REQUIREMENT FOR PHOSPHOINOSITIDE 3-KINASE IN INSULIN-STIMULATED GLUT4 TRANSLOCATION IN 3T3-L1 ADIPOCYTES

被引:143
作者
KOTANI, K
CAROZZI, AJ
SAKAUE, H
HARA, K
ROBINSON, LJ
CLARK, SF
YONEZAWA, K
JAMES, DE
KASUGA, M
机构
[1] KOBE UNIV,SCH MED,DEPT INTERNAL MED 2,CHUO KU,KOBE 650,JAPAN
[2] UNIV QUEENSLAND,CTR MOLEC & CELLULAR BIOL & BIOTECHNOL,BRISBANE,QLD 4072,AUSTRALIA
关键词
D O I
10.1006/bbrc.1995.1509
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
Insulin stimulates glucose transport in muscle and fat cells by inducing the redistribution of a specific glucose transporter, GLUT4 from intracellular vesicles to the cell surface. Phosphoinositide (PI) 3-kinase has been implicated as a key intermediate in insulin-stimulated glucose transport by studies that have examined the effects of wortmannin and LY294002, which are thought to be specific inhibitors of this enzyme. However, the specificity of these compounds for PI 3-kinase has recently been questioned. Epidermal growth factor, which activates mitogen-activated protein kinase in mouse 3T3-L1 adipocytes, has now been shown to have no effect on PI 3-kinase activity or GLUT4 translocation in these cells. Furthermore, microinjection of a dominant negative mutant of the 85-kDa subunit of PI 3-kinase, which lacks a binding site for the catalytic 110-kDa subunit, inhibited GLUT4 translocation induced by insulin in 3T3-L1 adipocytes; microinjection of the wild-type protein had no effect. These observations indicate that PI 3-kinase is necessary for insulin-induced GLUT4 translocation and glucose transport in adipocytes. (C) 1995 Academic Press, Inc.
引用
收藏
页码:343 / 348
页数:6
相关论文
共 21 条
[1]  
Defronzo R.A., Bonadonna R.C., Ferrannini E., Diabetes Care, (1992)
[2]  
Lames D.E., Strube M., Mueckler M., Nature, 338, pp. 83-87, (1989)
[3]  
Birnbaum M.J., Cell, 57, pp. 305-315, (1989)
[4]  
White M.F., Kahn C.R., J. Biol. Chem, 269, pp. 1-4, (1994)
[5]  
Koch C.A., Erson D., Moran M.F., Ellis C., Pawson T., Science, 252, pp. 668-674, (1991)
[6]  
Robinson L.J., Pang S., Harris D.S., Heuser J., James D.H., J. Cell Biol, 117, pp. 1181-1196, (1992)
[7]  
Kanai F., Ito K., Todaka M., Hayashi H., Kamohara S., Ishii K., Okada T., Hazeki O., Ui M., Ebina Y., Biochem. Biophys. Res. Cotnmun, 195, pp. 762-768, (1994)
[8]  
Okada T., Kawano Y., Sakakibara T., Hazeki O., Ui M., J. Biol. Chem, 269, pp. 3568-3573, (1994)
[9]  
Clark J.F., Young P.W., Yonezawa K., Kasuga M., Holman G.D., Biochem. J, 300, pp. 631-635, (1994)
[10]  
Cheatham B., Vlahos C., Cheatham J., Wang L.L., Blenis J., Kahn C.R., Mol. Cell. Biol, 14, pp. 4902-4911, (1994)