Pioneer and repressive functions of p63 during zebrafish embryonic ectoderm specification

The transcription factor p63 is a master regulator of ectoderm development. Although previous studies show that p63 triggers epidermal differentiation in vitro, the roles of p63 in developing embryos remain poorly understood. Here, we use zebrafish embryos to analyze in vivo how p63 regulates gene e...

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Veröffentlicht in:Nature communications 2019-07, Vol.10 (1), p.3049-13, Article 3049
Hauptverfasser: Santos-Pereira, José M., Gallardo-Fuentes, Lourdes, Neto, Ana, Acemel, Rafael D., Tena, Juan J.
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Sprache:eng
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Zusammenfassung:The transcription factor p63 is a master regulator of ectoderm development. Although previous studies show that p63 triggers epidermal differentiation in vitro, the roles of p63 in developing embryos remain poorly understood. Here, we use zebrafish embryos to analyze in vivo how p63 regulates gene expression during development. We generate tp63 -knock-out mutants that recapitulate human phenotypes and show down-regulated epidermal gene expression. Following p63-binding dynamics, we find two distinct functions clearly separated in space and time. During early development, p63 binds enhancers associated to neural genes, limiting Sox3 binding and reducing neural gene expression. Indeed, we show that p63 and Sox3 are co-expressed in the neural plate border. On the other hand, p63 acts as a pioneer factor by binding non-accessible chromatin at epidermal enhancers, promoting their opening and epidermal gene expression in later developmental stages. Therefore, our results suggest that p63 regulates cell fate decisions during vertebrate ectoderm specification. The transcription factor p63 is a master regulator of ectoderm development. Here the authors show that zebrafish p63 binds enhancers associated with neural genes to limit Sox3 binding and gene expression while also acting as a pioneer factor by promoting chromatin opening at epidermal gene enhancers.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-11121-z