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脑水通道蛋白的调节

Regulation of brain aquaporins.

作者信息

Gunnarson E, Zelenina M, Aperia A

机构信息

Department of Woman and Child Health, Karolinska Institutet, Stockholm, Sweden.

出版信息

Neuroscience. 2004;129(4):947-55. doi: 10.1016/j.neuroscience.2004.08.022.

Abstract

Emerging evidence suggests that brain aquaporins (AQP) play important roles for the dynamic regulation of brain water homeostasis and for the regulation of cerebrospinal fluid production. This review deals with the short- and long-term regulation of AQP4 and AQP9, both expressed in astrocytes, and of AQP1, expressed in the choroid plexus. AQP1 and 4 have in other cell types been shown to be regulated by phosphorylation. Phosphorylation affects the gating of AQP4 and the trafficking and insertion into membrane of AQP1. Mercury inhibits the water permeability of AQP1 and AQP9, but not AQP4. The permeability of AQP4 is increased by lead. AQP4 is also regulated by protein-protein interaction. The assembly between AQP4 and syntrophin is required for the proper localization of AQP4 in the astrocyte plasma membrane that faces capillaries. There is evidence from studies on peripheral tissues that steroid hormones regulate the expression of AQP1, AQP4 and AQP9. There is also evidence that the expression of AQP1 can be regulated by ubiquitination, and that osmolality can regulate the expression of AQP1, AQP4 and AQP9. Further insight into the mechanisms by which brain AQPs are regulated will be of utmost clinical importance, since perturbed water flow via brain AQPs has been implicated in many neurological diseases and since, in brain edema, water flow via AQP4 may have a harmful effect.

摘要

新出现的证据表明,脑水通道蛋白(AQP)在脑水稳态的动态调节以及脑脊液生成的调节中发挥重要作用。本综述探讨了在星形胶质细胞中表达的AQP4和AQP9以及在脉络丛中表达的AQP1的短期和长期调节。在其他细胞类型中,AQP1和AQP4已被证明受磷酸化调节。磷酸化影响AQP4的门控以及AQP1向膜的运输和插入。汞抑制AQP1和AQP9的水通透性,但不抑制AQP4。铅可增加AQP4的通透性。AQP4也受蛋白质-蛋白质相互作用的调节。AQP4与肌萎缩蛋白之间的组装是AQP4在面向毛细血管的星形胶质细胞质膜中正确定位所必需的。来自外周组织研究的证据表明,类固醇激素调节AQP1、AQP4和AQP9的表达。也有证据表明,AQP1的表达可受泛素化调节,并且渗透压可调节AQP1、AQP4和AQP9的表达。进一步深入了解脑AQP的调节机制具有极其重要的临床意义,因为通过脑AQP的水流紊乱与许多神经系统疾病有关,而且在脑水肿中,通过AQP4的水流可能具有有害作用。

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