Building regulatory landscapes reveals that an enhancer can recruit cohesin to create contact domains, engage CTCF sites and activate distant genes
Publication date
2022-06
Authors
Rinzema, Niels J.
Sofiadis, Konstantinos
Tjalsma, Sjoerd J.D.
Verstegen, Marjon J.A.M.
Oz, Yuva
Valdes-Quezada, Christian
Felder, Anna Karina
Filipovska, Teodora
van der Elst, Stefan
de Andrade dos Ramos, Zaria
Editors
Advisors
Supervisors
Document Type
Article
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cc_by
Abstract
Developmental gene expression is often controlled by distal regulatory DNA elements called enhancers. Distant enhancer action is restricted to structural chromosomal domains that are flanked by CTCF-associated boundaries and formed through cohesin chromatin loop extrusion. To better understand how enhancers, genes and CTCF boundaries together form structural domains and control expression, we used a bottom-up approach, building series of active regulatory landscapes in inactive chromatin. We demonstrate here that gene transcription levels and activity over time reduce with increased enhancer distance. The enhancer recruits cohesin to stimulate domain formation and engage flanking CTCF sites in loop formation. It requires cohesin exclusively for the activation of distant genes, not of proximal genes, with nearby CTCF boundaries supporting efficient long-range enhancer action. Our work supports a dual activity model for enhancers: its classic role of stimulating transcription initiation and elongation from target gene promoters and a role of recruiting cohesin for the creation of chromosomal domains, the engagement of CTCF sites in chromatin looping and the activation of distal target genes.
Keywords
Structural Biology, Molecular Biology
Citation
Rinzema, N J, Sofiadis, K, Tjalsma, S J D, Verstegen, M J A M, Oz, Y, Valdes-Quezada, C, Felder, A K, Filipovska, T, van der Elst, S, de Andrade dos Ramos, Z, Han, R, Krijger, P H L & de Laat, W 2022, 'Building regulatory landscapes reveals that an enhancer can recruit cohesin to create contact domains, engage CTCF sites and activate distant genes', Nature Structural and Molecular Biology, vol. 29, no. 6, pp. 563-574. https://doi.org/10.1038/s41594-022-00787-7