State Key Laboratory of Brain and Cognitive Sciences, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.
J Comp Neurol. 2012 Apr 15;520(6):1227-45. doi: 10.1002/cne.22772.
Neural recognition molecule NB-3 is involved in neural development and synapse formation. However, its role in axon tract formation is unclear. In this study, we found that the temporal expression of NB-3 in the deep layers of the motor cortex in mice was coincident with the development of the corticospinal tract (CST). Clear NB-3 immunoreactivity in the CST trajectory strongly suggested that NB-3 was expressed specifically in projecting CST axons. By tracing CST axons in NB-3−/− mice at different developmental stages, we found that these axons were capable of projecting and forming a normal trajectory. However, the projection was greatly delayed in NB-3−/− mice compared with wild-type (WT) mice from the embryonic to postnatal stages, a period that is coincident with the completion of the CST projection in mice. Subsequently, although their projection was delayed, CST axons in NB-3−/− mice gradually completed a normal projection. By stage P21, the characteristics of CST projections in NB-3−/− mice were not statistically different from those in WT mice. In addition, we found that the branching of CST axons into spinal gray matter also was delayed in NB-3−/− mice. The CST innervation area in the spinal gray matter of NB-3−/− mice was greatly reduced in comparison with WT mice until P30 and gradually became normal by P45. These data suggest that NB-3 is involved in the normal projection and terminal branching of developing CST axons.
神经识别分子 NB-3 参与神经发育和突触形成。然而,其在轴突束形成中的作用尚不清楚。在本研究中,我们发现 NB-3 在小鼠运动皮层深层的时间表达与皮质脊髓束(CST)的发育一致。CST 轨迹中清晰的 NB-3 免疫反应强烈表明 NB-3 特异性表达于投射 CST 轴突中。通过在不同发育阶段的 NB-3−/− 小鼠中追踪 CST 轴突,我们发现这些轴突能够投射并形成正常轨迹。然而,与野生型(WT)小鼠相比,NB-3−/− 小鼠从胚胎期到出生后的 CST 投射的延迟非常明显,这个时期正好与 CST 在小鼠中的投射完成相吻合。随后,尽管它们的投射被延迟,但 NB-3−/− 小鼠中的 CST 轴突逐渐完成了正常的投射。到 P21 阶段,NB-3−/− 小鼠 CST 投射的特征在统计学上与 WT 小鼠没有区别。此外,我们发现 CST 轴突向脊髓灰质的分支在 NB-3−/− 小鼠中也被延迟。与 WT 小鼠相比,NB-3−/− 小鼠 CST 在脊髓灰质中的支配区域在 P30 时大大减少,并在 P45 时逐渐恢复正常。这些数据表明,NB-3 参与了发育中的 CST 轴突的正常投射和末端分支。