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mTOR Inhibition Induces Upstream Receptor Tyrosine Kinase Signaling and Activates Akt

Cancer Research · 2006 · Vol. 66(3) · pp. 1500–1508
Kathryn O’ReillyF. RojoQing‐Bai SheDavid B. SolitGordon B. MillsDebra L. SmithHeidi A. LaneFrancesco HofmannDaniel J. HicklinDale L. LudwigJosé BaselgaNeal Rosen

Abstract

Stimulation of the insulin and insulin-like growth factor I (IGF-I) receptor activates the phosphoinositide-3-kinase/Akt/mTOR pathway causing pleiotropic cellular effects including an mTOR-dependent loss in insulin receptor substrate-1 expression leading to feedback down-regulation of signaling through the pathway. In model systems, tumors exhibiting mutational activation of phosphoinositide-3-kinase/Akt kinase, a common event in cancers, are hypersensitive to mTOR inhibitors, including rapamycin. Despite the activity in model systems, in patients, mTOR inhibitors exhibit more modest antitumor activity. We now show that mTOR inhibition induces insulin receptor substrate-1 expression and abrogates feedback inhibition of the pathway, resulting in Akt activation both in cancer cell lines and in patient tumors treated with the rapamycin derivative, RAD001. IGF-I receptor inhibition prevents rapamycin-induced Akt activation and sensitizes tumor cells to inhibition of mTOR. In contrast, IGF-I reverses the antiproliferative effects of rapamycin in serum-free medium. The data suggest that feedback down-regulation of receptor tyrosine kinase signaling is a frequent event in tumor cells with constitutive mTOR activation. Reversal of this feedback loop by rapamycin may attenuate its therapeutic effects, whereas combination therapy that ablates mTOR function and prevents Akt activation may have improved antitumor activity.

PI3K/AKT/mTOR signaling in cancerProtein Kinase Regulation and GTPase SignalingMetabolism, Diabetes, and CancerPI3K/AKT/mTOR pathwayProtein kinase BReceptor tyrosine kinaseCancer researchInsulin receptorTyrosine kinaseRPTORSignal transductionBiologyInsulin-like growth factor 1 receptor

MeSH terms

Drug SynergismEnzyme ActivationHumansInsulin-Like Growth Factor IPhosphoproteinsPhosphorylationProtein KinasesReceptor, IGF Type 1Phosphatidylinositol 3-KinasesSirolimusCell Line, TumorProtein Kinase InhibitorsProto-Oncogene Proteins c-aktInsulin Receptor Substrate ProteinsTOR Serine-Threonine Kinases

Funding

  • National Institutes of Health
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