The macrocyclic lactone antibiotic rapamycin is a novel anticancer agent that specifically inhibits the activity of a protein kinase (mTOR) that controls translation of proteins involved in cell cycle progression and survival. Our studies in Project 1 have shown that the response to mTOR inhibition in normal and malignant cells is qualitatively different: Rapamycin causes G1 phase arrest and cytostasis in normal cells, whereas tumor cells with deficient G1 checkpoint function (p53/p21) transit G1 phase and undergo apoptosis. Insulin-like growth factor I (IGF-I) uniquely protects against apoptosis. Studies proposed will focus on combining CCI-779, a rapamycin ester undergoing clinical trials, with inhibitors of IGF-I signaling, and further determine the mechanism(s) responsible for acquired and intrinsic resistance to CCI-779. We will attempt to develop biochemical assays to measure mTOR inhibition in tumor tissue, and develop potentially novel combinations of CCI-779 in support of our proposed clinical studies in children when the agent is made available. Specific hypothesis to be tested are:1. Inhibition of IFG-I receptor signaling will prevent IGF-I protection against rapamycin-induced apoptosis, and promote apoptosis selectively in cells lacking wild type p53. 2. Regulation of 4E-BP protein levels is a critical determinant of rapamycin sensitivity. 3. Tumor response to high dose CCI-779 is dependent on mTOR inhibition, and is associated with prolonged inhibition of eIF4E-dependent translation. 4. The long-term goal of these studies is to develop alternative approaches to curative therapy for children (and adults) with cancer. This is based in part on an understanding of IGF-I receptor signaling in growth and survival of pediatric cancer cells, and partly on the observation that inhibition of mTOR signaling is selectively cytotoxic to cells that have aberrant p53/p21-dependent G1 checkpoints.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
1R01CA096696-01
Application #
6507220
Study Section
Special Emphasis Panel (ZRG1-CONC (04))
Program Officer
Forry, Suzanne L
Project Start
2002-09-01
Project End
2006-08-31
Budget Start
2002-09-01
Budget End
2003-08-31
Support Year
1
Fiscal Year
2002
Total Cost
$300,375
Indirect Cost
Name
St. Jude Children's Research Hospital
Department
Type
DUNS #
067717892
City
Memphis
State
TN
Country
United States
Zip Code
38105
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Kurmasheva, Raushan T; Harwood, Franklin C; Houghton, Peter J (2007) Differential regulation of vascular endothelial growth factor by Akt and mammalian target of rapamycin inhibitors in cell lines derived from childhood solid tumors. Mol Cancer Ther 6:1620-8
Graham, Claire; Tucker, Chandra; Creech, Jeremy et al. (2006) Evaluation of the antitumor efficacy, pharmacokinetics, and pharmacodynamics of the histone deacetylase inhibitor depsipeptide in childhood cancer models in vivo. Clin Cancer Res 12:223-34
Kurmasheva, R T; Huang, S; Houghton, P J (2006) Predicted mechanisms of resistance to mTOR inhibitors. Br J Cancer 95:955-60
Saab, Raya; Bills, Jennifer L; Miceli, Alexander P et al. (2006) Pharmacologic inhibition of cyclin-dependent kinase 4/6 activity arrests proliferation in myoblasts and rhabdomyosarcoma-derived cells. Mol Cancer Ther 5:1299-308
Kurmasheva, Raushan T; Houghton, Peter J (2006) IGF-I mediated survival pathways in normal and malignant cells. Biochim Biophys Acta 1766:1-22
Teachey, David T; Obzut, Dana A; Cooperman, Jonathan et al. (2006) The mTOR inhibitor CCI-779 induces apoptosis and inhibits growth in preclinical models of primary adult human ALL. Blood 107:1149-55
Bois, Philippe R J; Izeradjene, Kamel; Houghton, Peter J et al. (2005) FOXO1a acts as a selective tumor suppressor in alveolar rhabdomyosarcoma. J Cell Biol 170:903-12
Peterson, Jennifer K; Tucker, Chandra; Favours, Edward et al. (2005) In vivo evaluation of ixabepilone (BMS247550), a novel epothilone B derivative, against pediatric cancer models. Clin Cancer Res 11:6950-8

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