential event leading to the initiation of carcinogenesis. In a previous study, we observed that the exposure to metal mixture induces changes in the miR-nome of the cells that was correlated with the sub-expression of mRNA involved in processes and d...

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Autores principales: Rojas, Emilio, Martinez-Pacheco, Monica, Rodriguez-Sastre, Maria Alexandra, Ramos-Espinosa, Paulina, Valverde, Mahara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6953820/
https://www.ncbi.nlm.nih.gov/pubmed/31923208
http://dx.doi.org/10.1371/journal.pone.0221681
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author Rojas, Emilio
Martinez-Pacheco, Monica
Rodriguez-Sastre, Maria Alexandra
Ramos-Espinosa, Paulina
Valverde, Mahara
author_facet Rojas, Emilio
Martinez-Pacheco, Monica
Rodriguez-Sastre, Maria Alexandra
Ramos-Espinosa, Paulina
Valverde, Mahara
author_sort Rojas, Emilio
collection PubMed
description DNA repair inhibition has been described as an essential event leading to the initiation of carcinogenesis. In a previous study, we observed that the exposure to metal mixture induces changes in the miR-nome of the cells that was correlated with the sub-expression of mRNA involved in processes and diseases associated with metal exposure. From this analysis, one of the miRNAs that shows changes in its expression is miR-222, which is overexpressed in various cancers associated with exposure to metals. In silico studies showed that a possible target for the microRNA-222 could be Rad 51c, a gene involved in the double-stranded DNA repair. We could appreciate that up-regulation of miR-222 reduces the expression both gene and as a protein expression of Rad51c by RT-PCR and immunoblot, respectively. A luciferase assay was performed to validate Rad51c as miR-222 target. Neutral comet assay was performed in order to evaluate DNA double-strand breaks under experimental conditions. Here, we demonstrate that miR-222 up-regulation, directly regulates Rad51c expression negatively, and impairs homologous recombination of double-strand break DNA repair during the initiation stage of cell transformation. This inhibition triggers morphological transformation in a two-stage Balb/c 3T3 cell assay, suggesting that this small RNA acts as an initiator of the carcinogenesis process.
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spelling pubmed-69538202020-01-21 Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation Rojas, Emilio Martinez-Pacheco, Monica Rodriguez-Sastre, Maria Alexandra Ramos-Espinosa, Paulina Valverde, Mahara PLoS One Research Article DNA repair inhibition has been described as an essential event leading to the initiation of carcinogenesis. In a previous study, we observed that the exposure to metal mixture induces changes in the miR-nome of the cells that was correlated with the sub-expression of mRNA involved in processes and diseases associated with metal exposure. From this analysis, one of the miRNAs that shows changes in its expression is miR-222, which is overexpressed in various cancers associated with exposure to metals. In silico studies showed that a possible target for the microRNA-222 could be Rad 51c, a gene involved in the double-stranded DNA repair. We could appreciate that up-regulation of miR-222 reduces the expression both gene and as a protein expression of Rad51c by RT-PCR and immunoblot, respectively. A luciferase assay was performed to validate Rad51c as miR-222 target. Neutral comet assay was performed in order to evaluate DNA double-strand breaks under experimental conditions. Here, we demonstrate that miR-222 up-regulation, directly regulates Rad51c expression negatively, and impairs homologous recombination of double-strand break DNA repair during the initiation stage of cell transformation. This inhibition triggers morphological transformation in a two-stage Balb/c 3T3 cell assay, suggesting that this small RNA acts as an initiator of the carcinogenesis process. Public Library of Science 2020-01-10 /pmc/articles/PMC6953820/ /pubmed/31923208 http://dx.doi.org/10.1371/journal.pone.0221681 Text en © 2020 Rojas et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rojas, Emilio
Martinez-Pacheco, Monica
Rodriguez-Sastre, Maria Alexandra
Ramos-Espinosa, Paulina
Valverde, Mahara
Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation
title Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation
title_full Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation
title_fullStr Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation
title_full_unstemmed Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation
title_short Post-transcriptional regulation of Rad51c by miR-222 contributes cellular transformation
title_sort post-transcriptional regulation of rad51c by mir-222 contributes cellular transformation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6953820/
https://www.ncbi.nlm.nih.gov/pubmed/31923208
http://dx.doi.org/10.1371/journal.pone.0221681
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