首页> 外文OA文献 >Modification of ion transport in lipid bilayer membranes in the presence of 2,4-dichlorophenoxyacetic acid. I. Enhancement of cationic conductance and changes of the kinetics of nonactin-mediated transport of potassium.
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Modification of ion transport in lipid bilayer membranes in the presence of 2,4-dichlorophenoxyacetic acid. I. Enhancement of cationic conductance and changes of the kinetics of nonactin-mediated transport of potassium.

机译:在2,4-二氯苯氧基乙酸存在下,脂质双层膜中离子迁移的修饰。 I.阳离子电导的增强和非肌动蛋白介导的钾转运动力学的变化。

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摘要

We have found that herbicide 2,4-dichlorophenoxyacetic acid (2,4-D) has the ability to increase the rate of transport of positive ions of several kinds, and to inhibit transport of negatively charged tetraphenylborate ions in lipid bilayer membranes. It has been found that only the neutral form of 2,4-D is transport active, whereas the ionized from of 2,4-D does not modify transport of ions, and does not by itself permeate through lipid membranes. The results suggest that the enhancement of transport of positively charged ions such as tetraphenylarsonium + and nonactin-K+ is dominated by the increase of the ion translocation rate constant. It has been shown that the enhancement of nonactin-mediated transport of K+ by 2,4-D can be accounted for by a simple carrier model. We have observed that a 2,4-D concentration above 3 X 10(-4) M the potassium ion transport in phosphatidylcholine-cholesterol as well as in cholesterol-free glycerolmonooleate membranes is enhanced to such a degree that, depending upon the concentration of potassium ions, it becomes limited by the rate of recombination of K+ with nonactin, and/or by backdiffusion of unloaded nonactin molecules. Furthermore, the effect of 2,4-D is enhanced by ionic strength of aqueous solution. From the changes of kinetic parameters of nonactin-K+ transport, as well as from the changes of membranes conductance due to tetraphenylarsonium + ions, we have estimated the changes of the electrical potential of the membrane interior. We have found that the potential of the interior of the membrane becomes more negative in the presence of 2,4-D, and that its change is proportional to the aqueous concentration of 2,4-D. The effect of 2,4-D on ion transport has been attributed to a layer of 2,4-D molecules absorbed within the interfacial region, and having a dipole moment directed toward the aqueous medium. The results of kinetic studied of nonactin-K+ transport suggest that this layer is located on the hydrocarbon side of the interface.
机译:我们已经发现除草剂2,4-二氯苯氧基乙酸(2,4-D)具有增加几种正离子的传输速率并抑制脂质双层膜中带负电的四苯基硼酸根离子迁移的能力。已经发现,仅中性形式的2,4-D具有运输活性,而2,4-D的离子化不会改变离子的运输,并且其本身不会透过脂质膜渗透。结果表明,带正电的离子如四苯基phenyl +和非肌动蛋白-K +的传输增强主要由离子转运速率常数的增加决定。已经显示,可以通过简单的载体模型解释2,4-D对非肌动蛋白介导的K +转运的增强。我们已经观察到,高于3 X 10(-4)M的2,4-D浓度会使磷脂酰胆碱-胆固醇以及无胆固醇的甘油单油酸酯膜中的钾离子转运增强到一定程度,具体取决于对于钾离子,它会受到K +与非肌动蛋白重组的速率和/或未负载非肌动蛋白分子的反向扩散的限制。此外,水溶液的离子强度增强了2,4-D的作用。从非肌动蛋白K +转运的动力学参数的变化,以及由于四苯基ar +离子引起的膜电导的变化,我们估计了膜内部电势的变化。我们已经发现,在2,4-D存在下,膜内部的电势变得更负,并且其变化与2,4-D的水浓度成比例。 2,4-D对离子迁移的影响归因于在界面区域内吸收的2,4-D分子层,其偶极矩指向水介质。对非肌动蛋白K +转运进行动力学研究的结果表明,该层位于界面的烃侧。

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