Cell-of-origin-specific 3D genome structure acquired during somatic cell reprogramming

Publication date

2016-05-05

Authors

Krijger, Peter Hugo Lodewijk
Di Stefano, Bruno
de Wit, Elzo
Limone, Francesco
Van Oevelen, Chris
De Laat, Wouter
Graf, Thomas

Editors

Advisors

Supervisors

Document Type

Article
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Abstract

Forced expression of reprogramming factors can convert somatic cells into induced pluripotent stem cells (iPSCs). Here we studied genome topology dynamics during reprogramming of different somatic cell types with highly distinct genome conformations. We find large-scale topologically associated domain (TAD) repositioning and alterations of tissue-restricted genomic neighborhoods and chromatin loops, effectively erasing the somatic-cell-specific genome structures while establishing an embryonic stem-cell-like 3D genome. Yet, early passage iPSCs carry topological hallmarks that enable recognition of their cell of origin. These hallmarks are not remnants of somatic chromosome topologies. Instead, the distinguishing topological features are acquired during reprogramming, as we also find for cell-of-origin-dependent gene expression patterns.

Keywords

Cell Biology, Molecular Medicine, Genetics, Journal Article

Citation

Krijger, P H L, Di Stefano, B, de Wit, E, Limone, F, Van Oevelen, C, De Laat, W & Graf, T 2016, 'Cell-of-origin-specific 3D genome structure acquired during somatic cell reprogramming', Cell Stem Cell, vol. 18, no. 5, pp. 597-610. https://doi.org/10.1016/j.stem.2016.01.007