Activator-blocker model of transcriptional regulation by pioneer-like factors

Abstract Zygotic genome activation (ZGA) in the development of flies, fish, frogs and mammals depends on pioneer-like transcription factors (TFs). Those TFs create open chromatin regions, promote histone acetylation on enhancers, and activate transcription. Here, we use the panel of single, double a...

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Published inNature communications Vol. 14; no. 1; pp. 5677 - 18
Main Authors Riesle, Aileen Julia, Gao, Meijiang, Rosenblatt, Marcus, Hermes, Jacques, Hass, Helge, Gebhard, Anna, Veil, Marina, Grüning, Björn, Timmer, Jens, Onichtchouk, Daria
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group 14.09.2023
Nature Publishing Group UK
Nature Portfolio
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Summary:Abstract Zygotic genome activation (ZGA) in the development of flies, fish, frogs and mammals depends on pioneer-like transcription factors (TFs). Those TFs create open chromatin regions, promote histone acetylation on enhancers, and activate transcription. Here, we use the panel of single, double and triple mutants for zebrafish genome activators Pou5f3, Sox19b and Nanog, multi-omics and mathematical modeling to investigate the combinatorial mechanisms of genome activation. We show that Pou5f3 and Nanog act differently on synergistic and antagonistic enhancer types. Pou5f3 and Nanog both bind as pioneer-like TFs on synergistic enhancers, promote histone acetylation and activate transcription. Antagonistic enhancers are activated by binding of one of these factors. The other TF binds as non-pioneer-like TF, competes with the activator and blocks all its effects, partially or completely. This activator-blocker mechanism mutually restricts widespread transcriptional activation by Pou5f3 and Nanog and prevents premature expression of late developmental regulators in the early embryo.
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ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-023-41507-z