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中枢神经系统隔室间的水转运:水通道蛋白和共转运体的贡献。

Water transport between CNS compartments: contributions of aquaporins and cotransporters.

机构信息

Department of Cellular and Molecular Medicine, University of Copenhagen, Nordic Center of Excellence in Water Imbalance-Related Disorders, Blegdamsvej 3, 2200 Copenhagen, Denmark.

出版信息

Neuroscience. 2010 Jul 28;168(4):941-56. doi: 10.1016/j.neuroscience.2009.09.016. Epub 2009 Sep 15.

Abstract

Large water fluxes continuously take place between the different compartments of the brain as well as between the brain parenchyma and the blood or cerebrospinal fluid. This water flux is tightly regulated but may be disturbed under pathological conditions that lead to brain edema formation or hydrocephalus. The molecular pathways by which water molecules cross the cell membranes of the brain are not well-understood, although the discovery of aquaporin 4 (AQP4) in the brain improved our understanding of some of these transport processes, particularly under pathological conditions. In the present review we introduce another family of transport proteins as water transporters, namely the cotransporters and the glucose uniport GLUT1. In direct contrast to the aquaporins, these proteins have an inherent ability to transport water against an osmotic gradient. Some of them may also function as water pores in analogy to the aquaporins. The putative role of cotransport proteins and uniports for the water flux into the glial cells, through the choroid plexus and across the endothelial cells of the blood-brain-barrier will be discussed and compared to the contribution of the aquaporins.

摘要

大脑的不同隔室之间以及脑实质与血液或脑脊液之间不断发生大量水通量。这种水通量受到严格调节,但在导致脑水肿形成或脑积水的病理条件下可能会受到干扰。水分子穿过脑细胞膜的分子途径尚未得到很好的理解,尽管在脑内发现水通道蛋白 4 (AQP4) 提高了我们对其中一些转运过程的理解,特别是在病理条件下。在本综述中,我们将介绍另一组作为水转运蛋白的转运蛋白,即协同转运蛋白和葡萄糖单转运蛋白 GLUT1。与水通道蛋白相反,这些蛋白具有内在的逆渗透压运输水的能力。其中一些蛋白也可能类似于水通道蛋白作为水孔发挥作用。将讨论协同转运蛋白和单转运蛋白在水通量进入神经胶质细胞、通过脉络丛和穿过血脑屏障内皮细胞中的作用,并将其与水通道蛋白的作用进行比较。

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