Molecular mechanism of insulin-induced degradation of insulin receptor substrate 1

被引:188
作者
Zhande, R [1 ]
Mitchell, JJ [1 ]
Wu, J [1 ]
Sun, XJ [1 ]
机构
[1] Univ Vermont, Coll Med, Div Endocrinol, Burlington, VT 05405 USA
关键词
D O I
10.1128/MCB.22.4.1016-1026.2002
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
Insulin receptor substrate 1 (IRS-1) plays an important role in the insulin signaling cascade. In vitro and in vivo studies from many investigators have suggested that lowering of IRS-1 cellular levels may be a mechanism of disordered insulin action (so-called insulin resistance). We previously reported that the protein levels of IRS-1 were selectively regulated by a proteasome degradation pathway in CHO/IR/IRS-1 cells and 3T3-L1 adipocytes during prolonged insulin exposure, whereas IRS-2 was unaffected. We have now studied the signaling events that are involved in activation of the IRS-1 proteasome degradation pathway. Additionally, we have addressed structural elements in IRS-1 versus IRS-2 that are required for its specific proteasome degradation. Using ts20 cells, which express a temperature-sensitive mutant of ubiquitin-activating enzyme E1, ubiquitination of IRS-1 was shown to be a prerequisite for insulin-induced IRS-1 proteasome degradation. Using IRS-1/IRS-2 chimeric proteins, the N-terminal region of IRS-1 including the PH and PTB domains was identified as essential for targeting IRS-1 to the ubiquitin-proteasome degradation pathway. Activation of phosphatidylinositol 3-kinase is necessary but not sufficient for activating and sustaining the IRS-1 ubiquitin-proteasome degradation pathway. In contrast, activation of mTOR is not required for IRS-1 degradation in CHO/IR cells. Thus, our data provide insight into the molecular mechanism of insulin-induced activation of the IRS-1 ubiquitin-proteasome degradation pathway.
引用
收藏
页码:1016 / 1026
页数:11
相关论文
共 87 条
[1]
Altered expression levels and impaired steps in the pathway to phosphatidylinositol 3-kinase activation via insulin receptor substrates 1 and 2 in Zucker fatty rats [J].
Anai, M ;
Funaki, M ;
Ogihara, T ;
Terasaki, J ;
Inukai, K ;
Katagiri, H ;
Fukushima, Y ;
Yazaki, Y ;
Kikuchi, M ;
Oka, Y ;
Asano, T .
DIABETES, 1998, 47 (01) :13-23
[2]
A role of the kinase mTOR in cellular transformation induced by the oncoproteins P3k and Akt [J].
Aoki, M ;
Blazek, E ;
Vogt, PK .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (01) :136-141
[3]
ALTERNATIVE PATHWAY OF INSULIN SIGNALING IN MICE WITH TARGETED DISRUPTION OF THE IRS-1 GENE [J].
ARAKI, E ;
LIPES, MA ;
PATTI, ME ;
BRUNING, JC ;
HAAG, B ;
JOHNSON, RS ;
KAHN, CR .
NATURE, 1994, 372 (6502) :186-190
[4]
PHOSPHATIDYLINOSITOL 3'-KINASE IS ACTIVATED BY ASSOCIATION WITH IRS-1 DURING INSULIN STIMULATION [J].
BACKER, JM ;
MYERS, MG ;
SHOELSON, SE ;
CHIN, DJ ;
SUN, XJ ;
MIRALPEIX, M ;
HU, P ;
MARGOLIS, B ;
SKOLNIK, EY ;
SCHLESSINGER, J ;
WHITE, MF .
EMBO JOURNAL, 1992, 11 (09) :3469-3479
[5]
BACKER JM, 1993, J BIOL CHEM, V268, P8204
[6]
Development of a novel polygenic model of NIDDM in mice heterozygous for IR and IRS-1 null alleles [J].
Bruning, JC ;
Winnay, J ;
BonnerWeir, S ;
Taylor, SI ;
Accili, D ;
Kahn, CR .
CELL, 1997, 88 (04) :561-572
[7]
PROTEIN-KINASE-B (C-AKT) IN PHOSPHATIDYLINOSITOL-3-OH INASE SIGNAL-TRANSDUCTION [J].
BURGERING, BMT ;
COFFER, PJ .
NATURE, 1995, 376 (6541) :599-602
[8]
PDGF-DEPENDENT AND INSULIN-DEPENDENT PP70(S6K) ACTIVATION MEDIATED BY PHOSPHATIDYLINOSITOL-3-OH KINASE [J].
CHUNG, JK ;
GRAMMER, TC ;
LEMON, KP ;
KAZLAUSKAS, A ;
BLENIS, J .
NATURE, 1994, 370 (6484) :71-75
[9]
THE UBIQUITIN-PROTEASOME PROTEOLYTIC PATHWAY [J].
CIECHANOVER, A .
CELL, 1994, 79 (01) :13-21
[10]
The ubiquitin-proteasome pathway: on protein death and cell life [J].
Ciechanover, A .
EMBO JOURNAL, 1998, 17 (24) :7151-7160