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首页> 外文期刊>The European Journal of Neuroscience >Neuronal expression of Nogo-A mRNA and protein during neurite outgrowth in the developing rat olfactory system.
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Neuronal expression of Nogo-A mRNA and protein during neurite outgrowth in the developing rat olfactory system.

机译:在发育中的大鼠嗅觉系统中,神经突生长过程中Nogo-A mRNA和蛋白的神经元表达。

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The major impediments to axonal regeneration in the central nervous system are growth-inhibitory proteins present in the myelin sheath, and Nogo-A is one of the most potent inhibitors synthesized by oligodendrocytes. However, neuronal expression of Nogo-A during development suggests that it may have an additional role. The spatio-temporal regulation of both Nogo-A mRNA and protein expression was examined by in situ hybridization and immunohistochemistry in the developing rat olfactory system. During embryonic and postnatal development (from E13 to P6), Nogo-A mRNA and protein were strongly expressed by differentiating neurons in the olfactory epithelium and in the olfactory bulb. From the second postnatal week, a progressive down-regulation of both Nogo-A mRNA and protein occurred, such that only a weak expression persisted in the adult olfactory system. Using double-immunostainings in the adult olfactory epithelium, we determined that Nogo-A was preferentially expressed by immature olfactory receptor neurons extending axonal processes toward the olfactory bulb. At all developmental stages, Nogo-A protein was preferentially targeted in olfactory axons emerging from the olfactory epithelium. Using an in vitro model of olfactory axon growth, we demonstrated that, in addition to its presence along the entire axon length, Nogo-A accumulated in axonal growth cone and at axonal branching points, with a distribution similar to that of microtubule-associated proteins. Moreover, Nogo-A was transiently expressed in dendritic processes in the postnatal olfactory bulb. Together, our data suggest that, in non-pathological conditions, Nogo-A may be involved in the processes of axonal growth and dendritic modeling through the regulation of microtubule dynamics.
机译:中枢神经系统中轴突再生的主要障碍是髓鞘中存在的生长抑制蛋白,而Nogo-A是少突胶质细胞合成的最有效的抑制剂之一。但是,在发育过程中Nogo-A的神经元表达表明它可能还有其他作用。在发育中的大鼠嗅觉系统中,通过原位杂交和免疫组织化学检查了Nogo-A mRNA和蛋白表达的时空调节。在胚胎和产后发育过程中(从E13到P6),Nogo-A mRNA和蛋白通过区分嗅觉上皮细胞和嗅球中的神经元而强烈表达。从产后第二周开始,Nogo-A mRNA和蛋白质均逐渐下调,因此成人嗅觉系统仅持续表达较弱。使用成年嗅上皮中的双重免疫染色技术,我们确定Nogo-A优先由未成熟的嗅觉受体神经元表达,该神经元将轴突突向嗅球延伸。在所有发育阶段,Nogo-A蛋白都优先靶向从嗅觉上皮中出现的嗅轴突。使用嗅觉轴突生长的体外模型,我们证明,除了它在整个轴突长度上的存在以外,Nogo-A积累在轴突生长锥和轴突分支点处,其分布类似于微管相关蛋白的分布。 。此外,Nogo-A在产后嗅球中在树突状过程中瞬时表达。在一起,我们的数据表明,在非病理条件下,Nogo-A可能通过调节微管动力学参与了轴突生长和树突模型的过程。

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