The antiapoptotic gene mcl-1 is up-regulated by the phosphatidylinositol 3-Kinase/Akt signaling pathway through a transcription factor complex containing CREB
Jm. Wang et al., The antiapoptotic gene mcl-1 is up-regulated by the phosphatidylinositol 3-Kinase/Akt signaling pathway through a transcription factor complex containing CREB, MOL CELL B, 19(9), 1999, pp. 6195-6206
mcl-1 is an immediate-early gene activated by the granulocyte-macrophage co
lony-stimulating factor (GMCSF) and interleukin 3 (IL-3) signaling pathways
and plays an important role in the viability response of these cytokines.
In this study, we demonstrated that cytokine stimulation of mcl-1 mRNA and
protein expression were attenuated by pretreatment of cells with phosphatid
ylinositol 3-kinase (PB-K) inhibitors. Reporter gene assays further showed
that the PI3-K/Akt signaling pathway was involved in IL-3 activation of mcl
-1 gene transcription. Analysis of the mcl-1 promoter revealed that both pr
omoter elements, SIE at position -87 and CRE-2 at -70, contribute to IL-3 s
timulation of mcl-1 gene expression. Although either the SIE site or the CR
E-2 site alone was sufficient to confer IL-3 inducibility on a heterologous
promoter, only IL-3 activation of the CRE-2 reporter was mediated via the
PI3-K/Akt pathway. The SIE binding activity was constitutively high in cell
s deprived of or stimulated by IL-3. In contrast, the CRE-2 binding activit
y was low in cytokine-starved cells and was strongly induced within 1 h fol
lowing cytokine treatment of cells. In addition, cytokine induction of the
CRE-2 but not of the SIE binding activity was dependent on activation of th
e PI3-K/Akt signaling pathway. Lastly, we showed that CREB was one componen
t of the CRE-2 binding complex and played a role in IL-3 activation of the
mcl-1 reporter gene. Taken together, our results suggest that both PI3-K/Ak
t-dependent and -independent pathways contribute to the IL-3 activation of
mcl-1 gene expression. Activation of mcl-1 by the PI3-K/Akt-dependent pathw
ay is through a transcription factor complex containing CREB.