[离子载体诱导离子在常规膜和无溶剂膜中传输动力学的比较]。

R Laprade, J Y Lapointe
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引用次数: 0

摘要

由单油酸甘油酸酯(GMO)和癸烷(GMO- d)混合物制备的传统膜在最终状态下仍含有癸烷,与之相反,由转基因生物和角鲨烯(GMO- s)或三油酸(GMO- t)混合物制成的膜最终只含有转基因生物,被称为“无溶剂”。电压跳跃后的电流弛豫技术的使用使我们能够表征溶剂缺失对非肌动蛋白诱导的离子传输的各个步骤的影响。我们测量了离子-电离团复合物的形成速率(kri)、解离速率(kDi)和易位速率(kis)以及电离团易位速率(ks)。与转基因生物- d膜相比,转基因生物- s膜和转基因生物- t膜的kis高10倍,ks高2倍,kDi小2倍。转基因生物- t膜所观察到的效果总是更为突出。这些结果可以解释为,由于缺乏溶剂,膜中的能垒发生了变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Comparison of the kinetics of ionophore-induced ion transport in conventional and solventless membranes].

In contrast to conventional membranes prepared from a mixture of glyceryl-monooleate (GMO) and decane (GMO-D) which still contain decane in the final state, the membranes formed from a mixture of GMO and squalene (GMO-S) or triolein (GMO-T) contain finally only GMO and are said to be "solventless". The use of the electric current relaxation technique following a voltage jump has allowed us to characterize the effect of the absence of solvent on the various steps of ion transport induced by nonactin. We have measured the rates of formation (kri) of dissociation (kDi) and of translocation (kis) of the ion-ionophore complex as well as the rate of translocation of the ionophore (ks). With the GMO-S and GMO-T membranes, kis is about ten times higher, ks, twice as high, and kDi twice as small than with the GMO-D membranes. The observed effects are always more prominent with the GMO-T membranes. These results can be interpreted in terms of modifications of the energy barriers in the membrane due to the absence of solvent.

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