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Dynamic enhancer–gene body contacts during transcription elongation

Enhancers govern transcription through multiple mechanisms, including the regulation of elongation by RNA polymerase II (RNAPII). We characterized the dynamics of looped enhancer contacts during synchronous transcription elongation. We found that many distal enhancers form stable contacts with their...

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Detalles Bibliográficos
Autores principales: Lee, Kiwon, Hsiung, Chris C.-S., Huang, Peng, Raj, Arjun, Blobel, Gerd A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4604340/
https://www.ncbi.nlm.nih.gov/pubmed/26443845
http://dx.doi.org/10.1101/gad.255265.114
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author Lee, Kiwon
Hsiung, Chris C.-S.
Huang, Peng
Raj, Arjun
Blobel, Gerd A.
author_facet Lee, Kiwon
Hsiung, Chris C.-S.
Huang, Peng
Raj, Arjun
Blobel, Gerd A.
author_sort Lee, Kiwon
collection PubMed
description Enhancers govern transcription through multiple mechanisms, including the regulation of elongation by RNA polymerase II (RNAPII). We characterized the dynamics of looped enhancer contacts during synchronous transcription elongation. We found that many distal enhancers form stable contacts with their target promoters during the entire interval of elongation. Notably, we detected additional dynamic enhancer contacts throughout the gene bodies that track with elongating RNAPII and the leading edge of RNA synthesis. These results support a model in which the gene body changes its position relative to a stable enhancer–promoter complex, which has broad ramifications for enhancer function and architectural models of transcriptional elongation.
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spelling pubmed-46043402016-04-01 Dynamic enhancer–gene body contacts during transcription elongation Lee, Kiwon Hsiung, Chris C.-S. Huang, Peng Raj, Arjun Blobel, Gerd A. Genes Dev Research Communication Enhancers govern transcription through multiple mechanisms, including the regulation of elongation by RNA polymerase II (RNAPII). We characterized the dynamics of looped enhancer contacts during synchronous transcription elongation. We found that many distal enhancers form stable contacts with their target promoters during the entire interval of elongation. Notably, we detected additional dynamic enhancer contacts throughout the gene bodies that track with elongating RNAPII and the leading edge of RNA synthesis. These results support a model in which the gene body changes its position relative to a stable enhancer–promoter complex, which has broad ramifications for enhancer function and architectural models of transcriptional elongation. Cold Spring Harbor Laboratory Press 2015-10-01 /pmc/articles/PMC4604340/ /pubmed/26443845 http://dx.doi.org/10.1101/gad.255265.114 Text en © 2015 Lee et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Communication
Lee, Kiwon
Hsiung, Chris C.-S.
Huang, Peng
Raj, Arjun
Blobel, Gerd A.
Dynamic enhancer–gene body contacts during transcription elongation
title Dynamic enhancer–gene body contacts during transcription elongation
title_full Dynamic enhancer–gene body contacts during transcription elongation
title_fullStr Dynamic enhancer–gene body contacts during transcription elongation
title_full_unstemmed Dynamic enhancer–gene body contacts during transcription elongation
title_short Dynamic enhancer–gene body contacts during transcription elongation
title_sort dynamic enhancer–gene body contacts during transcription elongation
topic Research Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4604340/
https://www.ncbi.nlm.nih.gov/pubmed/26443845
http://dx.doi.org/10.1101/gad.255265.114
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