Akt phosphorylation of p300 at Ser-1834 is essential for its histone acetyltransferase and transcriptional activity

WC Huang, CC Chen - Molecular and cellular biology, 2005 - Taylor & Francis
WC Huang, CC Chen
Molecular and cellular biology, 2005Taylor & Francis
The PI3K/Akt pathway plays a critical role in the regulation of gene expression induced by
numerous stimuli. p300, a transcriptional coactivator, acts in concert with transcription factors
to facilitate gene expression. Here, we show that Akt is activated and translocated to the
nucleus in response to tumor necrosis factor alpha. Nuclear Akt associates with p300 and
phosphorylates its Ser-1834 both in vivo and in vitro. The phosphorylation induces
recruitment of p300 to the ICAM-1 promoter, leading to the acetylation of histones in …
The PI3K/Akt pathway plays a critical role in the regulation of gene expression induced by numerous stimuli. p300, a transcriptional coactivator, acts in concert with transcription factors to facilitate gene expression. Here, we show that Akt is activated and translocated to the nucleus in response to tumor necrosis factor alpha. Nuclear Akt associates with p300 and phosphorylates its Ser-1834 both in vivo and in vitro. The phosphorylation induces recruitment of p300 to the ICAM-1 promoter, leading to the acetylation of histones in chromatin and association with the basal transcriptional machinery RNA polymerase II. These two events facilitate ICAM-1 gene expression and are abolished by the p300 S1834A mutant, inhibitors of PI3K/Akt, or small interfering RNA of Akt. Histone acetylation is attributed to the Akt-enhanced intrinsic histone acetyltransferase (HAT) activity of p300 and its association with another HAT, p/CAF. Our study provides a new insight into the molecular mechanism by which Akt promotes the transcriptional potential of p300.
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