Long-range chromatin contacts in embryonic stem cells reveal a role for pluripotency factors and polycomb proteins in genome organization.

Long-range chromatin contacts in embryonic stem cells reveal a role for pluripotency factors and polycomb proteins in genome organization.
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DOI:
10.1016/j.stem.2013.08.013
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发表时间:
2013-11-07
期刊:
影响因子:
23.9
通讯作者:
Plath, Kathrin
Plath, Kathrin
中科院分区:
医学1区
文献类型:
--
作者:
Denholtz, Matthew;Bonora, Giancarlo;Chronis, Constantinos;Splinter, Erik;de Laat, Wouter;Ernst, Jason;Pellegrini, Matteo;Plath, Kathrin

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The relationship between three-dimensional organization of the genome and gene-regulatory networks is poorly understood. Here, we examined long-range chromatin interactions genome-wide in embryonic stem cells (ESCs), iPSCs, and fibroblasts, and uncover a pluripotency-specific genome organization that is gradually re-established during reprogramming. Our data confirm that long-range chromatin interactions are primarily associated with the spatial segregation of open and closed chromatin, defining overall chromosome conformation. Additionally, we identified two further levels of genome organization in ESCs characterized by co-localization of regions with high pluripotency factor occupancy and strong enrichment for Polycomb proteins/H3K27me3, respectively. Underlining the independence of these networks and their functional relevance for genome organization, loss of the Polycomb protein Eed diminishes interactions between Polycomb-regulated regions without altering overarching chromosome conformation. Together, our data highlight a pluripotency-specific genome organization in which Nanog and H3K27me3 occupy distinct nuclear spaces and reveal a role for cell type-specific gene-regulatory networks in genome organization.
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