A coordinated phosphorylation cascade initiated by MSK1 directs RAR alpha recruitment to target gene promoters

The nuclear retinoic acid (RA) receptor alpha (RAR ) is a transcriptional transregulator that controls the expression of specific gene subsets through binding at response elements and dynamic interactions with coregulators, which are coordinated by the ligand. Here, we highlighted a novel paradigm i...

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Veröffentlicht in:Nature precedings 2008-07
Hauptverfasser: Bruck, Nathalie, Vitoux, Dominique, Ferry, Christine, Duong, Vanessa, Bauer, Annie, de The, Hughes, Rochette-Egly, Cecile
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Sprache:eng
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Zusammenfassung:The nuclear retinoic acid (RA) receptor alpha (RAR ) is a transcriptional transregulator that controls the expression of specific gene subsets through binding at response elements and dynamic interactions with coregulators, which are coordinated by the ligand. Here, we highlighted a novel paradigm in which the transcription of RAR -target genes is controlled by phosphorylation cascades initiated by the rapid RA activation of the p38MAPK/MSK1 pathway. We demonstrate that MSK1 phosphorylates RAR at S369 located in the Ligand Binding Domain, allowing the binding of TFIIH and thereby phosphorylation of the N-terminal domain at S77 by cdk7/cyclin H. MSK1 also phosphorylates Histone H3 at S10. Finally, the phosphorylation cascade initiated by MSK1 is required for the recruitment of RAR /TFIIH complexes to response elements and subsequently for RAR target genes activation. Cancer cells characterized by a deregulated p38MAPK/MSK1 pathway, do not respond to RA, outlining the essential contribution of the RA-triggered phosphorylation cascade in RA signaling.
ISSN:1756-0357
1756-0357
DOI:10.1038/npre.2008.2107.1