The histone demethylase Jmjd3 sequentially associates with the transcription factors Tbx3 and Eomes to drive endoderm differentiation
Stem cell differentiation depends on transcriptional activation driven by lineage‐specific regulators as well as changes in chromatin organization. However, the coordination of these events is poorly understood. Here, we show that T‐box proteins team up with chromatin modifying enzymes to drive the...
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Veröffentlicht in: | The EMBO journal 2013-05, Vol.32 (10), p.1393-1408 |
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Sprache: | eng |
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Zusammenfassung: | Stem cell differentiation depends on transcriptional activation driven by lineage‐specific regulators as well as changes in chromatin organization. However, the coordination of these events is poorly understood. Here, we show that T‐box proteins team up with chromatin modifying enzymes to drive the expression of the key lineage regulator, Eomes during endodermal differentiation of embryonic stem (ES) cells. The
Eomes
locus is maintained in a transcriptionally poised configuration in ES cells. During early differentiation steps, the ES cell factor Tbx3 associates with the histone demethylase Jmjd3 at the enhancer element of the
Eomes
locus to allow enhancer–promoter interactions. This spatial reorganization of the chromatin primes the cells to respond to Activin signalling, which promotes the binding of Jmjd3 and Eomes to its own bivalent promoter region to further stimulate Eomes expression in a positive feedback loop. In addition, Eomes activates a transcriptional network of core regulators of endodermal differentiation. Our results demonstrate that Jmjd3 sequentially associates with two T‐box factors, Tbx3 and Eomes to drive stem cell differentiation towards the definitive endoderm lineage.
Transcription factors Tbx3 and Eomes interact consecutively with the histone demethylase Jmjd3 to prompt chromatin dynamics required for embryonic stem cell differentiation towards definitive endoderm. |
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ISSN: | 0261-4189 1460-2075 |
DOI: | 10.1038/emboj.2013.78 |