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通过有效纳入电子极化作用,带负电荷的 POPS 可增强阳离子与脂质双层的结合。

Improved Cation Binding to Lipid Bilayers with Negatively Charged POPS by Effective Inclusion of Electronic Polarization.

机构信息

Institute of Organic Chemistry and Biochemistry , Czech Academy of Sciences , Flemingovo nám. 542/2 , CZ-16610 Prague 6 , Czech Republic.

Groningen Biomolecular Sciences and Biotechnology Institute and The Zernike Institute for Advanced Materials , University of Groningen , 9747 AG Groningen , The Netherlands.

出版信息

J Chem Theory Comput. 2020 Jan 14;16(1):738-748. doi: 10.1021/acs.jctc.9b00824. Epub 2019 Dec 16.

Abstract

Phosphatidylserine (PS) lipids are important signaling molecules and the most common negatively charged lipids in eukaryotic membranes. The signaling can be often regulated by calcium, but its interactions with PS headgroups are not fully understood. Classical molecular dynamics (MD) simulations can potentially give detailed description of lipid-ion interactions, but the results strongly depend on the used force field. Here, we apply the electronic continuum correction (ECC) to the Amber Lipid17 parameters of 1-palmitoyl-2-oleoyl--glycero-3-phospho-l-serine (POPS) lipid to improve its interactions with K, Na, and Ca ions. The partial charges of the headgroup, glycerol backbone, and carbonyls of POPS, bearing a unit negative charge, were scaled with a factor of 0.75, derived for monovalent ions, and the Lennard-Jones σ parameters of the same segments were scaled with a factor of 0.89. The resulting ECC-POPS model gives more realistic interactions with Na and Ca cations than the original Amber Lipid17 parameters when validated using headgroup order parameters and the "electrometer concept". In ECC-lipids simulations, populations of complexes of Ca cations with more than two PS lipids are negligible, and interactions of Ca cations with only carboxylate groups are twice more likely than with only phosphate groups, while interactions with carbonyls almost entirely involve other groups as well. Our results pave the way for more realistic MD simulations of biomolecular systems with anionic membranes, allowing signaling processes involving PS and Ca to be elucidated.

摘要

磷脂酰丝氨酸 (PS) 脂质是重要的信号分子,也是真核细胞膜中最常见的带负电荷的脂质。这种信号可以通过钙离子进行调节,但它与 PS 头部基团的相互作用尚未完全了解。经典的分子动力学 (MD) 模拟可以潜在地详细描述脂质-离子相互作用,但结果强烈依赖于所使用的力场。在这里,我们应用电子连续体修正 (ECC) 对 Amber Lipid17 参数的 1-棕榈酰-2-油酰-甘油-3-磷酸-L-丝氨酸 (POPS) 脂质进行修正,以改善其与 K、Na 和 Ca 离子的相互作用。带一个单位负电荷的头部基团、甘油骨架和羰基的部分电荷被缩放到单价离子的 0.75 倍,并且相同片段的 Lennard-Jones σ参数被缩放到 0.89 倍。与原始的 Amber Lipid17 参数相比,修正后的 ECC-POPS 模型在使用头部基团有序参数和“电计概念”进行验证时,与 Na 和 Ca 阳离子的相互作用更加真实。在 ECC-脂质模拟中,Ca 阳离子与超过两个 PS 脂质形成复合物的几率可以忽略不计,并且 Ca 阳离子与只有羧酸盐基团的相互作用的可能性是与只有磷酸盐基团的相互作用的两倍,而与羰基的相互作用几乎完全涉及其他基团。我们的结果为带有阴离子膜的生物分子系统的更真实的 MD 模拟铺平了道路,从而可以阐明涉及 PS 和 Ca 的信号转导过程。

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