Laboratorio de Fisicoquímica, INQUISUR, Departamento de Química, Universidad Nacional del Sur (UNS)-CONICET, Av. Alem 1253, 8000 Bahía Blanca, Buenos Aires, Argentina.
Laboratorio de Fisicoquímica, INQUISUR, Departamento de Química, Universidad Nacional del Sur (UNS)-CONICET, Av. Alem 1253, 8000 Bahía Blanca, Buenos Aires, Argentina.
Biophys Chem. 2023 Oct;301:107081. doi: 10.1016/j.bpc.2023.107081. Epub 2023 Aug 1.
Cholesterol is known to significantly modify both the structural and the dynamical properties of lipid membranes. On one side, the presence of free cholesterol molecules has been determined to stiffen the membrane bilayer by stretching the hydrophobic tails. Additionally, recent experimental and computational findings have made evident the fact that cholesterol also alters the dynamics and the hydration properties of the polar head groups of DPPC model lipid membranes. In turn, we have recently shown that the Omega-3 fatty acid docosahexaenoic acid, DHA, counteracts the effect of cholesterol on DPPC membrane's mechanical properties by fluidizing the bilayer. However, such behavior represents in fact a global outcome dominated by the larger lipid hydrophobic tails that neither discriminates between the different parts of the membrane nor elucidates the effect on membrane hydration and binding properties. Thus, we now perform molecular dynamics simulations to scrutinize the influence of DHA on the interfacial behavior of cholesterol-containing lipid membranes by characterizing their hydration properties and their binding to amphiphiles. We find that while cholesterol destabilizes interactions with amphiphiles and slightly weakens the lipid's hydration layer, the incorporation of DHA practically restores the interfacial behavior of pure DPPC.
胆固醇被认为会显著改变脂质膜的结构和动力学性质。一方面,自由胆固醇分子的存在通过拉伸疏水性尾部使膜双层变硬。此外,最近的实验和计算结果表明,胆固醇还改变了 DPPC 模型脂质膜极性头部基团的动力学和水合性质。反过来,我们最近表明,ω-3 脂肪酸二十二碳六烯酸 (DHA) 通过使双层流化来抵消胆固醇对 DPPC 膜机械性能的影响。然而,这种行为实际上代表了一种由较大的脂质疏水尾部主导的全局结果,它既不能区分膜的不同部分,也不能阐明对膜水合和结合性质的影响。因此,我们现在进行分子动力学模拟,通过表征含胆固醇脂质膜的水合性质及其与两亲物的结合来仔细研究 DHA 对其界面行为的影响。我们发现,虽然胆固醇会破坏与两亲物的相互作用,并略微削弱脂质的水合层,但 DHA 的掺入实际上恢复了纯 DPPC 的界面行为。