J. Heyrovský Institute of Physical Chemistry of the Czech Academy of Sciences , Dolejškova 3 , 18223 Prague 8 , Czech Republic.
Chem Rev. 2018 Dec 12;118(23):11259-11297. doi: 10.1021/acs.chemrev.8b00322. Epub 2018 Oct 26.
Lipid membranes can spontaneously organize their components into domains of different sizes and properties. The organization of membrane lipids into nanodomains might potentially play a role in vital functions of cells and organisms. Model membranes represent attractive systems to study lipid nanodomains, which cannot be directly addressed in living cells with the currently available methods. This review summarizes the knowledge on lipid nanodomains in model membranes and exposes how their specific character contrasts with large-scale phase separation. The overview on lipid nanodomains in membranes composed of diverse lipids (e.g., zwitterionic and anionic glycerophospholipids, ceramides, glycosphingolipids) and cholesterol aims to evidence the impact of chemical, electrostatic, and geometric properties of lipids on nanodomain formation. Furthermore, the effects of curvature, asymmetry, and ions on membrane nanodomains are shown to be highly relevant aspects that may also modulate lipid nanodomains in cellular membranes. Potential mechanisms responsible for the formation and dynamics of nanodomains are discussed with support from available theories and computational studies. A brief description of current fluorescence techniques and analytical tools that enabled progress in lipid nanodomain studies is also included. Further directions are proposed to successfully extend this research to cells.
脂质膜可以自发地将其成分组织成具有不同大小和性质的区域。膜脂质的这种纳米区组织可能在细胞和生物体的重要功能中发挥作用。模型膜是研究脂质纳米区的有吸引力的系统,目前可用的方法无法直接在活细胞中研究这些纳米区。本综述总结了模型膜中脂质纳米区的知识,并揭示了它们的特定特征与大规模相分离的对比。关于由不同脂质(如两性离子和阴离子甘油磷脂、神经酰胺、糖脂)和胆固醇组成的膜中脂质纳米区的概述旨在证明脂质的化学、静电和几何性质对纳米区形成的影响。此外,还显示了曲率、不对称性和离子对膜纳米区的影响是高度相关的方面,这些方面也可能调节细胞膜中的脂质纳米区。讨论了纳米区形成和动力学的潜在机制,并得到了现有理论和计算研究的支持。还简要描述了当前荧光技术和分析工具,这些技术和工具为脂质纳米区研究的进展提供了支持。提出了进一步的方向,以成功地将这一研究扩展到细胞。