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Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila

Cohesin consists of the SMC1-SMC3-Rad21 tripartite ring and the SA protein that interacts with Rad21. The Nipped-B protein loads cohesin topologically around chromosomes to mediate sister chromatid cohesion and facilitate long-range control of gene transcription. It is largely unknown how Nipped-B a...

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Autores principales: Pherson, Michelle, Misulovin, Ziva, Gause, Maria, Dorsett, Dale
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442380/
https://www.ncbi.nlm.nih.gov/pubmed/30796039
http://dx.doi.org/10.1101/gr.243832.118
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author Pherson, Michelle
Misulovin, Ziva
Gause, Maria
Dorsett, Dale
author_facet Pherson, Michelle
Misulovin, Ziva
Gause, Maria
Dorsett, Dale
author_sort Pherson, Michelle
collection PubMed
description Cohesin consists of the SMC1-SMC3-Rad21 tripartite ring and the SA protein that interacts with Rad21. The Nipped-B protein loads cohesin topologically around chromosomes to mediate sister chromatid cohesion and facilitate long-range control of gene transcription. It is largely unknown how Nipped-B and cohesin associate specifically with gene promoters and transcriptional enhancers, or how sister chromatid cohesion is established. Here, we use genome-wide chromatin immunoprecipitation in Drosophila cells to show that SA and the Fs(1)h (BRD4) BET domain protein help recruit Nipped-B and cohesin to enhancers and DNA replication origins, whereas the MED30 subunit of the Mediator complex directs Nipped-B and Vtd in Drosophila (also known as Rad21) to promoters. All enhancers and their neighboring promoters are close to DNA replication origins and bind SA with proportional levels of cohesin subunits. Most promoters are far from origins and lack SA but bind Nipped-B and Rad21 with subproportional amounts of SMC1, indicating that they bind cohesin rings only part of the time. Genetic data show that Nipped-B and Rad21 function together with Fs(1)h to facilitate Drosophila development. These findings show that Nipped-B and cohesin are differentially targeted to enhancers and promoters, and suggest models for how SA and DNA replication help establish sister chromatid cohesion and facilitate enhancer–promoter communication. They indicate that SA is not an obligatory cohesin subunit but a factor that controls cohesin location on chromosomes.
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spelling pubmed-64423802019-04-17 Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila Pherson, Michelle Misulovin, Ziva Gause, Maria Dorsett, Dale Genome Res Research Cohesin consists of the SMC1-SMC3-Rad21 tripartite ring and the SA protein that interacts with Rad21. The Nipped-B protein loads cohesin topologically around chromosomes to mediate sister chromatid cohesion and facilitate long-range control of gene transcription. It is largely unknown how Nipped-B and cohesin associate specifically with gene promoters and transcriptional enhancers, or how sister chromatid cohesion is established. Here, we use genome-wide chromatin immunoprecipitation in Drosophila cells to show that SA and the Fs(1)h (BRD4) BET domain protein help recruit Nipped-B and cohesin to enhancers and DNA replication origins, whereas the MED30 subunit of the Mediator complex directs Nipped-B and Vtd in Drosophila (also known as Rad21) to promoters. All enhancers and their neighboring promoters are close to DNA replication origins and bind SA with proportional levels of cohesin subunits. Most promoters are far from origins and lack SA but bind Nipped-B and Rad21 with subproportional amounts of SMC1, indicating that they bind cohesin rings only part of the time. Genetic data show that Nipped-B and Rad21 function together with Fs(1)h to facilitate Drosophila development. These findings show that Nipped-B and cohesin are differentially targeted to enhancers and promoters, and suggest models for how SA and DNA replication help establish sister chromatid cohesion and facilitate enhancer–promoter communication. They indicate that SA is not an obligatory cohesin subunit but a factor that controls cohesin location on chromosomes. Cold Spring Harbor Laboratory Press 2019-04 /pmc/articles/PMC6442380/ /pubmed/30796039 http://dx.doi.org/10.1101/gr.243832.118 Text en © 2019 Pherson 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 Research
Pherson, Michelle
Misulovin, Ziva
Gause, Maria
Dorsett, Dale
Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila
title Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila
title_full Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila
title_fullStr Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila
title_full_unstemmed Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila
title_short Cohesin occupancy and composition at enhancers and promoters are linked to DNA replication origin proximity in Drosophila
title_sort cohesin occupancy and composition at enhancers and promoters are linked to dna replication origin proximity in drosophila
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442380/
https://www.ncbi.nlm.nih.gov/pubmed/30796039
http://dx.doi.org/10.1101/gr.243832.118
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