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Nature|August 4, 2019
Publisher Correction: Heterochromatin drives compartmentalization of inverted and conventional nucleiMartin Falk, Yana Feodorova, Natalia Naumova, et al.
Plos Computational Biology|May 6, 2024
Cooltools: Enabling high-resolution Hi-C analysis in Python, Nezar Abdennur, Sameer Abraham, et al.
Nature|November 3, 2017
Two independent modes of chromatin organization revealed by cohesin removalWibke Schwarzer, Nezar Abdennur, Anton Goloborodko, et al.
Nature|January 14, 2016
Super-resolution imaging reveals distinct chromatin folding for different epigenetic statesAlistair N Boettiger, Bogdan Bintu, Jeffrey R Moffitt, et al.
Nature|October 14, 2014
Cohesin-dependent globules and heterochromatin shape 3D genome architecture in S. pombeTakeshi Mizuguchi, Geoffrey Fudenberg, Sameet Mehta, et al.
Biorxiv : the Preprint Server for Biology|May 18, 2026
Cohesin bridging as a physical principle of enhancer-promoter communicationTimothy Földes, Karissa L Hansen, Maxim Imakaev, et al.
Nature Communications|October 5, 2019
Highly structured homolog pairing reflects functional organization of the Drosophila genomeJumana AlHaj Abed, Jelena Erceg, Anton Goloborodko, et al.
Biorxiv : the Preprint Server for Biology|February 6, 2026
The role of cohesin loading at enhancers in the flux of loop extrusion and long-range transcriptional controlErika C Anderson, Hadi Rahmaninejad, Abrar Aljahani, et al.
Nature Communications|November 6, 2020
Molecular basis of CTCF binding polarity in genome foldingElphège P Nora, Laura Caccianini, Geoffrey Fudenberg, et al.
Science (New York, N.Y.)|November 27, 2025
Synergy between regulatory elements can render cohesin dispensable for distal enhancer functionKarissa L Hansen, Annie S Adachi, Luca Braccioli, et al.
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