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RH系列荧光苯乙烯基染料会影响膜/溶液边界处的电位降。

Fluorescent styryl dyes of the RH series affect a potential drop on the membrane/solution boundary.

作者信息

Malkov D Y, Sokolov V S

机构信息

A.N. Frumkin Institute of Electrochemistry of the Russian Academy of Sciences, Moscow, Russia.

出版信息

Biochim Biophys Acta. 1996 Jan 31;1278(2):197-204. doi: 10.1016/0005-2736(95)00197-2.

Abstract

The effects of the adsorption of the fluorescent potential-sensitive dyes RH-421, RH-237 and RH-160 on the bilayer lipid membrane were studied. It was shown that a dipole potential drop, positive in the hydrophobic part of the membrane, arose due to the dye adsorption. The dye adsorption led to a considerable increase of the rate constant of hydrophobic anion translocation through the membrane, but did not affect their partition coefficient between membrane and water. It implies that the region of the membrane where the potential drops is located deeper than the adsorption plane of hydrophobic ions. The values of boundary potential differences were estimated by two independent methods with unilateral and bilateral application of the dyes to lipid bilayer membranes. The results suggest that RH dye molecules penetrate through the lipid bilayers. The values of zeta-potential in liposomes did not change on dye adsorption. Hence, dye molecules are adsorbed in a form that does not change the surface charge. We estimated the effects of electric field of dye dipole layer on an individual dipole located in the same layer and on ion transport through a membrane protein Na+/K+-ATPase. It turned out that the local electric field of each dye dipole decayed so rapidly that a neighbouring dye molecule did not feel it. It also appeared that RH dyes could have but a minor effect on the electrogenic transport performed by the sodium pump in the examined range of dye concentrations.

摘要

研究了荧光电位敏感染料RH - 421、RH - 237和RH - 160在双层脂质膜上的吸附作用。结果表明,由于染料吸附,在膜的疏水部分出现了正的偶极电位降。染料吸附导致疏水阴离子通过膜的转运速率常数显著增加,但不影响它们在膜与水之间的分配系数。这意味着电位下降的膜区域比疏水离子的吸附平面更深。通过两种独立的方法,即向脂质双层膜单侧和双侧施加染料,估算了边界电位差的值。结果表明,RH染料分子穿透了脂质双层。染料吸附后脂质体中的ζ电位值没有变化。因此,染料分子以不改变表面电荷的形式被吸附。我们估算了染料偶极层电场对位于同一层的单个偶极以及对通过膜蛋白Na⁺/K⁺ - ATP酶的离子转运的影响。结果表明,每个染料偶极的局部电场衰减得非常快,以至于相邻的染料分子感觉不到它。还发现,在所研究的染料浓度范围内,RH染料对钠泵进行的生电转运可能只有微小的影响。

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