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流感病毒蛋白与平面双层脂质膜的相互作用。II. 金刚乙胺和金刚烷胺的作用

Interaction of influenza virus proteins with planar bilayer lipid membranes. II. Effects of rimantadine and amantadine.

作者信息

Tverdislov V A, El Karadaghi S, Bucher D J, Zakomirdin J A, Kharitonenkov I G

出版信息

Biochim Biophys Acta. 1984 Dec 5;778(2):276-80. doi: 10.1016/0005-2736(84)90369-9.

Abstract

The dependence of the surface potential difference (delta U), transversal elasticity module (E1) and membrane conductivity (G0) on the concentrations of the antiviral drugs, rimantadine and amantadine was studied in the planar bilayer lipid membrane system. The method used was based on independent measurements of the second and third harmonics of the membrane capacitance current. The binding constants of bilayer lipid membranes obtained from the drug adsorption isotherms were 2.1 X 10(5) M-1 and 1.3 X 10(4) M-1 for rimantadine and amantadine, respectively. The changes in G0 took place only after drug adsorption saturation had been achieved. The influence of rimantadine and amantadine on the interaction of bilayer lipid membranes with matrix protein from influenza virus was also investigated. The presence of 70 micrograms/ml rimantadine in the bathing solution resulted in an increase in the concentration of M-protein at which the adsorption and conductance changes were observed. The effects of amantadine were similar to those of rimantadine but required a higher critical concentration of amantadine. The results obtained suggest that the antiviral properties of rimantadine and amantadine may be related to the interaction of these drugs with the cell membrane, which can affect virus penetration into the cell as well as maturation of the viral particle at the cell membrane.

摘要

在平面双层脂质膜系统中,研究了表面电位差(ΔU)、横向弹性模量(E1)和膜电导率(G0)对抗病毒药物金刚乙胺和金刚烷胺浓度的依赖性。所采用的方法基于对膜电容电流二次和三次谐波的独立测量。从药物吸附等温线得到的双层脂质膜对金刚乙胺和金刚烷胺的结合常数分别为2.1×10⁵ M⁻¹和1.3×10⁴ M⁻¹。G0的变化仅在药物吸附达到饱和后才发生。还研究了金刚乙胺和金刚烷胺对双层脂质膜与流感病毒基质蛋白相互作用的影响。在浴液中存在70微克/毫升金刚乙胺会导致观察到吸附和电导变化时M蛋白浓度的增加。金刚烷胺的作用与金刚乙胺相似,但需要更高的金刚烷胺临界浓度。所得结果表明,金刚乙胺和金刚烷胺的抗病毒特性可能与这些药物与细胞膜的相互作用有关,这可能会影响病毒进入细胞以及病毒颗粒在细胞膜处的成熟。

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