Hara-Chikuma Mariko, Verkman A S
Departments of Medicine and Physiology, Cardiovascular Research Institute, University of California, San Francisco, CA 94143-0521, USA.
Biol Cell. 2005 Jul;97(7):479-86. doi: 10.1042/BC20040104.
The AQPs (aquaporins) are a family of homologous water transporting proteins expressed in many mammalian epithelial, endothelial and other cell types. Phenotype analysis of mice lacking individual AQPs has been informative in elucidating their role in mammalian physiology. For example, phenotype analysis has indicated an important role of AQPs in the renal urinary concentrating mechanism (AQP1-AQP4), brain water balance and neural signal transduction (AQP4), exocrine gland secretion (AQP5) and ocular fluid balance (AQP1, AQP5). In skin, the aquaglyceroporin AQP3 is expressed in the basal layer of epidermal keratinocytes. Mice deficient in AQP3 have dry skin with reduced SC (stratum corneum) hydration, decreased elasticity and impaired biosynthesis. Mechanistic analysis of the altered skin phenotype in AQP3 deficiency suggested that the glycerol rather than the water transporting function of AQP3 is important in skin physiology. The glycerol content of SC and epidermis of AQP3 deficient mice is reduced, whereas that of dermis and serum is normal. The dry, relatively inelastic skin in AQP3 null mice is probably related to the humectant properties of glycerol, and the impaired SC repair to impaired epidermal biosynthetic function. The key role of AQP3 in epidermal physiology might be exploited in the development of improved cosmetics and new therapies for skin diseases associated with altered skin water content.
水通道蛋白(AQPs)是一族同源的水转运蛋白,在许多哺乳动物上皮细胞、内皮细胞和其他细胞类型中表达。对缺乏单个水通道蛋白的小鼠进行表型分析,有助于阐明它们在哺乳动物生理学中的作用。例如,表型分析表明水通道蛋白在肾脏尿液浓缩机制(AQP1 - AQP4)、脑水平衡和神经信号转导(AQP4)、外分泌腺分泌(AQP5)以及眼内液平衡(AQP1、AQP5)中发挥重要作用。在皮肤中,水甘油通道蛋白AQP3在表皮角质形成细胞的基底层表达。缺乏AQP3的小鼠皮肤干燥,角质层(SC)水合作用降低,弹性下降且生物合成受损。对AQP3缺乏时皮肤表型改变的机制分析表明,AQP3的甘油转运功能而非水转运功能在皮肤生理学中起重要作用。AQP3缺乏小鼠的角质层和表皮中的甘油含量降低,而真皮和血清中的甘油含量正常。AQP3基因敲除小鼠干燥、相对缺乏弹性的皮肤可能与甘油的保湿特性有关,角质层修复受损与表皮生物合成功能受损有关。AQP3在表皮生理学中的关键作用可能会被用于开发改进型化妆品以及治疗与皮肤含水量改变相关的皮肤病的新疗法。