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通过基因敲除小鼠的表型分析揭示水通道蛋白的新作用。

Novel roles of aquaporins revealed by phenotype analysis of knockout mice.

作者信息

Verkman A S

机构信息

University of California, Department of Medicine, Cardiovascular Research Institute, San Francisco, 94143-0521 CA, USA.

出版信息

Rev Physiol Biochem Pharmacol. 2005;155:31-55. doi: 10.1007/3-540-28217-3_2.

Abstract

The aquaporins (AQPs) are small integral membrane proteins that transport water and in some cases small solutes such as glycerol. Physiological roles of the ten or more mammalian AQPs have been proposed based on their expression in epithelial, endothelial and other tissues, their regulation, and in some cases the existence of humans with AQP mutation. Here, the role of AQPs in mammalian physiology is reviewed, based on phenotype analysis of transgenic mouse models of AQP deletion/mutation. Phenotype studies support the predicted roles of AQPs in kidney tubule and microvessel fluid transport for urinary concentrating function, and in fluid-secreting glandular epithelia. The phenotype studies have also shown unexpected roles of AQPs in brain and corneal swelling, in neural signal transduction, in regulation of intracranial and intraocular pressure, and in tumor angiogenesis and cell migration. The water/glycerol-transporting AQPs were found to play unexpected roles in skin hydration and in fat metabolism. However, many phenotype studies were negative, such as normal airway/lung and skeletal muscle function, despite AQP expression, indicating that tissue-specific AQP expression does not indicate physiological significance. The mouse phenotype data suggest that modulators of AQP expression/function may have such wide-ranging clinical applications as diuretics and in the treatment of brain swelling, glaucoma, epilepsy, obesity, and cancer.

摘要

水通道蛋白(AQPs)是一类小型整合膜蛋白,可转运水,在某些情况下还可转运甘油等小分子溶质。基于其在上皮组织、内皮组织及其他组织中的表达、调控情况,以及某些情况下存在水通道蛋白突变的人类个体,人们提出了十种或更多种哺乳动物水通道蛋白的生理作用。在此,基于水通道蛋白缺失/突变转基因小鼠模型的表型分析,对水通道蛋白在哺乳动物生理学中的作用进行综述。表型研究支持了水通道蛋白在肾小管和微血管液体转运中对尿液浓缩功能的预测作用,以及在分泌液体的腺上皮中的作用。表型研究还显示了水通道蛋白在脑和角膜肿胀、神经信号转导、颅内和眼内压调节以及肿瘤血管生成和细胞迁移中的意外作用。发现水/甘油转运水通道蛋白在皮肤水合作用和脂肪代谢中发挥了意想不到的作用。然而,许多表型研究结果为阴性,例如尽管存在水通道蛋白表达,但气道/肺和骨骼肌功能正常,这表明组织特异性水通道蛋白表达并不意味着具有生理意义。小鼠表型数据表明,水通道蛋白表达/功能调节剂可能具有广泛的临床应用,如利尿剂以及用于治疗脑肿胀、青光眼、癫痫、肥胖症和癌症。

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