Cis-regulatory interfaces reveal the molecular mechanisms underlying the notochord gene regulatory network of Ciona

Tissue-specific gene expression is fundamental in development and evolution, and is mediated by transcription factors and by the cis -regulatory regions (enhancers) that they control. Transcription factors and their respective tissue-specific enhancers are essential components of gene regulatory net...

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Veröffentlicht in:Nature communications 2024-04, Vol.15 (1), p.3025-3025, Article 3025
Hauptverfasser: Negrón-Piñeiro, Lenny J., Wu, Yushi, Popsuj, Sydney, José-Edwards, Diana S., Stolfi, Alberto, Di Gregorio, Anna
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Sprache:eng
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Zusammenfassung:Tissue-specific gene expression is fundamental in development and evolution, and is mediated by transcription factors and by the cis -regulatory regions (enhancers) that they control. Transcription factors and their respective tissue-specific enhancers are essential components of gene regulatory networks responsible for the development of tissues and organs. Although numerous transcription factors have been characterized from different organisms, the knowledge of the enhancers responsible for their tissue-specific expression remains fragmentary. Here we use Ciona to study the enhancers associated with ten transcription factors expressed in the notochord, an evolutionary hallmark of the chordate phylum. Our results illustrate how two evolutionarily conserved transcription factors, Brachyury and Foxa2, coordinate the deployment of other notochord transcription factors. The results of these detailed cis -regulatory analyses delineate a high-resolution view of the essential notochord gene regulatory network of Ciona , and provide a reference for studies of transcription factors, enhancers, and their roles in development, disease, and evolution. The notochord is an essential hallmark of the chordate phylum. Here, Negrón-Piñeiro et al. study the notochord gene regulatory network in Ciona , and their findings illustrate how notochord transcription factors are coordinated by Brachyury and Foxa2.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-46850-3