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由双位点转运机制介导的离子跨带电膜转运的动力学。多价阳离子对铷摄入酵母细胞的影响。

Kinetics of ion translocation across charged membranes mediated by a two-site transport mechanism. Effects of polyvalent cations upon rubidium uptake into yeast cells.

作者信息

Theuvenet A P, Borst-Pauwels G W

出版信息

Biochim Biophys Acta. 1976 Apr 5;426(4):745-56. doi: 10.1016/0005-2736(76)90139-5.

Abstract

(1) The effect of surface charge upon the kinetics of monovalent cation translocation via a two-site mechanism is investigated theroretically. (2) According to the model dealt with, typical relations are expected for the dependence of the kinetic parameters of the translocation process upon the concentration of a polyvalent cation, differing essentially from those derived for the case in which the membrane carries no excess charge. (3) Even when a polyvalent cation does not compete with the substrate cation for binding to the translocation sites, apparently competitive inhibition may occur when the membrane is negatively charged. (4) The model is tested experimentally by studying the effects of the polyvalent cations Mg2+, Sr2+, Ca2+, Ba2+ and Al3+ upon Rb+ uptake into yeast cells at pH 4.5 A good applicability is found. (5) Equimolar concentrations of polyvalent cations reduce the rate of the Rb+ uptake into yeast cells in the order Mg2+ less than Sr2+ less than Ca2+ less than Ba2+ less than Al3+. (6) The conclusion is reached that the reduction in the rate of Rb+ uptake caused by the polyvalent cations applied results mainly from screening of the negative fixed charges on the membrane surface and binding to these negative sites rather than competition with Rb+ for the transport sites. (7) The results of our investigation indicate the affinity of the alkaline-earth cations for the negative fixed charges on the surface to the yeast cell membrane increases in the orther Mg2+ less than Sr2 less than Ca2+ less than Ba2+. (8) Probably mainly phosphoryl groups determine the net charge on the membrane of the yeast cell at a medium pH of 4.5.

摘要

(1)从理论上研究了表面电荷对单价阳离子通过双位点机制进行转运动力学的影响。(2)根据所处理的模型,预计转运过程动力学参数对多价阳离子浓度的依赖性会呈现典型关系,这与膜不带多余电荷情况下得出的关系有本质区别。(3)即使多价阳离子不与底物阳离子竞争结合转运位点,但当膜带负电荷时,仍可能出现明显的竞争性抑制。(4)通过研究多价阳离子Mg2 +、Sr2 +、Ca2 +、Ba2 +和Al3 +对pH为4.5时酵母细胞摄取Rb +的影响,对该模型进行了实验测试。结果发现该模型具有良好的适用性。(5)等摩尔浓度的多价阳离子降低酵母细胞摄取Rb +的速率的顺序为:Mg2 + < Sr2 + < Ca2 + < Ba2 + < Al3 +。(6)得出的结论是,所施加的多价阳离子导致Rb +摄取速率降低主要是由于对膜表面负固定电荷的屏蔽以及与这些负位点的结合,而非与Rb +竞争转运位点。(7)我们的研究结果表明,碱土金属阳离子对酵母细胞膜表面负固定电荷的亲和力按Mg2 + < Sr2 < Ca2 + < Ba2 +的顺序增加。(8)在pH为4.5的中等环境中,可能主要是磷酸基团决定了酵母细胞膜的净电荷。

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