日本生理学会大会発表要旨集
日本生理学会大会発表要旨集
セッションID: 2S22G1
会議情報
New insight into water and ion transport system
耳下腺小葉間導管におけるアクアポリン5とクロライドチャネルの細胞内移動の神経性調節機構
石川 康子張 剛太井上 紀子中江 良子
著者情報
会議録・要旨集 フリー

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抄録
Aquaporin (AQP) 5 is induced to traffic to the apical plasma membrane (APM) in rat parotid glands by the activation of M3 muscarinic acetylcholine receptors (mAChR) or α1-adrenoceptors. Sections of parotid glands were double-stained immunohistochemically with anti-AQP5 antibody and an antibody against a raft marker, either flotillin-2 or GM1. AQP5 localizes to both the APM and intracellular structures under control conditions. Ten minutes after the injection of cevimeline, AQP5 fluorescence was located predominantly on the APM of the parotid interlobular duct cells. Conversely, 60 min after the injection, there was a diffuse AQP5 staining in the cell cytoplasm. Flotillin-2 and GM1 were colocalized with AQP5 in rat parotid glands, suggesting that AQP5 is located in the lipid rafts. After injection of cevimeline, the lipid rafts move to the APM from the cytosol. CLC-K2 was also expressed in rat parotid glands and colocalized with AQP5. Under control conditions, the majority of AQP5 and CLC-K2 was localized in the Triton X-100-insoluble fraction and floated to the light-density fraction. In conclusion, AQP5 and CLC-K2 were localized in the lipid rafts and activation of M3 mAChR induced translocation of them from the lipid rafts to the APM in the interlobular ducts of rat parotid glands. [Jpn J Physiol 55 Suppl:S35 (2005)]
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© 2005 日本生理学会
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