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检查大鼠唾液腺中是否存在水通道蛋白CHIP。

Examination of rat salivary glands for the presence of the aquaporin CHIP.

作者信息

Li J, Nielsen S, Dai Y, Lazowski K W, Christensen E I, Tabak L A, Baum B J

机构信息

Clinical Investigations and Patient Care Branch, National Institute of Dental Research, National Institutes of Health, Bethesda, MD 20892.

出版信息

Pflugers Arch. 1994 Oct;428(5-6):455-60. doi: 10.1007/BF00374565.

Abstract

The aquaporin CHIP, AQP-CHIP, is a 28-kDa integral membrane protein that functions as a water channel in kidney and red blood cells. We have examined rat salivary glands for the presence of this molecule. In Northern blot analyses an AQP-CHIP cDNA hybridized to rat kidney mRNA approximately 20-fold more than to mRNA from the rat parotid gland. Western blot analyses, using antisera against human AQP-CHIP, showed that AQP-CHIP was present in crude membranes from rat salivary glands to a much lesser extent than in rat kidney membranes. A 2.8 kb cDNA encoding AQP-CHIP was also isolated from an adult rat parotid gland cDNA library. Immunolocalization studies using thin and ultrathin cryosections and light and electron microscopy, however, revealed that no glandular epithelium was labeled. In contrast, significant immunolabeling was present in microvascular endothelial cells. Non-fenestrated endothelia of capillaries and venules exhibited labeling on both their apical and basolateral membranes. The present study demonstrates that AQP-CHIP is not involved directly in fluid secretion from salivary epithelial cells. Further, this study provides strong evidence that AQP-CHIP is an endothelial cell water channel found within salivary gland tissue which may contribute to water permeability in the capillary beds.

摘要

水通道蛋白CHIP(AQP-CHIP)是一种28 kDa的整合膜蛋白,在肾脏和红细胞中作为水通道发挥作用。我们检测了大鼠唾液腺中该分子的存在情况。在Northern印迹分析中,AQP-CHIP cDNA与大鼠肾脏mRNA的杂交程度比对大鼠腮腺mRNA的杂交程度高约20倍。使用抗人AQP-CHIP抗血清的Western印迹分析表明,AQP-CHIP在大鼠唾液腺粗膜中的含量比在大鼠肾脏膜中的含量少得多。还从成年大鼠腮腺cDNA文库中分离出了一个编码AQP-CHIP的2.8 kb cDNA。然而免疫定位研究使用薄和超薄冰冻切片以及光学和电子显微镜观察发现,没有腺上皮被标记。相反地,在微血管内皮细胞中存在明显的免疫标记。毛细血管和小静脉的非窗孔内皮细胞在其顶端和基底外侧膜上均有标记。本研究表明,AQP-CHIP不直接参与唾液上皮细胞的液体分泌。此外,本研究提供了有力证据,证明AQP-CHIP是唾液腺组织内发现的一种内皮细胞水通道,可能有助于毛细血管床的水通透性。

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