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流感病毒蛋白与平面双层脂质膜的相互作用。I. 其吸附及掺入脂质双层的特性

Interaction of influenza virus proteins with planar bilayer lipid membranes. I. Characterization of their adsorption and incorporation into lipid bilayers.

作者信息

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

出版信息

Biochim Biophys Acta. 1984 Dec 5;778(2):269-75. doi: 10.1016/0005-2736(84)90368-7.

Abstract

Alterations in the surface potential difference (delta U) of asolectin planar bilayer lipid membranes were measured following the adsorption of isolated matrix protein (M-protein) or neuraminidase of influenza virus. The method used was based upon measurement of the bilayer lipid membrane capacitance current second harmonic. The delta U dependence on the M-protein and neuraminidase concentration indicates different mechanisms of adsorption of these viral proteins by the lipid bilayer. The conductance (G0) dependence of the bilayer lipid membrane with different compositions on the concentration of isolated surface glycoproteins, hemagglutinin and neuraminidase, M-protein or neuraminidase was investigated. The change in G0 for M-protein was observed only after adsorption saturation had been achieved. Neuraminidase alone does not affect the membrane conductivity. The surface charge and lipid composition of the lipid bilayer influences the adsorption and incorporation of influenza virus M-protein and surface glycoproteins. The reversibility of protein incorporation into the bilayers was investigated by a perfusion technique. The results show reversibility of surface glycoprotein incorporation while M-protein binding appears to be irreversible.

摘要

在吸附分离的基质蛋白(M蛋白)或流感病毒神经氨酸酶后,测量了大豆卵磷脂平面双层脂质膜的表面电位差(δU)变化。所采用的方法基于双层脂质膜电容电流二次谐波的测量。δU对M蛋白和神经氨酸酶浓度的依赖性表明这些病毒蛋白被脂质双层吸附的机制不同。研究了不同组成的双层脂质膜的电导(G0)对分离的表面糖蛋白、血凝素和神经氨酸酶、M蛋白或神经氨酸酶浓度的依赖性。仅在达到吸附饱和后才观察到M蛋白引起的G0变化。单独的神经氨酸酶不影响膜的电导率。脂质双层的表面电荷和脂质组成会影响流感病毒M蛋白和表面糖蛋白的吸附与掺入。通过灌注技术研究了蛋白质掺入双层膜的可逆性。结果表明表面糖蛋白的掺入是可逆的,而M蛋白的结合似乎是不可逆的。

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