
[Cancer Research 65, 7052-7058, August 15, 2005]
© 2005 American Association for Cancer Research
Activation of Akt and eIF4E Survival Pathways by Rapamycin-Mediated Mammalian Target of Rapamycin Inhibition
Shi-Yong Sun1,
Laura M. Rosenberg1,
Xuerong Wang1,
Zhongmei Zhou1,
Ping Yue1,
Haian Fu2 and
Fadlo R. Khuri1
1 Department of Hematology and Oncology and Winship Cancer Institute and 2 Department of Pharmacology, Emory University School of Medicine, Atlanta, Georgia
Requests for reprints: Shi-Yong Sun, Winship Cancer Institute, Emory University School of Medicine, 1365-C Clifton Road, C3088, Atlanta, GA 30322. Phone: 404-778-2170; Fax: 404-778-5520; E-mail: shi-yong_sun{at}emoryhealthcare.org.
The mammalian target of rapamycin (mTOR) has emerged as an important cancer therapeutic target. Rapamycin and its derivatives that specifically inhibit mTOR are now being actively evaluated in clinical trials. Recently, the inhibition of mTOR has been shown to reverse Akt-dependent prostate intraepithelial neoplasia. However, many cancer cells are resistant to rapamycin and its derivatives. The mechanism of this resistance remains a subject of major therapeutic significance. Here we report that the inhibition of mTOR by rapamycin triggers the activation of two survival signaling pathways that may contribute to drug resistance. Treatment of human lung cancer cells with rapamycin suppressed the phosphorylation of p70S6 kinase and 4E-BP1, indicating an inhibition of mTOR signaling. Paradoxically, rapamycin also concurrently increased the phosphorylation of both Akt and eIF4E. The rapamycin-induced phosphorylation of Akt and eIF4E was suppressed by the phosphatidylinositol-3 kinase (PI3K) inhibitor LY294002, suggesting the requirement of PI3K in this process. The activated Akt and eIF4E seem to attenuate rapamycin's growth-inhibitory effects, serving as a negative feedback mechanism. In support of this model, rapamycin combined with LY294002 exhibited enhanced inhibitory effects on the growth and colony formation of cancer cells. Thus, our study provides a mechanistic basis for enhancing mTOR-targeted cancer therapy by combining an mTOR inhibitor with a PI3K or Akt inhibitor.
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I. K. Mellinghoff, T. F. Cloughesy, and P. S. Mischel
PTEN-Mediated Resistance to Epidermal Growth Factor Receptor Kinase Inhibitors
Clin. Cancer Res.,
January 15, 2007;
13(2):
378 - 381.
[Abstract]
[Full Text]
[PDF]
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Z. Ma, S. L. Gibson, M. A. Byrne, J. Zhang, M. F. White, and L. M. Shaw
Suppression of Insulin Receptor Substrate 1 (IRS-1) Promotes Mammary Tumor Metastasis
Mol. Cell. Biol.,
December 15, 2006;
26(24):
9338 - 9351.
[Abstract]
[Full Text]
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E. Peponi, E. Drakos, G. Reyes, V. Leventaki, G. Z. Rassidakis, and L. J. Medeiros
Activation of Mammalian Target of Rapamycin Signaling Promotes Cell Cycle Progression and Protects Cells from Apoptosis in Mantle Cell Lymphoma
Am. J. Pathol.,
December 1, 2006;
169(6):
2171 - 2180.
[Abstract]
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K. W.L. Yee, Z. Zeng, M. Konopleva, S. Verstovsek, F. Ravandi, A. Ferrajoli, D. Thomas, W. Wierda, E. Apostolidou, M. Albitar, et al.
Phase I/II Study of the Mammalian Target of Rapamycin Inhibitor Everolimus (RAD001) in Patients with Relapsed or Refractory Hematologic Malignancies
Clin. Cancer Res.,
September 1, 2006;
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5165 - 5173.
[Abstract]
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D. Del Bufalo, L. Ciuffreda, D. Trisciuoglio, M. Desideri, F. Cognetti, G. Zupi, and M. Milella
Antiangiogenic Potential of the Mammalian Target of Rapamycin Inhibitor Temsirolimus
Cancer Res.,
June 1, 2006;
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[Abstract]
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B. A. Jacobson, M. D. Alter, M. G. Kratzke, S. P. Frizelle, Y. Zhang, M. S. Peterson, S. Avdulov, R. P. Mohorn, B. A. Whitson, P. B. Bitterman, et al.
Repression of Cap-Dependent Translation Attenuates the Transformed Phenotype in Non-Small Cell Lung Cancer Both In vitro and In vivo.
Cancer Res.,
April 15, 2006;
66(8):
4256 - 4262.
[Abstract]
[Full Text]
[PDF]
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P. Maione, C. Gridelli, T. Troiani, and F. Ciardiello
Combining Targeted Therapies and Drugs with Multiple Targets in the Treatment of NSCLC.
Oncologist,
March 1, 2006;
11(3):
274 - 284.
[Abstract]
[Full Text]
[PDF]
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K. S. Klos, S. L. Wyszomierski, M. Sun, M. Tan, X. Zhou, P. Li, W. Yang, G. Yin, W. N. Hittelman, and D. Yu
ErbB2 Increases Vascular Endothelial Growth Factor Protein Synthesis via Activation of Mammalian Target of Rapamycin/p70S6K Leading to Increased Angiogenesis and Spontaneous Metastasis of Human Breast Cancer Cells
Cancer Res.,
February 15, 2006;
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[Abstract]
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K. E. O'Reilly, F. Rojo, Q.-B. She, D. Solit, G. B. Mills, D. Smith, H. Lane, F. Hofmann, D. J. Hicklin, D. L. Ludwig, et al.
mTOR Inhibition Induces Upstream Receptor Tyrosine Kinase Signaling and Activates Akt
Cancer Res.,
February 1, 2006;
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[Abstract]
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Copyright © 2005 by the American Association for Cancer Research.