首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Neurite outgrowth on muscle cell surfaces involves extracellular matrix receptors as well as Ca2+-dependent and -independent cell adhesion molecules.
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Neurite outgrowth on muscle cell surfaces involves extracellular matrix receptors as well as Ca2+-dependent and -independent cell adhesion molecules.

机译:肌肉细胞表面上的神经突生长涉及细胞外基质受体以及依赖于Ca2 +和不依赖于细胞的分子。

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摘要

To identify the molecules on the neuronal surface that mediate axonal growth on myotubes, we have examined neurite formation by ciliary neurons grown on myotubes in the absence or presence of specific antibodies. Dramatic inhibition of neurite outgrowth was seen only when antibodies blocked simultaneously the functions of two cell adhesion molecules--neural cell adhesion molecule (N-CAM) and neural Ca2+-dependent CAM (N-Cal-CAM)--and the neuronal receptors for several extracellular matrix (ECM) proteins. Although the antibody used to block ECM receptors (JG22) has been shown to eliminate almost all neurite growth on ECMs, it had only small effects on neurite growth on myotubes, reducing somewhat the length of neurites. Similarly, antibodies to the two CAMs, when used alone, had no detectable effects on neurite length and, when used together, had only small inhibitory effects on neurite growth. Combination of anti-ECM receptor (JG22) with antibodies to either CAM, however, greatly shortened the length of neurites. These results imply that ECM receptors and the CAMs N-CAM and N-Cal-CAM are major macromolecules used by neuronal growth cones for interactions with myotubes. Each provides a distinct mechanism for regulating growth cone motility.
机译:为了鉴定介导肌管上轴突生长的神经元表面上的分子,我们检查了在不存在或存在特定抗体的情况下,在肌管上生长的睫状神经元形成的神经突。仅当抗体同时阻断两个细胞粘附分子(神经细胞粘附分子(N-CAM)和神经Ca2 +依赖性CAM(N-Cal-CAM))的功能以及神经元的受体时,才能看到神经突生长的显着抑制。几种细胞外基质(ECM)蛋白。尽管已显示用于阻断ECM受体的抗体(JG22)消除了ECM上几乎所有的神经突生长,但对肌管上的神经突生长只有很小的影响,从而在一定程度上减少了神经突的长度。同样,两个CAM的抗体单独使用时,对神经突长度没有可检测到的影响,并且一起使用时,对神经突的生长只有很小的抑制作用。但是,抗ECM受体(JG22)与针对任一CAM的抗体的结合大大缩短了神经突的长度。这些结果表明,ECM受体和CAM N-CAM和N-Cal-CAM是神经元生长锥用于与肌管相互作用的主要大分子。每个都提供了调节生长锥运动的独特机制。

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