Cohesin acts as a transcriptional gatekeeper by restraining pause–release to promote processive elongation

Cohesin organizes 3D chromatin architecture, including promoter-enhancer loops, yet its loss has surprisingly modest effects on steady-state gene expression. We address this paradox by demonstrating that cohesin acts at different stages of transcription in human cells. First, it promotes Pol II promoter recruitment by facilitating promoter-enhancer communication that maintains active promoter chromatin states. Second, it delays pause release by transiently associating with the transcriptional machinery during the pause-release transition. Kinetic modelling suggests that reduced Pol II recruitment and enhanced pause release have compensatory effects, contributing to minimal changes in steady-state gene expression across genes upon cohesin loss. In contrast, cohesin depletion impairs robust transcriptional induction in response to external stimuli. Moreover, cohesin ensures sufficient pausing duration as a quality-control-like step to promote elongation complex assembly and transcription processivity. Here, we show that cohesin regulates multiple transcriptional steps, offering mechanistic insight into cohesin-related diseases, including cancers and cohesinopathies.

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Publication Details

Journal
Nature Communications
Published
2026-08-24
DOI
https://doi.org/10.1038/s41467-026-76738-3
Citations
4
Primary Topic
Plant Molecular Biology Research
Type
article
Field-Weighted Citation Impact
14.94

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article

Cohesin acts as a transcriptional gatekeeper by restraining pause–release to promote processive elongation

Masato T. Kanemaki, Atsunori Yoshimura, Masashige Bando, Katsuhiko Shirahige et al.
4 citations
Nature Communications
Plant Molecular Biology Research
14.94
article

Cohesin acts as a transcriptional gatekeeper by restraining pause–release to promote processive elongation

Masato T. Kanemaki, Atsunori Yoshimura, Masashige Bando, Katsuhiko Shirahige, Takashi Sutani, Shoin Tei, Toyonori Sakata, Toyoaki Natsume
article en
4 citations

Abstract

Cohesin organizes 3D chromatin architecture, including promoter-enhancer loops, yet its loss has surprisingly modest effects on steady-state gene expression. We address this paradox by demonstrating that cohesin acts at different stages of transcription in human cells. First, it promotes Pol II promoter recruitment by facilitating promoter-enhancer communication that maintains active promoter chromatin states. Second, it delays pause release by transiently associating with the transcriptional machinery during the pause-release transition. Kinetic modelling suggests that reduced Pol II recruitment and enhanced pause release have compensatory effects, contributing to minimal changes in steady-state gene expression across genes upon cohesin loss. In contrast, cohesin depletion impairs robust transcriptional induction in response to external stimuli. Moreover, cohesin ensures sufficient pausing duration as a quality-control-like step to promote elongation complex assembly and transcription processivity. Here, we show that cohesin regulates multiple transcriptional steps, offering mechanistic insight into cohesin-related diseases, including cancers and cohesinopathies.

Nature CommunicationsVol. 17(1)
National Institute of Genetics (JP), The Graduate University for Advanced Studies, SOKENDAI (JP), Karolinska Institutet (SE), Tokyo Metropolitan Institute of Medical Science (JP), Quantitative BioSciences (US), Research Organization of Information and Systems (JP), The University of Tokyo (JP)
Japan Agency for Medical Research and Development, Svenska Forskningsrådet Formas, Karolinska Institutet, Vetenskapsrådet, Japan Society for the Promotion of Science, Japan Science and Technology Agency, Core Research for Evolutional Science and Technology
Openalex Percentile: Top 2%
Plant Molecular Biology Research
14.94
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