Department of Life Science and Medical Bio-Science, Waseda University, Tokyo, Japan.
Dev Neurobiol. 2022 Sep;82(6):533-544. doi: 10.1002/dneu.22897. Epub 2022 Aug 19.
Axonal connections between the two sides of the brain are essential for processing sensorimotor functions, especially in animals with bilateral symmetry. The anterior commissure and postoptic commissure are two crucial axonal projections that develop early in the zebrafish central nervous system. In this study, we characterized the function of collapsin response mediator protein 2 (CRMP2) and CRMP4 in patterning the development of the anterior and postoptic commissures by analyzing morpholino-knockdown zebrafish morphants and CRISPR/Cas9-edited gene-knockout mutants. We observed a loss of commissural structures or a significant reduction in axon bundles connecting the two hemispheres, but the defects could be largely recovered by co-injecting CRMP2 or CRMP4 mRNA. Loss of both CRMP2 and CRMP4 function resulted in a synergistic increase in the number of commissural defects. To elucidate the mechanism by which CRMP2 and CRMP4 provide guidance cues for the development of the anterior and postoptic commissures, we included neuropilin 1a (Nrp1a) morphants and double morphants (CRMP2/Nrp1a and CRMP4/Nrp1a) for analysis. Our experimental results indicated that CRMP2 and CRMP4 might mediate their activities through the common semaphorin 3/Nrp1a signaling pathway.
大脑两侧的轴突连接对于处理感觉运动功能至关重要,尤其是在具有双侧对称性的动物中。前连合和视后连合是两种关键的轴突投射,它们在斑马鱼中枢神经系统的早期发育中就已经形成。在这项研究中,我们通过分析形态发生抑制斑马鱼突变体和 CRISPR/Cas9 编辑基因敲除突变体,研究了 collapsin 反应介质蛋白 2 (CRMP2) 和 CRMP4 在调节前连合和视后连合发育中的作用。我们观察到连合结构的缺失或连接两个半球的轴突束的显著减少,但通过共注射 CRMP2 或 CRMP4 mRNA 可以很大程度上恢复这些缺陷。CRMP2 和 CRMP4 功能的丧失导致连合缺陷的数量协同增加。为了阐明 CRMP2 和 CRMP4 为前连合和视后连合的发育提供导向线索的机制,我们包括了神经纤毛蛋白 1a (Nrp1a) 形态发生抑制物和双形态发生抑制物(CRMP2/Nrp1a 和 CRMP4/Nrp1a)进行分析。我们的实验结果表明,CRMP2 和 CRMP4 可能通过共同的信号通路 semaphorin 3/Nrp1a 发挥作用。