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Regulation of anionic lipids in binary membrane upon the adsorption of polyelectrolyte: A Monte Carlo simulation

机译:聚电解质吸附后二元膜中阴离子脂质的调节:蒙特卡洛模拟

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We employ Monte Carlo simulations to investigate the interaction between an adsorbing linear flexible cationic polyelectrolyte and a binary fluid membrane. The membrane contains neutral phosphatidyl–choline, PC) and multivalent anionic (phosphatidylinositol, PIP2) lipids. We systematically study the influences of the solution ionic strength, the chain length and the bead charge density of the polyelectrolyte on the lateral rearrangement and the restricted mobility of the multivalent anionic lipids in the membrane. Our findings show that, the cooperativity effect and the electrostatic interaction of the polyelectrolyte beads can significantly affect the segregation extent and the concentration gradients of the PIP2 molecules, and further cooperate to induce the complicated hierarchical mobility behaviors of PIP2 molecules. In addition, when the polyelectrolyte brings a large amount of charges, it can form a robust electrostatic well to trap all PIP2 and results in local overcharge of the membrane. This work presents a mechanism to explain the membrane heterogeneity formation induced by the adsorption of charged macromolecule.
机译:我们采用蒙特卡洛模拟来研究线性吸附的阳离子柔性阳离子聚电解质和二元流体膜之间的相互作用。膜包含中性磷脂酰胆碱,PC和多价阴离子脂质(磷脂酰肌醇,PIP2)。我们系统地研究了溶液离子强度,聚电解质的链长和珠电荷密度对膜中多价阴离子脂质的侧向重排和受限迁移率的影响。我们的发现表明,聚电解质珠粒的协同作用和静电相互作用可显着影响PIP2分子的偏析程度和浓度梯度,并进一步协同诱导PIP2分子的复杂的分级迁移行为。另外,当聚电解质带来大量电荷时,它可以形成坚固的静电阱以捕获所有PIP2,并导致膜局部过充电。这项工作提出了一种机制来解释由带电大分子的吸附引起的膜异质性的形成。

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