Literature DB >> 28410996

Delayed Accumulation of H3K27me3 on Nascent DNA Is Essential for Recruitment of Transcription Factors at Early Stages of Stem Cell Differentiation.

Svetlana Petruk1, Jingli Cai2, Robyn Sussman3, Guizhi Sun1, Sina K Kovermann4, Samanta A Mariani3, Bruno Calabretta3, Steven B McMahon3, Hugh W Brock4, Lorraine Iacovitti5, Alexander Mazo6.   

Abstract

Recruitment of transcription factors (TFs) to repressed genes in euchromatin is essential to activate new transcriptional programs during cell differentiation. However, recruitment of all TFs, including pioneer factors, is impeded by condensed H3K27me3-containing chromatin. Single-cell and gene-specific analyses revealed that, during the first hours of induction of differentiation of mammalian embryonic stem cells (ESCs), accumulation of the repressive histone mark H3K27me3 is delayed after DNA replication, indicative of a decondensed chromatin structure in all regions of the replicating genome. This delay provides a critical "window of opportunity" for recruitment of lineage-specific TFs to DNA. Increasing the levels of post-replicative H3K27me3 or preventing S phase entry inhibited recruitment of new TFs to DNA and significantly blocked cell differentiation. These findings suggest that recruitment of lineage-specifying TFs occurs soon after replication and is facilitated by a decondensed chromatin structure. This insight may explain the developmental plasticity of stem cells and facilitate their exploitation for therapeutic purposes.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  DNA replication; H3K27me3; HMTs; KDMs; embryonic stem cells; nascent DNA; nascent chromatin; neuronal differentiation; transcription factors

Mesh:

Substances:

Year:  2017        PMID: 28410996      PMCID: PMC5412717          DOI: 10.1016/j.molcel.2017.03.006

Source DB:  PubMed          Journal:  Mol Cell        ISSN: 1097-2765            Impact factor:   17.970


  46 in total

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Review 6.  Epigenetic control of transcriptional regulation in pluripotency and early differentiation.

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Review 8.  Polycomb/Trithorax Antagonism: Cellular Memory in Stem Cell Fate and Function.

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10.  Dual role of EZH2 in megakaryocyte differentiation.

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