Sacktor B, Rosenbloom I L, Liang C T, Cheng L
J Membr Biol. 1981 May 15;60(1):63-71. doi: 10.1007/BF01870833.
A membrane preparation enriched in the basolateral segment of the plasma membrane was isolated from the rat renal cortex by a procedure that included separation of particulates on a self-generating Percoll gradient. The uptake of L-glutamate by the basolateral membrane vesicles was studied. A Na+ gradient (Na+]o greater than [Na+]i) stimulated the uptake of L-glutamate and provided the driving force for the uphill transport of the acidic amino acid, suggesting a Na+-L-glutamate cotransport system in the basolateral membrane. A K+ gradient ([K+]i greater than [K+]o) increased the uptake additionally. This effect was specific for K+(Rb+). The action of the K+ gradient in enhancing the uptake of L-glutamate had an absolute requirement for Na+. In the presence of Na+, but in the absence of a Na+ gradient. i.e., [Na+]o = [Na+]i, the K+ gradient also energized the concentrative uptake of L-glutamate. This effect of the K+ gradient was not attributable to an alteration in membrane potential. The finding of a concentrative uptake system for L-glutamate energized by both Na+ ([Na+]o greater than [Na+]i and K+ ([K+]o) gradients in the basolateral membrane, combined with previous reports of an ion gradient-dependent uphill transport system for this amino acid in the brush border membrane, suggests a mechanism by which L-glutamate is accumulated intracellularly in the renal proximal tubule to extraordinarily high concentrations.
通过一种包括在自生成的Percoll梯度上分离颗粒的方法,从大鼠肾皮质中分离出富含质膜基底外侧段的膜制剂。研究了基底外侧膜囊泡对L-谷氨酸的摄取。Na+梯度([Na+]o大于[Na+]i)刺激L-谷氨酸的摄取,并为这种酸性氨基酸的上坡转运提供驱动力,提示基底外侧膜中存在Na+-L-谷氨酸共转运系统。K+梯度([K+]i大于[K+]o)进一步增加了摄取。这种效应是K+特异性的(Rb+)。K+梯度增强L-谷氨酸摄取的作用对Na+有绝对需求。在有Na+但无Na+梯度的情况下,即[Na+]o = [Na+]i时,K+梯度也能为L-谷氨酸的浓缩摄取提供能量。K+梯度的这种效应并非归因于膜电位的改变。在基底外侧膜中发现由Na+([Na+]o大于[Na+]i)和K+([K+]o)梯度驱动的L-谷氨酸浓缩摄取系统,再结合先前关于刷状缘膜中该氨基酸的离子梯度依赖性上坡转运系统的报道,提示了一种L-谷氨酸在肾近端小管细胞内积累至高浓度的机制。