Competition between transcription and loop extrusion modulates promoter and enhancer dynamics

Author:

Sexton Tom1,Platania Angeliki1,Erb Cathie1,Barbieri Mariano2,Molcrette Bastien1,Grandgirard Erwan1,de Kort Marit3,Meaburn Karen4,Taylor Tiegh5,Shchuka Virlana5,Kocanova Silvia6,Oliveira Guilherme1,Mitchell Jennifer5ORCID,Soutoglou Evi4,Lenstra Tineke7ORCID,Molina Nacho1,Papantonis Argyris8ORCID,Bystricky Kerstin9ORCID

Affiliation:

1. IGBMC (Institute of Genetics and Molecular and Cellular Biology)

2. University Medical Center Gottingen

3. MGH

4. Genome Damage and Stability Centre

5. University of Toronto

6. Centre of Integrative Biology

7. Netherlands Cancer Institute

8. University Medical Center Goettingen

9. University of Toulouse -CNRS

Abstract

Abstract The spatiotemporal configuration of genes with distal regulatory elements, and the impact of chromatin mobility on transcription, remain unclear. Loop extrusion is an attractive model for bringing genetic elements together, but how this functionally interacts with transcription is also largely unknown. We combine live tracking of genomic loci and nascent transcripts with molecular dynamics simulations to assess the spatiotemporal arrangement of the Sox2 gene and its enhancer, in response to a battery of perturbations. We find a close link between chromatin mobility and transcriptional status: active elements display more constrained mobility, consistent with confinement within specialized nuclear sites, and alterations in enhancer mobility distinguish poised from transcribing alleles. Strikingly, we find that whereas loop extrusion and transcription factor-mediated clustering contribute to promoter-enhancer proximity, they have antagonistic effects on chromatin dynamics. This provides an experimental framework for the underappreciated role of chromatin dynamics in genome regulation.

Publisher

Research Square Platform LLC

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