Horie H, Inagaki Y, Sohma Y, Nozawa R, Okawa K, Hasegawa M, Muramatsu N, Kawano H, Horie M, Koyama H, Sakai I, Takeshita K, Kowada Y, Takano M, Kadoya T
Department of Physiology, School of Medicine, Yokohama City University, Kanazawa-ku, Yokohama 236-0004, Japan.
J Neurosci. 1999 Nov 15;19(22):9964-74. doi: 10.1523/JNEUROSCI.19-22-09964.1999.
The signals that prompt the axons to send out processes in peripheral nerves after axotomy are not well understood. Here, we report that galectin-1 can play an important role in this initial stage. We developed an in vitro nerve regeneration model that allows us to monitor the initial axon and support cell outgrowth from the proximal nerve stump, which is comparable to the initial stages of nerve repair. We isolated a factor secreted from COS1 cells that enhanced axonal regeneration, and we identified the factor as galectin-1. Recombinant human galectin-1 (rhGAL-1) showed the same activity at low concentrations (50 pg/ml) that are two orders of magnitude lower than those of lectin activity. A similarly low concentration was also effective in in vivo experiments of axonal regeneration with migrating reactive Schwann cells to a grafted silicone tube after transection of adult rat peripheral nerve. Moreover, the application of functional anti-rhGAL-1 antibody strongly inhibited the regeneration in vivo as well as in vitro. The same effect of rhGAL-1 was confirmed in crush/freeze experiments of the adult mouse sciatic nerve. Because galectin-1 is expressed in the regenerating sciatic nerves as well as in both sensory neurons and motor neurons, we suggest that galectin-1 may regulate initial repair after axotomy. This high activity of the factor applied under nonreducing conditions suggests that galectin-1 may work as a cytokine, not as a lectin.
轴突切断术后促使轴突在外周神经中发出突起的信号尚未完全明确。在此,我们报告半乳糖凝集素-1在这一初始阶段可能发挥重要作用。我们建立了一种体外神经再生模型,该模型使我们能够监测从近端神经残端长出的初始轴突和支持细胞,这与神经修复的初始阶段相当。我们从COS1细胞中分离出一种促进轴突再生的分泌因子,并将其鉴定为半乳糖凝集素-1。重组人半乳糖凝集素-1(rhGAL-1)在低浓度(50 pg/ml)时表现出相同的活性,该浓度比凝集素活性低两个数量级。在成年大鼠外周神经横断后,将迁移的反应性雪旺细胞移植到硅胶管的轴突再生体内实验中,同样低的浓度也有效。此外,应用功能性抗rhGAL-1抗体在体内和体外均强烈抑制了再生。在成年小鼠坐骨神经的挤压/冷冻实验中也证实了rhGAL-1的相同作用。由于半乳糖凝集素-1在再生的坐骨神经以及感觉神经元和运动神经元中均有表达,我们认为半乳糖凝集素-1可能在轴突切断术后调节初始修复。在非还原条件下应用该因子的这种高活性表明,半乳糖凝集素-1可能作为一种细胞因子起作用,而不是作为一种凝集素。