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The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements
The mammalian genome harbors up to one million regulatory elements often located at great distances from their target genes. Long-range elements control genes through physical contact with promoters and can be recognized by the presence of specific histone modifications and transcription factor bind...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Cold Spring Harbor Laboratory Press
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4381529/ https://www.ncbi.nlm.nih.gov/pubmed/25752748 http://dx.doi.org/10.1101/gr.185272.114 |
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author | Schoenfelder, Stefan Furlan-Magaril, Mayra Mifsud, Borbala Tavares-Cadete, Filipe Sugar, Robert Javierre, Biola-Maria Nagano, Takashi Katsman, Yulia Sakthidevi, Moorthy Wingett, Steven W. Dimitrova, Emilia Dimond, Andrew Edelman, Lucas B. Elderkin, Sarah Tabbada, Kristina Darbo, Elodie Andrews, Simon Herman, Bram Higgs, Andy LeProust, Emily Osborne, Cameron S. Mitchell, Jennifer A. Luscombe, Nicholas M. Fraser, Peter |
author_facet | Schoenfelder, Stefan Furlan-Magaril, Mayra Mifsud, Borbala Tavares-Cadete, Filipe Sugar, Robert Javierre, Biola-Maria Nagano, Takashi Katsman, Yulia Sakthidevi, Moorthy Wingett, Steven W. Dimitrova, Emilia Dimond, Andrew Edelman, Lucas B. Elderkin, Sarah Tabbada, Kristina Darbo, Elodie Andrews, Simon Herman, Bram Higgs, Andy LeProust, Emily Osborne, Cameron S. Mitchell, Jennifer A. Luscombe, Nicholas M. Fraser, Peter |
author_sort | Schoenfelder, Stefan |
collection | PubMed |
description | The mammalian genome harbors up to one million regulatory elements often located at great distances from their target genes. Long-range elements control genes through physical contact with promoters and can be recognized by the presence of specific histone modifications and transcription factor binding. Linking regulatory elements to specific promoters genome-wide is currently impeded by the limited resolution of high-throughput chromatin interaction assays. Here we apply a sequence capture approach to enrich Hi-C libraries for >22,000 annotated mouse promoters to identify statistically significant, long-range interactions at restriction fragment resolution, assigning long-range interacting elements to their target genes genome-wide in embryonic stem cells and fetal liver cells. The distal sites contacting active genes are enriched in active histone modifications and transcription factor occupancy, whereas inactive genes contact distal sites with repressive histone marks, demonstrating the regulatory potential of the distal elements identified. Furthermore, we find that coregulated genes cluster nonrandomly in spatial interaction networks correlated with their biological function and expression level. Interestingly, we find the strongest gene clustering in ES cells between transcription factor genes that control key developmental processes in embryogenesis. The results provide the first genome-wide catalog linking gene promoters to their long-range interacting elements and highlight the complex spatial regulatory circuitry controlling mammalian gene expression. |
format | Online Article Text |
id | pubmed-4381529 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Cold Spring Harbor Laboratory Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-43815292015-04-06 The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements Schoenfelder, Stefan Furlan-Magaril, Mayra Mifsud, Borbala Tavares-Cadete, Filipe Sugar, Robert Javierre, Biola-Maria Nagano, Takashi Katsman, Yulia Sakthidevi, Moorthy Wingett, Steven W. Dimitrova, Emilia Dimond, Andrew Edelman, Lucas B. Elderkin, Sarah Tabbada, Kristina Darbo, Elodie Andrews, Simon Herman, Bram Higgs, Andy LeProust, Emily Osborne, Cameron S. Mitchell, Jennifer A. Luscombe, Nicholas M. Fraser, Peter Genome Res Resource The mammalian genome harbors up to one million regulatory elements often located at great distances from their target genes. Long-range elements control genes through physical contact with promoters and can be recognized by the presence of specific histone modifications and transcription factor binding. Linking regulatory elements to specific promoters genome-wide is currently impeded by the limited resolution of high-throughput chromatin interaction assays. Here we apply a sequence capture approach to enrich Hi-C libraries for >22,000 annotated mouse promoters to identify statistically significant, long-range interactions at restriction fragment resolution, assigning long-range interacting elements to their target genes genome-wide in embryonic stem cells and fetal liver cells. The distal sites contacting active genes are enriched in active histone modifications and transcription factor occupancy, whereas inactive genes contact distal sites with repressive histone marks, demonstrating the regulatory potential of the distal elements identified. Furthermore, we find that coregulated genes cluster nonrandomly in spatial interaction networks correlated with their biological function and expression level. Interestingly, we find the strongest gene clustering in ES cells between transcription factor genes that control key developmental processes in embryogenesis. The results provide the first genome-wide catalog linking gene promoters to their long-range interacting elements and highlight the complex spatial regulatory circuitry controlling mammalian gene expression. Cold Spring Harbor Laboratory Press 2015-04 /pmc/articles/PMC4381529/ /pubmed/25752748 http://dx.doi.org/10.1101/gr.185272.114 Text en © 2015 Schoenfelder et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by/4.0 This article, published in Genome Research, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0. |
spellingShingle | Resource Schoenfelder, Stefan Furlan-Magaril, Mayra Mifsud, Borbala Tavares-Cadete, Filipe Sugar, Robert Javierre, Biola-Maria Nagano, Takashi Katsman, Yulia Sakthidevi, Moorthy Wingett, Steven W. Dimitrova, Emilia Dimond, Andrew Edelman, Lucas B. Elderkin, Sarah Tabbada, Kristina Darbo, Elodie Andrews, Simon Herman, Bram Higgs, Andy LeProust, Emily Osborne, Cameron S. Mitchell, Jennifer A. Luscombe, Nicholas M. Fraser, Peter The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
title | The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
title_full | The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
title_fullStr | The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
title_full_unstemmed | The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
title_short | The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
title_sort | pluripotent regulatory circuitry connecting promoters to their long-range interacting elements |
topic | Resource |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4381529/ https://www.ncbi.nlm.nih.gov/pubmed/25752748 http://dx.doi.org/10.1101/gr.185272.114 |
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