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PMID: 25373912 Published · ppublish English

Sox17-mediated XEN cell conversion identifies dynamic networks controlling cell-fate decisions in embryo-derived stem cells.

Cell reports ·Vol. 9 ·No. 2 ·2015-07-24

McDonald Angela C H, Biechele Steffen, Rossant Janet, Stanford William L

Abstract

Little is known about the gene regulatory networks (GRNs) distinguishing extraembryonic endoderm (ExEn) stem (XEN) cells from those that maintain the extensively characterized embryonic stem cell (ESC). An intriguing network candidate is Sox17, an essential transcription factor for XEN derivation and self-renewal. Here, we show that forced Sox17 expression drives ESCs toward ExEn, generating XEN cells that contribute to ExEn when placed back into early mouse embryos. Transient Sox17 expression is sufficient to drive this fate change during which time cells transit through distinct intermediate states prior to the generation of functional XEN-like cells. To orchestrate this conversion process, Sox17 acts in autoregulatory and feedforward network motifs, regulating dynamic GRNs directing cell fate. Sox17-mediated XEN conversion helps to explain the regulation of cell-fate changes and reveals GRNs regulating lineage decisions in the mouse embryo.

Article Info
Journal
Cell reports
Abbr.
Cell Rep
ISSN
2211-1247
Published
2015-07-24
Indexed
2014-11-06
Updated
2014-11-06
Language
English
Country/Region
United States
NLM ID
101573691
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