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Please use this identifier to cite or link to this item: http://tdudspace.texicon.in:8080/jspui/handle/123456789/625
Title: Active enhancers strengthen insulation by RNA-mediated CTCF binding at chromatin domain boundaries
Authors: Islam, Zubairul
Farooq, Umer
Notani, Dimple
Thakur, Jitendra
Henikoff, Steven
Keywords: insulation
TADs
CTCF binding
RNAs
INK4a/ARF
MYC TAD
Issue Date: 2023
Publisher: Cold Spring Harbor Laboratory Press
Abstract: Vertebrate genomes are partitioned into chromatin domains or topologically associating domains (TADs), which are typically bound by head-to-head pairs of CTCF binding sites. Transcription at domain boundaries correlates with better insulation; however, it is not known whether the boundary transcripts themselves contribute to boundary function. Here we characterize boundary-associated RNAs genome-wide, focusing on the disease-relevant INK4a/ARF and MYC TAD. Using CTCF site deletions and boundary-associated RNA knockdowns, we observe that boundary-associated RNAs facilitate recruitment and clustering of CTCF at TAD borders. The resulting CTCF enrichment enhances TAD insulation, enhancer–promoter interactions, and TAD gene expression. Importantly, knockdown of boundary-associated RNAs results in loss of boundary insulation function. Using enhancer deletions and CRISPRi of promoters, we show that active TAD enhancers, but not promoters, induce boundary-associated RNA transcription, thus defining a novel class of regulatory enhancer RNAs.
URI: http://tdudspace.texicon.in:8080/jspui/handle/123456789/625
Appears in Collections:Researcher/Student Publications

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