EPIDERMAL GROWTH-FACTOR RECEPTORS LOSE LIGAND-BINDING ABILITY AS WI-38 CELLS PROGRESS FROM SHORT-TERM TO LONG-TERM QUIESCENCE

被引:7
作者
DONIGAN, AM
CAVALLI, RC
PENA, AA
SAVAGE, CR
SOPRANO, DR
SOPRANO, KJ
机构
[1] TEMPLE UNIV, HLTH SCI CTR, SCH MED, DEPT MICROBIOL & IMMUNOL, PHILADELPHIA, PA 19140 USA
[2] TEMPLE UNIV, HLTH SCI CTR, SCH MED, DEPT BIOCHEM, PHILADELPHIA, PA 19140 USA
[3] TEMPLE UNIV, HLTH SCI CTR, SCH MED, FELS INST CANC RES & MOLEC BIOL, PHILADELPHIA, PA 19140 USA
关键词
D O I
10.1002/jcp.1041550121
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
WI-38 cells, density arrested for short periods of time, can be stimulated to re-enter the cell cycle by epidermal growth factor (EGF) alone. However, cells density arrested for longer periods have a prolonged prereplicative phase when serum stimulated and cannot be stimulated by EGF alone. Radio-ligand binding studies performed on WI-38 cells showed that actively growing cells bind [I-125]EGF at relatively low levels that increase to a maximum as the cells become contact inhibited. As the cells enter a state of deeper quiescence, EGF binding falls to one-third to one-fifth the short-term growth arrested levels, remaining constant thereafter. The EGF-receptor complexes internalize more slowly in long-term growth arrested cells, and the rate of ligand association to the receptor is lower than short-term growth arrested cells. The amount of EGF receptor protein in lysates of equal numbers of both short- and long-term quiescent cells remains the same. These results suggest that the failure of long-term growth arrested cells to respond to EGF is not due to dramatic changes in the amount of receptor protein during prolonged quiescence but more likely to an alteration in the ability of these receptors to bind ligand and/or activate the EGF signal transduction pathway.
引用
收藏
页码:164 / 170
页数:7
相关论文
共 38 条
[1]   CHANGES IN G0 STATE OF WI-38 FIBROBLASTS AT DIFFERENT TIMES AFTER CONFLUENCE [J].
AUGENLICHT, LH ;
BASERGA, R .
EXPERIMENTAL CELL RESEARCH, 1974, 89 (02) :255-262
[2]  
Baserga R, 1969, AUTORADIOGRAPHY TECH
[3]   EPIDERMAL GROWTH-FACTOR [J].
CARPENTER, G ;
COHEN, S .
ANNUAL REVIEW OF BIOCHEMISTRY, 1979, 48 :193-216
[4]  
CARPENTER G, 1990, J BIOL CHEM, V265, P7709
[5]   I125 LABELED HUMAN EPIDERMAL GROWTH-FACTOR - BINDING, INTERNALIZATION, AND DEGRADATION IN HUMAN FIBROBLASTS [J].
CARPENTER, G ;
COHEN, S .
JOURNAL OF CELL BIOLOGY, 1976, 71 (01) :159-171
[6]   RECEPTORS FOR EPIDERMAL GROWTH-FACTOR AND OTHER POLYPEPTIDE MITOGENS [J].
CARPENTER, G .
ANNUAL REVIEW OF BIOCHEMISTRY, 1987, 56 :881-914
[7]  
COSENZA SC, 1988, J BIOL CHEM, V263, P12751
[8]   CELLULAR SENESCENCE AND DNA-SYNTHESIS - THYMIDINE INCORPORATION AS A MEASURE OF POPULATION AGE IN HUMAN DIPLOID CELLS [J].
CRISTOFALO, VJ ;
SHARF, BB .
EXPERIMENTAL CELL RESEARCH, 1973, 76 (02) :419-427
[9]   EPIDERMAL GROWTH-FACTOR - MECHANISMS OF ACTION [J].
DAS, M .
INTERNATIONAL REVIEW OF CYTOLOGY-A SURVEY OF CELL BIOLOGY, 1982, 78 :233-256
[10]   TRANSFORMING GROWTH FACTOR-ALPHA - STRUCTURE AND BIOLOGICAL-ACTIVITIES [J].
DERYNCK, R .
JOURNAL OF CELLULAR BIOCHEMISTRY, 1986, 32 (04) :293-304