Zisch A H, D'Alessandri L, Amrein K, Ranscht B, Winterhalter K H, Vaughan L
Laboratorium für Biochemie I, ETH-Zentrum, Zürich, Switzerland.
Mol Cell Neurosci. 1995 Jun;6(3):263-79. doi: 10.1006/mcne.1995.1021.
Glycosyl phosphatidylinositol-anchored glycoproteins of the immunoglobulin superfamily play an important role in the formation of neuronal networks during development. The mechanism whereby neuronal GPI-linked molecules transduce recognition signals remains to be established. Analysis of detergent-resistant immune-complexes reveals that the glypiated neuronal cell adhesion molecule contactin/F11 specifically complexes with the cytoplasmic, nonreceptor type src-family tyrosine kinase Fyn. Antibody-mediated cross-linking of contactin/F11 on embryonic chick neuronal cells leads to an increase of the Fyn-activity coprecipitated with contactin/F11, and elevates phosphorylation of an additional 75/80 K component within the contactin/F11-immune-complex. Additionally, binding of ligands, i.e., contactin/F11-specific antibody or tenascin-R, a natural ligand of contactin/F11, to the surface of HeLa transfectants expressing contactin/F11, causes capping of contactin/F11 and a concomitant change in the distribution of the intracellular kinase Fyn, thus confirming their physical association. This indicates that contactin/F11-mediated signaling requires Fyn.
免疫球蛋白超家族的糖基磷脂酰肌醇锚定糖蛋白在发育过程中神经元网络的形成中起重要作用。神经元糖基磷脂酰肌醇连接分子转导识别信号的机制尚待确定。对耐去污剂免疫复合物的分析表明,糖基化的神经元细胞粘附分子接触蛋白/F11与细胞质非受体型src家族酪氨酸激酶Fyn特异性结合。抗体介导的胚胎鸡神经元细胞上接触蛋白/F11的交联导致与接触蛋白/F11共沉淀的Fyn活性增加,并提高了接触蛋白/F11免疫复合物中另一种75/80K成分的磷酸化水平。此外,配体,即接触蛋白/F11特异性抗体或腱生蛋白-R(接触蛋白/F11的天然配体)与表达接触蛋白/F11的HeLa转染细胞表面结合,导致接触蛋白/F11聚集以及细胞内激酶Fyn分布的相应变化,从而证实了它们的物理关联。这表明接触蛋白/F11介导的信号传导需要Fyn。