Chandler C E, Herschman H R
J Cell Physiol. 1980 Nov;105(2):275-85. doi: 10.1002/jcp.1041050211.
Nerve growth factor (NGF) has previously been shown to increase the rate of adhesion of PC-12 pheochromocytoma cells to cell culture dishes. This increase in the rate of adhesion was postulated to be important in NGF-mediated neurite outgrowth. We now report that epidermal growth factor (EGF) is also able to increase the rate of adhesion of PC-12 cells to cell culture dishes, but does not elicit neurite outgrowth. The dose-response curve for EGF is bell-shaped, in contrast to the more classically shaped dose-response curve obtained with NGF. Tetradecanoyl-phorbol-acetate (TPA), a potent tumor promoter, blocks the EGF-induced increase in adhesion rate of PC-12 cells, but does not alter the NGF-induced increase in adhesion rate. TPA shifts the EGF bindings curve to the right for PC-12 cells, but does not alter maximal EGF binding at saturating concentrations of EGF. The binding of NGF to PC-12 cells is not affected by TPA. NGF-induced neurite formation by PC-12 cells is unaffected by TPA, in contrast to the previously reported delay of neurite outgrowth of serum-deprived neuroblastoma cells and NGF-exposed chick embryonic ganglia cells. NGF and EGF both cause a decrease in the number of short microvilli and an increase in the number of long microvilli on PC-12 cells. TPA blocks the decrease in the number of short microvilli in EGF-treated cells, but not in NGF-treated cells. Long microvilli formation is blocked by TPA in both conditions, suggesting the latter are not involved in the increased adhesion rates.
神经生长因子(NGF)先前已被证明可提高PC-12嗜铬细胞瘤细胞与细胞培养皿的黏附速率。据推测,这种黏附速率的提高在NGF介导的神经突生长中很重要。我们现在报告,表皮生长因子(EGF)也能够提高PC-12细胞与细胞培养皿的黏附速率,但不会引发神经突生长。与用NGF获得的更典型的剂量反应曲线相比,EGF的剂量反应曲线呈钟形。十四酰佛波醇乙酸酯(TPA)是一种有效的肿瘤促进剂,可阻断EGF诱导的PC-12细胞黏附速率增加,但不会改变NGF诱导的黏附速率增加。TPA使PC-12细胞的EGF结合曲线向右移动,但在EGF饱和浓度下不会改变最大EGF结合。NGF与PC-12细胞的结合不受TPA影响。与先前报道的血清剥夺的神经母细胞瘤细胞和暴露于NGF的鸡胚神经节细胞的神经突生长延迟相反,TPA不影响PC-12细胞由NGF诱导的神经突形成。NGF和EGF均导致PC-12细胞上短微绒毛数量减少,长微绒毛数量增加。TPA可阻断EGF处理细胞中短微绒毛数量的减少,但不能阻断NGF处理细胞中短微绒毛数量的减少。在两种情况下,TPA均会阻断长微绒毛的形成,这表明长微绒毛不参与黏附速率的增加。