Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.

Most of the somatic cells of adult metazoans, including mammals, do not undergo continuous cycles of replication. Instead, they are quiescent and devote most of their metabolic activity to gene expression. The mutagenic consequences of exposure to DNA-damaging agents are well documented, but less is...

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Main Authors: Damien Brégeon, Paul-Antoine Peignon, Alain Sarasin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-07-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC2708909?pdf=render
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spelling doaj-dfbb324b0664483799d1ffb1abfc07242020-11-25T01:32:48ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042009-07-0157e100057710.1371/journal.pgen.1000577Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.Damien BrégeonPaul-Antoine PeignonAlain SarasinMost of the somatic cells of adult metazoans, including mammals, do not undergo continuous cycles of replication. Instead, they are quiescent and devote most of their metabolic activity to gene expression. The mutagenic consequences of exposure to DNA-damaging agents are well documented, but less is known about the impact of DNA lesions on transcription. To investigate this impact, we developed a luciferase-based expression system. This system consists of two types of construct composed of a DNA template containing an 8-oxoguanine, paired either with a thymine or a cytosine, placed at defined positions along the transcribed strand of the reporter gene. Analyses of luciferase gene expression from the two types of construct showed that efficient but error-prone transcriptional bypass of 8-oxoguanine occurred in vivo, and that this lesion was not repaired by the transcription-coupled repair machinery in mammalian cells. The analysis of luciferase activity expressed from 8OG:T-containing constructs indicated that the magnitude of erroneous transcription events involving 8-oxoguanine depended on the sequence contexts surrounding the lesion. Additionally, sequencing of the transcript population expressed from these constructs showed that RNA polymerase II mostly inserted an adenine opposite to 8-oxoguanine. Analysis of luciferase expression from 8OG:C-containing constructs showed that the generated aberrant mRNAs led to the production of mutant proteins with the potential to induce a long-term phenotypical change. These findings reveal that erroneous transcription over DNA lesions may induce phenotypical changes with the potential to alter the fate of non-replicating cells.http://europepmc.org/articles/PMC2708909?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Damien Brégeon
Paul-Antoine Peignon
Alain Sarasin
spellingShingle Damien Brégeon
Paul-Antoine Peignon
Alain Sarasin
Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
PLoS Genetics
author_facet Damien Brégeon
Paul-Antoine Peignon
Alain Sarasin
author_sort Damien Brégeon
title Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
title_short Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
title_full Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
title_fullStr Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
title_full_unstemmed Transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
title_sort transcriptional mutagenesis induced by 8-oxoguanine in mammalian cells.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2009-07-01
description Most of the somatic cells of adult metazoans, including mammals, do not undergo continuous cycles of replication. Instead, they are quiescent and devote most of their metabolic activity to gene expression. The mutagenic consequences of exposure to DNA-damaging agents are well documented, but less is known about the impact of DNA lesions on transcription. To investigate this impact, we developed a luciferase-based expression system. This system consists of two types of construct composed of a DNA template containing an 8-oxoguanine, paired either with a thymine or a cytosine, placed at defined positions along the transcribed strand of the reporter gene. Analyses of luciferase gene expression from the two types of construct showed that efficient but error-prone transcriptional bypass of 8-oxoguanine occurred in vivo, and that this lesion was not repaired by the transcription-coupled repair machinery in mammalian cells. The analysis of luciferase activity expressed from 8OG:T-containing constructs indicated that the magnitude of erroneous transcription events involving 8-oxoguanine depended on the sequence contexts surrounding the lesion. Additionally, sequencing of the transcript population expressed from these constructs showed that RNA polymerase II mostly inserted an adenine opposite to 8-oxoguanine. Analysis of luciferase expression from 8OG:C-containing constructs showed that the generated aberrant mRNAs led to the production of mutant proteins with the potential to induce a long-term phenotypical change. These findings reveal that erroneous transcription over DNA lesions may induce phenotypical changes with the potential to alter the fate of non-replicating cells.
url http://europepmc.org/articles/PMC2708909?pdf=render
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AT paulantoinepeignon transcriptionalmutagenesisinducedby8oxoguanineinmammaliancells
AT alainsarasin transcriptionalmutagenesisinducedby8oxoguanineinmammaliancells
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