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神经识别分子 NB-3 的缺失会延迟发育中的皮质脊髓束轴突的正常投射和末端分支。

Loss of neural recognition molecule NB-3 delays the normal projection and terminal branching of developing corticospinal tract axons in the mouse.

机构信息

State Key Laboratory of Brain and Cognitive Sciences, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

J Comp Neurol. 2012 Apr 15;520(6):1227-45. doi: 10.1002/cne.22772.

Abstract

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.

摘要

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。

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