Department of Optometry and Vision Science, New Zealand National Eye Centre, University of Auckland, Auckland, New Zealand.
Exp Eye Res. 2013 Mar;108:94-102. doi: 10.1016/j.exer.2012.12.004. Epub 2013 Jan 8.
Until recently, the lens was thought to express only two aquaporin (AQP) water channels, AQP1 and AQP0. In this study we confirm lenticular AQP5 protein expression by Western blotting and mass spectrometry in lenses from a variety of species. In addition, confocal microscopy was used to map cellular distributions of AQP5 in mouse, rat and human lenses. Tandem mass spectrometry of a human lens membrane preparation revealed extensive sequence coverage (56.2%) of AQP5. Western blotting performed on total fiber cell membranes from mouse, rat, bovine and human lenses confirmed AQP5 protein expression is conserved amongst species. Western blotting of dissected lens fractions suggests that AQP5 is processed in the lens core by C-terminal truncation. Immunohistochemistry showed that AQP5 signal was most abundant in the lens outer cortex and decreased in intensity in the lens core. Furthermore, AQP5 undergoes differentiation-dependent changes in subcellular location from an intracellular localization in differentiating fiber cells to the plasma membrane of mature fiber cells upon the loss of fiber cell nuclei. Our results show that AQP5 is a significant component of lens fiber cell membranes, representing the second most abundant water channel in these cells. Together, the changes to AQP5 distribution and structure are likely to modulate the functional role of AQP5 in different regions of the lens.
直到最近,人们一直认为晶状体只表达两种水通道蛋白(AQP),即 AQP1 和 AQP0。在这项研究中,我们通过 Western blot 和质谱法确认了来自多种物种的晶状体中 AQP5 蛋白的表达。此外,共聚焦显微镜被用于绘制 AQP5 在小鼠、大鼠和人晶状体中的细胞分布图谱。对人晶状体膜制剂进行串联质谱分析显示 AQP5 具有广泛的序列覆盖率(56.2%)。对来自小鼠、大鼠、牛和人晶状体的总纤维细胞膜进行 Western blot 证实了 AQP5 蛋白在物种间的保守表达。对晶状体不同部位进行 Western blot 分析表明,AQP5 在晶状体核心通过 C 端截短进行加工。免疫组化显示 AQP5 信号在晶状体外皮层最为丰富,在晶状体核心强度降低。此外,AQP5 在亚细胞定位上发生了分化依赖性变化,从分化纤维细胞的细胞内定位到成熟纤维细胞的质膜,而纤维细胞核丢失。我们的结果表明,AQP5 是晶状体纤维细胞膜的重要组成部分,是这些细胞中第二丰富的水通道蛋白。AQP5 分布和结构的变化可能调节 AQP5 在晶状体不同区域的功能作用。