New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.

5-Fluorouracil (5FU) is a chemotherapeutic drug widely used in treating a range of advanced, solid tumours and, in particular, colorectal cancer. Here, we used high-density tiling DNA microarray technology to obtain the specific transcriptome-wide response induced by 5FU in the eukaryotic model Schi...

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Main Authors: Laura Mojardín, Javier Botet, Luis Quintales, Sergio Moreno, Margarita Salas
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3815194?pdf=render
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spelling doaj-76c186fafc6f48eea1675c94ac3b8e912020-11-25T01:11:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e7817210.1371/journal.pone.0078172New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.Laura MojardínJavier BotetLuis QuintalesSergio MorenoMargarita Salas5-Fluorouracil (5FU) is a chemotherapeutic drug widely used in treating a range of advanced, solid tumours and, in particular, colorectal cancer. Here, we used high-density tiling DNA microarray technology to obtain the specific transcriptome-wide response induced by 5FU in the eukaryotic model Schizosaccharomyces pombe. This approach combined with real-time quantitative PCR analysis allowed us to detect splicing defects of a significant number of intron-containing mRNA, in addition to identify some rRNA and tRNA processing defects after 5FU treatment. Interestingly, our studies also revealed that 5FU specifically induced the expression of certain genes implicated in the processing of mRNA, tRNA and rRNA precursors, and in the post-transcriptional modification of uracil residues in RNA. The transcription of several tRNA genes was also significantly induced after drug exposure. These transcriptional changes might represent a cellular response mechanism to counteract 5FU damage since deletion strains for some of these up-regulated genes were hypersensitive to 5FU. Moreover, most of these RNA processing genes have human orthologs that participate in conserved pathways, suggesting that they could be novel targets to improve the efficacy of 5FU-based treatments.http://europepmc.org/articles/PMC3815194?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Laura Mojardín
Javier Botet
Luis Quintales
Sergio Moreno
Margarita Salas
spellingShingle Laura Mojardín
Javier Botet
Luis Quintales
Sergio Moreno
Margarita Salas
New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
PLoS ONE
author_facet Laura Mojardín
Javier Botet
Luis Quintales
Sergio Moreno
Margarita Salas
author_sort Laura Mojardín
title New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
title_short New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
title_full New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
title_fullStr New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
title_full_unstemmed New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
title_sort new insights into the rna-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description 5-Fluorouracil (5FU) is a chemotherapeutic drug widely used in treating a range of advanced, solid tumours and, in particular, colorectal cancer. Here, we used high-density tiling DNA microarray technology to obtain the specific transcriptome-wide response induced by 5FU in the eukaryotic model Schizosaccharomyces pombe. This approach combined with real-time quantitative PCR analysis allowed us to detect splicing defects of a significant number of intron-containing mRNA, in addition to identify some rRNA and tRNA processing defects after 5FU treatment. Interestingly, our studies also revealed that 5FU specifically induced the expression of certain genes implicated in the processing of mRNA, tRNA and rRNA precursors, and in the post-transcriptional modification of uracil residues in RNA. The transcription of several tRNA genes was also significantly induced after drug exposure. These transcriptional changes might represent a cellular response mechanism to counteract 5FU damage since deletion strains for some of these up-regulated genes were hypersensitive to 5FU. Moreover, most of these RNA processing genes have human orthologs that participate in conserved pathways, suggesting that they could be novel targets to improve the efficacy of 5FU-based treatments.
url http://europepmc.org/articles/PMC3815194?pdf=render
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