Seilheimer B, Persohn E, Schachner M
Department of Neurobiology, University of Heidelberg, Federal Republic of Germany.
J Cell Biol. 1989 May;108(5):1909-15. doi: 10.1083/jcb.108.5.1909.
To investigate the cellular and molecular signals underlying regulation of cell adhesion molecule expression, the influence of interactions between dorsal root ganglion neurons and Schwann cells on their expression of L1 and N-CAM was quantitated by immunogold electronmicroscopy. The numbers of antibody binding sites on cell surfaces of neurons and glia were compared between pure populations and co-cultures. After 3 d of co-culture, expression of L1 was reduced by 91% on Schwann cells and 36% on neurons, with expression in pure cultures being taken as 100%. N-CAM expression was unchanged on neurons and reduced by 43% on Schwann cells. Within 3 d after removal of neurons from Schwann cell-neuron co-cultures by immunocytolysis, expression of L1 and N-CAM on Schwann cell surfaces increased by 69 and 84%, respectively. Cell surface antigens recognized by an antibody to mouse liver membranes were unchanged in co-cultures. Furthermore, in co-cultures of neurons and sciatic nerve fibroblasts neither of the three antibodies detected any changes in expression of antigens when pure and co-cultures were compared. These observations suggest that adhesion molecules are not only involved in neuron-Schwann cell recognition and neurite outgrowth on Schwann cells (Seilheimer, B., and M. Schachner. 1988. J. Cell Biol. 107: 341-351), but that cell interactions, in turn, modulate the extent of adhesion molecule expression.
为了研究细胞粘附分子表达调控背后的细胞和分子信号,通过免疫金电子显微镜定量背根神经节神经元与雪旺细胞之间的相互作用对其L1和N-CAM表达的影响。比较了纯培养群体和共培养中神经元和神经胶质细胞表面抗体结合位点的数量。共培养3天后,雪旺细胞上L1的表达降低了91%,神经元上降低了36%,纯培养中的表达被视为100%。神经元上N-CAM的表达没有变化,雪旺细胞上降低了43%。通过免疫细胞溶解从雪旺细胞-神经元共培养物中去除神经元后的3天内,雪旺细胞表面L1和N-CAM的表达分别增加了69%和84%。在共培养中,抗小鼠肝细胞膜抗体识别的细胞表面抗原没有变化。此外,在神经元和坐骨神经成纤维细胞的共培养中,当比较纯培养和共培养时,三种抗体均未检测到抗原表达的任何变化。这些观察结果表明,粘附分子不仅参与神经元-雪旺细胞的识别以及雪旺细胞上神经突的生长(Seilheimer, B., and M. Schachner. 1988. J. Cell Biol. 107: 341-351),而且细胞间相互作用反过来会调节粘附分子的表达程度。