Madsen K M, Harris R H, Tisher C C
Kidney Int. 1982 Feb;21(2):354-61. doi: 10.1038/ki.1982.29.
The purpose of this study was to determine the uptake and intracellular distribution of anionic ferritin (AF) and cationic ferritin (CF) in the distal convoluted tubule (DCT) of the rat kidney. Male Sprague-Dawley rats were prepared for micropuncture, and individual distal tubules were perfused with 5 or 10 mg/ml of AF or 0.1 or 0.5 mg/ml of CF in isotonic saline for either 30 sec or 3 min. The tubules were fixed by perfusion with 6.25% glutaraldehyde either immediately or at different time intervals after exposure to ferritin. Electron microscopy of tubules fixed immediately after perfusion showed no binding of AF to the apical cell membrane, and only traces of AF were observed in small apical structures. In contrast, CF was extensively bound to the apical cell membrane and located in apical vesicles and tubules, and in multivesicular bodies. Occasionally, CF was observed in Golgi vesicles and cisternae. Sixty min after perfusion with ferritin, traces of AF were present in multivesicular bodies and lysosome-like structures. Thirty and 60 min after perfusion, large concentrations of CF were located in multivesicular bodies and lysosome-like bodies. This study reveals that in the DCT, CF is bound to the apical cell membrane and taken up into the tubule cells, whereas only traces of AF are taken up, indicating that the charge of a protein molecule may determine whether or not the protein is reabsorbed by the DCT. The demonstration of CF in the Golgi complex is compatible with the existence of membrane recycling in cells of the DCT.
本研究的目的是确定阴离子铁蛋白(AF)和阳离子铁蛋白(CF)在大鼠肾脏远曲小管(DCT)中的摄取及细胞内分布。选用雄性Sprague-Dawley大鼠进行微穿刺实验,将各条远曲小管在等渗盐水中分别用5或10 mg/ml的AF或0.1或0.5 mg/ml的CF灌注30秒或3分钟。在暴露于铁蛋白后,立即或在不同时间间隔通过灌注6.25%的戊二醛对小管进行固定。对灌注后立即固定的小管进行电子显微镜观察,结果显示AF未与顶端细胞膜结合,仅在小的顶端结构中观察到微量AF。相比之下,CF广泛结合于顶端细胞膜,并位于顶端小泡、小管以及多泡体中。偶尔在高尔基体小泡和扁平囊泡中也能观察到CF。用铁蛋白灌注60分钟后,在多泡体和溶酶体样结构中存在微量AF。灌注30分钟和60分钟后,大量CF位于多泡体和溶酶体样小体中。本研究表明,在远曲小管中,CF结合于顶端细胞膜并被小管细胞摄取,而仅摄取到微量AF,这表明蛋白质分子的电荷可能决定该蛋白质是否会被远曲小管重吸收。在高尔基体复合物中发现CF与远曲小管细胞中存在膜循环现象相符。