Carbrey Jennifer M, Agre Peter
Department of Cell Biology, Duke University School of Medicine, DUMC Box 102143, Durham, NC 27710, USA.
Handb Exp Pharmacol. 2009(190):3-28. doi: 10.1007/978-3-540-79885-9_1.
The study of water transport began long before the molecular identification of water channels with studies of water-permeable tissues. The discovery of the first aquaporin, AQP1, occurred during experiments focused on the identity of the Rh blood group antigens. Since then the field has expanded dramatically to study aquaporins in all types of organisms. In mammals, some of the aquaporins transport only water. However, there are some family members that collectively transport a diverse set of solutes. The aquaporins can be regulated by factors that affect channel permeability or subcellular localization. An extensive set of studies examines the physiological role of many of the mammalian aquaporins. However, much is still to be discovered about the physiological role of this membrane protein family.
早在通过对水通透组织的研究在分子层面鉴定出水通道之前,对水运输的研究就已经开始了。首个水通道蛋白AQP1是在专注于Rh血型抗原鉴定的实验过程中发现的。从那时起,该领域急剧扩展,开始研究所有类型生物体中的水通道蛋白。在哺乳动物中,一些水通道蛋白仅运输水。然而,有一些家族成员共同运输多种溶质。水通道蛋白可受影响通道通透性或亚细胞定位的因素调控。大量研究探讨了许多哺乳动物水通道蛋白的生理作用。然而,关于这个膜蛋白家族的生理作用仍有许多有待发现之处。