Therapeutic Discovery Modulation of 4E-BP1 Function as a Critical Determinant of Enzastaurin-Induced Apoptosis

نویسندگان

  • Chad A. Dumstorf
  • Bruce W. Konicek
  • Ann M. McNulty
  • Stephen H. Parsons
  • Luc Furic
  • Jeremy R. Graff
چکیده

Enzastaurin (LY317615.HCl) is currently in a phase III registration trial for diffuse large B-Cell lymphoma and numerous phase II clinical trials. Enzastaurin suppresses angiogenesis and induces apoptosis in multiple human tumor cell lines by inhibiting protein kinase C (PKC) and phosphoinositide 3-kinase (PI3K)/AKT pathway signaling. PI3K/AKT pathway signaling liberates eukaryotic translation initiation factor 4E (eIF4E) through the hierarchical phosphorylation of eIF4E binding proteins (4E-BP). When hypophosphorylated, 4EBPs associatewith eIF4E, preventing eIF4E frombinding eIF4G, blocking the formation of the eIF4F translation initiation complex.Herein,we show that enzastaurin treatment impacts signaling throughout theAKT/mTOR pathway leading to hypophosphorylation of 4E-BP1 in cancer cells of diverse lineages (glioblastoma, colon carcinoma, and B-cell lymphoma). Accordingly, enzastaurin treatment increases the amount of eIF4E bound to 4E-BP1 and decreases association of eIF4E with eIF4G, thereby reducing eIF4F translation initiation complex levels. We therefore chose to evaluate whether this effect on 4E-BP1 was involved in enzastaurin-induced apoptosis. Remarkably, enzastaurin-induced apoptosis was blocked in cancer cells depleted of 4E-BP1 by siRNAs, or in 4EBP1/2 knockout murine embryonic fibroblasts cells. Furthermore, eIF4E expression was increased and 4E-BP1 expressionwas decreased in cancer cells selected for reduced sensitivity to enzastaurininduced apoptosis. These data highlight the importance of modulating 4E-BP1 function, and eIF4F complex levels, in the direct antitumor effect of enzastaurin and suggest that 4E-BP1 functionmay serve as a promising determinant of enzastaurin activity. Mol Cancer Ther; 9(12); 3158–63. 2010 AACR.

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تاریخ انتشار 2010