Rigato Franck, Garwood Jeremy, Calco Valérie, Heck Nicolas, Faivre-Sarrailh Catherine, Faissner Andreas
Laboratoire de Neurobiologie du Développement et de la Régénération, Centre National de la Recherche Scientifique, Formation der Recherche en Evolution 2373, F-67084 Strasbourg, France.
J Neurosci. 2002 Aug 1;22(15):6596-609. doi: 10.1523/JNEUROSCI.22-15-06596.2002.
Tenascin-C is a multimodular glycoprotein that possesses neurite outgrowth-stimulating properties, and one functional site has been localized to the alternatively spliced fibronectin type III domain D. To identify the neuronal receptor that mediates this effect, neighboring pairs of fibronectin type III domains were expressed as hybrid proteins fused to the Fc fragment of human immunoglobulin. These IgFc fusions were tested for neurite outgrowth-promoting properties on embryonic day 18 rat hippocampal neurons, and both the combinations BD and D6 were shown to promote the elongation of the longest process, the prospective axon. Antibodies to the cell adhesion molecule F3/contactin of the Ig superfamily blocked the BD- but not the D6-dependent effect. Biochemical studies using F3/contactin-IgFc chimeric proteins confirmed that the adhesion molecule selectively reacts with the combination BD but not with other pairs of fibronectin type III repeats of tenascin-C. The alternatively spliced BD cassettes are prominently expressed in the developing hippocampus, as shown by reverse transcription PCR, and colocalize with F3 expression during perinatal periods when axon growth and the establishment of hippocampal connections take place. We conclude that F3/contactin regulates axon growth of hippocampal neurons in response to tenascin-C.
腱生蛋白-C是一种多模块糖蛋白,具有刺激神经突生长的特性,其一个功能位点定位于选择性剪接的III型纤连蛋白结构域D。为了鉴定介导这种效应的神经元受体,将相邻的III型纤连蛋白结构域对作为与人免疫球蛋白Fc片段融合的杂合蛋白进行表达。在胚胎第18天的大鼠海马神经元上测试这些IgFc融合体促进神经突生长的特性,结果显示BD和D6组合均能促进最长突起(即预期轴突)的伸长。针对Ig超家族细胞粘附分子F3/接触蛋白的抗体阻断了BD依赖性效应,但未阻断D6依赖性效应。使用F3/接触蛋白-IgFc嵌合蛋白进行的生化研究证实,该粘附分子与BD组合选择性反应,但不与腱生蛋白-C的其他III型纤连蛋白重复序列对反应。如逆转录PCR所示,选择性剪接的BD盒在发育中的海马中显著表达,并且在围产期轴突生长和海马连接建立期间与F3表达共定位。我们得出结论,F3/接触蛋白响应腱生蛋白-C调节海马神经元的轴突生长。