Brunette M G, el Mernissi G, Doucet A
Can J Physiol Pharmacol. 1985 Oct;63(10):1339-44. doi: 10.1139/y85-221.
To investigate the possible role of a Na transport defect in the pathogenesis of the phosphaturia in vitamin D resistant rickets, we studied the activity of the Na-K ATPase activity along the microdissected segments of the nephron in normal (N) and hypophosphatemic mice (Hyp), the Na uptake by renal brush border membrane (BBM), as well as the interrelationship between Na and phosphate transport through this membrane. In N mice, Na-K ATPase activity was present in decreasing order, in the distal tubule, the ascending branch of the loop of Henle, the proximal tubule, and the collecting tubule. In Hyp mice, the Na-K ATPase activity was comparable to that measured in N mice, except in the granular segment of the distal tubule where a 256% of the control activity was reproducibly observed. In N mice, Na initial uptake by BBM vesicles increased with Na concentration in the incubation medium, according to two kinetic components: one saturable, evident at low substrate concentrations and the other, nonsaturable, corresponding to a passive diffusion. The addition of 5 mM PO4 in the incubation medium did not significantly influence Na transport. In contrast, Na concentration in the incubation medium largely modified the kinetics of PO4 uptake: increasing Na concentration enhanced PO4 uptake and decreased the apparent Km. In Hyp mice, Na uptake by BBM was identical to that observed in N mice, but PO4 uptake was decreased by half. Na concentration in the incubation medium similarly influenced PO4 uptake in N and Hyp mice, and the Km values at each concentration of Na were comparable in the two series of animals.(ABSTRACT TRUNCATED AT 250 WORDS)
为了研究钠转运缺陷在维生素D抵抗性佝偻病磷尿症发病机制中的可能作用,我们研究了正常(N)和低磷血症小鼠(Hyp)肾单位微解剖节段中钠钾ATP酶的活性、肾刷状缘膜(BBM)对钠的摄取,以及钠和磷通过该膜转运之间的相互关系。在N小鼠中,钠钾ATP酶活性按降序存在于远曲小管、髓袢升支、近曲小管和集合小管中。在Hyp小鼠中,钠钾ATP酶活性与N小鼠中测得的活性相当,但在远曲小管颗粒段除外,在该段可重复性观察到对照活性的256%。在N小鼠中,BBM囊泡对钠的初始摄取随孵育培养基中钠浓度的增加而增加,根据两个动力学成分:一个是可饱和的,在低底物浓度下明显,另一个是不饱和的,对应于被动扩散。在孵育培养基中添加5 mM磷酸盐对钠转运没有显著影响。相反,孵育培养基中的钠浓度在很大程度上改变了磷摄取的动力学:增加钠浓度增强了磷摄取并降低了表观Km值。在Hyp小鼠中,BBM对钠的摄取与N小鼠中观察到的相同,但磷摄取减少了一半。孵育培养基中的钠浓度对N和Hyp小鼠中的磷摄取有类似影响,并且在两个系列动物中每种钠浓度下的Km值相当。(摘要截短于250字)