Ablimit Abduxukur, Matsuzaki Toshiyuki, Tajika Yuki, Aoki Takeo, Hagiwara Haruo, Takata Kuniaki
Department of Anatomy and Cell Biology, Gunma University Graduate School of Medicine, Maebashi, Japan.
Arch Histol Cytol. 2006 Mar;69(1):1-12. doi: 10.1679/aohc.69.1.
Aquaporins (AQPs), membrane water channel proteins expressed in various tissues and organs, serve in the transfer of water and small solutes across the membrane. We raised antibodies to AQPs using isoform-specific synthetic peptides and surveyed their expression in the rat nasal olfactory and respiratory mucosae. AQP1, AQP3, AQP4, and AQP5 were detected by immunohistochemical and immunoblotting analyses. AQP1 was expressed in the endothelial cells of blood vessels and the surrounding connective tissue cells in the olfactory and respiratory mucosae. AQP1 may be involved in water transfer across the blood vessel wall. In the olfactory epithelium, no AQP was detected in the olfactory sensory cells. Instead, AQP3 was abundant in the olfactory epithelium, where it was localized in the supporting cells and basal cells. Expression of AQP3 was mostly restricted to the basal cells in the respiratory epithelium. In marked contrast, AQP4 was abundant in the respiratory epithelium, but its abundance was limited to the basal cells in the olfactory epithelium. In the Bowman's gland, AQP5 was localized in the apical membrane in the secretory acinar cells, whereas AQP3 and AQP4 were found in the basolateral membrane. Similar localization was seen in its duct cells. These results showed a distinct localization pattern for AQPs in the olfactory epithelium. AQP3 and AQP4 in the supporting cells and basal cells may play an important role in generating and maintaining the specific microenvironment around the olfactory sensory cells. AQP3, AQP4, and AQP5 in the Bowman's gland may serve in the secretion to generate the microenvironment at the apical surface of the olfactory dendrites for odorant reception.
水通道蛋白(AQPs)是在各种组织和器官中表达的膜水通道蛋白,负责水和小分子溶质跨膜转运。我们使用亚型特异性合成肽制备了针对AQPs的抗体,并检测了它们在大鼠鼻嗅黏膜和呼吸黏膜中的表达。通过免疫组织化学和免疫印迹分析检测到了AQP1、AQP3、AQP4和AQP5。AQP1在嗅黏膜和呼吸黏膜的血管内皮细胞及周围结缔组织细胞中表达。AQP1可能参与水跨血管壁的转运。在嗅上皮中,嗅感觉细胞未检测到AQP。相反,AQP3在嗅上皮中丰富,定位于支持细胞和基底细胞。AQP3的表达主要局限于呼吸上皮的基底细胞。与之形成鲜明对比的是,AQP4在呼吸上皮中丰富,但其在嗅上皮中的丰富程度仅限于基底细胞。在鲍曼腺中,AQP5定位于分泌腺泡细胞的顶膜,而AQP3和AQP4则位于基底外侧膜。在其导管细胞中也观察到类似的定位。这些结果显示了AQPs在嗅上皮中的独特定位模式。支持细胞和基底细胞中的AQP3和AQP4可能在生成和维持嗅感觉细胞周围的特定微环境中起重要作用。鲍曼腺中的AQP3、AQP4和AQP5可能参与分泌,以在嗅树突顶端表面生成用于气味接收的微环境。