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根皮素对通过双层脂质膜的载体介导的电沉默离子通量的影响:用pH微电极测量膜附近的pH变化。

Effect of phloretin on the carrier-mediated electrically silent ion fluxes through the bilayer lipid membrane: measurements of pH shifts near the membrane by pH microelectrode.

作者信息

Antonenko Y N, Bulychev A A

机构信息

A.N. Belozersky Laboratory, Moscow State University, U.S.S.R.

出版信息

Biochim Biophys Acta. 1991 Dec 9;1070(2):474-80. doi: 10.1016/0005-2736(91)90089-q.

Abstract

The effect of phloretin on the carrier-mediated electrically silent ion fluxes through the bilayer lipid membrane (BLM) was studied. The measurements were carried out according to our conventional technique, i.e. electrical potential recording in the presence of a protonophore, and by a new method--direct measurements of pH shifts in the unstirred layers of the BLM by pH microelectrode. Both techniques gave similar results. It was shown that the addition of phloretin increased the rate of cation/H+ exchange induced by nigericin and decreased the rate of anion/OH(-)-exchange induced by tributyltin. The effect of phloretin was higher in the presence of cholesterol in the BLM. Cholesterol decreased the nigericin- and tributyltin-induced fluxes under our experimental conditions. The application of an external voltage to the membrane had no effect on the ion fluxes thereby showing that these fluxes were electroneutral. The most probable explanation of these results bases on the effect of the membrane dipole potential on the electroneutral fluxes of ions. The possible mechanism of the dipole potential effect on the carrier-mediated electrically silent ion fluxes was discussed in terms of two competing hypotheses--the translocation through the membrane or the reactions at the membrane surface being the rate-limiting steps of the whole transport process.

摘要

研究了根皮素对通过双层脂质膜(BLM)的载体介导的电沉默离子通量的影响。测量是根据我们的常规技术进行的,即在存在质子载体的情况下记录电势,以及通过一种新方法——用pH微电极直接测量BLM未搅拌层中的pH变化。两种技术得到了相似的结果。结果表明,添加根皮素会增加尼日利亚菌素诱导的阳离子/H⁺交换速率,并降低三丁基锡诱导的阴离子/OH⁻交换速率。在BLM中存在胆固醇的情况下,根皮素的作用更强。在我们的实验条件下,胆固醇降低了尼日利亚菌素和三丁基锡诱导的通量。向膜施加外部电压对离子通量没有影响,从而表明这些通量是电中性的。这些结果最可能的解释基于膜偶极电势对离子电中性通量的影响。根据两个相互竞争的假设——通过膜的转运或在膜表面的反应是整个运输过程的限速步骤,讨论了偶极电势对载体介导的电沉默离子通量的可能机制。

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