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The Transcriptionally Permissive Chromatin State of Embryonic Stem Cells Is Acutely Tuned to Translational Output.

Citation
Bulut-Karslioglu, A., et al. “The Transcriptionally Permissive Chromatin State Of Embryonic Stem Cells Is Acutely Tuned To Translational Output.”. Cell Stem Cell, pp. 369-383.e8.
Author Aydan Bulut-Karslioglu, Trisha A Macrae, Juan A Oses-Prieto, Sergio Covarrubias, Michelle Percharde, Gregory Ku, Aaron Diaz, Michael T McManus, Alma L Burlingame, Miguel Ramalho-Santos
Keywords Chd1, blastocyst, Embryonic stem cells, euchromatin, hypertranscription, mTOR, permissive chromatin, ribosome, translation
Abstract

A permissive chromatin environment coupled to hypertranscription drives the rapid proliferation of embryonic stem cells (ESCs) and peri-implantation embryos. We carried out a genome-wide screen to systematically dissect the regulation of the euchromatic state of ESCs. The results revealed that cellular growth pathways, most prominently translation, perpetuate the euchromatic state and hypertranscription of ESCs. Acute inhibition of translation rapidly depletes euchromatic marks in mouse ESCs and blastocysts, concurrent with delocalization of RNA polymerase II and reduction in nascent transcription. Translation inhibition promotes rewiring of chromatin accessibility, which decreases at a subset of active developmental enhancers and increases at histone genes and transposable elements. Proteome-scale analyses revealed that several euchromatin regulators are unstable proteins and continuously depend on a high translational output. We propose that this mechanistic interdependence of euchromatin, transcription, and translation sets the pace of proliferation at peri-implantation and may be employed by other stem/progenitor cells.

Year of Publication
2018
Journal
Cell stem cell
Volume
22
Issue
3
Number of Pages
369-383.e8
Date Published
12/2018
ISSN Number
1875-9777
DOI
10.1016/j.stem.2018.02.004
Alternate Journal
Cell Stem Cell
PMID
29499153
PMCID
PMC5836508
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