Renfro J L, Clark N B, Metts R E, Lynch M A
Am J Physiol. 1987 Jan;252(1 Pt 2):R85-93. doi: 10.1152/ajpregu.1987.252.1.R85.
Brush-border and basolateral membrane vesicles (BBMV and BLMV, respectively) were prepared from chick kidney by a calcium precipitation method and by centrifugation on an 8% Percoll self-generating gradient, respectively. In BBMV a 100-mM Na gluconate gradient, out greater than in, caused concentrative sulfate uptake approximately fivefold greater at 1 min than at 60 min (equilibrium) whether or not the membranes were short-circuited with 100 mM K gluconate, in = out, plus 20 micrograms valinomycin/mg protein. A 48-mM HCO3- gradient, in greater than out, stimulated a 2.5-fold higher uptake at 1 min than at 60 min, and short circuiting as above had no effect on the magnitude of this response. Imposition of a H+ gradient (pH 5.4 out vs. pH 7.4 in) caused concentrative uptake fourfold higher at 1 min than at equilibrium. Short circuiting as above or addition of 0.1 mM carbonyl cyanide m-chlorophenylhydrazone (CCCP) significantly inhibited the pH gradient effect. Creation of an inside positive electrical potential with 100 mM K gluconate, out greater than in, plus valinomycin, also caused concentrative sulfate uptake. The K gradient in the absence of valinomycin had no effect on sulfate uptake (compared with isosmotic mannitol). Based on inhibitor/competitor effects, these are distinct sulfate transport processes. In chick BLMV, imposition of an HCO3- gradient, in greater than out, produced concentrative sulfate uptake; however, neither Na+ nor H+ gradients had significant effects at 15 s. 4-Acetamido-4'-isothiocyanostilbene 2,2'-disulfonic acid disodium at 0.1 mM was an effective inhibitor of BLMV bicarbonate-sulfate exchange; however, neither Cl-, SCN-, nor CCCP inhibited.
分别通过钙沉淀法和在8% Percoll自生成梯度上离心,从鸡肾制备刷状缘膜囊泡和基底外侧膜囊泡(分别为BBMV和BLMV)。在BBMV中,100 mM葡萄糖酸钠梯度(外大于内)导致在1分钟时的浓缩硫酸盐摄取比60分钟(平衡时)大约高五倍,无论膜是否用100 mM葡萄糖酸钾短路(内 = 外),再加上20微克缬氨霉素/毫克蛋白质。48 mM HCO₃⁻梯度(内大于外)在1分钟时刺激的摄取比60分钟时高2.5倍,并且如上所述的短路对该反应的幅度没有影响。施加H⁺梯度(外pH 5.4对内pH 7.4)导致在1分钟时的浓缩摄取比平衡时高四倍。如上所述的短路或添加0.1 mM羰基氰化物间氯苯腙(CCCP)显著抑制pH梯度效应。用100 mM葡萄糖酸钾(外大于内)加上缬氨霉素产生内正电势,也导致浓缩硫酸盐摄取。在没有缬氨霉素的情况下K⁺梯度对硫酸盐摄取没有影响(与等渗甘露醇相比)。基于抑制剂/竞争者效应,这些是不同的硫酸盐转运过程。在鸡BLMV中,施加HCO₃⁻梯度(内大于外)产生浓缩硫酸盐摄取;然而,在15秒时Na⁺和H⁺梯度都没有显著影响。0.1 mM的4-乙酰氨基-4'-异硫氰基芪2,2'-二磺酸二钠是BLMV碳酸氢盐-硫酸盐交换的有效抑制剂;然而,Cl⁻、SCN⁻或CCCP都没有抑制作用。