Pouliot J F, Gougoux A, Béliveau R
Départements de chimie et biochimie, Université du Québec, Montréal, Canada.
Can J Physiol Pharmacol. 1992 Sep;70(9):1247-53. doi: 10.1139/y92-173.
Fanconi's syndrome was investigated using brush border membrane (BBM) vesicles isolated from dog kidney. Sodium-dependent uptake of glucose, phosphate, and amino acids and protein phosphorylation were studied in BBM isolated from normal and from 4-pentenoate- and maleate-treated animals. The time course of D-glucose and phosphate uptake, in BBM vesicles, remained unchanged, indicating that both treatments had no effect on carrier properties, and that permeabilities to these substrates and to sodium were not modified. Furthermore, sodium-dependent transport of alanine, phenylalanine, proline, glycine, and glutamate into vesicles remained unaltered by either treatment. 4-Pentenoate treatment caused modifications of the phosphorylation pattern of BBM proteins: the phosphorylation of two proteins (61 and 74 kDa) was increased and that of two others (48 and 53 kDa) was decreased. Maleate treatment caused an increase in the phosphorylation for the same 61-kDa protein, which was also affected by 4-pentenoate treatment, suggesting that phosphorylation of this protein could be related to a mechanism involved in both 4-pentenoate- and maleate-induced Fanconi's syndrome. These changes were also observed in the presence of sodium fluoride and L-bromotetramisole, indicating that the modification of phosphorylation was not due to a difference in phosphatase activities. These results suggest that Fanconi's syndrome induced by 4-pentenoate or maleate is not caused by an inhibition of BBM Na(+)-dependent transport systems. Our results also suggest that protein phosphorylation may play an important role in the molecular defect involved in Fanconi's syndrome.
利用从犬肾分离出的刷状缘膜(BBM)囊泡对范科尼综合征进行了研究。对从正常动物以及经4-戊烯酸和马来酸处理的动物分离出的BBM中葡萄糖、磷酸盐和氨基酸的钠依赖性摄取以及蛋白质磷酸化进行了研究。BBM囊泡中D-葡萄糖和磷酸盐摄取的时间进程保持不变,这表明两种处理对载体特性均无影响,并且对这些底物和钠的通透性未发生改变。此外,两种处理均未改变丙氨酸、苯丙氨酸、脯氨酸、甘氨酸和谷氨酸向囊泡中的钠依赖性转运。4-戊烯酸处理导致BBM蛋白磷酸化模式发生改变:两种蛋白(61 kDa和74 kDa)的磷酸化增加,另外两种蛋白(48 kDa和53 kDa)的磷酸化减少。马来酸处理导致同一61 kDa蛋白的磷酸化增加,该蛋白也受4-戊烯酸处理的影响,这表明该蛋白的磷酸化可能与4-戊烯酸和马来酸诱导的范科尼综合征所涉及的机制有关。在存在氟化钠和L-溴四咪唑的情况下也观察到了这些变化,这表明磷酸化的改变并非由于磷酸酶活性的差异。这些结果表明,4-戊烯酸或马来酸诱导的范科尼综合征不是由BBM钠依赖性转运系统的抑制引起的。我们的结果还表明,蛋白质磷酸化可能在范科尼综合征所涉及的分子缺陷中起重要作用。