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Cohesin-dependence of neuronal gene expression relates to chromatin loop length

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Title: Cohesin-dependence of neuronal gene expression relates to chromatin loop length
Authors: Calderon, L
Weiss, FD
Beagan, JA
Oliveira, MS
Georgieva, R
Wang, Y-F
Carroll, TS
Dharmalingam, G
Gong, W
Tossell, K
De Paola, V
Whilding, C
Ungless, MA
Fisher, AG
Phillips-Cremins, JE
Merkenschlager, M
Item Type: Journal Article
Abstract: Cohesin and CTCF are major drivers of 3D genome organization, but their role in neurons is still emerging. Here, we show a prominent role for cohesin in the expression of genes that facilitate neuronal maturation and homeostasis. Unexpectedly, we observed two major classes of activity-regulated genes with distinct reliance on cohesin in mouse primary cortical neurons. Immediate early genes (IEGs) remained fully inducible by KCl and BDNF, and short-range enhancer-promoter contacts at the IEGs Fos formed robustly in the absence of cohesin. In contrast, cohesin was required for full expression of a subset of secondary response genes characterized by long-range chromatin contacts. Cohesin-dependence of constitutive neuronal genes with key functions in synaptic transmission and neurotransmitter signaling also scaled with chromatin loop length. Our data demonstrate that key genes required for the maturation and activation of primary cortical neurons depend on cohesin for their full expression, and that the degree to which these genes rely on cohesin scales with the genomic distance traversed by their chromatin contacts. Editor's
Issue Date: 26-Apr-2022
Date of Acceptance: 26-Apr-2022
URI: http://hdl.handle.net/10044/1/97645
DOI: 10.7554/eLife.76539
ISSN: 2050-084X
Publisher: eLife Sciences Publications Ltd
Journal / Book Title: eLife
Volume: 11
Copyright Statement: Copyright Calderon et al. This article is distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use and redistribution provided that the original author and source are credited.
Sponsor/Funder: Wellcome Trust
Funder's Grant Number: 099276/Z/12/Z
Keywords: Science & Technology
Life Sciences & Biomedicine
Biology
Life Sciences & Biomedicine - Other Topics
cohesin
neurons
gene expression
3D chromatin organization
Mouse
SYNAPSE DEVELOPMENT
3D GENOME
CTCF
TRANSCRIPTION
MOUSE
DOMAINS
BDNF
FUNCTIONALITY
ORGANIZATION
HIPPOCAMPUS
3D chromatin organization
chromosomes
cohesin
gene expression
mouse
neurons
neuroscience
Animals
CCCTC-Binding Factor
Cell Cycle Proteins
Chromatin
Chromosomal Proteins, Non-Histone
Gene Expression
Mice
Neurons
Neurons
Chromatin
Animals
Mice
Cell Cycle Proteins
Chromosomal Proteins, Non-Histone
Gene Expression
CCCTC-Binding Factor
Science & Technology
Life Sciences & Biomedicine
Biology
Life Sciences & Biomedicine - Other Topics
cohesin
neurons
gene expression
3D chromatin organization
Mouse
SYNAPSE DEVELOPMENT
3D GENOME
CTCF
TRANSCRIPTION
MOUSE
DOMAINS
BDNF
FUNCTIONALITY
ORGANIZATION
HIPPOCAMPUS
0601 Biochemistry and Cell Biology
Publication Status: Published
Article Number: ARTN e76539
Appears in Collections:Institute of Clinical Sciences
Faculty of Medicine



This item is licensed under a Creative Commons License Creative Commons