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非电解质跨红细胞膜渗透的温度依赖性。

Temperature dependence of nonelectrolyte permeation across red cell membranes.

作者信息

Galey W R, Owen J D, Solomon A K

出版信息

J Gen Physiol. 1973 Jun;61(6):727-46. doi: 10.1085/jgp.61.6.727.

Abstract

The temperature dependence of permeation across human red cell membranes has been determined for a series of hydrophilic and lipophilic solutes, including urea and two methyl substituted derivatives, all the straight-chain amides from formamide through valeramide and the two isomers, isobutyramide and isovaleramide. The temperature coefficient for permeation by all the hydrophilic solutes is 12 kcal mol(-1) or less, whereas that for all the lipophilic solutes is 19 kcal mol(-1) or greater. This difference is consonant with the view that hydrophilic molecules cross the membrane by a path different from that taken by the lipophilic ones. The thermodynamic parameters associated with lipophile permeation have been studied in detail. DeltaG is negative for adsorption of lipophilic amides onto an oil-water interface, whereas it is positive for transfer of the polar head from the aqueous medium to bulk lipid solvent. Application of absolute reaction rate theory makes it possible to make a clear distinction between diffusion across the water-red cell membrane interface and diffusion within the membrane. Diffusion coefficients and apparent activation enthalpies and entropies have been computed for each process. Transfer of the polar head from the solvent into the interface is characterized by DeltaG(double dagger) = 0 kcal mol(-1) and DeltaS(double dagger) negative, whereas both of these parameters have large positive values for diffusion within the membrane. Diffusion within the membrane is similar to what is expected for diffusion through a highly associated viscous fluid.

摘要

已测定了一系列亲水性和亲脂性溶质(包括尿素及其两种甲基取代衍生物、从甲酰胺到戊酰胺的所有直链酰胺以及两种异构体异丁酰胺和异戊酰胺)透过人红细胞膜的温度依赖性。所有亲水性溶质的渗透温度系数为12千卡/摩尔或更低,而所有亲脂性溶质的该系数为19千卡/摩尔或更高。这种差异与亲水性分子通过与亲脂性分子不同的途径穿过膜的观点一致。已详细研究了与亲脂性溶质渗透相关的热力学参数。亲脂性酰胺吸附到油水界面时,ΔG为负,而极性头部从水相介质转移到脂质本体溶剂时,ΔG为正。应用绝对反应速率理论能够明确区分跨水 - 红细胞膜界面的扩散和膜内的扩散。已计算出每个过程的扩散系数、表观活化焓和熵。极性头部从溶剂转移到界面的特征是ΔG‡ = 0千卡/摩尔且ΔS‡为负,而对于膜内扩散,这两个参数均具有较大的正值。膜内扩散类似于通过高度缔合的粘性流体的扩散。

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