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酸性pH值和膜电位对pH敏感肽吸附到阴离子脂质膜的调节作用。

Modulatory Effects of Acidic pH and Membrane Potential on the Adsorption of pH-Sensitive Peptides to Anionic Lipid Membrane.

作者信息

Alvares Dayane Dos Santos, Martins Ingrid Bernardes Santana, Viegas Taisa Giordano, Palma Mario Sergio, de Araujo Alexandre Suman, de Carvalho Sidney Jurado, Ruggiero Neto João

机构信息

IBILCE, Department of Physics, UNESP-São Paulo State University, São José do Rio Preto 15054-000, SP, Brazil.

Institute of Biosciences, Department of Basic and Applied Biology, UNESP-São Paulo State University, Rio Claro 13506-752, SP, Brazil.

出版信息

Membranes (Basel). 2021 Apr 22;11(5):307. doi: 10.3390/membranes11050307.

Abstract

Anionic lipid membrane electrostatic potential and solution pH can influence cationic peptide adsorption to these bilayers, especially those containing simultaneously acid and basic residues. Here, we investigate the effects of the pH solution on MP1 (IDWKKLLDAAKQIL-NH2) adsorption to anionic (7POPC:3POPG) lipid vesicles in comparison to its analog H-MP1, with histidines substituting lysines. We used the association of adsorption isotherms and constant pH molecular dynamic simulations (CpHMD) to explore the effects of membrane potential and pH on peptides' adsorption on this lipid membrane. We analyzed the fluorescence and zeta potential adsorption isotherms using the Gouy-Chapman theory. In CpHMD simulations for the peptides in solution and adsorbed on the lipid bilayer, we used the conformations obtained by conventional MD simulations at a μs timescale. Non-equilibrium Monte Carlo simulations provided the protonation states of acidic and basic residues. CpHMD showed average pKa shifts of two to three units, resulting in a higher net charge for the analog than for MP1, strongly modulating the peptide adsorption. The fractions of the protonation of acidic and basic residues and the peptides' net charges obtained from the analysis of the adsorption isotherms were in reasonable agreement with those from CpHMD. MP1 adsorption was almost insensitive to solution pH. H-MP1 was much more sensitive to partitioning, at acidic pH, with an affinity ten times higher than in neutral ones.

摘要

阴离子脂质膜的静电势和溶液pH值会影响阳离子肽对这些双层膜的吸附,尤其是那些同时含有酸性和碱性残基的双层膜。在这里,我们研究了溶液pH值对MP1(IDWKKLLDAAKQIL-NH2)吸附到阴离子(7POPC:3POPG)脂质囊泡的影响,并将其与其类似物H-MP1进行比较,H-MP1中组氨酸取代了赖氨酸。我们使用吸附等温线和恒定pH分子动力学模拟(CpHMD)来探讨膜电位和pH值对肽在这种脂质膜上吸附的影响。我们使用 Gouy-Chapman 理论分析了荧光和zeta电位吸附等温线。在溶液中以及吸附在脂质双层上的肽的CpHMD模拟中,我们使用了在微秒时间尺度上通过传统MD模拟获得的构象。非平衡蒙特卡罗模拟提供了酸性和碱性残基的质子化状态。CpHMD显示平均pKa偏移两到三个单位,导致类似物的净电荷高于MP1,强烈调节肽的吸附。从吸附等温线分析中获得的酸性和碱性残基质子化分数以及肽的净电荷与CpHMD的结果合理一致。MP1的吸附对溶液pH值几乎不敏感。H-MP1在酸性pH值下对分配更为敏感,其亲和力比在中性pH值下高十倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b27/8143466/8575a1c9e168/membranes-11-00307-g001.jpg

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