Giner Casares Juan José, Camacho Luis, Martín-Romero Maria Teresa, López Cascales José Javier
Universidad de Córdoba, Departamento de Química Física y Termodinámica Aplicada, Ed. Marie Curie, Campus de Rabanales, 14014. Córdoba, Spain.
Chemphyschem. 2008 Dec 1;9(17):2538-43. doi: 10.1002/cphc.200800321.
Studying the effect of alkali and alkaline-earth metal cations on Langmuir monolayers is relevant from biophysical and nanotechnological points of view. In this work, the effect of Na(+) and Ca(2+) on a model of an anionic Langmuir lipid monolayer of dimyristoylphosphatidate (DMPA(-)) is studied by molecular dynamics simulations. The influence of the type of cation on lipid structure, lipid-lipid interactions, and lipid ordering is analyzed in terms of electrostatic interactions. It is found that for a lipid monolayer in its solid phase, the effect of the cations on the properties of the lipid monolayer can be neglected. The influence of the cations is enhanced for the lipid monolayer in its gas phase, where sodium ions show a high degree of dehydration compared with calcium ions. This loss of hydration shell is partly compensated by the formation of lipid-ion-lipid bridges. This difference is ascribed to the higher charge-to-radius ratio q/r for Ca(2+), which makes ion dehydration less favorable compared to Na(+). Owing to the different dehydration behavior of sodium and calcium ions, diminished lipid-lipid coordination, lipid-ion coordination, and lipid ordering are observed for Ca(2+) compared to Na(+). Furthermore, for both gas and solid phases of the lipid Langmuir monolayers, lipid conformation and ion dehydration across the lipid/water interface are studied.
从生物物理和纳米技术的角度来看,研究碱金属和碱土金属阳离子对朗缪尔单分子层的影响具有重要意义。在这项工作中,通过分子动力学模拟研究了Na(+)和Ca(2+)对阴离子型二肉豆蔻酰磷脂酸(DMPA(-))朗缪尔脂质单分子层模型的影响。从静电相互作用的角度分析了阳离子类型对脂质结构、脂质-脂质相互作用和脂质有序性的影响。研究发现,对于处于固相的脂质单分子层,阳离子对脂质单分子层性质的影响可以忽略不计。对于处于气相的脂质单分子层,阳离子的影响增强,与钙离子相比,钠离子表现出高度的脱水。这种水合壳的损失部分通过脂质-离子-脂质桥的形成得到补偿。这种差异归因于Ca(2+)的电荷半径比q/r较高,与Na(+)相比,这使得离子脱水不太有利。由于钠离子和钙离子的脱水行为不同,与Na(+)相比,Ca(2+)导致脂质-脂质配位、脂质-离子配位和脂质有序性降低。此外,对于脂质朗缪尔单分子层的气相和固相,都研究了脂质构象和跨脂质/水界面的离子脱水情况。