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根皮素通过脂质双层渗透的逐步机制。

A stepwise mechanism for the permeation of phloretin through a lipid bilayer.

作者信息

Verkman A S, Solomon A K

出版信息

J Gen Physiol. 1982 Oct;80(4):557-81. doi: 10.1085/jgp.80.4.557.

Abstract

The thermodynamics of interactions between phloretin and a phosphatidylcholine (PC) vesicle membrane are characterized using equilibrium spectrophotometric titration, stopped-flow, and temperature-jump techniques. Binding of phloretin to a PC vesicle membrane is diffusion limited, with an association rate constant greater than 10(8) M-1s-1, and an interfacial activation free energy of less than 2 kcal/mol. Equilibrium binding of phloretin to a vesicle membrane is characterized by a single class of high-affinity (8 micro M), noninteracting sites. Binding is enthalpy driven (delta H = -4.9 kcal/mol) at 23 degrees C. Analysis of amplitudes of kinetic processes shows that 66 +/- 3% of total phloretin binding sites are exposed at the external vesicle surface. The rate of phloretin movement between binding sites located near the external and internal interfaces is proportional to the concentration of un-ionized phloretin, with a rate constant of 5.7 X 10(4) M-1s-1 at 23 degrees C. The rate of this process is limited by a large enthalpic (9 kcal/mol) and entropic (-31 entropy units) barrier. An analysis of the concentration dependence of the rate of transmembrane movement suggests the presence of multiple intramembrane potential barriers. Permeation of phloretin through a lipid bilayer is modeled quantitatively in terms of discrete steps: binding to a membrane surface, translocation across a series of intramembrane barriers, and dissociation from the opposite membrane surface. The permeability coefficient for phloretin is calculated as 1.9 X 10(-3) cm/s on the basis of the model presented. Structure-function relationships are examined for a number of phloretin analogues.

摘要

利用平衡分光光度滴定、停流法和温度跳跃技术对根皮素与磷脂酰胆碱(PC)囊泡膜之间相互作用的热力学进行了表征。根皮素与PC囊泡膜的结合受扩散限制,缔合速率常数大于10⁸ M⁻¹s⁻¹,界面活化自由能小于2千卡/摩尔。根皮素与囊泡膜的平衡结合以一类高亲和力(8微摩尔)、非相互作用位点为特征。在23℃时,结合是由焓驱动的(ΔH = -4.9千卡/摩尔)。对动力学过程振幅的分析表明,总根皮素结合位点的66±3%暴露在囊泡外表面。根皮素在位于外界面和内界面附近的结合位点之间移动的速率与未电离根皮素的浓度成正比,在23℃时速率常数为5.7×10⁴ M⁻¹s⁻¹。该过程的速率受一个大的焓(9千卡/摩尔)和熵(-31熵单位)屏障限制。对跨膜运动速率的浓度依赖性分析表明存在多个膜内势垒。根皮素通过脂质双层的渗透根据离散步骤进行定量建模:与膜表面结合、穿过一系列膜内屏障的转运以及从相对膜表面解离。根据所提出的模型,根皮素的渗透系数计算为1.9×10⁻³厘米/秒。对多种根皮素类似物的结构-功能关系进行了研究。

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