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Cohesin depleted cells rebuild functional nuclear compartments after endomitosis

Cremer, Marion ; Brandstetter, Katharina ; Maiser, Andreas ; Rao, Suhas S. P. ; Schmid, Volker J. ; Guirao-Ortiz, Miguel ; Mitra, Namita ; Mamberti, Stefania ; Klein, Kyle N. ; Gilbert, David M. ; Leonhardt, Heinrich ; Cardoso, M. Cristina ; Lieberman Aiden, Erez ; Harz, Hartmann ; Cremer, Thomas (2024)
Cohesin depleted cells rebuild functional nuclear compartments after endomitosis.
In: Nature Communications, 2020, 11 (1)
doi: 10.26083/tuprints-00023980
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: Cohesin depleted cells rebuild functional nuclear compartments after endomitosis
Language: English
Date: 25 September 2024
Place of Publication: Darmstadt
Year of primary publication: 1 December 2020
Place of primary publication: London
Publisher: Springer Nature
Journal or Publication Title: Nature Communications
Volume of the journal: 11
Issue Number: 1
Collation: 16 Seiten
DOI: 10.26083/tuprints-00023980
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Cohesin plays an essential role in chromatin loop extrusion, but its impact on a compartmentalized nuclear architecture, linked to nuclear functions, is less well understood. Using live-cell and super-resolved 3D microscopy, here we find that cohesin depletion in a human colon cancer derived cell line results in endomitosis and a single multilobulated nucleus with chromosome territories pervaded by interchromatin channels. Chromosome territories contain chromatin domain clusters with a zonal organization of repressed chromatin domains in the interior and transcriptionally competent domains located at the periphery. These clusters form microscopically defined, active and inactive compartments, which likely correspond to A/B compartments, which are detected with ensemble Hi-C. Splicing speckles are observed nearby within the lining channel system. We further observe that the multilobulated nuclei, despite continuous absence of cohesin, pass through S-phase with typical spatio-temporal patterns of replication domains. Evidence for structural changes of these domains compared to controls suggests that cohesin is required for their full integrity.

Uncontrolled Keywords: Chromatin structure, DNA replication, Genome, Nuclear organization, Super-resolution microscopy
Identification Number: Artikel-ID: 6146
Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-239807
Classification DDC: 500 Science and mathematics > 570 Life sciences, biology
Divisions: 10 Department of Biology > Cell Biology and Epigenetics
Date Deposited: 25 Sep 2024 11:43
Last Modified: 31 Oct 2024 06:29
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/23980
PPN: 522832598
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