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Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis

Interferons (IFN) play a pivotal role in innate immunity, orchestrating a cell-intrinsic anti-pathogenic state and stimulating adaptive immune responses. The complex interplay between the primary response to IFNs and its modulation by positive and negative feedback loops is incompletely understood....

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Autores principales: Trilling, Mirko, Bellora, Nicolás, Rutkowski, Andrzej J., de Graaf, Miranda, Dickinson, Paul, Robertson, Kevin, Prazeres da Costa, Olivia, Ghazal, Peter, Friedel, Caroline C., Albà, M. Mar, Dölken, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3783172/
https://www.ncbi.nlm.nih.gov/pubmed/23832230
http://dx.doi.org/10.1093/nar/gkt589
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author Trilling, Mirko
Bellora, Nicolás
Rutkowski, Andrzej J.
de Graaf, Miranda
Dickinson, Paul
Robertson, Kevin
Prazeres da Costa, Olivia
Ghazal, Peter
Friedel, Caroline C.
Albà, M. Mar
Dölken, Lars
author_facet Trilling, Mirko
Bellora, Nicolás
Rutkowski, Andrzej J.
de Graaf, Miranda
Dickinson, Paul
Robertson, Kevin
Prazeres da Costa, Olivia
Ghazal, Peter
Friedel, Caroline C.
Albà, M. Mar
Dölken, Lars
author_sort Trilling, Mirko
collection PubMed
description Interferons (IFN) play a pivotal role in innate immunity, orchestrating a cell-intrinsic anti-pathogenic state and stimulating adaptive immune responses. The complex interplay between the primary response to IFNs and its modulation by positive and negative feedback loops is incompletely understood. Here, we implement the combination of high-resolution gene-expression profiling of nascent RNA with translational inhibition of secondary feedback by cycloheximide. Unexpectedly, this approach revealed a prominent role of negative feedback mechanisms during the immediate (≤60 min) IFNα response. In contrast, a more complex picture involving both negative and positive feedback loops was observed on IFNγ treatment. IFNγ-induced repression of genes associated with regulation of gene expression, cellular development, apoptosis and cell growth resulted from cycloheximide-resistant primary IFNγ signalling. In silico promoter analysis revealed significant overrepresentation of SP1/SP3-binding sites and/or GC-rich stretches. Although signal transducer and activator of transcription 1 (STAT1)-binding sites were not overrepresented, repression was lost in absence of STAT1. Interestingly, basal expression of the majority of these IFNγ-repressed genes was dependent on STAT1 in IFN-naïve fibroblasts. Finally, IFNγ-mediated repression was also found to be evident in primary murine macrophages. IFN-repressed genes include negative regulators of innate and stress response, and their decrease may thus aid the establishment of a signalling perceptive milieu.
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spelling pubmed-37831722013-09-30 Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis Trilling, Mirko Bellora, Nicolás Rutkowski, Andrzej J. de Graaf, Miranda Dickinson, Paul Robertson, Kevin Prazeres da Costa, Olivia Ghazal, Peter Friedel, Caroline C. Albà, M. Mar Dölken, Lars Nucleic Acids Res Gene Regulation, Chromatin and Epigenetics Interferons (IFN) play a pivotal role in innate immunity, orchestrating a cell-intrinsic anti-pathogenic state and stimulating adaptive immune responses. The complex interplay between the primary response to IFNs and its modulation by positive and negative feedback loops is incompletely understood. Here, we implement the combination of high-resolution gene-expression profiling of nascent RNA with translational inhibition of secondary feedback by cycloheximide. Unexpectedly, this approach revealed a prominent role of negative feedback mechanisms during the immediate (≤60 min) IFNα response. In contrast, a more complex picture involving both negative and positive feedback loops was observed on IFNγ treatment. IFNγ-induced repression of genes associated with regulation of gene expression, cellular development, apoptosis and cell growth resulted from cycloheximide-resistant primary IFNγ signalling. In silico promoter analysis revealed significant overrepresentation of SP1/SP3-binding sites and/or GC-rich stretches. Although signal transducer and activator of transcription 1 (STAT1)-binding sites were not overrepresented, repression was lost in absence of STAT1. Interestingly, basal expression of the majority of these IFNγ-repressed genes was dependent on STAT1 in IFN-naïve fibroblasts. Finally, IFNγ-mediated repression was also found to be evident in primary murine macrophages. IFN-repressed genes include negative regulators of innate and stress response, and their decrease may thus aid the establishment of a signalling perceptive milieu. Oxford University Press 2013-09 2013-07-05 /pmc/articles/PMC3783172/ /pubmed/23832230 http://dx.doi.org/10.1093/nar/gkt589 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Gene Regulation, Chromatin and Epigenetics
Trilling, Mirko
Bellora, Nicolás
Rutkowski, Andrzej J.
de Graaf, Miranda
Dickinson, Paul
Robertson, Kevin
Prazeres da Costa, Olivia
Ghazal, Peter
Friedel, Caroline C.
Albà, M. Mar
Dölken, Lars
Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis
title Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis
title_full Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis
title_fullStr Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis
title_full_unstemmed Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis
title_short Deciphering the modulation of gene expression by type I and II interferons combining 4sU-tagging, translational arrest and in silico promoter analysis
title_sort deciphering the modulation of gene expression by type i and ii interferons combining 4su-tagging, translational arrest and in silico promoter analysis
topic Gene Regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3783172/
https://www.ncbi.nlm.nih.gov/pubmed/23832230
http://dx.doi.org/10.1093/nar/gkt589
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