Institute of Biology, University of Southern Denmark Odense, Denmark.
Front Physiol. 2011 Aug 23;2:51. doi: 10.3389/fphys.2011.00051. eCollection 2011.
intestine, gills, and kidney. Overall water fluxes have been studied in all of these organs but not until recently has it become possible to approach the mechanisms of water transport at the molecular level. This mini-review addresses the role of the kidney in osmoregulation with special emphasis on euryhaline teleosts. After a short review of current knowledge of renal functional morphology and regulation, we turn the focus to recent molecular investigations of the role of aquaporins in water and solute transport in the teleost kidney. We conclude that there is much to be achieved in understanding water transport and its regulation in the teleost kidney and that effort should be put into systematic mapping of aquaporins to their tubular as well as cellular localization.
肠道、鳃和肾脏。人们已经研究了所有这些器官中的整体水通量,但直到最近才有可能从分子水平上研究水运输的机制。这篇迷你综述讨论了肾脏在渗透压调节中的作用,特别强调了广盐性硬骨鱼类。在简要回顾了肾脏功能形态和调节的现有知识后,我们将重点转向最近对水通道蛋白在硬骨鱼类肾脏水和溶质运输中的作用的分子研究。我们得出的结论是,在理解硬骨鱼类肾脏中的水运输及其调节方面还有很多工作要做,应该努力对水通道蛋白进行系统映射,以确定其在肾小管和细胞中的定位。