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内耳中特定类型的支持细胞表达水通道蛋白4水通道蛋白。

Select types of supporting cell in the inner ear express aquaporin-4 water channel protein.

作者信息

Takumi Y, Nagelhus E A, Eidet J, Matsubara A, Usami S, Shinkawa H, Nielsen S, Ottersen O P

机构信息

Department of Anatomy, University of Oslo, Norway.

出版信息

Eur J Neurosci. 1998 Dec;10(12):3584-95. doi: 10.1046/j.1460-9568.1998.00360.x.

Abstract

Aquaporins (AQPs) confer a high water permeability on cell membranes and play important parts in secretory and absorptive epithelia in kidney and other organs. Here we investigate whether AQPs are expressed in the sensory epithelia of the inner ear, where a precise volume regulation is crucial. By use of specific antibodies it was found that the inner ear contains AQP1 and 4 while being devoid of detectable levels of AQP2, 3 or 5. Immunofluorescence and postembedding immunogold labelling revealed a strictly non-epithelial distribution of AQP1, confirming previous data. In contrast, AQP4 protein and mRNA (visualized by in situ hybridization) were concentrated in select types of supporting cell, including Hensen's cells and inner sulcus cells. Immunogold particles signalling AQP4 were confined to the basolateral plasma membrane of Hensen's cells and to the basal plasma membrane of Claudius cells and inner sulcus cells. AQP4 was also found in supporting cells of the vestibular end organs, but was absent from transitional epithelial cells and dark cells. Strong labelling for AQP4 and AQP4-mRNA was associated with the central part of the cochlear and vestibular nerves. Hair cells were consistently unlabelled. Our findings indicate that AQP4 may facilitate osmotically driven water fluxes in the sensory epithelia of the inner ear and thus contribute to the volume and ion homeostasis at these sites.

摘要

水通道蛋白(AQPs)赋予细胞膜高水渗透性,并在肾脏及其他器官的分泌和吸收上皮中发挥重要作用。在此,我们研究水通道蛋白是否在内耳的感觉上皮中表达,在内耳精确的容积调节至关重要。通过使用特异性抗体发现,内耳含有水通道蛋白1和4,而未检测到水通道蛋白2、3或5的水平。免疫荧光和包埋后免疫金标记显示水通道蛋白1呈严格的非上皮分布,证实了先前的数据。相比之下,水通道蛋白4的蛋白质和mRNA(通过原位杂交可视化)集中在特定类型的支持细胞中,包括亨森细胞和内沟细胞。标记水通道蛋白4的免疫金颗粒局限于亨森细胞的基底外侧质膜以及克劳迪乌斯细胞和内沟细胞的基底质膜。在前庭终器的支持细胞中也发现了水通道蛋白4,但在移行上皮细胞和暗细胞中不存在。水通道蛋白4和水通道蛋白4 - mRNA的强标记与耳蜗和前庭神经的中央部分相关。毛细胞始终未被标记。我们的研究结果表明,水通道蛋白4可能促进内耳感觉上皮中由渗透压驱动的水通量,从而有助于这些部位的容积和离子稳态。

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