Epidermal growth factor receptor efficiently activates mitogen-activated protein kinase in HeLa cells and Hep2 cells conditionally defective in clathrin-dependent endocytosis

被引:38
作者
Johannessen, LE [1 ]
Ringerike, T [1 ]
Molnes, J [1 ]
Madshus, IH [1 ]
机构
[1] Univ Oslo, Natl Hosp, Inst Pathol, N-0027 Oslo, Norway
关键词
EGF; clathrin-dependent endocytosis; MAPK; mutant dynamin; potassium depletion;
D O I
10.1006/excr.2000.5004
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Epidermal growth factor (EGF)-induced signaling was investigated in cells conditionally defective in clathrin-dependent endocytosis by overexpression of K44A dynamin in HeLa cells and potassium depletion in Hep2 cells, Overexpression of mutant dynamin disrupts high-affinity EGF-EGF receptor (EGFR) interaction (T. Ringerike, E. Stang, L. E. Johannessen, D. Sandnes, F. O. Levy, and I. H. Madshus, 1998, J. Biol. Chem. 273, 16639-16642), However, the EGFR substrates Shc and c-CbI were as efficiently tyrosine phosphorylated in endocytosis-deficient HeLa cells exhibiting only low-affinity EGFRs as in HeLa cells with intact endocytosis and with both high- and low-affinity EGFRs. Both Raf and mitogen-activated protein kinase (MAPK) were activated to the same extent and with the same kinetics. HeLa cells distributed equally in the cell cycle regardless of EGFR internalization. Upon potassium depletion of Hep2 cells, EGF-induced EGFR endocytosis was inhibited. However, the EGFR and MAPK were efficiently activated by EGF in both the absence and the presence of clathrin-dependent endocytosis. The EGFR was weakly tyrosine phosphorylated by potassium depletion even in the absente of EGF, and this activation resulted in detectable activation of MAPK. Our results demonstrate that internalization of EG;FR by clathrin-dependent endocytosis is not required for activation of MAPK (C) 2000 Academic Press.
引用
收藏
页码:136 / 145
页数:10
相关论文
共 49 条
[1]   RAF MEETS RAS - COMPLETING THE FRAMEWORK OF A SIGNAL-TRANSDUCTION PATHWAY [J].
AVRUCH, J ;
ZHANG, XF ;
KYRIAKIS, JM .
TRENDS IN BIOCHEMICAL SCIENCES, 1994, 19 (07) :279-283
[2]   The E7 oncoprotein associates with Mi2 and histone deacetylase activity to promote cell growth [J].
Brehm, A ;
Nielsen, SJ ;
Miska, EA ;
McCance, DJ ;
Reid, JL ;
Bannister, AJ ;
Kouzarides, T .
EMBO JOURNAL, 1999, 18 (09) :2449-2458
[3]   Activation of the mitogen-activated protein kinase pathway by a Gq/11-coupled muscarinic receptor is independent of receptor internalization [J].
Budd, DC ;
Rae, A ;
Tobin, AB .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (18) :12355-12360
[4]   RECEPTORS FOR EPIDERMAL GROWTH-FACTOR AND OTHER POLYPEPTIDE MITOGENS [J].
CARPENTER, G .
ANNUAL REVIEW OF BIOCHEMISTRY, 1987, 56 :881-914
[5]   Inhibition of clathrin-mediated endocytosis selectively attenuates specific insulin receptor signal transduction pathways [J].
Ceresa, BP ;
Kao, AW ;
Santeler, SR ;
Pessin, JE .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (07) :3862-3870
[6]   FUNCTIONAL INDEPENDENCE OF THE EPIDERMAL GROWTH-FACTOR RECEPTOR FROM A DOMAIN REQUIRED FOR LIGAND-INDUCED INTERNALIZATION AND CALCIUM REGULATION [J].
CHEN, WS ;
LAZAR, CS ;
LUND, KA ;
WELSH, JB ;
CHANG, CP ;
WALTON, GM ;
DER, CJ ;
WILEY, HS ;
GILL, GN ;
ROSENFELD, MG .
CELL, 1989, 59 (01) :33-43
[7]   RETINOID REGULATION OF CELL-DIFFERENTIATION IN A SERIES OF HUMAN PAPILLOMAVIRUS TYPE 16-IMMORTALIZED HUMAN CERVICAL EPITHELIAL-CELL LINES [J].
CHOO, CK ;
RORKE, EA ;
ECKERT, RL .
CARCINOGENESIS, 1995, 16 (02) :375-381
[8]   Insulin-like growth factor-1 receptor internalization regulates signaling via the Shc/mitogen-activated protein kinase pathway, but not the insulin receptor substrate-1 pathway [J].
Chow, JC ;
Condorelli, G ;
Smith, RJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (08) :4672-4680
[9]   EXTRACELLULAR SIGNALS AND REVERSIBLE PROTEIN-PHOSPHORYLATION - WHAT TO MEK OF IT ALL [J].
CREWS, CM ;
ERIKSON, RL .
CELL, 1993, 74 (02) :215-217
[10]   INDUCTION OF MUTANT DYNAMIN SPECIFICALLY BLOCKS ENDOCYTIC COATED VESICLE FORMATION [J].
DAMKE, H ;
BABA, T ;
WARNOCK, DE ;
SCHMID, SL .
JOURNAL OF CELL BIOLOGY, 1994, 127 (04) :915-934