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Effects of hydrostatic pressure on lipid bilayer membranes. I. Influence on membrane thickness and activation volumes of lipophilic ion transport.

机译:静水压力对脂质双层膜的影响。 I.对膜厚度和亲脂离子迁移的活化体积的影响。

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摘要

Measurements of membrane capacitance, Cm, were performed on lipid bilayers of different lipidic composition (diphytanoyl phosphatidylcholine PPhPC, dioleoyl phosphatidylcholine DOPE, glycerylmonooleate GMO) and containing n-decane as solvent. In the same membranes, the absorption of the lipophilic ions dipicrylamine (DPA-) and tetraphenylborate (TPhB-), and the kinetics of their translocation between the two membrane faces have been studied. The data were obtained from charge pulse relaxation measurements. Upon increasing pressure the specific capacity Cm increased in a fully reversible and reproducible way reflecting a thinning of the membrane that is attributed to extrusion of n-decane from the black membrane area. High pressure decreased the rate constant, ki, for lipophilic ion translocation. After correcting for changes in the height of the energy barrier for translocation due to membrane thinning the pressure dependence of ki yields an apparent activation volume for translocation of approximately 14 cm3/mol both for DPA- and TPhB-. Changes in lipophilic ion absorption following a step of pressure developed with a rather slow time course due to diffusion limitations in solution. The stationary concentration of membrane absorbed lipophilic ions increased with pressure according to an apparent volume of absorption of about -10 cm3/mol. The relevance of the results for the interpretation of the effects of pressure on nerve membrane physiology is discussed.
机译:膜电容Cm的测量是在不同脂质成分(二植烷酰基磷脂酰胆碱PPhPC,二油酰基磷脂酰胆碱DOPE,甘油单油酸酯GMO)和含有正癸烷作为溶剂的脂质双层上进行的。在相同的膜中,已经研究了亲脂离子二吡啶胺(DPA-)和四苯基硼酸酯(TPhB-)的吸收,以及它们在两个膜面之间的易位动力学。数据从充电脉冲弛豫测量获得。随着压力的增加,比容Cm以完全可逆和可再现的方式增加,这反映了膜的变薄,这归因于正癸烷从黑色膜区域的挤出。高压降低了亲脂性离子易位的速率常数ki。在校正了由于薄膜变薄而引起的易位能垒高度的变化后,ki的压力依赖性产生了对于DPA-和TPhB-均易位的表观活化体积,约为14cm3 / mol。由于溶液中的扩散限制,随着一步压力的发展,亲脂性离子吸收的变化随着时间的流逝而变慢。膜吸收的亲脂性离子的固定浓度随压力的增加而增加,视在吸收的表观体积约为-10 cm3 / mol。讨论了结果与解释压力对神经膜生理的影响的相关性。

著录项

  • 作者

    Benz, R; Conti, F;

  • 作者单位
  • 年度 1986
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:37:33

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