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乙醇对脑膜小叶流动性的跨膜效应。

Transbilayer effects of ethanol on fluidity of brain membrane leaflets.

作者信息

Schroeder F, Morrison W J, Gorka C, Wood W G

机构信息

Department of Pharmacology and Medicinal Chemistry, College of Pharmacy, University of Cincinnati Medical Center, OH.

出版信息

Biochim Biophys Acta. 1988 Dec 8;946(1):85-94. doi: 10.1016/0005-2736(88)90460-9.

Abstract

Previous work on membrane effects of ethanol focused on fluidization of the bulk membrane lipid bilayer. That work was extended in the present study to an examination of ethanol's effect on lipid domains. Two independent methods were developed to examine the effects of ethanol on the inner and outer leaflets of synaptic plasma membranes (SPM). First, differential polarized phase and modulation fluorometry and selective quenching of diphenyl-1,3,5-hexatriene (DPH) were used to examine individual leaflets. Both limiting anisotropy and rotational relaxation time of DPH in SPM indicated that the outer leaflet was more fluid than the inner leaflet. Second, plasma membrane sidedness selective fluorescent DPH derivatives, cationic 1-[4-(trimethylammonio)phenyl]-6-phenylhexa-1,3,5-triene (TMA-DPH) and anionic 3-[p-6-phenyl)-1,3,5-hexatrienyl]phenylpropionic acid (PRO-DPH), confirmed this transmembrane fluidity difference. TMA-DPH and PRO-DPH preferentially localized in the inner and outer leaflets of SPM, respectively. Ethanol in vitro had a greater fluidizing effect in the outer leaflet as compared to the inner leaflet. Thus, ethanol exhibits a specific rather than nonspecific fluidizing action within transbilayer SPM domains. This preferential fluidization of the SPM outer leaflet may have a role in ethanol affecting transmembrane signaling in the nervous system.

摘要

先前关于乙醇膜效应的研究主要集中在整体膜脂双层的流化作用上。本研究将该工作扩展至考察乙醇对脂筏的影响。开发了两种独立方法来研究乙醇对突触质膜(SPM)内外小叶的影响。首先,利用差分偏振相和调制荧光法以及二苯基-1,3,5-己三烯(DPH)的选择性猝灭来检测单个小叶。SPM中DPH的极限各向异性和旋转弛豫时间均表明,外小叶比内小叶流动性更强。其次,质膜侧向选择性荧光DPH衍生物,阳离子型1-[4-(三甲基铵基)苯基]-6-苯基己-1,3,5-三烯(TMA-DPH)和阴离子型3-[对-(6-苯基)-1,3,5-己三烯基]苯丙酸(PRO-DPH),证实了这种跨膜流动性差异。TMA-DPH和PRO-DPH分别优先定位于SPM的内小叶和外小叶。与内小叶相比,体外乙醇对外小叶具有更强的流化作用。因此,乙醇在跨双层SPM结构域内表现出特异性而非非特异性的流化作用。SPM外小叶的这种优先流化作用可能在乙醇影响神经系统跨膜信号传导中发挥作用。

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