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UPHILL TRANSPORT INDUCED BY COUNTERFLOW

机译:逆流诱导的UPHILL运输

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摘要

1. In a membrane transport system containing a mobile carrier with affinities for two substrates a concentration gradient with respect to one of the substrates under certain conditions is able to induce an "uphill" transport (against the concentration gradient) of the other. 2. In a kinetic treatment quantitative conditions for such a "flow-induced uphill transport" and some of its characteristics are derived. 3. Experimentally the uphill transport of labelled glucose induced by a concentration gradient for mannose or unlabelled glucose is demonstrated in the human red cell. 4. It is shown that the flow-induced uphill transport is a feature characteristic for mobile carrier systems only and is not to be expected in systems in which the substrate is bound to a fixed membrane component ("adsorption membrane"), although such a system may yield identical transport kinetics. Also with respect to Ussing's flux ratio the two systems are different, the adsorption membrane meeting Ussing's criterion, the carrier membrane not. 5. It is concluded that the transport system in the human red cells must contain a mobile carrier, identical for glucose and mannose.
机译:1.在包含具有对两种底物的亲和力的移动载体的膜运输系统中,在某些条件下相对于一种底物的浓度梯度能够引起另一种底物的“上坡”运输(相对于浓度梯度)。 2.在动力学处理中,得出了这种“水流引起的上坡运输”的定量条件及其某些特征。 3.在人红细胞中,实验证明了甘露糖或未标记葡萄糖的浓度梯度诱导的标记葡萄糖的上坡运输。 4.表明,流动引起的上坡运输仅是移动载体系统的特征,在将底物结合到固定膜组件(“吸附膜”)的系统中是无法预期的,尽管这种系统可能会产生相同的传输动力学。同样关于乌辛的通量比,两个系统是不同的,吸附膜满足乌辛标准,载体膜则不同。 5.结论是,人类红细胞中的转运系统必须包含与葡萄糖和甘露糖相同的移动载体。

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