The histone methyltransferase NSD3 contributes to sister chromatid cohesion and to cohesin loading at mitotic exit.


Journal

Journal of cell science
ISSN: 1477-9137
Titre abrégé: J Cell Sci
Pays: England
ID NLM: 0052457

Informations de publication

Date de publication:
01 06 2023
Historique:
received: 25 01 2023
accepted: 21 04 2023
medline: 9 6 2023
pubmed: 8 6 2023
entrez: 8 6 2023
Statut: ppublish

Résumé

Sister chromatid cohesion is a multi-step process implemented throughout the cell cycle to ensure the correct transmission of chromosomes to daughter cells. Although cohesion establishment and mitotic cohesion dissolution have been extensively explored, the regulation of cohesin loading is still poorly understood. Here, we report that the methyltransferase NSD3 is essential for mitotic sister chromatid cohesion before mitosis entry. NSD3 interacts with the cohesin loader complex kollerin (composed of NIPBL and MAU2) and promotes the chromatin recruitment of MAU2 and cohesin at mitotic exit. We also show that NSD3 associates with chromatin in early anaphase, prior to the recruitment of MAU2 and RAD21, and dissociates from chromatin when prophase begins. Among the two NSD3 isoforms present in somatic cells, the long isoform is responsible for regulating kollerin and cohesin chromatin-loading, and its methyltransferase activity is required for efficient sister chromatid cohesion. Based on these observations, we propose that NSD3-dependent methylation contributes to sister chromatid cohesion by ensuring proper kollerin recruitment and thus cohesin loading.

Identifiants

pubmed: 37288770
pii: 316627
doi: 10.1242/jcs.261014
pii:
doi:

Substances chimiques

Cell Cycle Proteins 0
Chromatin 0
Chromosomal Proteins, Non-Histone 0
Histone Methyltransferases EC 2.1.1.-

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Informations de copyright

© 2023. Published by The Company of Biologists Ltd.

Déclaration de conflit d'intérêts

Competing interests The authors declare no competing or financial interests.

Auteurs

Grégory Eot-Houllier (G)

CNRS UMR 6290, University of Rennes 1, IGDR (Institut de Génétique et Développement de Rennes), 35043 Rennes cedex, France.
Epigenetics and Cancer Laboratory, IGDR Rennes, France.
Cytoskeleton and Cell Proliferation Laboratory, IGDR, Rennes, France.

Laura Magnaghi-Jaulin (L)

CNRS UMR 6290, University of Rennes 1, IGDR (Institut de Génétique et Développement de Rennes), 35043 Rennes cedex, France.
Epigenetics and Cancer Laboratory, IGDR Rennes, France.
University of Rennes, EHESP, Inserm UMR 1085, IRSET (Institut de Recherche en Santé, Environnement et Travail), 35000 Rennes, France.

Gaëlle Bourgine (G)

CNRS UMR 6290, University of Rennes 1, IGDR (Institut de Génétique et Développement de Rennes), 35043 Rennes cedex, France.
Epigenetics and Cancer Laboratory, IGDR Rennes, France.

Fatima Smagulova (F)

University of Rennes, EHESP, Inserm UMR 1085, IRSET (Institut de Recherche en Santé, Environnement et Travail), 35000 Rennes, France.

Régis Giet (R)

CNRS UMR 6290, University of Rennes 1, IGDR (Institut de Génétique et Développement de Rennes), 35043 Rennes cedex, France.
Cytoskeleton and Cell Proliferation Laboratory, IGDR, Rennes, France.

Erwan Watrin (E)

CNRS UMR 6290, University of Rennes 1, IGDR (Institut de Génétique et Développement de Rennes), 35043 Rennes cedex, France.
Spatio-temporal Regulation of Transcription and DNA Repair Laboratory, IGDR, Rennes, France.

Christian Jaulin (C)

CNRS UMR 6290, University of Rennes 1, IGDR (Institut de Génétique et Développement de Rennes), 35043 Rennes cedex, France.
Epigenetics and Cancer Laboratory, IGDR Rennes, France.
University of Rennes, EHESP, Inserm UMR 1085, IRSET (Institut de Recherche en Santé, Environnement et Travail), 35000 Rennes, France.

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Classifications MeSH