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A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting

Live-cell imaging has revealed unexpected features of gene expression. Here using improved single-molecule RNA microscopy, we show that synthesis of HIV-1 RNA is achieved by groups of closely spaced polymerases, termed convoys, as opposed to single isolated enzymes. Convoys arise by a Mediator-depen...

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Autores principales: Tantale, Katjana, Mueller, Florian, Kozulic-Pirher, Alja, Lesne, Annick, Victor, Jean-Marc, Robert, Marie-Cécile, Capozi, Serena, Chouaib, Racha, Bäcker, Volker, Mateos-Langerak, Julio, Darzacq, Xavier, Zimmer, Christophe, Basyuk, Eugenia, Bertrand, Edouard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974459/
https://www.ncbi.nlm.nih.gov/pubmed/27461529
http://dx.doi.org/10.1038/ncomms12248
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author Tantale, Katjana
Mueller, Florian
Kozulic-Pirher, Alja
Lesne, Annick
Victor, Jean-Marc
Robert, Marie-Cécile
Capozi, Serena
Chouaib, Racha
Bäcker, Volker
Mateos-Langerak, Julio
Darzacq, Xavier
Zimmer, Christophe
Basyuk, Eugenia
Bertrand, Edouard
author_facet Tantale, Katjana
Mueller, Florian
Kozulic-Pirher, Alja
Lesne, Annick
Victor, Jean-Marc
Robert, Marie-Cécile
Capozi, Serena
Chouaib, Racha
Bäcker, Volker
Mateos-Langerak, Julio
Darzacq, Xavier
Zimmer, Christophe
Basyuk, Eugenia
Bertrand, Edouard
author_sort Tantale, Katjana
collection PubMed
description Live-cell imaging has revealed unexpected features of gene expression. Here using improved single-molecule RNA microscopy, we show that synthesis of HIV-1 RNA is achieved by groups of closely spaced polymerases, termed convoys, as opposed to single isolated enzymes. Convoys arise by a Mediator-dependent reinitiation mechanism, which generates a transient but rapid succession of polymerases initiating and escaping the promoter. During elongation, polymerases are spaced by few hundred nucleotides, and physical modelling suggests that DNA torsional stress may maintain polymerase spacing. We additionally observe that the HIV-1 promoter displays stochastic fluctuations on two time scales, which we refer to as multi-scale bursting. Each time scale is regulated independently: Mediator controls minute-scale fluctuation (convoys), while TBP-TATA-box interaction controls sub-hour fluctuations (long permissive/non-permissive periods). A cellular promoter also produces polymerase convoys and displays multi-scale bursting. We propose that slow, TBP-dependent fluctuations are important for phenotypic variability of single cells.
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spelling pubmed-49744592016-08-18 A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting Tantale, Katjana Mueller, Florian Kozulic-Pirher, Alja Lesne, Annick Victor, Jean-Marc Robert, Marie-Cécile Capozi, Serena Chouaib, Racha Bäcker, Volker Mateos-Langerak, Julio Darzacq, Xavier Zimmer, Christophe Basyuk, Eugenia Bertrand, Edouard Nat Commun Article Live-cell imaging has revealed unexpected features of gene expression. Here using improved single-molecule RNA microscopy, we show that synthesis of HIV-1 RNA is achieved by groups of closely spaced polymerases, termed convoys, as opposed to single isolated enzymes. Convoys arise by a Mediator-dependent reinitiation mechanism, which generates a transient but rapid succession of polymerases initiating and escaping the promoter. During elongation, polymerases are spaced by few hundred nucleotides, and physical modelling suggests that DNA torsional stress may maintain polymerase spacing. We additionally observe that the HIV-1 promoter displays stochastic fluctuations on two time scales, which we refer to as multi-scale bursting. Each time scale is regulated independently: Mediator controls minute-scale fluctuation (convoys), while TBP-TATA-box interaction controls sub-hour fluctuations (long permissive/non-permissive periods). A cellular promoter also produces polymerase convoys and displays multi-scale bursting. We propose that slow, TBP-dependent fluctuations are important for phenotypic variability of single cells. Nature Publishing Group 2016-07-27 /pmc/articles/PMC4974459/ /pubmed/27461529 http://dx.doi.org/10.1038/ncomms12248 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Tantale, Katjana
Mueller, Florian
Kozulic-Pirher, Alja
Lesne, Annick
Victor, Jean-Marc
Robert, Marie-Cécile
Capozi, Serena
Chouaib, Racha
Bäcker, Volker
Mateos-Langerak, Julio
Darzacq, Xavier
Zimmer, Christophe
Basyuk, Eugenia
Bertrand, Edouard
A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting
title A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting
title_full A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting
title_fullStr A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting
title_full_unstemmed A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting
title_short A single-molecule view of transcription reveals convoys of RNA polymerases and multi-scale bursting
title_sort single-molecule view of transcription reveals convoys of rna polymerases and multi-scale bursting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974459/
https://www.ncbi.nlm.nih.gov/pubmed/27461529
http://dx.doi.org/10.1038/ncomms12248
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