Perin Paola, Tritto Simona, Botta Laura, Fontana Jacopo Maria, Gastaldi Giulia, Masetto Sergio, Tosco Marisa, Laforenza Umberto
Department of Physiology, Section of General Physiology, University of Pavia, 27100 Pavia, Italy.
J Biomed Biotechnol. 2010;2010:264704. doi: 10.1155/2010/264704. Epub 2010 Jan 12.
We characterize the expression pattern of aquaporin-6 in the mouse inner ear by RT-PCR and immunohistochemistry. Our data show that in the inner ear aquaporin-6 is expressed, in both vestibular and acoustic sensory epithelia, by the supporting cells directly contacting hair cells. In particular, in the Organ of Corti, expression was strongest in Deiters' cells, which provide both a mechanical link between outer hair cells (OHCs) and the Organ of Corti, and an entry point for ion recycle pathways. Since aquaporin-6 is permeable to both water and anions, these results suggest its possible involvement in regulating OHC motility, directly through modulation of water and chloride flow or by changing mechanical compliance in Deiters' cells. In further support of this role, treating mice with salicylates, which impair OHC electromotility, dramatically reduced aquaporin-6 expression in the inner ear epithelia but not in control tissues, suggesting a role for this protein in modulating OHCs' responses.
我们通过逆转录聚合酶链反应(RT-PCR)和免疫组织化学方法,对水通道蛋白6在小鼠内耳中的表达模式进行了表征。我们的数据表明,在内耳中,水通道蛋白6在前庭和听觉感觉上皮中,由直接与毛细胞接触的支持细胞表达。特别是在柯蒂氏器中,其在Deiters细胞中的表达最强,Deiters细胞既在外毛细胞(OHC)与柯蒂氏器之间提供机械连接,又作为离子循环途径的入口点。由于水通道蛋白6对水和阴离子均具有通透性,这些结果表明其可能通过直接调节水和氯离子流动或改变Deiters细胞的机械顺应性,参与调节OHC的运动。为进一步支持这一作用,用损害OHC电运动的水杨酸盐处理小鼠后,内耳上皮中的水通道蛋白6表达显著降低,但对照组织中未降低,这表明该蛋白在调节OHC反应中发挥作用。