Department of Chemistry and Molecular Biology, University of Gothenburg, 405 30 Gothenburg, Sweden.
Proc Natl Acad Sci U S A. 2014 Apr 29;111(17):6305-10. doi: 10.1073/pnas.1321406111. Epub 2014 Apr 14.
Human aquaporin 2 (AQP2) is a water channel found in the kidney collecting duct, where it plays a key role in concentrating urine. Water reabsorption is regulated by AQP2 trafficking between intracellular storage vesicles and the apical membrane. This process is tightly controlled by the pituitary hormone arginine vasopressin and defective trafficking results in nephrogenic diabetes insipidus (NDI). Here we present the X-ray structure of human AQP2 at 2.75 Å resolution. The C terminus of AQP2 displays multiple conformations with the C-terminal α-helix of one protomer interacting with the cytoplasmic surface of a symmetry-related AQP2 molecule, suggesting potential protein-protein interactions involved in cellular sorting of AQP2. Two Cd(2+)-ion binding sites are observed within the AQP2 tetramer, inducing a rearrangement of loop D, which facilitates this interaction. The locations of several NDI-causing mutations can be observed in the AQP2 structure, primarily situated within transmembrane domains and the majority of which cause misfolding and ER retention. These observations provide a framework for understanding why mutations in AQP2 cause NDI as well as structural insights into AQP2 interactions that may govern its trafficking.
人水通道蛋白 2(AQP2)是一种在肾脏集合管中发现的水通道,在浓缩尿液中起着关键作用。水的重吸收受 AQP2 在细胞内储存小泡和顶膜之间的运输调节。这个过程受到垂体激素精氨酸加压素的严格控制,而运输缺陷导致肾性尿崩症(NDI)。在这里,我们呈现了 2.75Å分辨率的人 AQP2 的 X 射线结构。AQP2 的 C 末端显示出多种构象,其中一个原体的 C 末端α螺旋与对称相关的 AQP2 分子的细胞质表面相互作用,这表明在 AQP2 的细胞分选过程中可能存在潜在的蛋白-蛋白相互作用。在 AQP2 四聚体中观察到两个 Cd(2+)离子结合位点,诱导环 D 的重排,从而促进这种相互作用。可以在 AQP2 结构中观察到几种导致 NDI 的突变,主要位于跨膜结构域内,其中大多数导致错误折叠和 ER 保留。这些观察结果为理解为什么 AQP2 突变导致 NDI 提供了一个框架,以及对可能调节其运输的 AQP2 相互作用的结构见解。