Beck J C, Sacktor B
J Biol Chem. 1978 Aug 10;253(15):5531-5.
The uphill transport of D-glucose in renal brush border membrane vesicles was correlated with the Na+ electrochemical gradient. Each component of the electrochemical potential, the membrane potential (outside positive) or the Na+ chemical gradient, when assayed independently, supported the concentrative uptake of the sugar. When the two components were combined, the rates of D-glucose uptake were additive. Accumulation of D-glucose as a function of various Na+ gradients, in the absence of a membrane potential, suggests a 1:1 stoichiometry between sugar and Na+ uptake. These findings are consistent with the role of ionic gradients in energizing uphill solute transport.
肾刷状缘膜囊泡中D - 葡萄糖的上坡转运与Na⁺电化学梯度相关。当独立测定时,电化学势的每个组分,即膜电位(外正)或Na⁺化学梯度,都支持糖的浓缩摄取。当这两个组分结合时,D - 葡萄糖摄取速率是相加的。在没有膜电位的情况下,D - 葡萄糖作为各种Na⁺梯度的函数的积累表明糖与Na⁺摄取之间存在1:1的化学计量关系。这些发现与离子梯度在驱动溶质上坡转运中的作用一致。