Dynamics of the 4D genome during in vivo lineage specification and differentiation

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作者
A. Marieke Oudelaar
Robert A. Beagrie
Matthew Gosden
Sara de Ornellas
Emily Georgiades
Jon Kerry
Daniel Hidalgo
Joana Carrelha
Arun Shivalingam
Afaf H. El-Sagheer
Jelena M. Telenius
Tom Brown
Veronica J. Buckle
Merav Socolovsky
Douglas R. Higgs
Jim R. Hughes
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[1] University of Oxford,MRC Molecular Haematology Unit, MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine
[2] University of Oxford,MRC WIMM Centre for Computational Biology, MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine
[3] University of Oxford,Department of Chemistry
[4] University of Massachusetts Medical School Worcester,Department of Molecular, Cell and Cancer Biology
[5] Faculty of Petroleum and Mining Engineering,Department of Science and Mathematics
[6] Suez University,undefined
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Mammalian gene expression patterns are controlled by regulatory elements, which interact within topologically associating domains (TADs). The relationship between activation of regulatory elements, formation of structural chromatin interactions and gene expression during development is unclear. Here, we present Tiled-C, a low-input chromosome conformation capture (3C) technique. We use this approach to study chromatin architecture at high spatial and temporal resolution through in vivo mouse erythroid differentiation. Integrated analysis of chromatin accessibility and single-cell expression data shows that regulatory elements gradually become accessible within pre-existing TADs during early differentiation. This is followed by structural re-organization within the TAD and formation of specific contacts between enhancers and promoters. Our high-resolution data show that these enhancer-promoter interactions are not established prior to gene expression, but formed gradually during differentiation, concomitant with progressive upregulation of gene activity. Together, these results provide new insight into the close, interdependent relationship between chromatin architecture and gene regulation during development.
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