Target of rapamycin (TOR): an integrator of nutrient and growth factor signals and coordinator of cell growth and cell cycle progression

被引:1053
作者
Fingar, DC
Blenis, J
机构
[1] Harvard Univ, Sch Med, Dept Cell Biol, Boston, MA 02115 USA
[2] Univ Michigan, Sch Med, Dept Cell & Dev Biol, Ann Arbor, MI 48109 USA
关键词
TOR; rapamycin; S6K1; 4E-BP1; cell growth;
D O I
10.1038/sj.onc.1207542
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cell growth (an increase in cell mass and size through macromolecular biosynthesis) and cell cycle progression are generally tightly coupled, allowing cells to proliferate continuously while maintaining their size. The target of rapamycin (TOR) is an evolutionarily conserved kinase that integrates signals from nutrients (amino acids and energy) and growth factors (in higher eukaryotes) to regulate cell growth and cell cycle progression coordinately. In mammals, TOR is best known to regulate translation through the ribosomal protein S6 kinases (S6Ks) and the eukaryotic translation initiation factor 4E-binding proteins. Consistent with the contribution of translation to growth, TOR regulates cell, organ, and organismal size. The identification of the tumor suppressor proteins tuberous sclerosis1 and 2 (TSC1 and 2) and Ras-homolog enriched in brain (Rheb) has biochemically linked the TOR and phosphatidylinositol 3-kinase (PI3K) pathways, providing a mechanism for the crosstalk that occurs between these pathways. TOR is emerging as a novel antitumor target, since the TOR inhibitor rapamycin appears to be effective against tumors resulting from aberrantly high PI3K signaling. Not only may inhibition of TOR be effective in cancer treatment, but rapamycin is an FDA-approved immunosuppressive and cardiology drug. We review here what is known (and not known) about the function of TOR in cellular and animal physiology.
引用
收藏
页码:3151 / 3171
页数:21
相关论文
共 235 条
[31]   Insulin resistance and a diabetes mellitus-like syndrome in mice lacking the protein kinase Akt2 (PKBβ) [J].
Cho, H ;
Mu, J ;
Kim, JK ;
Thorvaldsen, JL ;
Chu, QW ;
Crenshaw, EB ;
Kaestner, KH ;
Bartolomei, MS ;
Shulman, GI ;
Birnbaum, MJ .
SCIENCE, 2001, 292 (5522) :1728-1731
[32]   Structure of the FKBP12-rapamycin complex interacting with the binding domain of human FRAP [J].
Choi, JW ;
Chen, J ;
Schreiber, SL ;
Clardy, J .
SCIENCE, 1996, 273 (5272) :239-242
[33]   Two motifs in the translational repressor PHAS-I required for efficient phosphorylation by mammalian target of rapamycin and for recognition by raptor [J].
Choi, KM ;
McMahon, LP ;
Lawrence, JC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (22) :19667-19673
[34]   The 70 kDa S6 kinase complexes with and is activated by the Rho family G proteins Cdc42 and Rac1 [J].
Chou, MM ;
Blenis, J .
CELL, 1996, 85 (04) :573-583
[35]   A nutrient sensor mechanism controls Drosophila growth [J].
Colombani, J ;
Raisin, S ;
Pantalacci, S ;
Radimerski, T ;
Montagne, J ;
Léopold, P .
CELL, 2003, 114 (06) :739-749
[36]   Extracellular control of cell size [J].
Conlon, IJ ;
Dunn, GA ;
Mudge, AW ;
Raff, MC .
NATURE CELL BIOLOGY, 2001, 3 (10) :918-921
[37]   Elucidating TOR signaling and rapamycin action:: lessons from Saccharomyces cerevisiae [J].
Crespo, JL ;
Hall, MN .
MICROBIOLOGY AND MOLECULAR BIOLOGY REVIEWS, 2002, 66 (04) :579-+
[38]   RETRACTED: Phosphatidylinositol 3-kinase/Akt pathway regulates tuberous sclerosis tumor suppressor complex by phosphorylation of tuberin (Retracted Article) [J].
Dan, HC ;
Sun, M ;
Yang, L ;
Feldman, RI ;
Sui, XM ;
Ou, CC ;
Nellist, M ;
Yeung, RS ;
Halley, DJJ ;
Nicosia, SV ;
Pledger, WJ ;
Cheng, JQ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (38) :35364-35370
[39]   The Drosophila cyclin D-cdk4 complex promotes cellular growth [J].
Datar, SA ;
Jacobs, HW ;
de la Cruz, AFA ;
Lehner, CF ;
Edgar, BA .
EMBO JOURNAL, 2000, 19 (17) :4543-4554
[40]   eIF4E expression in tumors: its possible role in progression of malignancies [J].
De Benedetti, A ;
Harris, AL .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 1999, 31 (01) :59-72