Plendl J, Sinowatz F
Institute for Veterinary Anatomy, University of Munich, Germany.
Acta Anat (Basel). 1998;161(1-4):234-53. doi: 10.1159/000046461.
The olfactory system is a highly plastic region of the nervous system. Continuous remodeling of neuronal circuits in the olfactory bulb takes place throughout life as a result of constant turnover of primary sensory olfactory neurons in the periphery. Glycoconjugates are very important in olfactory development, regeneration and function. This article deals with different aspects of glycobiology relevant for the olfactory system. Various anatomical, developmental and functional subdivisions of the olfactory system have been labeled with exogenous lectins. The application of reverse lectin histochemistry resulted in the visualization of endogenous lectins, involved in fasciculation of olfactory axons. Numerous glycoproteins, among them members of the immunoglobulin superfamily, the cadherins and integrins as well as different glycolipids and proteoglycans can act as surface adhesion molecules in the olfactory system. The olfactory-specific form of the sialoglycoprotein neural cell adhesion molecule is implicated in olfactory neuronal and axonal guidance. Glycoconjugates including laminin, fibronectin and proteoglycans are abundant components of the olfactory extracellular matrix, influencing neurite outgrowth and cellular migration. Immunohistochemical labeling has revealed occurrence of the carbohydrate differentiation antigen, playing a role in neurulation and morphogenesis of the very early olfactory system. The synaptic vesicle glycoprotein, appearing also early in olfactory development, is used as a marker of olfactory tumors. Finally, membrane and transmembrane glycoconjugates as well as secreted glycoconjugates may act as olfactory receptor molecules.
嗅觉系统是神经系统中一个高度可塑性的区域。由于外周初级感觉嗅觉神经元的不断更新,嗅球中的神经回路在整个生命过程中持续重塑。糖缀合物在嗅觉发育、再生和功能中非常重要。本文探讨了与嗅觉系统相关的糖生物学的不同方面。嗅觉系统的各种解剖、发育和功能亚区已用外源性凝集素进行标记。反向凝集素组织化学的应用使得参与嗅觉轴突成束的内源性凝集素得以可视化。众多糖蛋白,其中包括免疫球蛋白超家族成员、钙黏蛋白和整合素以及不同的糖脂和蛋白聚糖,可在嗅觉系统中充当表面黏附分子。唾液酸糖蛋白神经细胞黏附分子的嗅觉特异性形式与嗅觉神经元和轴突导向有关。包括层粘连蛋白、纤连蛋白和蛋白聚糖在内的糖缀合物是嗅觉细胞外基质的丰富成分,影响神经突生长和细胞迁移。免疫组织化学标记揭示了碳水化合物分化抗原的存在,其在早期嗅觉系统的神经胚形成和形态发生中发挥作用。突触小泡糖蛋白在嗅觉发育早期也会出现,被用作嗅觉肿瘤的标志物。最后,膜和跨膜糖缀合物以及分泌型糖缀合物可能充当嗅觉受体分子。