Hasegawa Tomohiko, Ohno Koji, Sano Michio, Omura Takao, Omura Kumiko, Nagano Akira, Sato Kohji
Department of Orthopedic Surgery, Hamamatsu University School of Medicine, Hamamatsu, Japan.
Brain Res Mol Brain Res. 2005 Jan 5;133(1):119-30. doi: 10.1016/j.molbrainres.2004.10.004.
Nogo-A and Nogo-receptor have been considered to play pivotal roles in controlling axonal regeneration and neuronal plasticity. We investigated the total distribution of Nogo-A and Nogo-receptor mRNAs in the adult rat central nervous system using in situ hybridization histochemistry. Nogo-A is abundantly expressed in both neurons and oligodendrocytes throughout the central nervous system. Interestingly, we could not find any neuron which lacks Nogo-A mRNA expression, indicating that Nogo-A mRNA is universally expressed in all neurons. In contrast, Nogo-R mRNA expression was very restricted. Nogo-R mRNA was expressed in the olfactory bulb, hippocampus, tentia tecta, some amygdala nuclei, cerebral cortex, some thalamic nuclei, medial habenular, whereas we could not detect it in the other regions. Interestingly, we did not detect Nogo-R mRNA in monoaminergic neurons, which are known to have high regenerative capacity, in the substantia nigra, ventral tegmental area, locus caeruleus, and raphe nuclei. In addition, although neurons in the reticular thalamus and cerebellar nuclei are also known to show high capacity for regeneration, Nogo-R mRNA was not detected there. These data indicate that Nogo-A and Nogo-R mRNAs were differentially expressed in the central nervous system, and suggest that the lack of Nogo-R expression in a given neuron might be necessary to keep its high regenerative capacity.
Nogo-A和Nogo受体被认为在控制轴突再生和神经元可塑性方面发挥着关键作用。我们使用原位杂交组织化学方法研究了成年大鼠中枢神经系统中Nogo-A和Nogo受体mRNA的整体分布情况。Nogo-A在整个中枢神经系统的神经元和少突胶质细胞中均大量表达。有趣的是,我们未发现任何缺乏Nogo-A mRNA表达的神经元,这表明Nogo-A mRNA在所有神经元中普遍表达。相比之下,Nogo-R mRNA的表达则非常局限。Nogo-R mRNA在嗅球、海马体、顶盖、部分杏仁核、大脑皮层、部分丘脑核、内侧缰核中表达,而在其他区域未检测到。有趣的是,在已知具有高再生能力的黑质、腹侧被盖区、蓝斑和中缝核中的单胺能神经元中,我们未检测到Nogo-R mRNA。此外,尽管丘脑网状核和小脑核中的神经元也已知具有高再生能力,但在那里也未检测到Nogo-R mRNA。这些数据表明Nogo-A和Nogo-R mRNA在中枢神经系统中差异表达,并提示特定神经元中缺乏Nogo-R表达可能是维持其高再生能力所必需的。