Department of Molecular Neurobiology, University of Kanazawa, Kanazawa, Japan.
Adv Exp Med Biol. 2010;664:97-104. doi: 10.1007/978-1-4419-1399-9_12.
In adult visual system, goldfish can regrow their axons and fully restore their visual function even after optic nerve transection. The optic nerve regeneration process in goldfish is very long and it takes about a half year to fully recover visual function via synaptic refinement. Therefore, we investigated time course of growth-associated protein 43 (GAP43) expression in the goldfish retina for over 6 months after axotomy. In the control retina, very weak immunoreactivity could be seen in the retinal ganglion cells (RGCs). The immunoreactivity of GAP43 started to increase in the RGCs at 5 days, peaked at 7-20 days and then gradually decreased at 30-40 days after axotomy. The weak but significant immunoreactivity of GAP43 in the RGCs continued during 50-90 days and slowly returned to the control level by 180 days after lesion. The levels of GAP43 mRNA showed a biphasic pattern; a short-peak increase (9-folds) at 1-3 weeks and a long plateau increase (5-folds) at 50-120 days after axotomy. Thereafter, the levels declined to the control value by 180 days after axotomy. The changes of chasing behavior of pair of goldfish with bilaterally axotomized optic nerve also showed a slow biphasic recovery pattern in time course. Although further experiment is needed to elucidate the role of GAP43 in the regrowing axon terminals, the GAP43 is a good biochemical marker for monitoring the whole period of optic nerve regeneration in fish.
在成年视觉系统中,即使视神经被切断,金鱼也可以再生其轴突并完全恢复其视觉功能。金鱼的视神经再生过程非常长,需要大约半年的时间通过突触细化来完全恢复视觉功能。因此,我们在视神经切断后超过 6 个月的时间内研究了生长相关蛋白 43(GAP43)在金鱼视网膜中的表达时间过程。在对照视网膜中,仅能观察到视网膜神经节细胞(RGC)中非常微弱的免疫反应性。GAP43 的免疫反应性在视神经切断后 5 天开始在 RGC 中增加,在 7-20 天达到峰值,然后在 30-40 天后逐渐降低。在视神经切断后 50-90 天期间,RGC 中微弱但仍有意义的 GAP43 免疫反应性持续存在,并在损伤后 180 天缓慢恢复至对照水平。GAP43 mRNA 的水平表现出双相模式;在视神经切断后 1-3 周内出现短暂的高峰增加(9 倍),在 50-120 天后出现长时间的平台增加(5 倍)。此后,在视神经切断后 180 天,其水平降至对照值。对双侧视神经切断的金鱼对的追逐行为的变化也显示出时间过程中的缓慢双相恢复模式。尽管需要进一步的实验来阐明 GAP43 在再生轴突末端中的作用,但 GAP43 是监测鱼类视神经再生整个过程的良好生化标志物。