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Selective phosphorylations of the SRC-3/AIB1 coactivator integrate genomic reponses to multiple cellular signaling pathways

  • Ray Chang Wu
  • , Jun Qin
  • , Ping Yi
  • , Jiemin Wong
  • , Sophia Y. Tsai
  • , Ming Jer Tsai
  • , Bert W. O'Malley*
  • *Corresponding author for this work
  • Baylor College of Medicine

Research output: Contribution to journalArticlepeer-review

Abstract

Although several lines of evidence have indicated that the activity of SRC-3/AIB1/ACTR/pCIP/RAC3/TRAM1 could be regulated by phosphorylation, an important question remained as to how different signaling pathways can act through limiting concentrations of the same SRC-3 molecule to exert different physiological functions. Herein, we report the successful identification of six functional in vivo SRC-3 phosphorylation sites. Interestingly, all phosphorylation sites are required for coactivation of estrogen and androgen receptors, but not all sites are required for coactivation of NF-κB. Different combinations of site-specific phosphorylations of SRC-3 are required for induction of IL-6 gene expression by TNF-α as compared to oncogenic transformation of MEFs. Mechanisms of pathway selectivity involve protein-protein interactions of differentially phosphorylated SRC-3 with downstream transcriptional activators and coactivators. Our results uncovered an additional level of transcriptional regulation whereby specific modulations of SRC-3 phosphorylation allow this coactivator to function as a regulatable integrator for diverse signaling pathways in cells.

Original languageEnglish
Pages (from-to)937-949
Number of pages13
JournalMolecular Cell
Volume15
Issue number6
DOIs
StatePublished - 24 Sep 2004
Externally publishedYes

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