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雏鸭(绿头鸭)鼻腔腺体中水通道蛋白1和5受渗透应激的下调:对高渗液产生的影响

Downregulation of aquaporins 1 and 5 in nasal gland by osmotic stress in ducklings, Anas platyrhynchos: implications for the production of hypertonic fluid.

作者信息

Müller Christian, Sendler Matthias, Hildebrandt Jan-Peter

机构信息

Animal Physiology and Biochemistry, Zoological Institute, Ernst Moritz Arndt-University, Biotechnikum, Walther Rathenau-Strasse 49a, D-17489 Greifswald, Germany.

出版信息

J Exp Biol. 2006 Oct;209(Pt 20):4067-76. doi: 10.1242/jeb.02491.

Abstract

Using primers against highly conserved regions of mammalian and bird aquaporins in RT-PCR experiments, we amplified products derived from duck (Anas platyrhynchos) nasal gland RNA that were identified as homologues of mammalian and chicken aquaporin 1 and aquaporin 5 cDNAs by sequencing. Using digoxigenin-labelled probes derived from these PCR products in northern blot analyses of mRNA isolated from nasal glands of untreated (naïve) or osmotically stressed ducklings (replacement of drinking water with a 1% NaCl solution), we observed a decrease in aquaporin 1 (AQP1) and aquaporin 5 (AQP5) mRNA abundance (by approximately 40%) during saline adaptation in the animals. Western blot analysis of AQP1 and AQP5 expression in the glands revealed that protein abundance decreased in a similar fashion. Immunohistochemical analysis of AQP1 distribution in cryosections of nasal gland indicated that AQP1 is mainly expressed in endothelial cells of the capillaries, but definitely not in the secretory or ductal cells of the gland. AQP5 distribution in the gland, however, seems to be different, since staining was exclusively observed in apical and basolateral plasma membranes of individual epithelial cells of the primary and central ducts, which collect fluid from the secretory tubules. The observations are consistent with the hypothesis that strongly hyperosmotic fluid is produced by the secretory cells at very low (unstimulated gland) or high (activated gland) rates. In the unstimulated gland, secretions may be diluted by aquaporin-mediated transcellular water flux while passing through the ductal system flushing the glandular ducts, thereby potentially preventing ascending infections. In the activated gland, however, downregulation of aquaporins in capillaries and duct cells may prevent dilution of the initially secreted fluid, enabling the animals to excrete large volumes of a highly concentrated salt solution.

摘要

在逆转录聚合酶链反应(RT-PCR)实验中,我们使用针对哺乳动物和鸟类水通道蛋白高度保守区域的引物,扩增了源自鸭(绿头鸭)鼻腺RNA的产物,经测序鉴定这些产物为哺乳动物和鸡水通道蛋白1及水通道蛋白5 cDNA的同源物。在对未经处理(未受刺激)或经渗透压应激(用1%氯化钠溶液替代饮用水)的雏鸭鼻腺分离的mRNA进行Northern印迹分析时,我们使用源自这些PCR产物的地高辛标记探针,观察到动物在适应盐水过程中,水通道蛋白1(AQP1)和水通道蛋白5(AQP5)的mRNA丰度下降(约40%)。对鼻腺中AQP1和AQP5表达进行的蛋白质印迹分析表明,蛋白质丰度以类似方式下降。对鼻腺冰冻切片中AQP1分布的免疫组织化学分析表明,AQP1主要在毛细血管内皮细胞中表达,但在鼻腺的分泌细胞或导管细胞中肯定不表达。然而,AQP5在鼻腺中的分布似乎不同,因为仅在收集来自分泌小管液体的初级和中央导管单个上皮细胞的顶端和基底外侧质膜中观察到染色。这些观察结果与以下假设一致:分泌细胞以非常低(未受刺激的腺体)或高(激活的腺体)的速率产生强高渗液体。在未受刺激的腺体中,分泌物在通过冲洗腺管的导管系统时,可能会被水通道蛋白介导的跨细胞水通量稀释,从而潜在地防止上行感染。然而,在激活的腺体中,毛细血管和导管细胞中水通道蛋白的下调可能会防止最初分泌的液体被稀释,使动物能够排出大量高浓度盐溶液。

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