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通过电动数据的理论分析和分子动力学模拟揭示脂质膜上聚赖氨酸吸附层的不均匀性。

Inhomogeneity of polylysine adsorption layers on lipid membranes revealed by theoretical analysis of electrokinetic data and molecular dynamics simulations.

作者信息

Molotkovsky Rodion J, Galimzyanov Timur R, Khomich Daria A, Nesterenko Alexey M, Ermakov Yury A

机构信息

Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Moscow 119071, Russia.

Department of Biophysics, Faculty of Biology, M.V. Lomonosov Moscow State University, Moscow 119992, Russia.

出版信息

Bioelectrochemistry. 2021 Oct;141:107828. doi: 10.1016/j.bioelechem.2021.107828. Epub 2021 Apr 27.

Abstract

The adsorption of large polycations on a charged lipid membrane is qualitatively different from the small inorganic cations, which almost uniformly populate the membrane surface. We assume that the polycationic adsorption layer might be laterally inhomogeneous starting from a certain polymer length, and this effect can be more visible for membranes with low anionic lipid content. To study systems with inhomogeneous adsorption layers, we carried out electrokinetic measurements of mobility of liposomes containing anionic and neutral phospholipids in the presence of polylysine molecules. Some of these systems were simulated by all-atom molecular dynamics. Here we proposed a theoretical approach accounting for the formation of separated regions at the membrane surface, which differ in charge density and surface potential. Our model allowed us to determine the adsorption layer's geometric parameters such as surface coverage and surface-bound monomer fraction of polymer, which correlate with the molecular dynamics (MD) simulations. We demonstrated that the configuration polylysine adopts on the membrane surface (tall or planar) depends on the polymer/membrane charge ratio. Both theory and MD indicate a decrease in the anionic lipid content, alongside with a decrease in the bound monomer fraction and corresponding increase in the extension length of the adsorbed polymers.

摘要

大的聚阳离子在带电脂质膜上的吸附与小的无机阳离子在性质上有所不同,小的无机阳离子几乎均匀地分布在膜表面。我们假设,从一定的聚合物长度开始,聚阳离子吸附层可能在横向是不均匀的,对于阴离子脂质含量低的膜,这种效应可能更明显。为了研究具有不均匀吸附层的系统,我们在聚赖氨酸分子存在的情况下,对含有阴离子和中性磷脂的脂质体的迁移率进行了电动测量。其中一些系统通过全原子分子动力学进行了模拟。在这里,我们提出了一种理论方法,用于解释膜表面形成的电荷密度和表面电位不同的分离区域。我们的模型使我们能够确定吸附层的几何参数,如聚合物的表面覆盖率和表面结合单体分数,这些参数与分子动力学(MD)模拟相关。我们证明,聚赖氨酸在膜表面采用的构型(直立或平面)取决于聚合物/膜的电荷比。理论和分子动力学都表明,阴离子脂质含量的降低,伴随着结合单体分数的降低和吸附聚合物伸展长度的相应增加。

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