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复杂组织中的水通道蛋白:水通道蛋白1-5在人和大鼠眼睛中的分布

Aquaporins in complex tissues: distribution of aquaporins 1-5 in human and rat eye.

作者信息

Hamann S, Zeuthen T, La Cour M, Nagelhus E A, Ottersen O P, Agre P, Nielsen S

机构信息

Department of Medical Physiology, Panum Institute, University of Copenhagen, Denmark.

出版信息

Am J Physiol. 1998 May;274(5):C1332-45. doi: 10.1152/ajpcell.1998.274.5.C1332.

Abstract

Multiple physiological fluid movements are involved in vision. Here we define the cellular and subcellular sites of aquaporin (AQP) water transport proteins in human and rat eyes by immunoblotting, high-resolution immunocytochemistry, and immunoelectron microscopy. AQP3 is abundant in bulbar conjunctival epithelium and glands but is only weakly present in corneal epithelium. In contrast, AQP5 is prominent in corneal epithelium and apical membranes of lacrimal acini. AQP1 is heavily expressed in scleral fibroblasts, corneal endothelium and keratocytes, and endothelium covering the trabecular meshwork and Schlemm's canal. Although AQP1 is plentiful in ciliary nonpigmented epithelium, it is not present in ciliary pigmented epithelium. Posterior and anterior epithelium of the iris and anterior lens epithelium also contain significant amounts of AQP1, but AQP0 (major intrinsic protein of the lens) is expressed in lens fiber cells. Retinal Müller cells and astrocytes exhibit notable concentrations of AQP4, whereas neurons and retinal pigment epithelium do not display aquaporin immunolabeling. These studies demonstrate selective expression of AQP1, AQP3, AQP4, and AQP5 in distinct ocular epithelia, predicting specific roles for each in the complex network through which water movements occur in the eye.

摘要

多种生理流体运动参与视觉过程。在此,我们通过免疫印迹、高分辨率免疫细胞化学和免疫电子显微镜,确定了水通道蛋白(AQP)水转运蛋白在人和大鼠眼睛中的细胞及亚细胞定位。AQP3在球结膜上皮和腺体中含量丰富,但在角膜上皮中仅微弱表达。相比之下,AQP5在角膜上皮和泪腺腺泡的顶端膜中显著表达。AQP1在巩膜成纤维细胞、角膜内皮和角膜细胞,以及覆盖小梁网和施莱姆管的内皮中大量表达。尽管AQP1在睫状体无色素上皮中含量丰富,但在睫状体色素上皮中不存在。虹膜的后上皮和前上皮以及晶状体前上皮也含有大量的AQP1,但AQP0(晶状体主要内在蛋白)在晶状体纤维细胞中表达。视网膜穆勒细胞和星形胶质细胞中AQP4浓度显著,而神经元和视网膜色素上皮未显示水通道蛋白免疫标记。这些研究表明AQP1、AQP3、AQP4和AQP5在不同眼上皮中的选择性表达,预示着它们在眼睛中发生水运动的复杂网络中各自具有特定作用。

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