H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions

Mechanisms underlying gene repression and silencers remain poorly understood. Here the authors investigate the role of H3K27me3-rich regions in the genome, as defined from clusters of H3K27me3 peaks, in regulating gene expression via looping.

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Autores principales: Yichao Cai, Ying Zhang, Yan Ping Loh, Jia Qi Tng, Mei Chee Lim, Zhendong Cao, Anandhkumar Raju, Erez Lieberman Aiden, Shang Li, Lakshmanan Manikandan, Vinay Tergaonkar, Greg Tucker-Kellogg, Melissa Jane Fullwood
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d3b2681ce73046bd90d6e3a3c6cb6762
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spelling oai:doaj.org-article:d3b2681ce73046bd90d6e3a3c6cb67622021-12-02T13:57:31ZH3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions10.1038/s41467-021-20940-y2041-1723https://doaj.org/article/d3b2681ce73046bd90d6e3a3c6cb67622021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-20940-yhttps://doaj.org/toc/2041-1723Mechanisms underlying gene repression and silencers remain poorly understood. Here the authors investigate the role of H3K27me3-rich regions in the genome, as defined from clusters of H3K27me3 peaks, in regulating gene expression via looping.Yichao CaiYing ZhangYan Ping LohJia Qi TngMei Chee LimZhendong CaoAnandhkumar RajuErez Lieberman AidenShang LiLakshmanan ManikandanVinay TergaonkarGreg Tucker-KelloggMelissa Jane FullwoodNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-22 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yichao Cai
Ying Zhang
Yan Ping Loh
Jia Qi Tng
Mei Chee Lim
Zhendong Cao
Anandhkumar Raju
Erez Lieberman Aiden
Shang Li
Lakshmanan Manikandan
Vinay Tergaonkar
Greg Tucker-Kellogg
Melissa Jane Fullwood
H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
description Mechanisms underlying gene repression and silencers remain poorly understood. Here the authors investigate the role of H3K27me3-rich regions in the genome, as defined from clusters of H3K27me3 peaks, in regulating gene expression via looping.
format article
author Yichao Cai
Ying Zhang
Yan Ping Loh
Jia Qi Tng
Mei Chee Lim
Zhendong Cao
Anandhkumar Raju
Erez Lieberman Aiden
Shang Li
Lakshmanan Manikandan
Vinay Tergaonkar
Greg Tucker-Kellogg
Melissa Jane Fullwood
author_facet Yichao Cai
Ying Zhang
Yan Ping Loh
Jia Qi Tng
Mei Chee Lim
Zhendong Cao
Anandhkumar Raju
Erez Lieberman Aiden
Shang Li
Lakshmanan Manikandan
Vinay Tergaonkar
Greg Tucker-Kellogg
Melissa Jane Fullwood
author_sort Yichao Cai
title H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
title_short H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
title_full H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
title_fullStr H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
title_full_unstemmed H3K27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
title_sort h3k27me3-rich genomic regions can function as silencers to repress gene expression via chromatin interactions
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d3b2681ce73046bd90d6e3a3c6cb6762
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