Scheffrahn Inka, Singer Bernhard B, Sigmundsson Kristmundur, Lucka Lothar, Obrink Björn
Department of Cell and Molecular Biology, Medical Nobel Institute, Box 285, Karolinska Institutet, SE-171 77 Stockholm, Sweden.
Exp Cell Res. 2005 Jul 15;307(2):427-35. doi: 10.1016/j.yexcr.2005.03.030. Epub 2005 Apr 25.
Growth factor receptors, extracellular matrix receptors, and cell-cell adhesion molecules co-operate in regulating the activities of intracellular signaling pathways. Here, we demonstrate that the cell adhesion molecule CEACAM1 co-regulates growth-factor-induced DNA synthesis in NBT-II epithelial cells in a cell-density-dependent manner. CEACAM1 exerted its effects by regulating the activity of the Erk 1/2 MAP kinase pathway and the expression levels of the cyclin-dependent kinase inhibitor p27(Kip1). Interestingly, both inhibitory and stimulatory effects were observed. Confluent cells continuously exposed to fetal calf serum showed little Erk activity and DNA synthesis compared with sparse cells. Under these conditions, anti-CEACAM1 antibodies strongly stimulated Erk activation, decreased p27 expression, and induced DNA synthesis. In serum-starved confluent cells, re-addition of 10% fetal calf serum activated the Erk pathway, decreased p27 expression, and stimulated DNA synthesis to the same levels as in sparse cells. Under these conditions anti-CEACAM1 antibodies de-activated Erk, restored the level of p27, and inhibited DNA synthesis. These data indicate that CEACAM1 mediates contact inhibition of proliferation in cells that are constantly exposed to growth factors, but co-activates growth-factor-induced proliferation in cells that have been starved for growth factors; exposure to extracellular CEACAM1 ligands reverts these responses.
生长因子受体、细胞外基质受体和细胞间黏附分子共同协作调节细胞内信号通路的活性。在此,我们证明细胞黏附分子CEACAM1以细胞密度依赖性方式共同调节NBT-II上皮细胞中生长因子诱导的DNA合成。CEACAM1通过调节Erk 1/2丝裂原活化蛋白激酶(MAP)激酶途径的活性和细胞周期蛋白依赖性激酶抑制剂p27(Kip1)的表达水平发挥其作用。有趣的是,观察到了抑制和刺激两种效应。与稀疏细胞相比,持续暴露于胎牛血清的汇合细胞显示出较低的Erk活性和DNA合成。在这些条件下,抗CEACAM1抗体强烈刺激Erk活化,降低p27表达,并诱导DNA合成。在血清饥饿的汇合细胞中,重新添加10%胎牛血清可激活Erk途径,降低p27表达,并将DNA合成刺激至与稀疏细胞相同的水平。在这些条件下,抗CEACAM1抗体使Erk失活,恢复p27水平,并抑制DNA合成。这些数据表明,CEACAM1在持续暴露于生长因子的细胞中介导增殖的接触抑制,但在已饥饿生长因子的细胞中共同激活生长因子诱导的增殖;暴露于细胞外CEACAM1配体可逆转这些反应。