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SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates

SETDB1 is a key regulator of lineage-specific genes and endogenous retroviral elements (ERVs) through its deposition of repressive H3K9me3 mark. Apart from its H3K9me3 regulatory role, SETDB1 has seldom been studied in terms of its other potential regulatory roles. To investigate this, a genomic sur...

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Autores principales: Warrier, Tushar, El Farran, Chadi, Zeng, Yingying, Ho, Benedict Shao Quan, Bao, Qiuye, Zheng, Zi Hao, Bi, Xuezhi, Ng, Huck Hui, Ong, Derrick Sek Tong, Chu, Justin Jang Hann, Sanyal, Amartya, Fullwood, Melissa Jane, Collins, James J, Li, Hu, Xu, Jian, Loh, Yuin-Han
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303280/
https://www.ncbi.nlm.nih.gov/pubmed/35776115
http://dx.doi.org/10.1093/nar/gkac531
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author Warrier, Tushar
El Farran, Chadi
Zeng, Yingying
Ho, Benedict Shao Quan
Bao, Qiuye
Zheng, Zi Hao
Bi, Xuezhi
Ng, Huck Hui
Ong, Derrick Sek Tong
Chu, Justin Jang Hann
Sanyal, Amartya
Fullwood, Melissa Jane
Collins, James J
Li, Hu
Xu, Jian
Loh, Yuin-Han
author_facet Warrier, Tushar
El Farran, Chadi
Zeng, Yingying
Ho, Benedict Shao Quan
Bao, Qiuye
Zheng, Zi Hao
Bi, Xuezhi
Ng, Huck Hui
Ong, Derrick Sek Tong
Chu, Justin Jang Hann
Sanyal, Amartya
Fullwood, Melissa Jane
Collins, James J
Li, Hu
Xu, Jian
Loh, Yuin-Han
author_sort Warrier, Tushar
collection PubMed
description SETDB1 is a key regulator of lineage-specific genes and endogenous retroviral elements (ERVs) through its deposition of repressive H3K9me3 mark. Apart from its H3K9me3 regulatory role, SETDB1 has seldom been studied in terms of its other potential regulatory roles. To investigate this, a genomic survey of SETDB1 binding in mouse embryonic stem cells across multiple libraries was conducted, leading to the unexpected discovery of regions bereft of common repressive histone marks (H3K9me3, H3K27me3). These regions were enriched with the CTCF motif that is often associated with the topological regulator Cohesin. Further profiling of these non-H3K9me3 regions led to the discovery of a cluster of non-repeat loci that were co-bound by SETDB1 and Cohesin. These regions, which we named DiSCs (domains involving SETDB1 and Cohesin) were seen to be proximal to the gene promoters involved in embryonic stem cell pluripotency and lineage development. Importantly, it was found that SETDB1-Cohesin co-regulate target gene expression and genome topology at these DiSCs. Depletion of SETDB1 led to localized dysregulation of Cohesin binding thereby locally disrupting topological structures. Dysregulated gene expression trends revealed the importance of this cluster in ES cell maintenance as well as at gene ‘islands’ that drive differentiation to other lineages. The ‘unearthing’ of the DiSCs thus unravels a unique topological and transcriptional axis of control regulated chiefly by SETDB1.
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spelling pubmed-93032802022-07-22 SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates Warrier, Tushar El Farran, Chadi Zeng, Yingying Ho, Benedict Shao Quan Bao, Qiuye Zheng, Zi Hao Bi, Xuezhi Ng, Huck Hui Ong, Derrick Sek Tong Chu, Justin Jang Hann Sanyal, Amartya Fullwood, Melissa Jane Collins, James J Li, Hu Xu, Jian Loh, Yuin-Han Nucleic Acids Res Gene regulation, Chromatin and Epigenetics SETDB1 is a key regulator of lineage-specific genes and endogenous retroviral elements (ERVs) through its deposition of repressive H3K9me3 mark. Apart from its H3K9me3 regulatory role, SETDB1 has seldom been studied in terms of its other potential regulatory roles. To investigate this, a genomic survey of SETDB1 binding in mouse embryonic stem cells across multiple libraries was conducted, leading to the unexpected discovery of regions bereft of common repressive histone marks (H3K9me3, H3K27me3). These regions were enriched with the CTCF motif that is often associated with the topological regulator Cohesin. Further profiling of these non-H3K9me3 regions led to the discovery of a cluster of non-repeat loci that were co-bound by SETDB1 and Cohesin. These regions, which we named DiSCs (domains involving SETDB1 and Cohesin) were seen to be proximal to the gene promoters involved in embryonic stem cell pluripotency and lineage development. Importantly, it was found that SETDB1-Cohesin co-regulate target gene expression and genome topology at these DiSCs. Depletion of SETDB1 led to localized dysregulation of Cohesin binding thereby locally disrupting topological structures. Dysregulated gene expression trends revealed the importance of this cluster in ES cell maintenance as well as at gene ‘islands’ that drive differentiation to other lineages. The ‘unearthing’ of the DiSCs thus unravels a unique topological and transcriptional axis of control regulated chiefly by SETDB1. Oxford University Press 2022-07-01 /pmc/articles/PMC9303280/ /pubmed/35776115 http://dx.doi.org/10.1093/nar/gkac531 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Gene regulation, Chromatin and Epigenetics
Warrier, Tushar
El Farran, Chadi
Zeng, Yingying
Ho, Benedict Shao Quan
Bao, Qiuye
Zheng, Zi Hao
Bi, Xuezhi
Ng, Huck Hui
Ong, Derrick Sek Tong
Chu, Justin Jang Hann
Sanyal, Amartya
Fullwood, Melissa Jane
Collins, James J
Li, Hu
Xu, Jian
Loh, Yuin-Han
SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates
title SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates
title_full SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates
title_fullStr SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates
title_full_unstemmed SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates
title_short SETDB1 acts as a topological accessory to Cohesin via an H3K9me3-independent, genomic shunt for regulating cell fates
title_sort setdb1 acts as a topological accessory to cohesin via an h3k9me3-independent, genomic shunt for regulating cell fates
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303280/
https://www.ncbi.nlm.nih.gov/pubmed/35776115
http://dx.doi.org/10.1093/nar/gkac531
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