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PMID: 10910062 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

A direct linkage between the phosphoinositide 3-kinase-AKT signaling pathway and the mammalian target of rapamycin in mitogen-stimulated and transformed cells.

Cancer research ·Vol. 60 ·No. 13 ·2000-07-01 ·Pages 3504-13

Sekulić A, Hudson CC, Homme JL, Yin P, Otterness DM, Karnitz LM, Abraham RT

Abstract

The microbially derived antiproliferative agent rapamycin inhibits cell growth by interfering with the signaling functions of the mammalian target of rapamycin (mTOR). In this study, we demonstrate that interleukin-3 stimulation induces a wortmannin-sensitive increase in mTOR kinase activity in a myeloid progenitor cell line. The involvement of phosphoinositide 3'-kinase (PI3K) in the regulation of mTOR activity was further suggested by findings that mTOR was phosphorylated in vitro and in vivo by the PI3K-regulated protein kinase, AKT/PKB. Although AKT phosphorylated mTOR at two COOH-terminal sites (Thr2446 and Ser2448) in vitro, Ser2448 was the major phosphorylation site in insulin-stimulated or -activated AKT-expressing human embryonic kidney cells. Transient transfection assays with mTOR mutants bearing Ala substitutions at Ser2448 and/or Thr2446 indicated that AKT-dependent mTOR phosphorylation was not essential for either PHAS-I phosphorylation or p70S6K activation in HEK cells. However, a deletion of amino acids 2430-2450 in mTOR, which includes the potential AKT phosphorylation sites, significantly increased both the basal protein kinase activity and in vivo signaling functions of mTOR. These results demonstrate that mTOR is a direct target of the PI3K-AKT signaling pathway in mitogen-stimulated cells, and that the identified AKT phosphorylation sites are nested within a "repressor domain" that negatively regulates the catalytic activity of mTOR. Furthermore, the activation status of the PI3K-AKT pathway in cancer cells may be an important determinant of cellular sensitivity to the cytostatic effect of rapamycin.

MeSH Terms
Androstadienes/pharmacology Animals Cell Line Cell Line, Transformed Enzyme Inhibitors/pharmacology Humans Interleukin-3/pharmacology Kidney Kinetics Mammals Mice Phosphatidylinositol 3-Kinases/metabolism Phosphorylation Phosphotransferases (Alcohol Group Acceptor)/metabolism Protein Kinases Protein Serine-Threonine Kinases Proto-Oncogene Proteins/metabolism Proto-Oncogene Proteins c-akt Recombinant Proteins/metabolism,pharmacology Signal Transduction/drug effects,physiology Sirolimus/pharmacology TOR Serine-Threonine Kinases Transfection Wortmannin
Chemicals
Androstadienes Enzyme Inhibitors Interleukin-3 Proto-Oncogene Proteins Recombinant Proteins Protein Kinases Phosphotransferases (Alcohol Group Acceptor) MTOR protein, human mTOR protein, mouse AKT1 protein, human Protein Serine-Threonine Kinases Proto-Oncogene Proteins c-akt TOR Serine-Threonine Kinases Sirolimus Wortmannin
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Sekulić A
Department of Immunology, Mayo Clinic, Rochester, Minnesota 55905, USA.
Hudson C C
Homme J L
Yin P
Otterness D M
Karnitz L M
Abraham R T
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
2000-07-01
Pages
3504-13
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
Grants
NCI NIH HHS · CA 52995 · United States
NCI NIH HHS · CA 76193 · United States
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