Turnover of the active fraction of IRS1 involves Raptor-mTOR- and S6K1-dependent serine phosphorylation in cell culture models of tuberous sclerosis

被引:137
作者
Shah, O. Jameel
Hunter, Tony
机构
[1] Salk Inst Biol Studies, Mol Cell Biol Lab, La Jolla, CA 92037 USA
[2] Globa Pharmaceut Res & Dev, Div Canc Biol, Abbott Labs, Abbott Pk, IL 60064 USA
关键词
D O I
10.1128/MCB.01254-05
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
The TSC1-TSC2/Rheb/Raptor-mTOR/S6K1 cell growth cassette has recently been shown to regulate cell autonomous insulin and insulin-like growth factor I (IGF-I) sensitivity by transducing a negative feedback signal that targets insulin receptor substrates I and 2 (IRS1 and -2). Using two cell culture models of the familial hamartoma syndrome, tuberous sclerosis, we show h(re that Raptor-mTOR and S6K1 are required for phosphorylation of IRS1 at a subset of serine residues frequently associated with insulin resistance, including S307, S312, S527, S616, and S636 (of human IRS1). Using loss- and gain-of-function S6K1 constructs, we demonstrate a requirement for the catalytic activity of S6K in both direct and indirect regulation of IRS1 serine phosphorylation. S6K1 phosphorylates IRS1 in vitro on multiple residues showing strong preference for RXRXXS/T over S/T,P sites. IRS1 is preferentially depleted from the high-speed pellet fraction in TSC1/2-deficient mouse embryo fibroblasts or in HEK293/293T cells overexpressing Rheb. These studies suggest that, through serine phosphorylation, Raptor-mTOR and S6K1 cell autonomously promote the depletion of IRS1 from specific intracellular pools in pathological states of insulin and IGF-1 resistance and thus potentially in lesions associated with tuberous sclerosis.
引用
收藏
页码:6425 / 6434
页数:10
相关论文
共 48 条
[1]   Structure of S6 kinase 1 determines whether raptor-mTOR or rictor-mTOR phosphorylates its hydrophobic motif site [J].
Ali, SM ;
Sabatini, DM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (20) :19445-19448
[2]  
Boyle WJ., 1991, METHOD ENZYMOL, V201, P110
[3]   Mammalian target of rapamycin regulates IRS-1 serine 307 phosphorylation [J].
Carlson, CJ ;
White, MF ;
Rondinone, CM .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2004, 316 (02) :533-539
[4]   Intracellular localization of phosphatidylinositide 3-kinase and insulin receptor substrate-1 in adipocytes: Potential involvement of a membrane skeleton [J].
Clark, SF ;
Martin, S ;
Carozzi, AJ ;
Hill, MM ;
James, DE .
JOURNAL OF CELL BIOLOGY, 1998, 140 (05) :1211-1225
[5]   Release of insulin receptor substrate proteins from an intracellular complex coincides with the development of insulin resistance [J].
Clark, SF ;
Molero, JC ;
James, DE .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (06) :3819-3826
[6]   Regulation of the TSC pathway by LKB1: evidence of a molecular link between tuberous sclerosis complex and Peutz-Jeghers syndrome [J].
Corradetti, MN ;
Inoki, K ;
Bardeesy, N ;
DePinho, RA ;
Guan, KL .
GENES & DEVELOPMENT, 2004, 18 (13) :1533-1538
[7]   Mutation in TSC2 and activation of mammalian target of rapamycin signalling pathway in renal angiomyolipoma [J].
El-Hashemite, N ;
Zhang, HB ;
Henske, EP ;
Kwiatkowski, DJ .
LANCET, 2003, 361 (9366) :1348-1349
[8]   Signaling pathways: The benefits of good communication [J].
Fisher, TL ;
White, MF .
CURRENT BIOLOGY, 2004, 14 (23) :R1005-R1007
[9]   Insulin activation of Rheb, a mediator of mTOR/S6K/4E-BP signaling, is inhibited by TSC1 and 2 [J].
Garami, A ;
Zwartkruis, FJT ;
Nobukuni, T ;
Joaquin, M ;
Roccio, M ;
Stocker, H ;
Kozma, SC ;
Hafen, E ;
Bos, JL ;
Thomas, G .
MOLECULAR CELL, 2003, 11 (06) :1457-1466
[10]   Nutrient-dependent and insulin-stimulated phosphorylation of insulin receptor substrate-1 on serine 302 correlates with increased insulin signaling [J].
Giraud, J ;
Leshan, R ;
Lee, YH ;
White, MF .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (05) :3447-3454