Murdiastuti Kwartarini, Miki Osamu, Yao Chenjuan, Parvin Most Nahid, Kosugi-Tanaka Chisato, Akamatsu Tetsuya, Kanamori Norio, Hosoi Kazuo
Department of Physiology and Oral Physiology, Tokushima University School of Dentistry, Japan.
Pflugers Arch. 2002 Dec;445(3):405-12. doi: 10.1007/s00424-002-0940-8. Epub 2002 Oct 11.
By Western blot analysis, the expression level of aquaporin (AQP) 5 in the submandibular gland (SMG) was found to be different among individual rats of the Sprague-Dawley (SD) strain. Such differences were observed for AQP5 but not for AQP1 and consequently the SD strain was divided into two groups, one expressing a high level of AQP5 and the other a low one. The difference in average intensity of expression between the two groups was more than twofold. Immunohistochemical analysis of the SMG demonstrated that the AQP5 protein was localized in the basal and apical/lateral plasma membrane of acinar cells in rats expressing the high level of AQP5. In the rat expressing the low level, however, this channel protein was localized strongly in the apical/lateral plasma membrane, but only very weakly in the basal membrane of the acinar cells. Such a diverse localization of AQP5 was confirmed by Western blotting as well. Breeding between brother and sister was repeated for two times within high expressers and low expressers to obtain the third generation progenies (F2); the AQP5 level of the SMG in the third generation (F2 rats) from high expressers was significantly higher than the F2 from low expressers. Our present study suggests the existence of genetic variation in the expression of a water channel protein, AQP5, in rats.
通过蛋白质免疫印迹分析发现,在斯普拉格-道利(SD)品系的大鼠个体中,下颌下腺(SMG)中aquaporin(AQP)5的表达水平存在差异。AQP5存在这种差异,但AQP1没有,因此SD品系被分为两组,一组表达高水平的AQP5,另一组表达低水平的AQP5。两组之间平均表达强度的差异超过两倍。对SMG的免疫组织化学分析表明,AQP5蛋白定位于表达高水平AQP5的大鼠腺泡细胞的基底和顶端/侧面质膜。然而,在表达低水平AQP5的大鼠中,这种通道蛋白强烈定位于腺泡细胞的顶端/侧面质膜,但仅非常微弱地定位于基底膜。蛋白质免疫印迹也证实了AQP5的这种不同定位。在高表达者和低表达者内部,亲兄妹之间的繁殖重复进行了两次以获得第三代后代(F2);高表达者的第三代(F2大鼠)SMG中的AQP5水平显著高于低表达者的F2。我们目前的研究表明,大鼠中一种水通道蛋白AQP5的表达存在遗传变异。