Department of Biological Science, Graduate School of Science and Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan.
Endocrinology. 2010 Mar;151(3):1089-96. doi: 10.1210/en.2009-1070. Epub 2010 Feb 10.
The vasopressin/vasotocin (VT)-V2-type receptor (V2R)-aquaporin (AQP)-2 axis plays a pivotal role in renal water reabsorption in tetrapods. It is widely thought that this axis evolved with the emergence of the tetrapods, reflecting a requirement of water retention in terrestrial environment. Here we report that lungfish, the closest living relatives of tetrapods, already possess a system similar to the VT-V2R-AQP2 axis in the kidney, but the system is functional only in the terrestrial estivating condition. We cloned a novel AQP paralogous to AQP0. The water permeability of Xenopus oocytes was increased by injection with the AQP cRNA and was further facilitated by preincubation with cAMP. In the kidney of estivating lungfish, the AQP protein was localized on the apical plasma membrane of the late distal tubule and was colocalized with basolateral V2R. By contrast, we found only little expression of the AQP mRNA and protein in the kidney of lungfish in aquatic condition. The expression levels of mRNA and protein were dramatically increased during estivation and decreased again by reacclimation of estivating lungfish to water. The AQP mRNA levels positively correlated with the VT mRNA levels in the hypothalamus, suggesting that the AQP exerts tubular antidiuretic action under control of VT. Because the tetrapod AQP2/AQP5 lineage is considered to be evolved from duplication of an AQP0 gene, the paralogous AQP0 in the lungfish probably represents ancestral molecule for tetrapod AQP2.
血管加压素/缩宫素(VT)-V2 型受体(V2R)-水通道蛋白(AQP)-2 轴在四足动物的肾脏水重吸收中起着关键作用。人们普遍认为,这条轴随着四足动物的出现而进化,反映了在陆地环境中保持水分的需求。在这里,我们报告说,肺鱼,四足动物的近亲,已经在肾脏中拥有类似于 VT-V2R-AQP2 轴的系统,但该系统仅在陆地夏眠条件下才具有功能。我们克隆了一种与 AQP0 类似的新型 AQP。通过注射 AQP cRNA,非洲爪蟾卵母细胞的水通透性增加,并通过与 cAMP 预孵育进一步促进。在夏眠肺鱼的肾脏中,AQP 蛋白定位于晚期远曲小管的顶膜上,并与基底外侧 V2R 共定位。相比之下,我们发现在肺鱼的水生条件下,肾脏中只有很少的 AQP mRNA 和蛋白质表达。在夏眠期间,mRNA 和蛋白质的表达水平显著增加,而当夏眠肺鱼重新适应水时,其表达水平又降低。AQP mRNA 水平与下丘脑的 VT mRNA 水平呈正相关,这表明 AQP 在 VT 的控制下发挥管腔抗利尿作用。因为四足动物 AQP2/AQP5 谱系被认为是从 AQP0 基因的复制进化而来的,所以肺鱼中的类似 AQP0 可能代表了四足动物 AQP2 的祖先分子。