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利用双位点盐结合大环化合物促进钠或氯化钾跨囊泡膜的运输。

Facilitated transport of sodium or potassium chloride across vesicle membranes using a ditopic salt-binding macrobicycle.

作者信息

Koulov Atanas V, Mahoney Joseph M, Smith Bradley D

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556-5670, USA.

出版信息

Org Biomol Chem. 2003 Jan 7;1(1):27-9. doi: 10.1039/b208873h.

Abstract

A synthetic receptor, with an ability to bind sodium or potassium chloride as a contact ion-pair, is shown to effectively transport either salt across vesicle membranes. Significant transport is observed even when the transporter: phospholipid ratio is as low as 1:2500. Chloride efflux from unilamellar vesicles is monitored using a chloride selective electrode. Mechanistic studies indicate that the facilitated efflux is due to the uncomplexed transporter diffusing into the vesicle and the transporter-salt complex diffusing out. Vesicle influx experiments are also reported, where the facilitated influx of chloride and sodium ions into vesicles is observed directly by 35Cl and 23Na NMR, respectively.

摘要

一种能够结合氯化钠或氯化钾作为接触离子对的合成受体,被证明能有效地将两种盐转运穿过囊泡膜。即使转运体与磷脂的比例低至1:2500,也能观察到显著的转运。使用氯离子选择性电极监测单层囊泡中的氯离子外流。机理研究表明,促进外流是由于未络合的转运体扩散到囊泡中,以及转运体 - 盐复合物扩散出囊泡。还报道了囊泡内流实验,其中分别通过35Cl和23Na NMR直接观察到氯离子和钠离子促进流入囊泡。

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