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Discovering the miR-26a-5p Targetome in Prostate Cancer Cells

Purpose. miR-26a-5p is a tumor suppressor (TS) miRNA often downregulated in several tumor tissues and tumor cell lines. In this work, we performed the re-expression of the miR-26a-5p in DU-145 prostate cancer cells to collect genes interacting with miR-26a-5p and analyzed their integration in the tu...

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Autores principales: Rizzo, Milena, Berti, Gabriele, Russo, Francesco, Fazio, Sofia, Evangelista, Monica, D'Aurizio, Romina, Pellegrini, Marco, Rainaldi, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5604205/
https://www.ncbi.nlm.nih.gov/pubmed/28928862
http://dx.doi.org/10.7150/jca.18396
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author Rizzo, Milena
Berti, Gabriele
Russo, Francesco
Fazio, Sofia
Evangelista, Monica
D'Aurizio, Romina
Pellegrini, Marco
Rainaldi, Giuseppe
author_facet Rizzo, Milena
Berti, Gabriele
Russo, Francesco
Fazio, Sofia
Evangelista, Monica
D'Aurizio, Romina
Pellegrini, Marco
Rainaldi, Giuseppe
author_sort Rizzo, Milena
collection PubMed
description Purpose. miR-26a-5p is a tumor suppressor (TS) miRNA often downregulated in several tumor tissues and tumor cell lines. In this work, we performed the re-expression of the miR-26a-5p in DU-145 prostate cancer cells to collect genes interacting with miR-26a-5p and analyzed their integration in the tumorigenesis related pathways. Methods. The transfection of DU-145 prostate cancer cells with miR-26a-5p was done using nucleofection. The biological effects induced by miR-26a-5p re-expression were detected with routine assays for cell proliferation, cell cycle, survival, apoptosis and cell migration. The miRNA pull out technique was used to collect and next generation sequencing to identify the complete repertoire of the miR-26a-5p targets (miR-26a-5p/targetome). TargetScan 7, PITA and RNA22 were used to find the predicted miR-26a-5p targets in the miR-26a-5p/targetome. Gene set enrichment analysis were used to integrate target genes in KEGG pathways and Protein-Protein Interaction networks (PPINs) and modules were built. Results. miR-26a-5p exerted an anti-proliferative effect acting at several levels, by decreasing survival and migration and inducing both cell cycle block and apoptosis. The analysis of the miR-26a-5p/targetome showed that 1423 (1352 coding and 71 non-coding) transcripts interacted with miR-26a-5p. Filtering the miR-26a-5p/targetome with prediction algorithms, 628 out of 1353 transcripts were miR-26a-5p predicted targets and 73 of them were already validated miR-26a-5p targets. Finally, miR-26a-5p targets were involved in 22 KEGG pathways and 20 significant protein-protein interaction modules Conclusion. The TS-miR-26a-5p/targetome is a platform that shows both unknown and known miRNA/target interactions thus offering the possibility to validate genes and discover pathways in which these genes could be involved.
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spelling pubmed-56042052017-09-19 Discovering the miR-26a-5p Targetome in Prostate Cancer Cells Rizzo, Milena Berti, Gabriele Russo, Francesco Fazio, Sofia Evangelista, Monica D'Aurizio, Romina Pellegrini, Marco Rainaldi, Giuseppe J Cancer Research Paper Purpose. miR-26a-5p is a tumor suppressor (TS) miRNA often downregulated in several tumor tissues and tumor cell lines. In this work, we performed the re-expression of the miR-26a-5p in DU-145 prostate cancer cells to collect genes interacting with miR-26a-5p and analyzed their integration in the tumorigenesis related pathways. Methods. The transfection of DU-145 prostate cancer cells with miR-26a-5p was done using nucleofection. The biological effects induced by miR-26a-5p re-expression were detected with routine assays for cell proliferation, cell cycle, survival, apoptosis and cell migration. The miRNA pull out technique was used to collect and next generation sequencing to identify the complete repertoire of the miR-26a-5p targets (miR-26a-5p/targetome). TargetScan 7, PITA and RNA22 were used to find the predicted miR-26a-5p targets in the miR-26a-5p/targetome. Gene set enrichment analysis were used to integrate target genes in KEGG pathways and Protein-Protein Interaction networks (PPINs) and modules were built. Results. miR-26a-5p exerted an anti-proliferative effect acting at several levels, by decreasing survival and migration and inducing both cell cycle block and apoptosis. The analysis of the miR-26a-5p/targetome showed that 1423 (1352 coding and 71 non-coding) transcripts interacted with miR-26a-5p. Filtering the miR-26a-5p/targetome with prediction algorithms, 628 out of 1353 transcripts were miR-26a-5p predicted targets and 73 of them were already validated miR-26a-5p targets. Finally, miR-26a-5p targets were involved in 22 KEGG pathways and 20 significant protein-protein interaction modules Conclusion. The TS-miR-26a-5p/targetome is a platform that shows both unknown and known miRNA/target interactions thus offering the possibility to validate genes and discover pathways in which these genes could be involved. Ivyspring International Publisher 2017-08-22 /pmc/articles/PMC5604205/ /pubmed/28928862 http://dx.doi.org/10.7150/jca.18396 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Rizzo, Milena
Berti, Gabriele
Russo, Francesco
Fazio, Sofia
Evangelista, Monica
D'Aurizio, Romina
Pellegrini, Marco
Rainaldi, Giuseppe
Discovering the miR-26a-5p Targetome in Prostate Cancer Cells
title Discovering the miR-26a-5p Targetome in Prostate Cancer Cells
title_full Discovering the miR-26a-5p Targetome in Prostate Cancer Cells
title_fullStr Discovering the miR-26a-5p Targetome in Prostate Cancer Cells
title_full_unstemmed Discovering the miR-26a-5p Targetome in Prostate Cancer Cells
title_short Discovering the miR-26a-5p Targetome in Prostate Cancer Cells
title_sort discovering the mir-26a-5p targetome in prostate cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5604205/
https://www.ncbi.nlm.nih.gov/pubmed/28928862
http://dx.doi.org/10.7150/jca.18396
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