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Elife|March 24, 2017
Global reorganisation of cis-regulatory units upon lineage commitment of human embryonic stem cellsPaula Freire-Pritchett, Stefan Schoenfelder, Csilla Várnai, et al.
Genome Biology|May 9, 2013
Sixty years of genome biologyW Ford Doolittle, Peter Fraser, Mark B Gerstein, et al.
Nature Genetics|September 29, 2018
Challenges and guidelines toward 4D nucleome data and model standardsMarc A Marti-Renom, Genevieve Almouzni, Wendy A Bickmore, et al.
Nature Communications|November 28, 2020
Transcription-dependent cohesin repositioning rewires chromatin loops in cellular senescenceIoana Olan, Aled J Parry, Stefan Schoenfelder, et al.
Nature Biotechnology|July 4, 2019
RNA proximity sequencing reveals the spatial organization of the transcriptome in the nucleusJörg Morf, Steven W Wingett, Irene Farabella, et al.
Plos One|August 15, 2019
An intergenic non-coding RNA promoter required for histone modifications in the human β-globin chromatin domainEmmanuel Debrand, Lyubomira Chakalova, Joanne Miles, et al.
Genome Biology|June 8, 2021
The global and promoter-centric 3D genome organization temporally resolved during a circadian cycleMayra Furlan-Magaril, Masami Ando-Kuri, Rodrigo G Arzate-Mejía, et al.
Nature Communications|November 14, 2018
Author Correction: Promoter interactome of human embryonic stem cell-derived cardiomyocytes connects GWAS regions to cardiac gene networksMun-Kit Choy, Biola M Javierre, Simon G Williams, et al.
Nature Communications|June 30, 2018
Promoter interactome of human embryonic stem cell-derived cardiomyocytes connects GWAS regions to cardiac gene networksMun-Kit Choy, Biola M Javierre, Simon G Williams, et al.
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